chicken bone
The cell that helps in the movement of bones is called an osteoclast. Osteoclasts are responsible for breaking down and removing old bone tissue, allowing for new bone formation and remodeling. This process is essential for maintaining bone strength and flexibility.
The organic portion of bone, particularly collagen, provides the flexibility and tensile strength, while the inorganic portion, mainly hydroxyapatite crystals, contributes to the hardness and stiffness of bone structure. Together, they work synergistically to maintain the integrity and strength of bones.
no... its based on flexibility
Osteoclasts are responsible for the break down bone. Osteoclasts release minerals that result in a transfer of calcium from bone fluids to the blood stream which is the re-absorption process.
Collagen is responsible for the flexibility of bones. The mineral composition of bones, primarily hydroxyapatite (a calcium phosphate), provides the bone with its strength and hardness.
Collagen
The flexibility of bones is influenced by the organic components of the bone matrix, specifically collagen fibers. Collagen provides strength and flexibility to bones, allowing them to bend slightly without breaking. The mineral component of bones, mainly calcium phosphate, provides rigidity and hardness.
A Single bone would not allow flexibility.
Osteoclasts are the cells primarily responsible for the breakdown of bone. They are derived from monocytes and become multinucleated cells that secrete acids and enzymes to dissolve the mineralized matrix of bone.
The bone matrix is made of 35% organic material and 65% inorganic materials. The organic material gives bone flexibility & strength.
it is where blood cells are manufactured