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Summary Muscular system

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Describes the muscular system and its components

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PER510- Physiology

Ch. 6, 7, and 8 outline

Types of Muscle Tissue

Skeletal muscle- move bones (some skin)

Voluntary control- some have involuntary override = diaphragm, muscles for posture

Striated

Ca++ needed for contraction stored internally (sarcoplasmic reticulum)

Cardiac muscle- wall of the heart

Involuntary control- autorhythmic- resting rate due to Na+ leak channels

Rate influenced by autonomic stimulation- sympathetic ↑, parasympathetic ↓

Intercalated disks- area of gap junctions and desmosomes = allow ionic disturbance to move between
adjacent cells (action potential)

Striated

Ca++ needed for contraction- 75% internally, 25% externally

Smooth muscle- walls of blood vessels, respiratory airways, digestive system, urinary system

Involuntary control- some autorhythmic, some influence of autonomic NS or hormonal signals

No striations

Nearly 100% Ca++ needed for contraction comes from ECM

2 types = unitary- bundles or sheets of cells- ex. blood vessel walls

Multiunit- separate fibers- ex. Ciliary muscles and iris of the eye, piloerector muscles of skin

Muscle Function and Unique Features

Movement- of body or body parts as well as materials within the body

Stabilization of body or body parts and posture

Thermogenesis- heat production

Storage and movement control- sphincters

Excitability- similar to neurons, they are able to respond to action potentials by altering cellular activity

Contractility- ability to shorten with force

Extensibility- able to stretch beyond resting length

Elasticity- able to recoil to resting length without injury or impaired function

Muscle Terminology

Motor unit- single neuron and muscle fibers it innervates

, Twitch- contraction of a motor unit in response to nervous stimulation

Summation (treppe)- multiple stimuli from a neuron causes contraction to continue, increasing force until
full isotonic tension is reached

Tetanus- state of sustained partial or full contraction

Incomplete (unfused)- 20 – 30 stimuli per min, allowing partial relaxation between twitches

Complete (fused)- 80 – 100 stimuli per min, total contraction without relaxation

Hypertrophy- increase in size (length / diameter) and strength

Most commonly a result of increasing myofilaments (actin and myosin)

May also involve increasing the number of myofibrils within the muscle fibers

Lastly, may involve adding additional sarcomeres to the ends of the myofibrils

*↑ mitochondria #, sarcoplasmic reticulum (Ca++ storage), enzymes for energy prod.

**Also requires an increase in vascular supply and nerve innervation

Example- A.I.= eccentric hypertrophy → enlargement of the left ventricular chamber

A.S. = concentric hypertrophy → enlargement of the muscular walls

Hyperplasia- increasing the number of fibers (cells) within the muscle

Atrophy- decrease in size and strength which occurs with prolonged inactivity

Results of decreasing the number of myofilaments, myofibrils, sarcomeres and or fibers

Involves the ATP dependent ubiquitin proteosome pathway (apoptosis- ch.2)

Loss of nerve innervation → w/in 2 months myofilament breakdown begins – fully reversible

3 months – 2 years → recovery still possible, but some permanent loss of function

Greater than 2 years → muscle fibers are replaced with fibrous and fatty tissue

Permanent loss of function = contracture or fibrous shortening

Skeletal Muscle Anatomy

Tendons (aponeurosis)- connective tissue attaching skeletal muscles to bones (some skin)

Epimysium- connective tissue covering an entire skeletal muscle

Fascicles- bundles of skeletal muscle fibers (cells)

Perimysium- connective tissue covering and separating the fascicles

Fibers- muscle cells

Endomysium- connective tissue covering individual fibers

Sarcoplasm- cytoplasm of muscle cells

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