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Long
Bone
Short
Bones
Irregular Bone
Flat Bones
Long Bone
Red Marrow
Yellow
Marrow
Spongy
Copyright © 2010 Ryan P. Murphy
Human Body Unit
Part II/XIII
Human Body Unit
Part II/XIII
• RED SLIDE: These are notes that are very
important and should be recorded in your
science journal.
Copyright © 2010 Ryan P. Murphy
-Nice neat notes that are legible and use
indentations when appropriate.
-Example of indent.
-Skip a line between topics
-Don’t skip pages
-Make visuals clear and well drawn. Please label.
Kidneys
Ureters
Urinary Bladder
Copyright © 2010 Ryan P. Murphy
• RED SLIDE: These are notes that are very
important and should be recorded in your
science journal.
• BLACK SLIDE: Pay attention, follow
directions, complete projects as described
and answer required questions neatly.
Copyright © 2010 Ryan P. Murphy
• Keep an eye out for “The-Owl” and raise
your hand as soon as you see him.
– He will be hiding somewhere in the slideshow
Copyright © 2010 Ryan P. Murphy
• Keep an eye out for “The-Owl” and raise
your hand as soon as you see him.
– He will be hiding somewhere in the slideshow
“I’ll be about
this big
Copyright © 2010 Ryan P. Murphy
 Area of Focus: The Skeletal System.
Copyright © 2010 Ryan P. Murphy
• Picture of you without a skeletal system.
Copyright © 2010 Ryan P. Murphy
• Picture of you without a skeletal system.
Copyright © 2010 Ryan P. Murphy
“Are bones
living?”
“They are
made of living
tissue.”
• Bone contains three types of cells. These
three cells…
Copyright © 2010 Ryan P. Murphy
• Bone contains three types of cells. These
three cells…
– Osteoblasts: Make new bone and help repair damage.
Copyright © 2010 Ryan P. Murphy
• Bone contains three types of cells. These
three cells…
– Osteoblasts: Make new bone and help repair damage.
– Osteocytes: Carry nutrients and waste products to and
from blood vessels in the bone.
Copyright © 2010 Ryan P. Murphy
• Bone contains three types of cells. These
three cells…
– Osteoblasts: Make new bone and help repair damage.
– Osteocytes: Carry nutrients and waste products to and
from blood vessels in the bone.
– Osteoclasts, Break down bone and help to sculpt and
shape it.
Copyright © 2010 Ryan P. Murphy
• Bone contains three types of cells. These
three cells…
– Osteoblasts: Make new bone and help repair damage.
– Osteocytes: Carry nutrients and waste products to and
from blood vessels in the bone.
– Osteoclasts, Break down bone and help to sculpt and
shape it.
Copyright © 2010 Ryan P. Murphy
Learn more about bone cells (advanced) at…
http://depts.washington.edu/bonebio/ASBMRed/cells.html
• Which of the following prefixes relates to
bones?
– A.) Abdomino
– B.) Osteo
– C.) Cerebo
– D.) Cardio
– E.) Dermato
Copyright © 2010 Ryan P. Murphy
• Which of the following prefixes relates to
bones?
– A.) Abdomino
– B.) Osteo
– C.) Cerebo
– D.) Cardio
– E.) Dermato
Copyright © 2010 Ryan P. Murphy
• Bones are coated in a thin layer of blood
vessels that nourish the bone.
Copyright © 2010 Ryan P. Murphy
• Bones are coated in a thin layer of blood
vessels that nourish the bone.
Copyright © 2010 Ryan P. Murphy
• Activity! Who can guess the number of
bones in an adult human being.
Copyright © 2010 Ryan P. Murphy
• An adult human has 206 bones.
– When you are born, you have over 300
bones. They fuse together as you get older.
Copyright © 2010 Ryan P. Murphy
• An adult human has 206 bones.
– When you are born, you have over 300
bones. They fuse together as you get older.
Copyright © 2010 Ryan P. Murphy
• An adult human has 206 bones.
– When you are born, you have over 300
bones. They fuse together as you get older.
Copyright © 2010 Ryan P. Murphy
• An adult human has 206 bones.
– When you are born, you have over 300
bones. They fuse together as you get older.
Copyright © 2010 Ryan P. Murphy
• An adult human has 206 bones.
– When you are born, you have over 300
bones. They fuse together as you get older.
Copyright © 2010 Ryan P. Murphy
• Many bones form from a tissue called
cartilage.
• Feel the tip of your nose and your ears.
They are both made of cartilage.
Copyright © 2010 Ryan P. Murphy
• At just a few months old, bone starts to
replace your cartilage.
–
Copyright © 2010 Ryan P. Murphy
• At just a few months old, bone starts to
replace your cartilage.
– This process stops at about 25 years old and
that is when you stop growing.
Copyright © 2010 Ryan P. Murphy
• At just a few months old, bone starts to
replace your cartilage.
– This process stops at about 25 years old and
that is when you stop growing.
Copyright © 2010 Ryan P. Murphy
 The skeletal system…
 -
 -
 -
 -
 -
 -
 Provides the shape and form.
Copyright © 2010 Ryan P. Murphy
• Provides the shape and form.
Copyright © 2010 Ryan P. Murphy
• Provides the shape and form.
Copyright © 2010 Ryan P. Murphy
• Provides the shape and form.
Copyright © 2010 Ryan P. Murphy
• Provides the shape and form.
Copyright © 2010 Ryan P. Murphy
• Provides the shape and form.
Copyright © 2010 Ryan P. Murphy
• Provides the shape and form.
Copyright © 2010 Ryan P. Murphy
• Provides the shape and form.
Copyright © 2010 Ryan P. Murphy
• Provides the shape and form.
Copyright © 2010 Ryan P. Murphy
• What animal is this?
Copyright © 2010 Ryan P. Murphy
• What animal is this?
Copyright © 2010 Ryan P. Murphy
• What animal is this?
Copyright © 2010 Ryan P. Murphy
• What animal is this?
Copyright © 2010 Ryan P. Murphy
• What animal is this?
• What animal is this?
Copyright © 2010 Ryan P. Murphy
• Answer! Anteater.
Copyright © 2010 Ryan P. Murphy
• What animal is this?
• Bird bones have air spaces in them so
they are light weight.
– Why does a bird need light weight bones.
Copyright © 2010 Ryan P. Murphy
• The structure of bird bones is a lot like
corrugated cardboard.
Copyright © 2010 Ryan P. Murphy
• The structure of bird bones is a lot like
corrugated cardboard.
– These type of bones are very light weight so
the bird can fly with minimal effort.
Copyright © 2010 Ryan P. Murphy
• What animal is this?
• What animal is this?
• What animal is this?
• What animal is this?
• Arthropods have an exoskeleton, or
skeleton on the outside.
• Arthropods have an exoskeleton, or
skeleton on the outside.
– They grow by shedding their skeleton and
growing a bigger one.
• What animal is this?
• Answer! Ray / Mantaray
– Sharks and rays do not have bones but have
cartilage instead.
Copyright © 2010 Ryan P. Murphy
• What animal is this?
• Fish have bones.
• What skeleton is this?
• What is this?
• What animal is this?
 The skeletal system…
 - Provides shape and form
 -
 -
 -
 -
 -
 Supports.
• Tendons connect muscles to the bones.
– Picture below is reattachment of Achilles
tendon.
Copyright © 2010 Ryan P. Murphy
• Activity! Everyone stand in place and do
one jump in the air all at once.
– Make sure your area is safe and feel how your
tendons, muscles and skeleton work together.
Copyright © 2010 Ryan P. Murphy
 Protects.
Copyright © 2010 Ryan P. Murphy
• What is the point of this cage?
Copyright © 2010 Ryan P. Murphy
• Your skeletal system surrounds your most
important internal organs with a rib cage.
Copyright © 2010 Ryan P. Murphy
• Your skeletal system surrounds your most
important internal organs with a rib cage.
Copyright © 2010 Ryan P. Murphy
• Your skeletal system surrounds your most
important internal organs with a rib cage.
Copyright © 2010 Ryan P. Murphy
• Your skeletal system surrounds your most
important internal organs with a rib cage.
Copyright © 2010 Ryan P. Murphy
• Your skeletal system surrounds your most
important internal organs with a rib cage.
