Locomotion and Movement Practice
Take 5 chapter-wise practice tests plus 1 full module test on Locomotion and Movement for NEET with +4/-1 scoring, answer review, and concise explanations.
Take 5 chapter-wise practice tests plus 1 full module test on Locomotion and Movement for NEET with +4/-1 scoring, answer review, and concise explanations.
Attempt 5 focused chapter practice tests and 1 mixed module test with original NEET-style MCQs on bones, joints, muscles, contraction, and locomotory disorders.
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1. The adult human body has how many bones?
Explanation: The adult skeleton is classically described as having 206 bones.
2. The skull, vertebral column, sternum, and ribs together belong to the:
Explanation: These bones form the central axis of the body.
3. Pectoral girdle and pelvic girdle are parts of the:
Explanation: Girdles and limb bones together form the appendicular skeleton.
4. A flexible connective tissue present at the tip of nose and pinna is:
Explanation: Cartilage is firm yet flexible and occurs in several supportive locations.
5. Bone hardness mainly depends on deposition of:
Explanation: Bone matrix is hardened by calcium phosphate and other mineral salts.
6. Mature bone cells occupying lacunae are called:
Explanation: Osteocytes are the resident cells of bone tissue.
7. The marrow cavity is most prominent in:
Explanation: Long bones such as femur contain a medullary cavity.
8. The vertebral column primarily protects the:
Explanation: The vertebral canal encloses and protects the spinal cord.
9. The main supportive framework of the body is the:
Explanation: The skeleton supports the body, protects organs, and helps in movement.
10. Which pair is correctly matched?
Explanation: Tendons join muscle to bone, ligaments join bone to bone, and chondrocytes belong to cartilage.
11. Which bone is NOT part of the axial skeleton?
Explanation: The femur is a limb bone and belongs to the appendicular skeleton.
12. Revision Booster 1. Recheck this Locomotion and Movement concept with a fresh option order. The adult human body has how many bones?
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. The adult skeleton is classically described as having 206 bones.
13. Revision Booster 2. Recheck this Locomotion and Movement concept with a fresh option order. The skull, vertebral column, sternum, and ribs together belong to the:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. These bones form the central axis of the body.
14. Revision Booster 3. Recheck this Locomotion and Movement concept with a fresh option order. Pectoral girdle and pelvic girdle are parts of the:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Girdles and limb bones together form the appendicular skeleton.
15. Revision Booster 4. Recheck this Locomotion and Movement concept with a fresh option order. A flexible connective tissue present at the tip of nose and pinna is:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Cartilage is firm yet flexible and occurs in several supportive locations.
16. Revision Booster 5. Recheck this Locomotion and Movement concept with a fresh option order. Bone hardness mainly depends on deposition of:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Bone matrix is hardened by calcium phosphate and other mineral salts.
17. Revision Booster 6. Recheck this Locomotion and Movement concept with a fresh option order. Mature bone cells occupying lacunae are called:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Osteocytes are the resident cells of bone tissue.
18. Revision Booster 7. Recheck this Locomotion and Movement concept with a fresh option order. The marrow cavity is most prominent in:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Long bones such as femur contain a medullary cavity.
19. Revision Booster 8. Recheck this Locomotion and Movement concept with a fresh option order. The vertebral column primarily protects the:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. The vertebral canal encloses and protects the spinal cord.
20. Revision Booster 9. Recheck this Locomotion and Movement concept with a fresh option order. The main supportive framework of the body is the:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. The skeleton supports the body, protects organs, and helps in movement.
21. Revision Booster 10. Recheck this Locomotion and Movement concept with a fresh option order. Which pair is correctly matched?
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Tendons join muscle to bone, ligaments join bone to bone, and chondrocytes belong to cartilage.
22. Revision Booster 11. Recheck this Locomotion and Movement concept with a fresh option order. Which bone is NOT part of the axial skeleton?
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. The femur is a limb bone and belongs to the appendicular skeleton.
23. Revision Booster 12. Recheck this Locomotion and Movement concept with a fresh option order. The adult human body has how many bones?
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. The adult skeleton is classically described as having 206 bones.
