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How many disks on your spine?

There are 33 vertebrae in the human spine, and each vertebra has an intervertebral disc between them, which acts as a cushion to absorb shock and provide flexibility. So, there are 33 spinal discs in total in the human spine.


What cell tissue may absorb and or secrete substances?

Epithelial tissue is a type of cell tissue that can absorb and secrete substances. This tissue covers the surfaces of the body and internal organs, forming barriers that can facilitate the movement of molecules in and out of the body.


What type of cartilage makes up the intervertebral disks?

The intervertebral discs are made up of fibrocartilage. Fibrocartilage is a type of cartilage that contains both collagen fibers and cartilage cells (chondrocytes), providing the disc with strength and flexibility to absorb shock between the vertebrae in the spine.


What is an epithelial membrane?

An epithelial membrane is a thin layer of tissue that covers organs, lines cavities, and forms the outer layer of the skin. It consists of epithelial cells attached to an underlying connective tissue layer. Epithelial membranes serve to protect, secrete, and absorb substances.


Why are bones and cartilage a specilized tissue?

Bones and cartilage are specialized tissues because they provide structural support and protection to the body. Bones are rigid and provide a framework for the body, while cartilage is flexible and acts as a cushion between bones to reduce friction and absorb shock. Both tissues have unique properties that make them well-suited for their specific roles in the body.

Related Questions

The major function of the intervertebral disc is to?

absorb shock


The structures that absorb and disperse stress on the spine are?

The nucleus of the intervertebral disks absorb and disperse stress on the spine. It contains fibers suspended in a gel somewhat like jelly.


What type of fibers do intervertebral discs contain to absorb shock?

annulus pulposus


Does elastic or hyaline cartilage make up the intervertebral discs?

The intervertebral discs are made up of fibrocartilage, which is a type of cartilage that has both collagen fibers and cartilage cells. This fibrocartilage provides strength and cushioning to the intervertebral discs, allowing them to absorb shock and maintain the structure of the spine.


The reason that intervertebral discs exhibit a large amount of tensile strength to absorb shock is because they possess?

collagen fibers


What tissue tensile strenght with the ability to absorb compressive shock?

Connective tissue


The cartilaginous parts that seperate the vertebrae are called?

The intervertebral discs are ligaments that consist of fibrocartilage and help to absorb shock from adjacent vertebrae.


What is a special lymphatic capillary in the small intestines?

The specialized lymph capillaries located in the small intestine are called lacteals. These lacteals are important in that they absorb fat.


How many disks on your spine?

There are 33 vertebrae in the human spine, and each vertebra has an intervertebral disc between them, which acts as a cushion to absorb shock and provide flexibility. So, there are 33 spinal discs in total in the human spine.


What cell tissue may absorb and or secrete substances?

Epithelial tissue is a type of cell tissue that can absorb and secrete substances. This tissue covers the surfaces of the body and internal organs, forming barriers that can facilitate the movement of molecules in and out of the body.


What type of cartilage makes up the intervertebral disks?

The intervertebral discs are made up of fibrocartilage. Fibrocartilage is a type of cartilage that contains both collagen fibers and cartilage cells (chondrocytes), providing the disc with strength and flexibility to absorb shock between the vertebrae in the spine.


Where do orchids roots absorb water?

Orchid roots absorb water through specialized structures called velamen roots, which are located on the outer surface of the roots. These roots are covered with a spongy tissue that helps in absorbing moisture from the air and surrounding environment, rather than directly from the soil.