Copyright © 2010 Ryan P. Murphy
• Your pelvis helps protect the bladder,
intestines, and reproductive organs in
women.
Copyright © 2010 Ryan P. Murphy
• You eyes are protected by the eye sockets.
Copyright © 2010 Ryan P. Murphy
• Your brain is protected by the skull case
Copyright © 2010 Ryan P. Murphy
• Traumatic brain injury (TBI)
– A blow to the head that disrupts normal brain
function.
– A mild blow to the head can result in being
knocked unconscious.
Copyright © 2010 Ryan P. Murphy
• Repetitive collisions / concussions can
cause a number of serious brain
functioning problems later on in life.
Copyright © 2010 Ryan P. Murphy
• Repetitive collisions / concussions can
cause a number of serious brain
functioning problems later on in life.
“Protect your brain.”
“Your going to need it in life.”
Copyright © 2010 Ryan P. Murphy
• Repetitive collisions / concussions can
cause a number of serious brain
functioning problems later on in life.
Copyright © 2010 Ryan P. Murphy
• Seatbelts save lives.
– Avoid serious brain injury and death by
wearing one.
Copyright © 2010 Ryan P. Murphy
• Video! Why you should always wear a
seatbelt.
– http://www.youtube.com/watch?v=d7iYZPp2zYY
Copyright © 2010 Ryan P. Murphy
• Traumatic brain injury (TBI)
– 50,000 people in the U.S. die each year
– Most occur from falls and motor vehicle
accidents.
– In severe cases your brain doesn’t function
well anymore.
• What does the above mean?
Copyright © 2010 Ryan P. Murphy
• Helmets can help prevent serious brain
injury. Wear them!
Copyright © 2010 Ryan P. Murphy
• Helmets can help prevent serious brain
injury. Wear them!
Copyright © 2010 Ryan P. Murphy
• Helmets can help prevent serious brain
injury. Wear them!
Copyright © 2010 Ryan P. Murphy
• Helmets can help prevent serious brain
injury. Wear them! and be smart.
Copyright © 2010 Ryan P. Murphy
• Video Link! Josh’s Story.
– What can you learn from Josh and his family?
– http://www.youtube.com/watch?v=YQ609Tk-qQI
Copyright © 2010 Ryan P. Murphy
 Produces blood.
• An average of 2.6 million red blood cells
are produced each second by the bone
marrow
Copyright © 2010 Ryan P. Murphy
• An average of 2.6 million red blood cells
are produced each second by the bone
marrow to replace those worn out and
destroyed by the liver.
Copyright © 2010 Ryan P. Murphy
• If there is a problem with your bone
marrow, a transplant can give you healthy
new marrow.
Copyright © 2010 Ryan P. Murphy
• If there is a problem with your bone
marrow, a transplant can give you healthy
new marrow.
– You could need a transplant because of a
disease or if cancer treatment kills your
healthy blood cells.
Copyright © 2010 Ryan P. Murphy
• There are two main categories of bones.
– Spongy Bone
– Compact Bone
Copyright © 2010 Ryan P. Murphy
• There are two main categories of bones.
– Spongy Bone
– Compact Bone
Copyright © 2010 Ryan P. Murphy
• There are two main categories of bones.
– Spongy Bone
– Compact Bone
Copyright © 2010 Ryan P. Murphy
• There are two main categories of bones.
– Spongy Bone
– Compact Bone
Copyright © 2010 Ryan P. Murphy
• There are two main categories of bones.
– Spongy Bone
– Compact Bone
Copyright © 2010 Ryan P. Murphy
• Spongy bone or soft bone contains bone
marrow.
Copyright © 2010 Ryan P. Murphy
• Spongy bone or soft bone contains bone
marrow. Spongy or Compact?
Copyright © 2010 Ryan P. Murphy
• Spongy bone or soft bone contains bone
marrow. Spongy or Compact?
Copyright © 2010 Ryan P. Murphy
• Spongy bone or soft bone contains bone
marrow. Spongy or Compact?
Copyright © 2010 Ryan P. Murphy
• Spongy bone or soft bone contains bone
marrow. Spongy or Compact?
Copyright © 2010 Ryan P. Murphy
• Bone Marrow contains many blood
vessels.
Copyright © 2010 Ryan P. Murphy
• Bone Marrow contains many blood
vessels.
Copyright © 2010 Ryan P. Murphy
• Bone Marrow contains many blood
vessels.
Copyright © 2010 Ryan P. Murphy
• Bone Marrow contains many blood
vessels.
– Red Marrow: Creates red and white blood
cells.
Copyright © 2010 Ryan P. Murphy
• Bone Marrow contains many blood
vessels.
– Red Marrow: Creates red and white blood
cells.
– Yellow: Contains fat cells
Copyright © 2010 Ryan P. Murphy
• Axial Skeleton: The
supportive structure of the
body oriented along its
median longitudinal axis.
• Appendicular Skeleton:
Attaches to something, the
extremities.
• Axial Skeleton: The
supportive structure of the
body oriented along its
median longitudinal axis.
• Appendicular Skeleton:
Attaches to something, the
extremities.
• Axial Skeleton: The
supportive structure of the
body oriented along its
median longitudinal axis
• Axial Skeleton: The
supportive structure of the
body oriented along its
median longitudinal axis
• Appendicular Skeleton:
Attaches to something, the
extremities.
• Axial Skeleton: The
supportive structure of the
body oriented along its
median longitudinal axis
• Appendicular Skeleton:
Attaches to something, the
extremities.
• Which skeleton is the axial, and which is
the appendicular?
• Which skeleton is the axial, and which is
the appendicular?
• Which skeleton is the axial, and which is
the appendicular?
• Which skeleton is the axial, and which is
the appendicular?
• Which skeleton is the axial, and which is
the appendicular?
• Which skeleton is the axial, and which is
the appendicular?
• Which skeleton is the axial, and which is
the appendicular?
• Which skeleton is the axial, and which is
the appendicular?
• Bones are categorized into several groups.
Copyright © 2010 Ryan P. Murphy
• Bones are categorized into several groups.
– Long Bones
Copyright © 2010 Ryan P. Murphy
• Bones are categorized into several groups.
– Long Bones
– Flat Bones
Copyright © 2010 Ryan P. Murphy
• Bones are categorized into several groups.
– Long Bones
– Flat Bones
– Irregular Bones
Copyright © 2010 Ryan P. Murphy
• Bones are categorized into several groups.
– Long Bones
– Flat Bones
– Irregular Bones
– Short Bones
Copyright © 2010 Ryan P. Murphy
Long
Bone
Short
Bones
Irregular Bone
Flat Bones
Long Bone
Copyright © 2010 Ryan P. Murphy
Long
Bone
Short
Bones
Irregular Bone
Flat Bones
Long Bone
Copyright © 2010 Ryan P. Murphy
Long
Bone
Short
Bones
Irregular Bone
Flat Bones
Long Bone
Copyright © 2010 Ryan P. Murphy
Long
Bone
Short
Bones
Irregular Bone
Flat Bones
Long Bone
Copyright © 2010 Ryan P. Murphy
Long
Bone
Short
Bones
Irregular Bone
Flat Bones
Long Bone
Copyright © 2010 Ryan P. Murphy
Long
Bone
Short
Bones
Irregular Bone
Flat Bones
Long Bone
Copyright © 2010 Ryan P. Murphy
Long
Bone
Short
Bones
Irregular Bone
Flat Bones
Long Bone
Copyright © 2010 Ryan P. Murphy
Long
Bone
Short
Bones
Irregular Bone
Flat Bones
Long Bone
Copyright © 2010 Ryan P. Murphy
Long
Bone
Short
Bones
Irregular Bone
Flat Bones
Long Bone
Copyright © 2010 Ryan P. Murphy
Long
Bone
Short
Bones
Irregular Bone
Flat Bones
Long Bone
Copyright © 2010 Ryan P. Murphy
Long
Bone
Short
Bones
Irregular Bone
Flat Bones
Long Bone
Copyright © 2010 Ryan P. Murphy
Long
Bone
Short
Bones
Irregular Bone
Flat Bones
Long Bone
Copyright © 2010 Ryan P. Murphy
Long
Bone
Short
Bones
Irregular Bone
Flat Bones
Long Bone
Red Marrow Copyright © 2010 Ryan P. Murphy
Long
Bone
Short
Bones
Irregular Bone
Flat Bones
Long Bone
Red Marrow Copyright © 2010 Ryan P. Murphy
Long
Bone
Short
Bones
Irregular Bone
Flat Bones
Long Bone
Red Marrow Copyright © 2010 Ryan P. Murphy
Long
Bone
Short
Bones
Irregular Bone
Flat Bones
Long Bone
Red Marrow
Yellow
Marrow
Copyright © 2010 Ryan P. Murphy
Long
Bone
Short
Bones
Irregular Bone
Flat Bones
Long Bone
Red Marrow
Yellow
Marrow
Copyright © 2010 Ryan P. Murphy
Long
Bone
Short
Bones
Irregular Bone
Flat Bones
Long Bone
Red Marrow
Yellow
Marrow
Spongy
Copyright © 2010 Ryan P. Murphy
Long
Bone
Short
Bones
Irregular Bone
Flat Bones
Long Bone
Red Marrow
Yellow
Marrow
Spongy
Copyright © 2010 Ryan P. Murphy
Long
Bone
Short
Bones
Irregular Bone
Flat Bones
Long Bone
Red Marrow
Yellow
Marrow
Spongy
Compact
Copyright © 2010 Ryan P. Murphy
“Oh-no!” “We
are trying it one
more time.”
