The intervertebral disc is an avascular tissue, maintained by a small population of cells that obtain nutrients mainly by diffusion from capillaries at the disc-vertebral body interface. Loss of this nutrient supply is thought to lead to disc degeneration, but how nutrient supply influences viable cell density is unclear. We investigated two factors that influence nutrient delivery to disc cells and hence cell viability: disc height and blood supply. We used bovine caudal discs as our model as these show a gradation in disc height. We found that although disc height varied twofold from the largest to the smallest disc studied, it had no significant effect on cell density, unlike the situation found in articular cartilage. The density of blo...
The avascular nature of the human intervertebral disc (IVD) is thought to play a major role in disc ...
STUDY DESIGN: Intervertebral disc tissue was analyzed during or removed at routine surgery for corre...
After a review of disk structure, the pivotal role of disk cells in producing and renewing the extra...
The intervertebral disc is an avascular tissue, maintained by a small population of cells that obtai...
STUDY DESIGN: A review of the literature on disc nutrition. OBJECTIVES: To summarize the information...
STUDY DESIGN: Disc cell viability was analyzed in relation to nutrient supply and cellular demand in...
The metabolic environment of disc cells is governed by the avascular nature of the tissue. Because c...
The biomechanical behavior of the intervertebral disk ultimately depends on the viability and activi...
OBJECTIVE: The nucleus pulposus (NP) of the intervertebral disc develops from the notochord. Humans ...
Responsible for making and maintaining the extracellular matrix, the cells of intervertebral discs a...
The adult human intervertebral disc (IVD) is normally avascular. Changes to the extracellular matrix...
Post mortem specimens of the human lumbar (L4 L5) intervertebral disc have been studied histological...
The human intervertebral disc (IVD) is the largest avascular tissue in the body. Discs are made up o...
STUDY DESIGN. Whole ovine caudal intervertebral discs (IVD) were cultured in sufficient and limited ...
Abstract Altered cell nutrition in the intervertebral disk (IVD) is considered a main cause for disk...
The avascular nature of the human intervertebral disc (IVD) is thought to play a major role in disc ...
STUDY DESIGN: Intervertebral disc tissue was analyzed during or removed at routine surgery for corre...
After a review of disk structure, the pivotal role of disk cells in producing and renewing the extra...
The intervertebral disc is an avascular tissue, maintained by a small population of cells that obtai...
STUDY DESIGN: A review of the literature on disc nutrition. OBJECTIVES: To summarize the information...
STUDY DESIGN: Disc cell viability was analyzed in relation to nutrient supply and cellular demand in...
The metabolic environment of disc cells is governed by the avascular nature of the tissue. Because c...
The biomechanical behavior of the intervertebral disk ultimately depends on the viability and activi...
OBJECTIVE: The nucleus pulposus (NP) of the intervertebral disc develops from the notochord. Humans ...
Responsible for making and maintaining the extracellular matrix, the cells of intervertebral discs a...
The adult human intervertebral disc (IVD) is normally avascular. Changes to the extracellular matrix...
Post mortem specimens of the human lumbar (L4 L5) intervertebral disc have been studied histological...
The human intervertebral disc (IVD) is the largest avascular tissue in the body. Discs are made up o...
STUDY DESIGN. Whole ovine caudal intervertebral discs (IVD) were cultured in sufficient and limited ...
Abstract Altered cell nutrition in the intervertebral disk (IVD) is considered a main cause for disk...
The avascular nature of the human intervertebral disc (IVD) is thought to play a major role in disc ...
STUDY DESIGN: Intervertebral disc tissue was analyzed during or removed at routine surgery for corre...
After a review of disk structure, the pivotal role of disk cells in producing and renewing the extra...