24. Revision Booster 13. Recheck this Locomotion and Movement concept with a fresh option order. The skull, vertebral column, sternum, and ribs together belong to the:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. These bones form the central axis of the body.
25. Revision Booster 14. Recheck this Locomotion and Movement concept with a fresh option order. Pectoral girdle and pelvic girdle are parts of the:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Girdles and limb bones together form the appendicular skeleton.
26. A freely movable joint is called:
Explanation: Synovial joints permit free movement due to a fluid-filled cavity.
27. The immovable joints between skull bones are examples of:
Explanation: Sutures of the skull are immovable fibrous joints.
28. The shoulder joint is a:
Explanation: The ball-and-socket arrangement allows movement in many planes.
29. The elbow mainly works as a:
Explanation: The elbow allows mainly flexion and extension like a hinge.
30. Rotation of head from side to side involves the atlas-axis:
Explanation: The atlas and axis permit rotational movement of the head.
31. The knee is commonly described in school-level biology as a modified:
Explanation: The knee allows mainly hinge-like movement with some complexity.
32. Synovial fluid chiefly helps by:
Explanation: The fluid lubricates the articular surfaces of movable joints.
33. Ligaments connect:
Explanation: Ligaments stabilize joints by joining one bone to another.
34. Tendons connect:
Explanation: Tendons transmit muscular force to bones.
35. Which pair is correctly matched?
Explanation: The remaining options mismatch common joint examples.
36. Which structure in a synovial joint most directly prevents bone surfaces from grinding against each other?
Explanation: Cartilage cushions the articulating ends, while synovial fluid lubricates the joint.
37. Revision Booster 1. Recheck this Locomotion and Movement concept with a fresh option order. A freely movable joint is called:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Synovial joints permit free movement due to a fluid-filled cavity.
38. Revision Booster 2. Recheck this Locomotion and Movement concept with a fresh option order. The immovable joints between skull bones are examples of:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Sutures of the skull are immovable fibrous joints.
39. Revision Booster 3. Recheck this Locomotion and Movement concept with a fresh option order. The shoulder joint is a:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. The ball-and-socket arrangement allows movement in many planes.
40. Revision Booster 4. Recheck this Locomotion and Movement concept with a fresh option order. The elbow mainly works as a:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. The elbow allows mainly flexion and extension like a hinge.
41. Revision Booster 5. Recheck this Locomotion and Movement concept with a fresh option order. Rotation of head from side to side involves the atlas-axis:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. The atlas and axis permit rotational movement of the head.
42. Revision Booster 6. Recheck this Locomotion and Movement concept with a fresh option order. The knee is commonly described in school-level biology as a modified:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. The knee allows mainly hinge-like movement with some complexity.
43. Revision Booster 7. Recheck this Locomotion and Movement concept with a fresh option order. Synovial fluid chiefly helps by:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. The fluid lubricates the articular surfaces of movable joints.
44. Revision Booster 8. Recheck this Locomotion and Movement concept with a fresh option order. Ligaments connect:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Ligaments stabilize joints by joining one bone to another.
45. Revision Booster 9. Recheck this Locomotion and Movement concept with a fresh option order. Tendons connect:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Tendons transmit muscular force to bones.
46. Revision Booster 10. Recheck this Locomotion and Movement concept with a fresh option order. Which pair is correctly matched?
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. The remaining options mismatch common joint examples.
47. Revision Booster 11. Recheck this Locomotion and Movement concept with a fresh option order. Which structure in a synovial joint most directly prevents bone surfaces from grinding against each other?
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Cartilage cushions the articulating ends, while synovial fluid lubricates the joint.
48. Revision Booster 12. Recheck this Locomotion and Movement concept with a fresh option order. A freely movable joint is called:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Synovial joints permit free movement due to a fluid-filled cavity.
49. Revision Booster 13. Recheck this Locomotion and Movement concept with a fresh option order. The immovable joints between skull bones are examples of:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Sutures of the skull are immovable fibrous joints.
50. Revision Booster 14. Recheck this Locomotion and Movement concept with a fresh option order. The shoulder joint is a:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. The ball-and-socket arrangement allows movement in many planes.
51. Voluntary, striated muscles attached to bones are:
Explanation: Skeletal muscles show striations and function under voluntary control.
