The middle layer of lumbar fascia and attachments to lumbar transverse processes: implications for segmental control and fracture
- PMID: 17924150
- PMCID: PMC2140134
- DOI: 10.1007/s00586-007-0502-z
The middle layer of lumbar fascia and attachments to lumbar transverse processes: implications for segmental control and fracture
Abstract
The anatomy of the middle layer of lumbar fascia (MLF) is of biomechanical interest and potential clinical relevance, yet it has been inconsistently described. Avulsion fractures of the lumbar transverse processes (LxTP's) are traditionally attributed to traction from psoas major or quadratus lumborum (QL), rather than transversus abdominis (TrA) acting via the MLF. This attachment is also absent from many biomechanical models of segmental control. The aims of this study were to document: (1) the morphology and attachments of the MLF and (2) the attachments of psoas and QL to the LxTP's. Eighteen embalmed cadavers were dissected, measuring the thickness, fibre angle and width of the MLF and documenting the attachments of MLF, psoas and QL. The MLF was thicker at the level of the LxTP's than between them (mean 0.62: 0.40 mm). Psoas attached to the anteromedial surface of each process and QL and TrA to its lateral border; QL at its upper and lower corners and TrA (via the MLF) to its tip. In three cadavers, tension applied to the MLF fractured a transverse process. The MLF has a substantial and thickened attachment to the tips of the LxTP's which supports the involvement of TrA in lumbar segmental control and/ or avulsion fracture of the LxTP's.
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References
-
- None
- Armstrong JR (1965) Lumbar disc lesions; pathogenesis and treatment of low back pain and sciatica, 3rd edn. E. & S. Livingstone, Edinburgh
-
- {'text': '', 'ref_index': 1, 'ids': [{'type': 'DOI', 'value': '10.1097/00007632-199909010-00002', 'is_inner': False, 'url': 'https://doi.org/10.1097/00007632-199909010-00002'}, {'type': 'PubMed', 'value': '10488503', 'is_inner': True, 'url': 'https://pubmed.ncbi.nlm.nih.gov/10488503/'}]}
- Barker PJ, Briggs CA (1999) Attachments of the posterior layer of lumbar fascia. Spine 24(17):1757–1764 - PubMed
-
- {'text': '', 'ref_index': 1, 'ids': [{'type': 'DOI', 'value': '10.1097/01.BRS.0000107005.62513.32', 'is_inner': False, 'url': 'https://doi.org/10.1097/01.brs.0000107005.62513.32'}, {'type': 'PubMed', 'value': '14722403', 'is_inner': True, 'url': 'https://pubmed.ncbi.nlm.nih.gov/14722403/'}]}
- Barker PJ, Briggs CA, Bogeski G (2004) Tensile transmission across the lumbar fasciae in unembalmed cadavers: effects of tension to various muscular attachments. Spine 29(2):129–138 - PubMed
-
- {'text': '', 'ref_index': 1, 'ids': [{'type': 'DOI', 'value': '10.1097/01.brs.0000195869.18844.56', 'is_inner': False, 'url': 'https://doi.org/10.1097/01.brs.0000195869.18844.56'}, {'type': 'PubMed', 'value': '16481949', 'is_inner': True, 'url': 'https://pubmed.ncbi.nlm.nih.gov/16481949/'}]}
- Barker PJ, Guggenheimer KT, Grkovic I, Briggs CA, Jones DC, Thomas CD et al (2006) Effects of tensioning the lumbar fasciae on segmental stiffness during flexion and extension: young investigator award winner. Spine 31(4):397–405 - PubMed
-
- Basmajian JV, Slonecker CE (1989) Grant’s method of anatomy: a clinical problem-solving approach, 11th edn. Williams & Wilkins, Baltimore, p 37
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