Literature DB >> 22118260

Biomechanical study of the spinal cord in thoracic ossification of the posterior longitudinal ligament.

Norihiro Nishida1, Yoshihiko Kato, Yasuaki Imajo, Syunichi Kawano, Toshihiko Taguchi.   

Abstract

BACKGROUND: Ossification of the posterior longitudinal ligament (OPLL) in the thoracic spine produces myelopathy. This is often progressive and is not affected by conservative treatment. Therefore, decompressive surgery is usually chosen.
OBJECTIVE: To conduct a stress analysis of the thoracic OPLL.
METHODS: The three-dimensional finite element spinal cord model was established. We used local ossification angle (LOA) for the degree of compression of spinal cord. LOA was the medial angle at the intersection between a line from the superior posterior margin at the cranial vertebral body of maximum OPLL to the top of OPLL with beak type, and a line from the lower posterior margin at the caudal vertebral body of the maximum OPLL to the top of OPLL with beak type. LOA 20°, LOA 25°, and LOA 30° compression was applied to the spinal cord in a preoperative model, the posterior decompressive model, and a model for the development of kyphosis.
RESULTS: In a preoperative model, at more than LOA 20° compression, high stress distributions in the spinal cord were observed. In a posterior decompressive model, the stresses were lower than in the preoperative model. In the model for development of kyphosis, high-stress distributions were observed in the spinal cord at more than LOA 20° compression.
CONCLUSIONS: Posterior decompression was an effective operative method. However, when the preoperative LOA is more than 20°, it is very likely that symptoms will worsen. If operation is performed at greater than LOA 20°, then correction of kyphosis by fixation of instruments or by forward decompression should be considered.

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Year:  2011        PMID: 22118260      PMCID: PMC3184490          DOI: 10.1179/2045772311Y.0000000029

Source DB:  PubMed          Journal:  J Spinal Cord Med        ISSN: 1079-0268            Impact factor:   1.985


  15 in total

1.  Effectiveness of posterior decompression for patients with ossification of the posterior longitudinal ligament in the thoracic spine: usefulness of the ossification-kyphosis angle on MRI.

Authors:  Yasuaki Tokuhashi; Hiromi Matsuzaki; Hiroshi Oda; Hiroshi Uei
Journal:  Spine (Phila Pa 1976)       Date:  2006-01-01       Impact factor: 3.468

2.  The importance of fluid-structure interaction in spinal trauma models.

Authors:  Cecilia Persson; Jon Summers; Richard M Hall
Journal:  J Neurotrauma       Date:  2010-12-27       Impact factor: 5.269

3.  Biomechanical study of cervical flexion myelopathy using a three-dimensional finite element method.

Authors:  Yoshihiko Kato; Hideo Kataoka; Kazuhiko Ichihara; Yasuaki Imajo; Takanori Kojima; Shunichi Kawano; Daisuke Hamanaka; Kentaro Yaji; Toshihiko Taguchi
Journal:  J Neurosurg Spine       Date:  2008-05

4.  Surgical outcome of ossification of the posterior longitudinal ligament (OPLL) of the thoracic spine: implication of the type of ossification and surgical options.

Authors:  Yukihiro Matsuyama; Hisatake Yoshihara; Taichi Tsuji; Yoshihito Sakai; Yasutsugu Yukawa; Hiroshi Nakamura; Keigo Ito; Naoki Ishiguro
Journal:  J Spinal Disord Tech       Date:  2005-12

5.  Biomechanical study of the effect of degree of static compression of the spinal cord in ossification of the posterior longitudinal ligament.

Authors:  Yoshihiko Kato; Tsukasa Kanchiku; Yasuaki Imajo; Kotaro Kimura; Kazuhiko Ichihara; Syunichi Kawano; Daisuke Hamanaka; Kentaro Yaji; Toshihiko Taguchi
Journal:  J Neurosurg Spine       Date:  2010-03

6.  Flexion model simulating spinal cord injury without radiographic abnormality in patients with ossification of the longitudinal ligament: the influence of flexion speed on the cervical spine.

Authors:  Yoshihiko Kato; Tsukasa Kanchiku; Yasuaki Imajo; Kazuhiko Ichinara; Syunichi Kawano; Daiskue Hamanama; Kentaro Yaji; Toshihiko Taguchi
Journal:  J Spinal Cord Med       Date:  2009       Impact factor: 1.985

7.  Staged spinal cord decompression through posterior approach for thoracic myelopathy caused by ossification of posterior longitudinal ligament.

