Lecture 29 Flashcards
Strength and Power Training
neural adaptations are highly specific to …. and what does this mean
highly specific to training, you can train one muscle and get very little transfer over to the other muscle
neural adaptations to exercise result in increased agonist activation via
- decreased neural inhibitory reflexes
- increased motor unit recruitment
- increased unit firing frequency
neural adaptations to exercise results in modifications to what
modifications to stretch reflex and golgi tenton organ reflex
stretch reflex primes muscles to what
to increase force power output
golgi tendon organ does what to force output
decreases force output
what is plyometrics and what does it use
high explosive exercise
- use stretch shortening cycle
the use of the stretch shortening cycling in plyometrics increases your ability to
increases ability to tolerate high stretch loads
plyometrics increases muscle ….
muscle power output
how does plyometrics increase muscle power output
uses stored elastic energy and stretch reflex
what are the neuromuscular adaptations to high intensity training (jim says this is important)
increased max power
increased muscle strength
increased size (hypertrophy)
selective hypertrophy type II
change in type of myosin
increased neural adaptation (RFD)
increased Na+ K+ ATPase activity
what is RFD
rate of force development
what are the metabolic adaptations to high intensity training (jim says this is important)
increases ATP and PC stores
increased creatine kinase activity
increased ATPase activity
increased PFK activity
increased buffering capacity
what is another adaptation to short duration, high intensity training and why
increased efficiency of movement
- neural adaptation = motor learning
what is the psychophysical adaptations to short duration, high intensity training
increased pain tolerance
increased motivation ?
High intensity interval training (HIIT) stimulates all energy systems and huge array of local and systemic adaptations, what does this mean in terms of cellular stress
intense cellular metabolic and mechanical stress