52. Spindle-shaped, uninucleate, involuntary muscle fibres are:
Explanation: Smooth muscles occur in walls of internal organs and blood vessels.
53. Intercalated discs are characteristic of:
Explanation: Intercalated discs help cardiac muscle cells act in a coordinated way.
54. The functional contractile unit of a myofibril is:
Explanation: A sarcomere lies between two successive Z-lines.
55. Thin filaments of a sarcomere are mainly made of:
Explanation: Actin forms the thin filaments, while myosin forms the thick ones.
56. The thick filaments in myofibrils are composed mainly of:
Explanation: Myosin molecules aggregate to form thick filaments.
57. The dark band of a sarcomere is the:
Explanation: The A band corresponds to the full length of thick filaments.
58. The region of the A band containing only thick filaments is the:
Explanation: The H zone lacks overlapping thin filaments.
59. The boundary of each sarcomere is marked by the:
Explanation: A sarcomere extends from one Z line to the next.
60. Which statement is correct?
Explanation: Cardiac muscle combines striations with involuntary rhythmic activity.
61. During skeletal muscle contraction, which change is expected?
Explanation: Sliding filament theory predicts increased overlap without shortening the thick or thin filaments.
62. Revision Booster 1. Recheck this Locomotion and Movement concept with a fresh option order. Voluntary, striated muscles attached to bones are:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Skeletal muscles show striations and function under voluntary control.
63. Revision Booster 2. Recheck this Locomotion and Movement concept with a fresh option order. Spindle-shaped, uninucleate, involuntary muscle fibres are:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Smooth muscles occur in walls of internal organs and blood vessels.
64. Revision Booster 3. Recheck this Locomotion and Movement concept with a fresh option order. Intercalated discs are characteristic of:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Intercalated discs help cardiac muscle cells act in a coordinated way.
65. Revision Booster 4. Recheck this Locomotion and Movement concept with a fresh option order. The functional contractile unit of a myofibril is:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. A sarcomere lies between two successive Z-lines.
66. Revision Booster 5. Recheck this Locomotion and Movement concept with a fresh option order. Thin filaments of a sarcomere are mainly made of:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Actin forms the thin filaments, while myosin forms the thick ones.
67. Revision Booster 6. Recheck this Locomotion and Movement concept with a fresh option order. The thick filaments in myofibrils are composed mainly of:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Myosin molecules aggregate to form thick filaments.
68. Revision Booster 7. Recheck this Locomotion and Movement concept with a fresh option order. The dark band of a sarcomere is the:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. The A band corresponds to the full length of thick filaments.
69. Revision Booster 8. Recheck this Locomotion and Movement concept with a fresh option order. The region of the A band containing only thick filaments is the:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. The H zone lacks overlapping thin filaments.
70. Revision Booster 9. Recheck this Locomotion and Movement concept with a fresh option order. The boundary of each sarcomere is marked by the:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. A sarcomere extends from one Z line to the next.
71. Revision Booster 10. Recheck this Locomotion and Movement concept with a fresh option order. Which statement is correct?
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Cardiac muscle combines striations with involuntary rhythmic activity.
72. Revision Booster 11. Recheck this Locomotion and Movement concept with a fresh option order. During skeletal muscle contraction, which change is expected?
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Sliding filament theory predicts increased overlap without shortening the thick or thin filaments.
73. Revision Booster 12. Recheck this Locomotion and Movement concept with a fresh option order. Voluntary, striated muscles attached to bones are:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Skeletal muscles show striations and function under voluntary control.
74. Revision Booster 13. Recheck this Locomotion and Movement concept with a fresh option order. Spindle-shaped, uninucleate, involuntary muscle fibres are:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Smooth muscles occur in walls of internal organs and blood vessels.
75. Revision Booster 14. Recheck this Locomotion and Movement concept with a fresh option order. Intercalated discs are characteristic of:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Intercalated discs help cardiac muscle cells act in a coordinated way.
76. The immediate ion that initiates skeletal muscle contraction is:
Explanation: Calcium binds regulatory proteins and allows actin-myosin interaction.
