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How many bones cells get their food and oxygen?

Bone cells receive their food and oxygen through blood vessels that supply nutrients to the bones. These blood vessels deliver nutrients and oxygen to the bone cells through a process called vascularization.


How blood and other materials get to the living cells inside the bone?

The bone is composed mostly of two types of bone tissue. Compact bone and Spongy bone. The spongy bone has hundreds of little pores, through which many blood vessels can pass. Also, there are specialized passages in the bone through which a main artery or vein can pass to provide the blood supply and transport the new blood cells


The three components of bone marrow are?

The three components of bone marrow are red marrow, yellow marrow, and blood vessels. Red marrow is responsible for producing blood cells, while yellow marrow mainly stores fat. Blood vessels supply nutrients to the bone marrow.


When a bone breaks what carry the food into the bone?

Blood vessels supply the bone with nutrients and carry food and oxygen to the bone cells. When a bone breaks, blood vessels at the site of the fracture help in the healing process by delivering the necessary nutrients for bone repair.


Do compact bones contain small blood vessels?

Yes, compact bone contains small blood vessels. These vessels are found within the Haversian canals, which are part of the osteon structure. The blood vessels supply nutrients and oxygen to the bone cells and help remove waste products, playing a crucial role in maintaining bone health. Additionally, small canals called canaliculi connect bone cells to these blood vessels, allowing for communication and nutrient exchange.


How are nutrients brought to the spongy bone?

Nutrients are delivered to spongy bone primarily through the blood supply from the bone's vascular system. The bone marrow, which is found within the spongy bone, contains blood vessels that supply oxygen and essential nutrients. Additionally, small canals called canaliculi connect osteocytes (bone cells) to blood vessels, facilitating nutrient exchange and waste removal. This network ensures that the spongy bone remains healthy and functional.


Explain how bone cells embedded in a solid ground substance obtain nutrients and eliminate waste?

Osteocytes are mature bone cells surrounded by matrix which solid bone cell ground substances attach to. Bone cells are in the proximity of blood vessels, just like any other cell in the body. Bones only have cells in their growth areas and in the bone marrow, where blood cells are also produced.


What do blood vessels do that nourish the bone tissue?

Blood vessels supply essential nutrients and oxygen to bone tissue, playing a crucial role in maintaining bone health and metabolism. They facilitate the removal of waste products from bone cells, ensuring a healthy environment for bone growth and repair. Additionally, blood vessels are involved in the regulation of mineral homeostasis, contributing to the overall strength and integrity of the bone structure.


Which structures in the compact bone deliver nutrients to the osteocytes?

Nutrients in compact bone are delivered to osteocytes via tiny channels called canaliculi that connect the osteocytes to nearby blood vessels in the central Haversian canals. This interconnection allows for the exchange of nutrients and waste products, supporting the metabolic needs of the bone cells.


Does bone contains blood vessels?

Yes, except for the very hardest parts, bones have blood vessels to supply nutrients.


What is the purpose of the canaliculi compact bone?

The function of the canals in bone tissue is to help transport everything to and from the living cells in the bones. The canals encompass the blood vessels which are directly involved in the transportation. .


What does periosteum supply bone cells with?

The periosteum supplies bone cells with nutrients and oxygen through blood vessels that penetrate the bone tissue. It also plays a role in bone growth, repair, and remodeling by providing a source of progenitor cells.