Long
Bone
Short
Bones
Irregular Bone
Flat Bones
Long Bone
Copyright © 2010 Ryan P. Murphy
Long
Bone
Short
Bones
Irregular Bone
Flat Bones
Long Bone
Copyright © 2010 Ryan P. Murphy
Long
Bone
Short
Bones
Irregular Bone
Flat Bones
Long Bone
Copyright © 2010 Ryan P. Murphy
Long
Bone
Short
Bones
Irregular Bone
Flat Bones
Long Bone
Copyright © 2010 Ryan P. Murphy
Long
Bone
Short
Bones
Irregular Bone
Flat Bones
Long Bone
Copyright © 2010 Ryan P. Murphy
Long
Bone
Short
Bones
Irregular Bone
Flat Bones
Long Bone
Copyright © 2010 Ryan P. Murphy
Long
Bone
Short
Bones
Irregular Bone
Flat Bones
Long Bone
Copyright © 2010 Ryan P. Murphy
Long
Bone
Short
Bones
Irregular Bone
Flat Bones
Long Bone
Copyright © 2010 Ryan P. Murphy
Long
Bone
Short
Bones
Irregular Bone
Flat Bones
Long Bone
Copyright © 2010 Ryan P. Murphy
Long
Bone
Short
Bones
Irregular Bone
Flat Bones
Long Bone
Copyright © 2010 Ryan P. Murphy
Long
Bone
Short
Bones
Irregular Bone
Flat Bones
Long Bone
Copyright © 2010 Ryan P. Murphy
Long
Bone
Short
Bones
Irregular Bone
Flat Bones
Long Bone
Red Marrow Copyright © 2010 Ryan P. Murphy
Long
Bone
Short
Bones
Irregular Bone
Flat Bones
Long Bone
Red Marrow Copyright © 2010 Ryan P. Murphy
Long
Bone
Short
Bones
Irregular Bone
Flat Bones
Long Bone
Red Marrow Copyright © 2010 Ryan P. Murphy
Long
Bone
Short
Bones
Irregular Bone
Flat Bones
Long Bone
Red Marrow
Yellow
Marrow
Copyright © 2010 Ryan P. Murphy
Long
Bone
Short
Bones
Irregular Bone
Flat Bones
Long Bone
Red Marrow
Yellow
Marrow
Copyright © 2010 Ryan P. Murphy
Long
Bone
Short
Bones
Irregular Bone
Flat Bones
Long Bone
Red Marrow
Yellow
Marrow
Spongy
Bone
Copyright © 2010 Ryan P. Murphy
Long
Bone
Short
Bones
Irregular Bone
Flat Bones
Long Bone
Red Marrow
Yellow
Marrow
Spongy
Bone
Copyright © 2010 Ryan P. Murphy
Long
Bone
Short
Bones
Irregular Bone
Flat Bones
Long Bone
Red Marrow
Yellow
Marrow
Spongy
Bone
Compact
Bone
Copyright © 2010 Ryan P. Murphy
• Video! (Optional) Skeletal System Song
– http://www.youtube.com/watch?v=vya4wpS2fgk
Copyright © 2010 Ryan P. Murphy
 Allows movement.
Copyright © 2010 Ryan P. Murphy
 Allows movement.
Copyright © 2010 Ryan P. Murphy
 Stores minerals.
Copyright © 2010 Ryan P. Murphy
• Your bones constantly build-up and break
down keeping calcium levels regulated.
Copyright © 2010 Ryan P. Murphy
• Osteoporosis: The thinning of bone tissue
and loss of bone density over time.
Copyright © 2010 Ryan P. Murphy
Learn more about osteoporosis at..
http://health.nytimes.com/health/guides/disease/osteoporosis/
• Which side of this picture show’s bone in
the later stages of osteoporosis?
Copyright © 2010 Ryan P. Murphy
• Answer! The picture on the right shows
serious bone thinning.
Copyright © 2010 Ryan P. Murphy
 Bones are held together by connective
tissues.
Copyright © 2010 Ryan P. Murphy
 Bones are held together by connective
tissues.
Note! Connective tissue is generally
covered with the muscular system but
will be taught today as it does relate to
the movement of the skeletal system.
Copyright © 2010 Ryan P. Murphy
 Bones are held together by connective
tissues.
 Ligaments: Bones to bones
Copyright © 2010 Ryan P. Murphy
 Bones are held together by connective
tissues.
 Ligaments: Bones to bones
 Tendons: Bones to muscles
Copyright © 2010 Ryan P. Murphy
 Bones are held together by connective
tissues.
 Ligaments: Bones to bones
 Tendons: Bones to muscles
Copyright © 2010 Ryan P. Murphy
Learn more about connective tissues (advanced) at…
http://faculty.stcc.edu/AandP/AP/AP1pages/Units1to4/unit3/connecti.htm
• Quiz Wiz! Stretch Activity.
• Tendon or Ligament
Copyright © 2010 Ryan P. Murphy
• Conduct some safe movement based
stretching to loosen your muscles which
are attached by tendons.
Copyright © 2010 Ryan P. Murphy
• Stand and use signals to represent your
answer.
Copyright © 2010 Ryan P. Murphy
• Stand and use signals to represent your
answer.
Copyright © 2010 Ryan P. Murphy
• Stand and use signals to represent your
answer.
Copyright © 2010 Ryan P. Murphy
• Stand and use signals to represent your
answer.
Copyright © 2010 Ryan P. Murphy
• Stand and use signals to represent your
answer.
Copyright © 2010 Ryan P. Murphy
• Stand and use signals to represent your
answer.
Copyright © 2010 Ryan P. Murphy
1
Copyright © 2010 Ryan P. Murphy
1
Muscle
1
Muscle
Bone
1
Muscle
Bone
1
Muscle
Bone
2
2
3
3
Muscle
3
Muscle
Bone
3
Muscle
Bone
Copyright © 2010 Ryan P. Murphy
4
4
5
5
6
6
Copyright © 2010 Ryan P. Murphy
7
7
8
8
8
9
9
10
10
10
10
• Bonus – Who is this? Can you name the
movie.
Copyright © 2010 Ryan P. Murphy
• Answer: Brad Pitt from the movie TROY
Copyright © 2010 Ryan P. Murphy
• Your Achilles Heel is named after the Greek
Hero Achilles of the Trojan War from the
Iliad and Odyssey.
Copyright © 2010 Ryan P. Murphy
• Your Achilles Heel is named after the Greek
Hero Achilles of the Trojan War from the
Iliad and Odyssey. (Your weakness)
Copyright © 2010 Ryan P. Murphy
• Your Achilles Heel is named after the Greek
Hero Achilles of the Trojan War from the
Iliad and Odyssey. (Your weakness)
– He was immobilized when his “Achilles” tendon
was torn.
