Literature DB >> 21823749

Spinal facet joint biomechanics and mechanotransduction in normal, injury and degenerative conditions.

Nicolas V Jaumard1, William C Welch, Beth A Winkelstein.   

Abstract

The facet joint is a crucial anatomic region of the spine owing to its biomechanical role in facilitating articulation of the vertebrae of the spinal column. It is a diarthrodial joint with opposing articular cartilage surfaces that provide a low friction environment and a ligamentous capsule that encloses the joint space. Together with the disc, the bilateral facet joints transfer loads and guide and constrain motions in the spine due to their geometry and mechanical function. Although a great deal of research has focused on defining the biomechanics of the spine and the form and function of the disc, the facet joint has only recently become the focus of experimental, computational and clinical studies. This mechanical behavior ensures the normal health and function of the spine during physiologic loading but can also lead to its dysfunction when the tissues of the facet joint are altered either by injury, degeneration or as a result of surgical modification of the spine. The anatomical, biomechanical and physiological characteristics of the facet joints in the cervical and lumbar spines have become the focus of increased attention recently with the advent of surgical procedures of the spine, such as disc repair and replacement, which may impact facet responses. Accordingly, this review summarizes the relevant anatomy and biomechanics of the facet joint and the individual tissues that comprise it. In order to better understand the physiological implications of tissue loading in all conditions, a review of mechanotransduction pathways in the cartilage, ligament and bone is also presented ranging from the tissue-level scale to cellular modifications. With this context, experimental studies are summarized as they relate to the most common modifications that alter the biomechanics and health of the spine-injury and degeneration. In addition, many computational and finite element models have been developed that enable more-detailed and specific investigations of the facet joint and its tissues than are provided by experimental approaches and also that expand their utility for the field of biomechanics. These are also reviewed to provide a more complete summary of the current knowledge of facet joint mechanics. Overall, the goal of this review is to present a comprehensive review of the breadth and depth of knowledge regarding the mechanical and adaptive responses of the facet joint and its tissues across a variety of relevant size scales.

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Year:  2011        PMID: 21823749      PMCID: PMC3705911          DOI: 10.1115/1.4004493

Source DB:  PubMed          Journal:  J Biomech Eng        ISSN: 0148-0731            Impact factor:   2.097


  320 in total

Review 1.  Degenerative disorders of the spine.

Authors:  Massimo Gallucci; Edoardo Puglielli; Alessandra Splendiani; Francesca Pistoia; Giorgio Spacca
Journal:  Eur Radiol       Date:  2004-12-31       Impact factor: 5.315

Review 2.  Signal transduction pathways involved in mechanotransduction in bone cells.

Authors:  Astrid Liedert; Daniela Kaspar; Robert Blakytny; Lutz Claes; Anita Ignatius
Journal:  Biochem Biophys Res Commun       Date:  2006-08-14       Impact factor: 3.575

3.  An experimental method for measuring force on the spinal facet joint: description and application of the method.

Authors:  G R Buttermann; R D Kahmann; J L Lewis; D S Bradford
Journal:  J Biomech Eng       Date:  1991-11       Impact factor: 2.097

4.  Can extra-articular strains be used to measure facet contact forces in the lumbar spine? An in-vitro biomechanical study.

Authors:  Q A Zhu; Y B Park; S G Sjovold; C A Niosi; D C Wilson; P A Cripton; T R Oxland
Journal:  Proc Inst Mech Eng H       Date:  2008-02       Impact factor: 1.617

5.  Incidence and prevalence of surgery at segments adjacent to a previous posterior lumbar arthrodesis.

Authors:  William R Sears; Ioannis G Sergides; Noojan Kazemi; Mari Smith; Gavin J White; Barbara Osburg
Journal:  Spine J       Date:  2011-01       Impact factor: 4.166

6.  Chondrocyte necrosis and apoptosis in impact damaged articular cartilage.

Authors:  C T Chen; N Burton-Wurster; C Borden; K Hueffer; S E Bloom; G Lust
Journal:  J Orthop Res       Date:  2001-07       Impact factor: 3.494

7.  Facet joint kinematics and injury mechanisms during simulated whiplash.

Authors:  Adam M Pearson; Paul C Ivancic; Shigeki Ito; Manohar M Panjabi
Journal:  Spine (Phila Pa 1976)       Date:  2004-02-15       Impact factor: 3.468

8.  An intact facet capsular ligament modulates behavioral sensitivity and spinal glial activation produced by cervical facet joint tension.

