1987•PubMedRequires access

Collagen organisation in the interspinous ligament and its relationship to tissue function.

R.M. Aspden, N H Bornstein, D.W.L. Hukins

Open publisher page 42 citations

Abstract

X-ray diffraction and determination of optical anisotropy show that collagen fibres in pig and human lumbar interspinous ligaments tend to be orientated parallel to the spinous processes. There is a distribution of fibre orientations about this preferred direction. Flexion of the spine does not change the direction of preferred orientation but the angular spread of fibres increases. This pattern of collagen fibre orientations is consistent with the interspinous ligaments being able to transmit tension from the thoracolumbar fascia to the vertebrae. Since the collagen fibres tend to be aligned antero-posteriorly, they provide a high efficiency of reinforcement in this direction. The lack of fibres orientated perpendicular to the spinous processes will lead to low strength in the cranio-caudal direction so that the ligament can provide little resistance to flexion of the spine.

About this research paper

What this paper is about

X-ray diffraction and determination of optical anisotropy show that collagen fibres in pig and human lumbar interspinous ligaments tend to be orientated parallel to the spinous processes. There is a distribution of fibre orientations about this preferred direction. Flexion of the spine does not change the direction of preferred orientation but the angular spread of fibres increases. This pattern of collagen fibre orientations is consistent with the interspinous ligaments being able to transmit tension from the thoracolumbar fascia to the vertebrae. Since the collagen fibres tend to be aligned antero-posteriorly, they provide a high efficiency of reinforcement in this direction. The lack of fibres orientated perpendicular to the spinous processes will lead to low strength in the cranio-caudal direction so that the ligament can provide little resistance to flexion of the spine.

Why it matters

OpenAlex reports 42 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

X-ray diffraction and determination of optical anisotropy show that collagen fibres in pig and human lumbar interspinous ligaments tend to be orientated parallel to the spinous processes. There is a distribution of fibre orientations about this preferred direction. Flexion of the spine does not change the direction of preferred orientation but the angular spread of fibres increases. This pattern of collagen fibre orientations is consistent with the interspinous ligaments being able to transmit tension from the thoracolumbar fascia to the vertebrae. Since the collagen fibres tend to be aligned antero-posteriorly, they provide a high efficiency of reinforcement in this direction. The lack of fibres orientated perpendicular to the spinous processes will lead to low strength in the cranio-caudal direction so that the ligament can provide little resistance to flexion of the spine.

Key concepts: Collagen fibres, Ligament, Anatomy, Materials science, Perpendicular, Orientation (vector space), Biomedical engineering, Medicine

Related papers

Back to paper searchBrowse research topicsOriginal source
Collagen organisation in the interspinous ligament and its relationship to tissue function. — Research Paper | ScholarLens