Copyright © 2010 Ryan P. Murphy
• Your Achilles Heel is named after the Greek
Hero Achilles of the Trojan War from the
Iliad and Odyssey. (Your weakness)
– He was immobilized when his “Achilles” tendon
was torn.
Copyright © 2010 Ryan P. Murphy
• Activity! Learning about tendons, ligaments,
and muscles by making an elbow joint /
(hinge joint).
Copyright © 2010 Ryan P. Murphy
• Please pay attention to the following steps.
– We will build the joint and then label it upon
completion.
Copyright © 2010 Ryan P. Murphy
Tongue depressors work
better than popsicle sticks if
available.
• Please pay attention to the following steps.
– We will build the joint and then label it upon
completion.
Copyright © 2010 Ryan P. Murphy
Eye goggles needed when working with elastics.
• Skeletal System Available Sheet.
• Skeletal System Available Sheet.
Obtain two tongue
depressors or popsicle sticks
and make a 90 degree
angle, overlapping the other
just a bit.
Copyright © 2010 Ryan P. Murphy
Color a black line on one
popsicle stick representing
the radius and the ulna.
Copyright © 2010 Ryan P. Murphy
Color a black line on one
popsicle stick representing
the radius and the ulna.
Ulna
Radius
Copyright © 2010 Ryan P. Murphy
Ulna
Radius
Humerus
Copyright © 2010 Ryan P. Murphy
Wrap and wind an elastic
band around the two bones
as shown. Make sure that
the bands stay on, and that
the joint can remain in an “L”
shape.
Copyright © 2010 Ryan P. Murphy
Make ligament tight so
the joint won’t come
undone.
Using a scissors, cut
two notches in the
popsicle stick (humerus)
with one slightly above
the other following the
angles shown.
Humerus
Copyright © 2010 Ryan P. Murphy
Cut two more notches
on the radius and ulna
following the angles
shown below.
Radius
Ulna
Copyright © 2010 Ryan P. Murphy
Attach elastic bands
to the notches as
described below.
Copyright © 2010 Ryan P. Murphy
Attach elastic bands
to the notches as
described below. You
can wrap if needed.
Copyright © 2010 Ryan P. Murphy
Recommended
Attach the other elastic
to the notches described
below. You can wrap if
needed.
Copyright © 2010 Ryan P. Murphy
Copyright © 2010 Ryan P. Murphy
Practice moving
the joint and show
the teacher your
construction when
they come by.
Copyright © 2010 Ryan P. Murphy
• Please place your joint on top of a piece of
white paper and label the following.
– Humerus
– Radius
– Ulna
– Tendon
– Ligament
– Long Bone
– Hinge Joint (kind of)
Copyright © 2010 Ryan P. Murphy
Humerus
Radius
Ulna
Ligament
Tendon
Copyright © 2010 Ryan P. Murphy
Humerus
Radius
Ulna
Ligament
Tendon
Copyright © 2010 Ryan P. Murphy
Humerus
Radius
Ulna
Ligament
Tendon
Copyright © 2010 Ryan P. Murphy
Humerus
Radius
Ulna
Ligament
Tendon
Copyright © 2010 Ryan P. Murphy
Humerus
Radius
Ulna
Ligament
Tendon
Copyright © 2010 Ryan P. Murphy
Humerus
Radius
Ulna
Ligament
Tendon
Copyright © 2010 Ryan P. Murphy
Humerus
Radius
Ulna
Ligament
Tendon
Copyright © 2010 Ryan P. Murphy
Humerus
Radius
Ulna
Ligament
Tendon
Copyright © 2010 Ryan P. Murphy
Humerus
Radius
Ulna
Ligament
Tendon
Copyright © 2010 Ryan P. Murphy
Humerus
Radius
Ulna
Ligament
Tendon
Copyright © 2010 Ryan P. Murphy
Humerus
Radius
Ulna
Ligament
Tendon
Copyright © 2010 Ryan P. Murphy
“Oh-no!” “We
are trying it one
more time.”
Humerus
Radius
Ulna
Ligament
Tendon
Copyright © 2010 Ryan P. Murphy
Humerus
Radius
Ulna
Ligament
Tendon
Copyright © 2010 Ryan P. Murphy
Humerus
Radius
Ulna
Ligament
Tendon
Copyright © 2010 Ryan P. Murphy
Humerus
Radius
Ulna
Ligament
Tendon
Copyright © 2010 Ryan P. Murphy
Humerus
Radius
Ulna
Ligament
Tendon
Copyright © 2010 Ryan P. Murphy
Humerus
Radius
Ulna
Ligament
Tendon
Copyright © 2010 Ryan P. Murphy
Humerus
Radius
Ulna
Ligament
Tendon
Copyright © 2010 Ryan P. Murphy
Humerus
Radius
Ulna
Ligament
Tendon
Copyright © 2010 Ryan P. Murphy
Humerus
Radius
Ulna
Ligament
Tendon
Humerus
Radius
Ulna
Ligament
Tendon
“Oh-no!” “He
has no elbow
joints.”
“Dude.” “None
of us have
elbows.”
Copyright © 2010 Ryan P. Murphy
Long Bone
Copyright © 2010 Ryan P. Murphy
Long Bone
Copyright © 2010 Ryan P. Murphy
Long Bone
Long Bone
Copyright © 2010 Ryan P. Murphy
Long Bone
Long Bone
Copyright © 2010 Ryan P. Murphy
Long Bone
Long Bone
Cartilage
Copyright © 2010 Ryan P. Murphy
Long Bone
Long Bone
Cartilage
Copyright © 2010 Ryan P. Murphy
Long Bone
Long Bone
Cartilage
Copyright © 2010 Ryan P. Murphy
Long Bone
Long Bone
Cartilage
Ligament
Copyright © 2010 Ryan P. Murphy
Long Bone
Long Bone
Cartilage
Ligament
Copyright © 2010 Ryan P. Murphy
Long Bone
Long Bone
Cartilage
Ligament
Compact
Copyright © 2010 Ryan P. Murphy
Long Bone
Long Bone
Cartilage
Ligament
Compact
Copyright © 2010 Ryan P. Murphy
Long Bone
Long Bone
Cartilage
Ligament
Compact
Soft / Spongy
Copyright © 2010 Ryan P. Murphy
Long Bone
Long Bone
Cartilage
Ligament
Compact
Soft / Spongy
Copyright © 2010 Ryan P. Murphy
Long Bone
Long Bone
Cartilage
Ligament
Compact
Soft / Spongy
Copyright © 2010 Ryan P. Murphy
Long Bone
Long Bone
Cartilage
Ligament
Compact
Soft / Spongy
Yellow
Marrow
Fats
Copyright © 2010 Ryan P. Murphy
Long Bone
Long Bone
Cartilage
Ligament
Compact
Soft / Spongy
Yellow
Marrow
Fats
Copyright © 2010 Ryan P. Murphy
Long Bone
Long Bone
Cartilage
Ligament
Compact
Soft / Spongy
Yellow
Marrow
Fats
Red
Marrow
Blood
Copyright © 2010 Ryan P. Murphy
“Oh-no!” “We
are trying it one
more time.”
• Skeletal System Available Sheet.
Copyright © 2010 Ryan P. Murphy
Flat Bone
Copyright © 2010 Ryan P. Murphy
Flat Bone
Copyright © 2010 Ryan P. Murphy
Flat Bone
Long Bone
Copyright © 2010 Ryan P. Murphy
Flat Bone
Long Bone
Copyright © 2010 Ryan P. Murphy
Flat Bone
Long Bone
Tendon
Copyright © 2010 Ryan P. Murphy
Flat Bone
Long Bone
Tendon
Long Bone
Copyright © 2010 Ryan P. Murphy
Flat Bone
Long Bone
Tendon
Long Bone
Copyright © 2010 Ryan P. Murphy
Flat Bone
Long Bone
Tendon
Long Bone
Short Bones
Copyright © 2010 Ryan P. Murphy
Flat Bone
Long Bone
Tendon
Long Bone
Short Bones
Copyright © 2010 Ryan P. Murphy
Flat Bone
Long Bone
Tendon
Long Bone
Short Bones
Compact Bone
Copyright © 2010 Ryan P. Murphy
Flat Bone
Long Bone
Tendon
Long Bone
Short Bones
Compact Bone
Copyright © 2010 Ryan P. Murphy
Flat Bone
Long Bone
Tendon
Long Bone
Short Bones
Compact Bone
Spongy
Bone
Copyright © 2010 Ryan P. Murphy
Flat Bone
Long Bone
Tendon
Long Bone
Short Bones
Compact Bone
Spongy
Bone
Copyright © 2010 Ryan P. Murphy
Flat Bone
Long Bone
Tendon
Long Bone
Short Bones
Compact Bone
Spongy
Bone
Red
Marrow
“Blood”
Copyright © 2010 Ryan P. Murphy
“Oh-no!”
