10. Which of the followjng is NOT correct? A. Bone fracture is a partial or complete break in the continuity of the bone B. Bone remodelling, continuing process of synthesis and destruction that gives bone its mature structure and maintains normal calcium levels in the body C. bone resorption the process by which osteoclasts break down the tissue in bones and release the minerals D. Osteoblasts release hydrochloric acid and acidic proteases such as cathepsin K, resulting in degradation of the bone matrix and liberation of Ca*?, PO,3, and fragments of type I collagen E. osteoblasts have receptors for PTH and, when activated, produce osteoclast stimulating factor (cytokine)

Human Anatomy & Physiology (11th Edition)
11th Edition
ISBN:9780134580999
Author:Elaine N. Marieb, Katja N. Hoehn
Publisher:Elaine N. Marieb, Katja N. Hoehn
Chapter1: The Human Body: An Orientation
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10. Which of the followjng is NOT correct?
A. Bone fracture is a partial or complete break in the continuity of the bone
B. Bone remodelling, continuing process of synthesis and destruction that gives bone its mature
structure and maintains normal calcium levels in the body
C. bone resorption the process by which osteoclasts break down the tissue in bones and release the
minerals
D. Osteoblasts release hydrochloric acid and acidic proteases such as cathepsin K, resulting in
degradation of the bone matrix and liberation of Ca*?, PO,3, and fragments of type I collagen
E. osteoblasts have receptors for PTH and, when activated, produce osteoclast stimulating factor
(cytokine)
Transcribed Image Text:10. Which of the followjng is NOT correct? A. Bone fracture is a partial or complete break in the continuity of the bone B. Bone remodelling, continuing process of synthesis and destruction that gives bone its mature structure and maintains normal calcium levels in the body C. bone resorption the process by which osteoclasts break down the tissue in bones and release the minerals D. Osteoblasts release hydrochloric acid and acidic proteases such as cathepsin K, resulting in degradation of the bone matrix and liberation of Ca*?, PO,3, and fragments of type I collagen E. osteoblasts have receptors for PTH and, when activated, produce osteoclast stimulating factor (cytokine)
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