Unit 2: Bone and cartilage - Subjective Questions

BTY730 — Biomechanics • Practice Questions with Detailed Answers

20 questions

1

Describe the structure and composition of bone. Explain the roles of its organic and inorganic components.

2

Explain the blood circulation in bone. Describe the major sources of blood supply to a long bone.

3

Discuss the mechanical properties of bone. Explain terms such as stress, strain, Young's modulus, and typical strength values.

4

Define viscoelasticity. Explain the viscoelastic properties of bone with reference to creep, stress relaxation, and hysteresis.

5

Explain the Maxwell model of viscoelasticity. Derive its governing equation and describe its behavior under creep and stress relaxation.

6

Explain the Voigt (Kelvin-Voigt) model of viscoelasticity. Derive its governing equation and describe its creep and stress relaxation behavior.

7

Compare the Maxwell and Voigt models of viscoelasticity in terms of arrangement, governing equations, and ability to represent creep and stress relaxation.

8

Describe the viscoelastic properties of articular cartilage. Explain how its biphasic nature governs its mechanical response.

9

Explain what is meant by anisotropy of bone. Why is bone considered an anisotropic material, and how does this affect its mechanical behavior?

10

Explain the composite model of bone. How does treating bone as a composite material help explain its mechanical properties?

11

State and explain Wolff's Law. Describe how bone responds to stress through remodeling.

12

Define Osteoporosis. Discuss its causes, diagnosis, and treatment in detail.

13

Distinguish between cortical (compact) bone and cancellous (trabecular) bone in terms of structure, porosity, and mechanical properties.

14

Draw and explain the typical stress-strain curve of cortical bone under tensile loading. Identify and describe the key regions.

15

Explain the concept of creep and recovery in bone using the Kelvin-Voigt model. Derive the creep response equation.

16

Describe how strain rate affects the mechanical behavior of bone. Why is bone considered a rate-dependent material?

17

Explain the functions of articular cartilage in synovial joints and describe how its structure supports these functions.

18

Compare bone and articular cartilage as biomechanical materials in terms of composition, mechanical function, and viscoelastic behavior.

19

Explain the Standard Linear Solid (three-element / Kelvin) model. Why is it superior to the simple Maxwell and Voigt models for representing bone?

20

A cortical bone specimen of length and cross-sectional area is subjected to an axial tensile force of . If Young's modulus is , calculate the stress, strain, and elongation. Also comment on whether the bone remains in the elastic region.