“His skeleton
is completely
crushed.”
“Dude” “We
don’t have any
bones.”
• Video Link! The Skeletal System.
– http://www.youtube.com/watch?v=8d-
RBe8JBVs
• Review Opportunity before Activity.
(Optional) Virtual tour of the Skeletal System.
– http://www.medtropolis.com/VBody.asp
Copyright © 2010 Ryan P. Murphy
• Activity! On the next slide, teacher to
minimize out of PowerPoint slideshow.
Students to drag the bones.
– Teacher controls movement by computer.
Copyright © 2010 Ryan P. Murphy
Copyright © 2010 Ryan P. Murphy
Copyright © 2010 Ryan P. Murphy
Copyright © 2010 Ryan P. Murphy
Copyright © 2010 Ryan P. Murphy
Copyright © 2010 Ryan P. Murphy
Copyright © 2010 Ryan P. Murphy
Copyright © 2010 Ryan P. Murphy
Long Bones?
Copyright © 2010 Ryan P. Murphy
Long Bones
Copyright © 2010 Ryan P. Murphy
Long Bones Flat Bones
Copyright © 2010 Ryan P. Murphy
Long Bones Flat Bones
Copyright © 2010 Ryan P. Murphy
Long Bones Flat Bones
Long Bones Flat Bones Short Bones
Copyright © 2010 Ryan P. Murphy
Long Bones Flat Bones Short Bones
Copyright © 2010 Ryan P. Murphy
Long Bones Flat Bones Short Bones
Copyright © 2010 Ryan P. Murphy
Long Bones Flat Bones Short Bones Irregular
Copyright © 2010 Ryan P. Murphy
Long Bones Flat Bones Short Bones Irregular
Copyright © 2010 Ryan P. Murphy
Copyright © 2010 Ryan P. Murphy
Copyright © 2010 Ryan P. Murphy
Copyright © 2010 Ryan P. Murphy
Copyright © 2010 Ryan P. Murphy
Copyright © 2010 Ryan P. Murphy
Copyright © 2010 Ryan P. Murphy
Copyright © 2010 Ryan P. Murphy
Copyright © 2010 Ryan P. Murphy
Copyright © 2010 Ryan P. Murphy
• Activity Link! Put together a human
skeleton with cut-outs.
– Teacher to print out the sheets in advance.
– http://www.enchantedlearning.com/crafts/hallo
ween/bones/
Copyright © 2010 Ryan P. Murphy
• Activity Sheet! Creating your anatomy
resource book.
– Please label all of the following. Use…
– http://www.getbodysmart.com/ap2/systems/tutori
al.html
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
phalanges
metacarpals
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
Jaw bone
is called
mandible
Mandible
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
phalanges
metacarpals
Scapula
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
Sternum
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
carpals
Copyright © 2010 Ryan P. Murphy
phalanges
carpals
Copyright © 2010 Ryan P. Murphy
Carpals
Phalanges
Metacarpals
Phalanges
Metacarpals
Carpals
phalanges
carpals
Copyright © 2010 Ryan P. Murphy
phalanges
carpals
Copyright © 2010 Ryan P. Murphy
phalanges
carpals
Copyright © 2010 Ryan P. Murphy
phalanges
carpals
Copyright © 2010 Ryan P. Murphy
phalanges
carpals
Copyright © 2010 Ryan P. Murphy
phalanges
carpals
Copyright © 2010 Ryan P. Murphy
phalanges
carpals
Copyright © 2010 Ryan P. Murphy
phalanges
carpals
Copyright © 2010 Ryan P. Murphy
phalanges
carpals
Copyright © 2010 Ryan P. Murphy
phalanges
carpals
Copyright © 2010 Ryan P. Murphy
phalanges
carpals
Copyright © 2010 Ryan P. Murphy
Tarsals
Metarsals
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
“Oh-no!”
“We have to do it
again without our
sheet.”
“Maybe we
should study
for a few
minutes.”
• Activity! Stand and touch the bone as they
are mentioned.
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
Scapula
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
Jawbone
is also
called
mandible
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
Tarsals
Metatarsals
Phelangess
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
Tarsals
Metarsals
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
Tarsals
Metarsals
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
Sternum
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
carpals
phalanges
carpals
Copyright © 2010 Ryan P. Murphy
Carpals
Phalanges
Metacarpals
Phalanges
Metacarpals
Carpals
phalanges
carpals
Copyright © 2010 Ryan P. Murphy
phalanges
carpals
Copyright © 2010 Ryan P. Murphy
phalanges
carpals
phalanges
carpals
Copyright © 2010 Ryan P. Murphy
phalanges
carpals
Copyright © 2010 Ryan P. Murphy
Carpals
Phalanges
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
phalanges
metacarpals
Copyright © 2010 Ryan P. Murphy
Learn more about the skeletal system at…
http://www.livescience.com/22537-skeletal-system.html
“Oh-No!”
“We now have to take a
Quiz Wiz.
Copyright © 2010 Ryan P. Murphy
“You can use your
resource book for
this quiz.”
• Skeletal System Available Sheet.
• Quiz Wiz! 1-10 Bones of the Human Body.
– Quiz can be found on page 3 of the bundle HW.
• Please record answers in the direction of
the arrow.
– Top Down,
– Left to Right.
• Please record answers in the direction of
the arrow.
– Top Down,
– Left to Right.
2
3
4
7
8
9
10
• Bonus: Name the Cast
• Answers to the Quiz Wiz name that bone
in the human body.
Copyright © 2010 Ryan P. Murphy
Note- Wearing high
heels can cause
many serious and
permanent health
problems to bones
and tendons.
Fibula
Fibula
Fibula
Tibia
Fibula
Tibia
Fibula
Tibia
Tarsals
Fibula
Tibia
Tarsals
Fibula
Tibia
Tarsals
Metatarsals
Fibula
Tibia
Tarsals
Metatarsals
Fibula
Tibia
Tarsals
Metatarsals
Phlanges
2
2
Clavicle
2
Clavicle
Scapula
2
Clavicle
Scapula
Humerus
3
3
Pelvis
3
Pelvis
Femur
4
4Tibia
4Tibia
Fibula
4Tibia
Fibula
Tarsals
4Tibia
Fibula
Tarsals
Metatarsals
7
7 Femur
7 Femur
Patella
7 Femur
Patella
Tibia
8
8
Skull
8
Skull
Jawbone
Mandible
8
Skull
Jawbone
Mandible
Vertebrae
9
9
9
Sternum
9
Sternum
9
Sternum
Clavicle
9
Sternum
Clavicle
9
Sternum
Clavicle
Ribs
10
10
10Ulna
10Ulna
10
Radius
Ulna
10
Radius
Ulna
10
Radius
Ulna Carpals
10
Radius
Ulna Carpals
10
Radius
Ulna Carpals
Metacarpals
10
Radius
Ulna Carpals
Metacarpals
10
Radius
Ulna Carpals
Metacarpals
Phalanges
• Bonus: Name the Cast
• Bonus: Name the Cast:
• The human skeletal system…
• The human skeletal system…
– Incredibly strong
• The human skeletal system…
– Incredibly strong
– Light weight
• The human skeletal system…
– Incredibly strong
– Light weight
– Can grow and repair and itself.
• The human skeletal system…
– Incredibly strong
– Light weight
– Can grow and repair and itself.
• The human skeletal system…
– Incredibly strong
– Light weight
– Can grow and repair and itself.
• The human skeletal system…
– Incredibly strong
– Light weight
– Can grow and repair and itself.
• The human skeletal system…
– Incredibly strong
– Light weight
– Can grow and repair and itself.