77. Calcium binds with which protein on the thin filament?
Explanation: Binding of calcium to troponin changes the position of tropomyosin.
78. According to the sliding filament theory, contraction occurs because:
Explanation: The lengths of individual filaments stay nearly constant while overlap increases.
79. ATP is required in muscle because it helps:
Explanation: ATP powers the cross-bridge cycle and is essential for relaxation as well.
80. During contraction, the A band usually:
Explanation: The length of thick filaments does not change, so the A band remains the same.
81. During contraction, the I band generally:
Explanation: Overlap between thin and thick filaments increases, reducing the light band.
82. The H zone during strong contraction tends to:
Explanation: The region containing only thick filaments becomes smaller as thin filaments move inward.
83. The temporary attachment between actin and myosin is called a:
Explanation: Cross-bridge formation is the central event of contraction.
84. The signal from a motor neuron reaches a muscle fibre at the:
Explanation: This specialized junction passes the nerve impulse to the muscle fibre.
85. Which sequence is most logical?
Explanation: This sequence captures the essential flow of excitation-contraction coupling.
86. The role of calcium in contraction is best described as:
Explanation: Calcium binds troponin, shifts tropomyosin, and permits cross-bridge formation.
87. Revision Booster 1. Recheck this Locomotion and Movement concept with a fresh option order. The immediate ion that initiates skeletal muscle contraction is:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Calcium binds regulatory proteins and allows actin-myosin interaction.
88. Revision Booster 2. Recheck this Locomotion and Movement concept with a fresh option order. Calcium binds with which protein on the thin filament?
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Binding of calcium to troponin changes the position of tropomyosin.
89. Revision Booster 3. Recheck this Locomotion and Movement concept with a fresh option order. According to the sliding filament theory, contraction occurs because:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. The lengths of individual filaments stay nearly constant while overlap increases.
90. Revision Booster 4. Recheck this Locomotion and Movement concept with a fresh option order. ATP is required in muscle because it helps:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. ATP powers the cross-bridge cycle and is essential for relaxation as well.
91. Revision Booster 5. Recheck this Locomotion and Movement concept with a fresh option order. During contraction, the A band usually:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. The length of thick filaments does not change, so the A band remains the same.
92. Revision Booster 6. Recheck this Locomotion and Movement concept with a fresh option order. During contraction, the I band generally:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Overlap between thin and thick filaments increases, reducing the light band.
93. Revision Booster 7. Recheck this Locomotion and Movement concept with a fresh option order. The H zone during strong contraction tends to:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. The region containing only thick filaments becomes smaller as thin filaments move inward.
94. Revision Booster 8. Recheck this Locomotion and Movement concept with a fresh option order. The temporary attachment between actin and myosin is called a:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Cross-bridge formation is the central event of contraction.
95. Revision Booster 9. Recheck this Locomotion and Movement concept with a fresh option order. The signal from a motor neuron reaches a muscle fibre at the:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. This specialized junction passes the nerve impulse to the muscle fibre.
96. Revision Booster 10. Recheck this Locomotion and Movement concept with a fresh option order. Which sequence is most logical?
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. This sequence captures the essential flow of excitation-contraction coupling.
97. Revision Booster 11. Recheck this Locomotion and Movement concept with a fresh option order. The role of calcium in contraction is best described as:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Calcium binds troponin, shifts tropomyosin, and permits cross-bridge formation.
98. Revision Booster 12. Recheck this Locomotion and Movement concept with a fresh option order. The immediate ion that initiates skeletal muscle contraction is:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Calcium binds regulatory proteins and allows actin-myosin interaction.
99. Revision Booster 13. Recheck this Locomotion and Movement concept with a fresh option order. Calcium binds with which protein on the thin filament?
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Binding of calcium to troponin changes the position of tropomyosin.
100. Revision Booster 14. Recheck this Locomotion and Movement concept with a fresh option order. According to the sliding filament theory, contraction occurs because:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. The lengths of individual filaments stay nearly constant while overlap increases.
101. Inflammation of joints causing pain and stiffness is broadly called:
Explanation: Arthritis refers to inflammatory or degenerative joint disease.
102. Accumulation of uric acid crystals in joints is associated with:
Explanation: Gout is a metabolic joint disorder caused by urate deposition.
