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If you calculate the time it would take for extracellular Ca to diffuse to the middle of a skeletal muscle fibre, the fastest predicted rate for onset of contraction would be in the order of 100 msec after the arrival of the motor neuron action potential. Why then is it possible for a muscle fibre to start contracting only 10 msec after the arrival of the motor nerve action potential? (
Can the exceptional abilities of elite high jumpers (power athletes) and marathon runners be explained by having predominantly fast or slow muscle fibre types in key muscles? Which ONE statement reflects the MOST WIDELY accepted explanation? (Lecture: skeletal muscle, Chapter: fibre types)
Which ONE of the following is
Which ONE of the following statements about the interaction of the voltage sensor and the ryanodine receptor in skeletal muscle is
Which ONE of the following statements about smooth muscle is CORRECT? (Lecture: smooth muscle, all chapters)
Which ONE of the following statements is CORRECT regarding an isometric tetanic contraction? (Lecture: skeletal muscle, Chapter: types of contraction)
Which ONE of the following statements regarding the internal structure of a skeletal muscle fibre is TRUE? (Lecture: Skeletal Muscle Chapter: structure)
Which ONE of the following statements regarding the sliding filament theory of muscle contraction is FALSE? (Lecture: skeletal muscle Chapters: structure, the cross-bridge cycle)
Which ONE of the following is NOT part of the sequence of skeletal muscle contraction? (Lecture: skeletal muscle, Chapter: excitation-contraction coupling)
When skeletal muscle shortens, the I band shortens while the A band does not change in length. The explanation for this is: (Lecture: skeletal muscle, Chapters: structure, the cross-bridge cycle)