• Try and guess the mystery picture beneath
the boxes.
– Raise your hand when you think you know.
You only get one guess.
Copyright © 2010 Ryan P. Murphy
Copyright © 2010 Ryan P. Murphy
Your bones protect you.
Especially your vital organs
• Try and guess the mystery picture beneath
the boxes.
– Raise your hand when you think you know.
You only get one guess.
Copyright © 2010 Ryan P. Murphy
Copyright © 2010 Ryan P. Murphy
Copyright © 2010 Ryan P. Murphy
 A human joint: A place where two bones
meet.
Copyright © 2010 Ryan P. Murphy
• Joints can be…
Copyright © 2010 Ryan P. Murphy
• Joints can be…
– A.) Fibrous (immoveable)
Copyright © 2010 Ryan P. Murphy
• Joints can be…
– A.) Fibrous (immoveable)
– B.) Cartilaginous (partially moveable)
Copyright © 2010 Ryan P. Murphy
• Joints can be…
– A.) Fibrous (immoveable)
– B.) Cartilaginous (partially moveable)
– C.) Synovial (freely moveable)
Copyright © 2010 Ryan P. Murphy
• Joints can be…
– A.) Fibrous (immoveable)
– B.) Cartilaginous (partially moveable)
– C.) Synovial (freely moveable)
Copyright © 2010 Ryan P. Murphy
• Joints can be…
– A.) Fibrous (immoveable)
– B.) Cartilaginous (partially moveable)
– C.) Synovial (freely moveable)
Copyright © 2010 Ryan P. Murphy
• Joints can be…
– A.) Fibrous (immoveable)
– B.) Cartilaginous (partially moveable)
– C.) Synovial (freely moveable)
Copyright © 2010 Ryan P. Murphy
• Joints can be…
– A.) Fibrous (immoveable)
– B.) Cartilaginous (partially moveable)
– C.) Synovial (freely moveable)
Copyright © 2010 Ryan P. Murphy
• Joints can be…
– A.) Fibrous (immoveable)
– B.) Cartilaginous (partially moveable)
– C.) Synovial (freely moveable)
Copyright © 2010 Ryan P. Murphy
• Joints can be…
– A.) Fibrous (immoveable)
– B.) Cartilaginous (partially moveable)
– C.) Synovial (freely moveable)
Copyright © 2010 Ryan P. Murphy
• Joints can be…
– A.) Fibrous (immoveable)
– B.) Cartilaginous (partially moveable)
– C.) Synovial (freely moveable)
Copyright © 2010 Ryan P. Murphy
• Joints can be…
– A.) Fibrous (immoveable)
– B.) Cartilaginous (partially moveable)
– C.) Synovial (freely moveable)
Copyright © 2010 Ryan P. Murphy
• Video Link! Skeletal System and Joints
– http://www.youtube.com/watch?v=hkwAR8yjWA
Q&feature=results_main&playnext=1&list=PLDA
23E9C49D9E90C9
Copyright © 2010 Ryan P. Murphy
 The six types of human joints.
 -
 -
 -
 -
 -
 -
Copyright © 2010 Ryan P. Murphy
• The six types of human joints.
– -
– -
– -
– -
– -
– -
Copyright © 2010 Ryan P. Murphy
• The six types of human joints.
– -
– -
– -
– -
– -
– -
Copyright © 2010 Ryan P. Murphy
• The six types of human joints.
– -
– -
– -
– -
– -
– -
Copyright © 2010 Ryan P. Murphy
• The six types of human joints.
– -
– -
– -
– -
– -
– -
Copyright © 2010 Ryan P. Murphy
 Ball and Socket Joint: Radial movement in
almost any direction.
 Hips and Shoulders.
Copyright © 2010 Ryan P. Murphy
• Activity Stretch! Everyone stand up for a
bit of stretching.
– Notice the wide range of motion with a ball
and socket joint.
Copyright © 2010 Ryan P. Murphy
 Ellipsod Joint: Similar to ball and socket
but much less.
Copyright © 2010 Ryan P. Murphy
• Activity Stretch! Simulated sword play with
your neighbor. (No actual object) - Be Safe!
– Note the partial rotation in your wrist and
forearm.
Copyright © 2010 Ryan P. Murphy
 Hinge Joint: Allows extension and retraction.
Copyright © 2010 Ryan P. Murphy
Copyright © 2010 Ryan P. Murphy
• Activity Stretch! Let’s see your pipes.
– Note the extraction and retraction.
Copyright © 2010 Ryan P. Murphy
 Pivot Joint: Rotation around an axis
 Neck and forearms.
Copyright © 2010 Ryan P. Murphy
• Activity Stretch! Person to sit in the middle
of the room.
– Without moving shoulders, how far can the
person look behind them using a pivot joint.
Copyright © 2010 Ryan P. Murphy
 Saddle Joint: Movement back and forth
and up and down.
Copyright © 2010 Ryan P. Murphy
 Gliding Joint: Bones slide past one another.
Copyright © 2010 Ryan P. Murphy
Types of joints (animations). Learn more at…
http://www.bbc.co.uk/science/humanbody/body/factfiles/joints/ball_and_sock
et_joint.shtml
• Skeletal System Available Sheet.
• Match the picture to the correct type of
joint on the next slide.
Copyright © 2010 Ryan P. Murphy
• Ball and Socket
• Ellipsod
• Hinge
• Pivot
• Saddle
• Gliding
AB
C
D
E
F
Copyright © 2010 Ryan P. Murphy
• Ball and Socket
• Ellipsod
• Hinge
• Pivot
• Saddle
• Gliding
AB
C
D
E
F
Copyright © 2010 Ryan P. Murphy
• Ball and Socket
• Ellipsod
• Hinge
• Pivot
• Saddle
• Gliding
AB
C
D
E
F
Copyright © 2010 Ryan P. Murphy
• Ball and Socket
• Ellipsod
• Hinge
• Pivot
• Saddle
• Gliding
AB
C
D
E
F
Copyright © 2010 Ryan P. Murphy
• Ball and Socket
• Ellipsod
• Hinge
• Pivot
• Saddle
• Gliding
AB
C
D
E
F
Copyright © 2010 Ryan P. Murphy
• Ball and Socket
• Ellipsod
• Hinge
• Pivot
• Saddle
• Gliding
AB
C
D
E
F
Copyright © 2010 Ryan P. Murphy
• Ball and Socket
• Ellipsod
• Hinge
• Pivot
• Saddle
• Gliding
AB
C
D
E
F
Copyright © 2010 Ryan P. Murphy
• Ball and Socket
• Ellipsod
• Hinge
• Pivot
• Saddle
• Gliding
AB
C
D
E
F
Copyright © 2010 Ryan P. Murphy
• Ball and Socket
• Ellipsod
• Hinge
• Pivot
• Saddle
• Gliding
AB
C
D
E
F
Copyright © 2010 Ryan P. Murphy
• Ball and Socket
• Ellipsod
• Hinge
• Pivot
• Saddle
• Gliding
AB
C
D
E
F
Copyright © 2010 Ryan P. Murphy
• Ball and Socket
• Ellipsod
• Hinge
• Pivot
• Saddle
• Gliding
AB
C
D
E
F
Copyright © 2010 Ryan P. Murphy
• Ball and Socket
• Ellipsod
• Hinge
• Pivot
• Saddle
• Gliding
AB
C
D
E
F
Copyright © 2010 Ryan P. Murphy
• Ball and Socket
• Ellipsod
• Hinge
• Pivot
• Saddle
• Gliding
AB
C
D
E
F
Copyright © 2010 Ryan P. Murphy
• Video Link! DARPA’s Prosthetic Limb
– http://www.youtube.com/watch?v=GRuizeW-3Hc
Copyright © 2010 Ryan P. Murphy
• Skeletal System Available Sheet.
• Match the picture to the correct type of
joint on the next slide.