Authors:  Beth A Winkelstein; Diana G Santos
Journal:  Spine (Phila Pa 1976)       Date:  2008-04-15       Impact factor: 3.468

9.  Anatomy and function of the ligaments of the lower cervical spine in the dog.

Authors:  P B Vasseur; G Saunders; C Steinback
Journal:  Am J Vet Res       Date:  1981-06       Impact factor: 1.156

10.  A phenomenological approach toward patient-specific computational modeling of articular cartilage including collagen fiber tracking.

Authors:  David M Pierce; Werner Trobin; Siegfried Trattnig; Horst Bischof; Gerhard A Holzapfel
Journal:  J Biomech Eng       Date:  2009-09       Impact factor: 2.097

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  77 in total

1.  Advanced Multi-Axis Spine Testing: Clinical Relevance and Research Recommendations.

Authors:  Timothy P Holsgrove; Nikhil R Nayak; William C Welch; Beth A Winkelstein
Journal:  Int J Spine Surg       Date:  2015-07-17

Review 2.  A comprehensive review of the sub-axial ligaments of the vertebral column: part I anatomy and function.

Authors:  Asma Mian Butt; Clarence Gill; Amin Demerdash; Koichi Watanabe; Marios Loukas; Curtis J Rozzelle; R Shane Tubbs
Journal:  Childs Nerv Syst       Date:  2015-05-01       Impact factor: 1.475

3.  Traumatic dislocation of the S1 polyaxial pedicle screw head: a case report.

Authors:  Pieter N B Du Plessis; Bernard P H Lau; Hwee Weng Dennis Hey
Journal:  J Spine Surg       Date:  2017-03

4.  Collagen Organization in Facet Capsular Ligaments Varies With Spinal Region and With Ligament Deformation.

Authors:  Ehsan Ban; Sijia Zhang; Vahhab Zarei; Victor H Barocas; Beth A Winkelstein; Catalin R Picu
Journal:  J Biomech Eng       Date:  2017-07-01       Impact factor: 2.097

5.  Outcomes of percutaneous endoscopic trans-articular discectomy for huge central or paracentral lumbar disc herniation.

Authors:  Yu Wang; Yuqing Yan; Jin Yang; Lifeng Zhang; Chuan Guo; Zhiyu Peng; Hao Wu; Dongfeng Zhang; Qingquan Kong
Journal:  Int Orthop       Date:  2018-10-29       Impact factor: 3.075

6.  Measurement of lumbar isthmus parameters for novel starting points for cortical bone trajectory screws using computed radiography.

Authors:  Paerhati Rexiti; Tuerhongjiang Abudurexiti; Nueraihemaiti Abuduwali; Shuiquan Wang; Weibin Sheng
Journal:  Am J Transl Res       Date:  2018-08-15       Impact factor: 4.060

7.  Age- and sex-related changes in facet orientation and tropism in lower lumbar spine: an MRI study of 600 patients.

Authors:  Devanand Degulmadi; Bharat R Dave; Ajay Krishnan
Journal:  Eur Spine J       Date:  2019-03-18       Impact factor: 3.134

8.  The role of the facet capsular ligament in providing spinal stability.

Authors:  Emily A Bermel; Victor H Barocas; Arin M Ellingson
Journal:  Comput Methods Biomech Biomed Engin       Date:  2018-10       Impact factor: 1.763

9.  Asymmetric in-plane shear behavior of isolated cadaveric lumbar facet capsular ligaments: Implications for subject specific biomechanical models.

Authors:  Emily A Bermel; Seema Thakral; Amy A Claeson; Arin M Ellingson; Victor H Barocas
Journal:  J Biomech       Date:  2020-04-22       Impact factor: 2.712

10.  Influence of cervical spine sagittal alignment on range of motion after corpectomy: a finite element study.

Authors:  Jobin D John; Gurunathan Saravana Kumar; Narayan Yoganandan; Vedantam Rajshekhar
Journal:  Acta Neurochir (Wien)       Date:  2020-10-23       Impact factor: 2.216

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