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***High '''glycolytic''' activity
 
***High '''glycolytic''' activity
 
***Function - exercise, bursts of activity
 
***Function - exercise, bursts of activity
*Muscle activation is initiated by a nervous impulse crossing the Neuromuscular Junction
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*'''Neurogenic Contraction''': Muscle activation is initiated by a nervous impulse crossing the Neuromuscular Junction to individual muscle fibers
 
**The neurotransmitter, '''Acetylcholine (Ach)''', binds receptors in the muscle fiber to open Na+ channels
 
**The neurotransmitter, '''Acetylcholine (Ach)''', binds receptors in the muscle fiber to open Na+ channels
 
**This causes a wave of depolarization along the sarcoplasmic membrane, further opening voltage-gated Na+ channels, which propagates the signal along the sarcolemma
 
**This causes a wave of depolarization along the sarcoplasmic membrane, further opening voltage-gated Na+ channels, which propagates the signal along the sarcolemma
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***This causes inhibition of the steric block keeping Actin and Myosin from interacting
 
***This causes inhibition of the steric block keeping Actin and Myosin from interacting
 
*Increased Calcium causes a negative feedback inhibition of Ca release, and it is pumped back into the sarcoplasmic reticulum by the Ca/ATPase pump
 
*Increased Calcium causes a negative feedback inhibition of Ca release, and it is pumped back into the sarcoplasmic reticulum by the Ca/ATPase pump
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==Cardiac Muscle==
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*Structural: striated but uninucleate, highly vascularized
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*Gap junctions concentrated at intercalated discs
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**'''Myogenic Contraction''' spreads cell to cell and does not depend on nervous imput to individual cells
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**Areas of low electrical resistance allow rapid spread of action potentials
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**Contraction is regulated by autonomic neurons and circulating hormones
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*Contractile mechanism similar to skeletal muscle: increase cytosolic Ca
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**Ca influx across plasma membrane AND sarcoplasmic reticulum
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*Action potential has a prolonged plateau phase
    
==Smooth Muscle==
 
==Smooth Muscle==
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