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Презентация на тему Muscle contraction mechanism

For a Class 1 lever the pivot lies between the effort and the load. A see saw in a playground is an example of a Class 1 lever where the effort balances the load.The place where
MUSCLE CONTRACTIONMECHANISM For a Class 1 lever the pivot lies between the effort and SECOND CLASS LEVERFor the Class 2 lever the load is between the For a Class 3 lever the load is further away from the The theory of how muscle contracts is the sliding filament theory. Skeletal muscle structureKinds of muscles sarcomere Myofilaments Mechanism of muscle contraction Mechanism of muscle contraction Phases of a Muscle Twitch A muscle twitch is contraction of a muscle in ISOTONIC AND ISOMETRIC TWITCHA - isotonic contraction  muscle contraction without appreciable change concentric contraction contraction resulting in shortening of a muscle, used to perform positive
Слайды презентации

Слайд 2 For a Class 1 lever the pivot lies

For a Class 1 lever the pivot lies between the effort

between the effort and the load. A see saw

in a playground is an example of a Class 1 lever where the effort balances the load.
The place where your skull meets the top of your spine is a Class 1 lever. Your skull is the lever arm and the neck muscles at the back of the skull provide the force (effort) to lift your head up against the weight of the head (load). When the neck muscles relax, your head nods forward.

FIRST CLASS LEVER


Слайд 3 SECOND CLASS LEVER
For the Class 2 lever the

SECOND CLASS LEVERFor the Class 2 lever the load is between

load is between the pivot and the effort (like

a wheelbarrow). The effort force needed is less than the load force, so there is a mechanical advantage.
Standing on tip toes is a Class 2 lever. The pivot is at your toe joints and your foot acts as a lever arm. Your calf muscles and achilles tendon provide the effort when the calf muscle contracts. The load is your body weight and is lifted by the effort (muscle contraction).


Слайд 4 For a Class 3 lever the load is

For a Class 3 lever the load is further away from

further away from the pivot than the effort. There

is no mechanical advantage because the effort is greater than the load. However this disadvantage is compensated with a larger movement. This type of lever system also gives us the advantage of a much greater speed of movement. A bent arm is a Class 3 lever. The pivot is at the elbow and the forearm acts as the lever arm. The biceps muscle provides the effort (force) and bends the forearm against the weight of the forearm and any weight that the hand might be holding.

THIRD CLASS LEVER


Copyright:
The University of Waikato


Слайд 5 The theory of how muscle contracts is the

The theory of how muscle contracts is the sliding filament

sliding filament theory. The contraction of a muscle occurs

as the thin filament slide past the thick filaments. The sliding filament theory involves five different molecules plus calcium ions. The five molecules are: myosin, actin, tropomyosin, troponin, and ATP.                        

Sliding Filament Theory


Слайд 6 Skeletal muscle structure
Kinds of muscles

Skeletal muscle structureKinds of muscles

Слайд 7 sarcomere

sarcomere

Слайд 8 Myofilaments

Myofilaments

Слайд 9 Mechanism of muscle contraction

Mechanism of muscle contraction

Слайд 10
Mechanism of muscle contraction

Mechanism of muscle contraction

Слайд 11 Phases of a Muscle Twitch
A muscle twitch is contraction of

Phases of a Muscle Twitch A muscle twitch is contraction of a muscle

a muscle in response to a stimulus that causes

an action potential in one or more muscle fibers. Even though the normal function of muscles is more complex, an understanding of the muscle twitch makes the function of muscles in living organisms easier to comprehend.

Слайд 12 ISOTONIC AND ISOMETRIC TWITCH
A - isotonic contraction  muscle

ISOTONIC AND ISOMETRIC TWITCHA - isotonic contraction  muscle contraction without appreciable

contraction without appreciable change in the force of contraction;

the distance between the muscle's origin and insertion becomes lessened

B - isometric contraction  muscle contraction without appreciable shortening or change in distance between its origin and insertion.


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