Copyright © 2010 Ryan P. Murphy
• Ball and Socket
• Ellipsod
• Hinge
• Pivot
• Saddle
• Gliding
A
C
D
E
F
A
B
B
Copyright © 2010 Ryan P. Murphy
• Ball and Socket
• Ellipsod
• Hinge
• Pivot
• Saddle
• Gliding
A
C
D
E
F
A
B
B
Copyright © 2010 Ryan P. Murphy
• Ball and Socket
• Ellipsod
• Hinge
• Pivot
• Saddle
• Gliding
A
C
D
E
F
A
B
B
Copyright © 2010 Ryan P. Murphy
• Ball and Socket
• Ellipsod
• Hinge
• Pivot
• Saddle
• Gliding
A
C
D
E
F
A
B
B
Copyright © 2010 Ryan P. Murphy
• Ball and Socket
• Ellipsod
• Hinge
• Pivot
• Saddle
• Gliding
A
C
D
E
F
A
B
B
Copyright © 2010 Ryan P. Murphy
• Ball and Socket
• Ellipsod
• Hinge
• Pivot
• Saddle
• Gliding
A
C
D
E
F
A
B
B
Copyright © 2010 Ryan P. Murphy
• Ball and Socket
• Ellipsod
• Hinge
• Pivot
• Saddle
• Gliding
A
C
D
E
F
A
B
B
Copyright © 2010 Ryan P. Murphy
• Ball and Socket
• Ellipsod
• Hinge
• Pivot
• Saddle
• Gliding
A
C
D
E
F
A
B
B
Copyright © 2010 Ryan P. Murphy
• Ball and Socket
• Ellipsod
• Hinge
• Pivot
• Saddle
• Gliding
A
C
D
E
F
A
B
B
Copyright © 2010 Ryan P. Murphy
• Ball and Socket
• Ellipsod
• Hinge
• Pivot
• Saddle
• Gliding
A
C
D
E
F
A
B
B
Copyright © 2010 Ryan P. Murphy
• Ball and Socket
• Ellipsod
• Hinge
• Pivot
• Saddle
• Gliding
A
C
D
E
F
A
B
B
Copyright © 2010 Ryan P. Murphy
• Ball and Socket
• Ellipsod
• Hinge
• Pivot
• Saddle
• Gliding
A
C
D
E
F
A
B
B
Copyright © 2010 Ryan P. Murphy
• Ball and Socket
• Ellipsod
• Hinge
• Pivot
• Saddle
• Gliding
A
C
D
E
F
A
B
B
Copyright © 2010 Ryan P. Murphy
• Skeletal System Available Sheet.
• Intermission Video. Flexible Joints and
Hypermobility.
– http://www.youtube.com/watch?v=SyAtWKgvJAI
&feature=fvwrel
Copyright © 2010 Ryan P. Murphy
• What are some injuries that can happen to
the skeletal and muscular systems?
Copyright © 2010 Ryan P. Murphy
• Some common injuries are…
Copyright © 2010 Ryan P. Murphy
• Some common injuries are…
• Sprains
Copyright © 2010 Ryan P. Murphy
• Some common injuries are…
• Sprains
Copyright © 2010 Ryan P. Murphy
• Some common injuries are…
• Sprains
• Fractures
Copyright © 2010 Ryan P. Murphy
• Some common injuries are…
• Sprains
• Fractures
Copyright © 2010 Ryan P. Murphy
• Some common injuries are…
• Sprains
• Fractures
• Dislocations
Copyright © 2010 Ryan P. Murphy
• Which pictures goes with the correct term?
A
B
C
A break in the bone, made
of living tissue and repair
happens quickly.
An impact to the
skeleton can force a
bone out of its joint
Ligaments or tendons
get pulled or torn
beyond their range
Copyright © 2010 Ryan P. Murphy
• Which pictures goes with the correct term?
A
B
C
A break in the bone, made
of living tissue and repair
happens quickly.
An impact to the
skeleton can force a
bone out of its joint
Ligaments or tendons
get pulled or torn
beyond their range
Copyright © 2010 Ryan P. Murphy
• Which pictures goes with the correct term?
A
B
C
A break in the bone, made
of living tissue and repair
happens quickly.
An impact to the
skeleton can force a
bone out of its joint
Ligaments or tendons
get pulled or torn
beyond their range
Copyright © 2010 Ryan P. Murphy
• Which pictures goes with the correct term?
A
B
C
A break in the bone, made
of living tissue and repair
happens quickly.
An impact to the
skeleton can force a
bone out of its joint
Ligaments or tendons
get pulled or torn
beyond their range
Copyright © 2010 Ryan P. Murphy
• Which pictures goes with the correct term?
A
B
C
A break in the bone, made
of living tissue and repair
happens quickly.
An impact to the
skeleton can force a
bone out of its joint
Ligaments or tendons
get pulled or torn
beyond their range
Copyright © 2010 Ryan P. Murphy
• Which pictures goes with the correct term?
A
B
C
A break in the bone, made
of living tissue and repair
happens quickly.
An impact to the
skeleton can force a
bone out of its joint
Ligaments or tendons
get pulled or torn
beyond their range
Copyright © 2010 Ryan P. Murphy
• Which pictures goes with the correct term?
A
B
C
A break in the bone, made
of living tissue and repair
happens quickly.
An impact to the
skeleton can force a
bone out of its joint
Ligaments or tendons
get pulled or torn
beyond their range
Copyright © 2010 Ryan P. Murphy
• Video Link! PRICE and ankle sprains.
• Protect, Rest, Ice, Compress, Elevate.
– http://www.youtube.com/watch?v=yRfa__3YUyY
• Which pictures goes with the correct term?
A break in the bone, made
of living tissue and repair
happens quickly.
An impact to the
skeleton can force a
bone out of its joint
Ligaments or tendons
get pulled or torn
beyond their range
Copyright © 2010 Ryan P. Murphy
• Which pictures goes with the correct term?
A break in the bone, made
of living tissue and repair
happens quickly.
An impact to the
skeleton can force a
bone out of its joint
Ligaments or tendons
get pulled or torn
beyond their range
Copyright © 2010 Ryan P. Murphy
• Which pictures goes with the correct term?
A break in the bone, made
of living tissue and repair
happens quickly.
An impact to the
skeleton can force a
bone out of its joint
Ligaments or tendons
get pulled or torn
beyond their range
Copyright © 2010 Ryan P. Murphy
• Which pictures goes with the correct term?
A break in the bone, made
of living tissue and repair
happens quickly.
An impact to the
skeleton can force a
bone out of its joint
Ligaments or tendons
get pulled or torn
beyond their range
Copyright © 2010 Ryan P. Murphy
• Which pictures goes with the correct term?
A break in the bone, made
of living tissue and repair
happens quickly.
An impact to the
skeleton can force a
bone out of its joint
Ligaments or tendons
get pulled or torn
beyond their range
Copyright © 2010 Ryan P. Murphy
• Which pictures goes with the correct term?
A break in the bone, made
of living tissue and repair
happens quickly.
An impact to the
skeleton can force a
bone out of its joint
Ligaments or tendons
get pulled or torn
beyond their range
Copyright © 2010 Ryan P. Murphy
• Which pictures goes with the correct term?
A break in the bone, made
of living tissue and repair
happens quickly.
An impact to the
skeleton can force a
bone out of its joint
Ligaments or tendons
get pulled or torn
beyond their range
Copyright © 2010 Ryan P. Murphy
• Which pictures goes with the correct term?
A break in the bone, made
of living tissue and repair
happens quickly.
An impact to the
skeleton can force a
bone out of its joint
Ligaments or tendons
get pulled or torn
beyond their range
Copyright © 2010 Ryan P. Murphy
• Which pictures goes with the correct term?
A break in the bone, made
of living tissue and repair
happens quickly.
An impact to the
skeleton can force a
bone out of its joint
Ligaments or tendons
get pulled or torn
beyond their range
Copyright © 2010 Ryan P. Murphy
• Which pictures goes with the correct term?
A break in the bone, made
of living tissue and repair
happens quickly.
An impact to the
skeleton can force a
bone out of its joint
Ligaments or tendons
get pulled or torn
beyond their range
Copyright © 2010 Ryan P. Murphy
• Which pictures goes with the correct term?
A break in the bone, made
of living tissue and repair
happens quickly.
An impact to the
skeleton can force a
bone out of its joint
Ligaments or tendons
get pulled or torn
beyond their range
Copyright © 2010 Ryan P. Murphy
• Which pictures goes with the correct term?
