Unit 4: Mechanics of skeletal muscle - Subjective Questions

BTY730 — Biomechanics • Practice Questions with Detailed Answers

20 questions

1

Describe the structure of skeletal muscle from the whole muscle down to the myofibril level.

2

Explain what a motor unit is and discuss how motor units contribute to the control of muscle force.

3

Distinguish between the three major skeletal muscle fiber types based on their contractile and metabolic properties.

4

Describe the sliding filament theory of skeletal muscle contraction.

5

Derive and explain the significance of the length-tension relationship in skeletal muscle.

6

Explain Hill's three-element model of muscle and the function of each component.

7

Define muscle fiber architecture and explain how pennation angle affects force production.

8

Explain the concept of Physiological Cross-Sectional Area (PCSA) and its relationship to muscle force. Include the relevant formula.

9

Describe the detailed structure of a sarcomere, naming its bands and lines.

10

Explain the force-velocity relationship of skeletal muscle and state Hill's equation.

11

Describe the process of excitation-contraction coupling in skeletal muscle.

12

Compare parallel (fusiform) and pennate muscle architectures with respect to force and velocity of shortening.

13

Explain the phenomena of twitch, summation, and tetanus in skeletal muscle.

14

Describe the different types of muscle contraction based on length and tension changes.

15

Explain the roles of titin, troponin, and tropomyosin in skeletal muscle function.

16

Discuss the Size Principle of motor unit recruitment and its functional significance.

17

Define the cross-bridge cycle and explain the role of ATP at each stage.

18

Explain the passive and active components of muscle tension and how they combine to produce total muscle force.

19

Describe the structural and functional differences between red and white muscle fibers.

20

Using Hill's three-element model, explain the mechanical behavior of muscle during an isometric contraction and a stretch-shortening cycle.