103. Reduced bone mass with increased fragility is:
Explanation: Bone density decreases in osteoporosis, making fractures more likely.
104. A disorder involving progressive degeneration of skeletal muscles is:
Explanation: Muscular dystrophy causes progressive wasting and weakness of muscles.
105. Myasthenia gravis is an example of a disorder affecting:
Explanation: It is an autoimmune disorder that weakens communication at the neuromuscular junction.
106. Sustained contraction of muscles due to low calcium level is called:
Explanation: Low calcium can increase neuromuscular excitability and cause spasms.
107. Abnormal lateral curvature of the vertebral column is:
Explanation: Scoliosis refers to sideward curvature of the spine.
108. An excessive backward curvature of the thoracic spine is:
Explanation: Kyphosis gives a hunchback-like posture.
109. Excessive forward curvature in the lumbar region is:
Explanation: Lordosis is characterized by pronounced inward curvature of the lower spine.
110. Which summary best captures the chapter?
Explanation: The chapter integrates structure, articulation, contraction, and clinical disorders.
111. A patient has weak bones due to reduced bone mineral density and high fracture risk. The condition is most consistent with:
Explanation: Osteoporosis involves loss of bone mass and makes bones fragile.
112. Revision Booster 1. Recheck this Locomotion and Movement concept with a fresh option order. Inflammation of joints causing pain and stiffness is broadly called:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Arthritis refers to inflammatory or degenerative joint disease.
113. Revision Booster 2. Recheck this Locomotion and Movement concept with a fresh option order. Accumulation of uric acid crystals in joints is associated with:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Gout is a metabolic joint disorder caused by urate deposition.
114. Revision Booster 3. Recheck this Locomotion and Movement concept with a fresh option order. Reduced bone mass with increased fragility is:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Bone density decreases in osteoporosis, making fractures more likely.
115. Revision Booster 4. Recheck this Locomotion and Movement concept with a fresh option order. A disorder involving progressive degeneration of skeletal muscles is:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Muscular dystrophy causes progressive wasting and weakness of muscles.
116. Revision Booster 5. Recheck this Locomotion and Movement concept with a fresh option order. Myasthenia gravis is an example of a disorder affecting:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. It is an autoimmune disorder that weakens communication at the neuromuscular junction.
117. Revision Booster 6. Recheck this Locomotion and Movement concept with a fresh option order. Sustained contraction of muscles due to low calcium level is called:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Low calcium can increase neuromuscular excitability and cause spasms.
118. Revision Booster 7. Recheck this Locomotion and Movement concept with a fresh option order. Abnormal lateral curvature of the vertebral column is:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Scoliosis refers to sideward curvature of the spine.
119. Revision Booster 8. Recheck this Locomotion and Movement concept with a fresh option order. An excessive backward curvature of the thoracic spine is:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Kyphosis gives a hunchback-like posture.
120. Revision Booster 9. Recheck this Locomotion and Movement concept with a fresh option order. Excessive forward curvature in the lumbar region is:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Lordosis is characterized by pronounced inward curvature of the lower spine.
121. Revision Booster 10. Recheck this Locomotion and Movement concept with a fresh option order. Which summary best captures the chapter?
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. The chapter integrates structure, articulation, contraction, and clinical disorders.
122. Revision Booster 11. Recheck this Locomotion and Movement concept with a fresh option order. A patient has weak bones due to reduced bone mineral density and high fracture risk. The condition is most consistent with:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Osteoporosis involves loss of bone mass and makes bones fragile.
123. Revision Booster 12. Recheck this Locomotion and Movement concept with a fresh option order. Inflammation of joints causing pain and stiffness is broadly called:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Arthritis refers to inflammatory or degenerative joint disease.
124. Revision Booster 13. Recheck this Locomotion and Movement concept with a fresh option order. Accumulation of uric acid crystals in joints is associated with:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Gout is a metabolic joint disorder caused by urate deposition.
125. Revision Booster 14. Recheck this Locomotion and Movement concept with a fresh option order. Reduced bone mass with increased fragility is:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Bone density decreases in osteoporosis, making fractures more likely.