A break in the bone, made
of living tissue and repair
happens quickly.
An impact to the
skeleton can force a
bone out of its joint
Ligaments or tendons
get pulled or torn
beyond their range
Copyright © 2010 Ryan P. Murphy
• Which pictures goes with the correct term?
A break in the bone, made
of living tissue and repair
happens quickly.
An impact to the
skeleton can force a
bone out of its joint
Ligaments or tendons
get pulled or torn
beyond their range
Copyright © 2010 Ryan P. Murphy
• Which pictures goes with the correct term?
A break in the bone, made
of living tissue and repair
happens quickly.
An impact to the
skeleton can force a
bone out of its joint
Ligaments or tendons
get pulled or torn
beyond their range
Copyright © 2010 Ryan P. Murphy
• Video Link! The Skeletal System
– Optional and Advanced
– Preview for language.
– http://www.youtube.com/watch?v=RW46rQKWa-g
• Try and guess the mystery picture beneath
the boxes.
– Raise your hand when you think you know.
You only get one guess.
Copyright © 2010 Ryan P. Murphy
Copyright © 2010 Ryan P. Murphy
• Try and guess the mystery picture beneath
the boxes.
– Raise your hand when you think you know.
You only get one guess.
Copyright © 2010 Ryan P. Murphy
Copyright © 2010 Ryan P. Murphy
Copyright © 2010 Ryan P. Murphy
• You should be close to page 6 of your
bundle.
Copyright © 2010 Ryan P. Murphy
• You can now lightly color these pictures and
provide informative text in the white space.
Atom
Molecule
Cell
Organelle
Cell
Tissue
Organ
Organ
System
Individual
orm
ollows
function
Homeostasis: The
ability of an organism or
cell to maintain internal
equilibrium by adjusting
its physiological
processes.regardless of
outside conditions.
Cells are the
structural and
functional units
of all living
organisms.
–
Humans have
some 75-100
Trillion
Atom
Molecule
Cell
Organelle
Cell
Tissue
Organ
Organ
System
Individual
orm
ollows
function
Homeostasis: The
ability of an organism or
cell to maintain internal
equilibrium by adjusting
its physiological
processes.regardless of
outside conditions.
Cells are the
structural and
functional units
of all living
organisms.
–
Humans have
some 75-100
Trillion
Atom
Molecule
Cell
Organelle
Cell
Tissue
Organ
Organ
System
Individual
orm
ollows
function
Homeostasis: The
ability of an organism or
cell to maintain internal
equilibrium by adjusting
its physiological
processes.regardless of
outside conditions.
Cells are the
structural and
functional units
of all living
organisms.
–
Humans have
some 75-100
Trillion
Atom
Molecule
Cell
Organelle
Cell
Tissue
Organ
Organ
System
Individual
orm
ollows
function
Homeostasis: The
ability of an organism or
cell to maintain internal
equilibrium by adjusting
its physiological
processes.regardless of
outside conditions.
Cells are the
structural and
functional units
of all living
organisms.
–
Humans have
some 75-100
Trillion
Name the
major
bones
shown
below. Use
your
resource
sheets
Atom
Molecule
Cell
Organelle
Cell
Tissue
Organ
Organ
System
Individual
orm
ollows
function
Homeostasis: The
ability of an organism or
cell to maintain internal
equilibrium by adjusting
its physiological
processes.regardless of
outside conditions.
Cells are the
structural and
functional units
of all living
organisms.
–
Humans have
some 75-100
Trillion
Name the
major
bones
shown
below. Use
your
resource
sheets
Atom
Molecule
Cell
Organelle
Cell
Tissue
Organ
Organ
System
Individual
orm
ollows
function
Homeostasis: The
ability of an organism or
cell to maintain internal
equilibrium by adjusting
its physiological
processes.regardless of
outside conditions.
Cells are the
structural and
functional units
of all living
organisms.
–
Humans have
some 75-100
Trillion
Name the
major
bones
shown
below. Use
your
resource
sheets
•Long Bones
•Flat Bones
•Irregular Bones
•Short Bones
Atom
Molecule
Cell
Organelle
Cell
Tissue
Organ
Organ
System
Individual
orm
ollows
function
Homeostasis: The
ability of an organism or
cell to maintain internal
equilibrium by adjusting
its physiological
processes.regardless of
outside conditions.
Cells are the
structural and
functional units
of all living
organisms.
–
Humans have
some 75-100
Trillion
Name the
major
bones
shown
below. Use
your
resource
sheets
•Long Bones
•Flat Bones
•Irregular Bones
•Short Bones
Atom
Molecule
Cell
Organelle
Cell
Tissue
Organ
Organ
System
Individual
orm
ollows
function
Homeostasis: The
ability of an organism or
cell to maintain internal
equilibrium by adjusting
its physiological
processes.regardless of
outside conditions.
Cells are the
structural and
functional units
of all living
organisms.
–
Humans have
some 75-100
Trillion
Name the
major
bones
shown
below. Use
your
resource
sheets
•Long Bones
•Flat Bones
•Irregular Bones
•Short Bones
–Spongy Bone
–Compact Bone
Atom
Molecule
Cell
Organelle
Cell
Tissue
Organ
Organ
System
Individual
orm
ollows
function
Homeostasis: The
ability of an organism or
cell to maintain internal
equilibrium by adjusting
its physiological
processes.regardless of
outside conditions.
Cells are the
structural and
functional units
of all living
organisms.
–
Humans have
some 75-100
Trillion
Name the
major
bones
shown
below. Use
your
resource
sheets
•Long Bones
•Flat Bones
•Irregular Bones
•Short Bones
–Spongy Bone
–Compact Bone
Atom
Molecule
Cell
Organelle
Cell
Tissue
Organ
Organ
System
Individual
orm
ollows
function
Homeostasis: The
ability of an organism or
cell to maintain internal
equilibrium by adjusting
its physiological
processes.regardless of
outside conditions.
Cells are the
structural and
functional units
of all living
organisms.
–
Humans have
some 75-100
Trillion
Name the
major
bones
shown
below. Use
your
resource
sheets
•Long Bones
•Flat Bones
•Irregular Bones
•Short Bones
–Spongy Bone
–Compact Bone
Atom
Molecule
Cell
Organelle
Cell
Tissue
Organ
Organ
System
Individual
orm
ollows
function
Homeostasis: The
ability of an organism or
cell to maintain internal
equilibrium by adjusting
its physiological
processes.regardless of
outside conditions.
Cells are the
structural and
functional units
of all living
organisms.
–
Humans have
some 75-100
Trillion
Name the
major
bones
shown
below. Use
your
resource
sheets
•Long Bones
•Flat Bones
•Irregular Bones
•Short Bones
–Spongy Bone
–Compact Bone
Tendon
Ligament
Atom
Molecule
Cell
Organelle
Cell
Tissue
Organ
Organ
System
Individual
orm
ollows
function
Homeostasis: The
ability of an organism or
cell to maintain internal
equilibrium by adjusting
its physiological
processes.regardless of
outside conditions.
Cells are the
structural and
functional units
of all living
organisms.
–
Humans have
some 75-100
Trillion
Name the
major
bones
shown
below. Use
your
resource
sheets
•Long Bones
•Flat Bones
•Irregular Bones
•Short Bones
–Spongy Bone
–Compact Bone
Tendon
Ligament
• “AYE” Advance Your Exploration ELA and
Literacy Opportunity Worksheet
– Visit some of the many provided links or..
– Articles can be found at (w/ membership to
NABT and NSTA)
• http://www.nabt.org/websites/institution/index.php?p=
1
• http://learningcenter.nsta.org/browse_journals.aspx?j
ournal=tstPlease visit at least one of the
“learn more” educational links
provided in this unit and
complete this worksheet.
• “AYE” Advance Your Exploration ELA and
Literacy Opportunity Worksheet
– Visit some of the many provided links or..
– Articles can be found at (w/ membership to NABT
and NSTA)
• http://www.nabt.org/websites/institution/index.php?p=1
• http://learningcenter.nsta.org/browse_journals.aspx?jo
urnal=tst
Human Body Unit
Part II/XIII
Human Body Unit
Part II/XIII
Bundled homework package, lesson notes, worksheets,
review games, and much more on the full unit.

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