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  2. Wolff's law - Wikipedia

    en.wikipedia.org/wiki/Wolff's_law

    Wolff's law, developed by the German anatomist and surgeon Julius Wolff (1836–1902) in the 19th century, states that bone in a healthy animal will adapt to the loads under which it is placed. [1] If loading on a particular bone increases, the bone will remodel itself over time to become stronger to resist that sort of loading.

  3. Bone healing - Wikipedia

    en.wikipedia.org/wiki/Bone_healing

    Age, bone type, drug therapy and pre-existing bone pathology are factors that affect healing. The role of bone healing is to produce new bone without a scar as seen in other tissues which would be a structural weakness or deformity. [2] The process of the entire regeneration of the bone can depend on the angle of dislocation or fracture.

  4. Davis's law - Wikipedia

    en.wikipedia.org/wiki/Davis's_Law

    Davis's law is used in anatomy and physiology to describe how soft tissue models along imposed demands. It is similar to Wolff's law, which applies to osseous tissue.It is a physiological principle stating that soft tissue heal according to the manner in which they are mechanically stressed.

  5. 11 Foods That’ll Boost Your Bone Strength and Joint Health

    www.aol.com/11-foods-ll-boost-bone-181500294.html

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  6. Bone health - Wikipedia

    en.wikipedia.org/wiki/Bone_health

    Optimal bone health is characterized by adequate bone mineral density (BMD) and proper bone microarchitecture, which together contribute to bone strength. [2] Osteoporosis, a skeletal disorder characterized by compromised bone strength and increased risk of fractures, is a major concern in bone health, particularly among older adults.

  7. Osteomalacia - Wikipedia

    en.wikipedia.org/wiki/Osteomalacia

    Osteomalacia is a disease characterized by the softening of the bones caused by impaired bone metabolism primarily due to inadequate levels of available phosphate, calcium, and vitamin D, or because of resorption of calcium. The impairment of bone metabolism causes inadequate bone mineralization.

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