Authors:  N Tsuzuki; S Hirabayashi; R Abe; K Saiki
Journal:  Spine (Phila Pa 1976)       Date:  2001-07-15       Impact factor: 3.468

8.  Transient paraparesis after laminectomy for thoracic myelopathy due to ossification of the posterior longitudinal ligament: a case report.

Authors:  Masashi Yamazaki; Akihiko Okawa; Masao Koda; Sumio Goto; Shohei Minami; Hideshige Moriya
Journal:  Spine (Phila Pa 1976)       Date:  2005-06-15       Impact factor: 3.468

9.  Acute central cord syndrome: injury mechanisms and stress features.

Authors:  Xin-Feng Li; Li-Yang Dai
Journal:  Spine (Phila Pa 1976)       Date:  2010-09-01       Impact factor: 3.468

10.  Three-dimensional finite element model of the cervical spinal cord: preliminary results of injury mechanism analysis.

Authors:  Xin-Feng Li; Li-Yang Dai
Journal:  Spine (Phila Pa 1976)       Date:  2009-05-15       Impact factor: 3.468

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  8 in total

1.  Cervical ossification of the posterior longitudinal ligament: factors affecting the effect of posterior decompression.

Authors:  Norihiro Nishida; Tsukasa Kanchiku; Yoshihiko Kato; Yasuaki Imajo; Hidenori Suzuki; Yuichiro Yoshida; Junji Ohgi; Xian Chen; Toshihiko Taguchi
Journal:  J Spinal Cord Med       Date:  2016-01-20       Impact factor: 1.985

2.  Stress analysis of the cervical spinal cord: Impact of the morphology of spinal cord segments on stress.

Authors:  Norihiro Nishida; Tsukasa Kanchiku; Yasuaki Imajo; Hidenori Suzuki; Yuichiro Yoshida; Yoshihiko Kato; Daisuke Nakashima; Toshihiko Taguchi
Journal:  J Spinal Cord Med       Date:  2016-02-25       Impact factor: 1.985

3.  Cervical ossification of the posterior longitudinal ligament: Biomechanical analysis of the influence of static and dynamic factors.

Authors:  Norihiro Nishida; Tsukasa Kanchiku; Yoshihiko Kato; Yasuaki Imajo; Yuichiro Yoshida; Syunichi Kawano; Toshihiko Taguchi
Journal:  J Spinal Cord Med       Date:  2014-06-25       Impact factor: 1.985

4.  Biomechanical analysis of cervical spondylotic myelopathy: the influence of dynamic factors and morphometry of the spinal cord.

Authors:  Norihiro Nishida; Yoshihiko Kato; Yasuaki Imajo; Syunichi Kawano; Toshihiko Taguchi
Journal:  J Spinal Cord Med       Date:  2012-07       Impact factor: 1.985

5.  Biomechanical analysis of cervical myelopathy due to ossification of the posterior longitudinal ligament: Effects of posterior decompression and kyphosis following decompression.

Authors:  Norihiro Nishida; Tsukasa Kanchiku; Yoshihiko Kato; Yasuaki Imajo; Yuichiro Yoshida; Syunichi Kawano; Toshihiko Taguchi
Journal:  Exp Ther Med       Date:  2014-02-18       Impact factor: 2.447

6.  Mechanical properties of nerve roots and rami radiculares isolated from fresh pig spinal cords.

Authors:  Norihiro Nishida; Tsukasa Kanchiku; Junji Ohgi; Kazuhiko Ichihara; Xian Chen; Toshihiko Taguchi
Journal:  Neural Regen Res       Date:  2015-11       Impact factor: 5.135

7.  Analysis of stress application at the thoracolumbar junction and influence of vertebral body collapse on the spinal cord and cauda equina.

Authors:  Norihiro Nishida; Tsukasa Kanchiku; Daigo Nakandakari; Shota Tahara; Junji Ohgi; Kazuhiko Ichihara; Ituo Sakuramoto; Xian Chen; Toshihiko Taguchi
Journal:  Exp Ther Med       Date:  2017-11-27       Impact factor: 2.447

8.  Compression analysis of the gray and white matter of the spinal cord.

Authors:  Norihiro Nishida; Fei Jiang; Junji Ohgi; Akihiro Tanaka; Yasuaki Imajo; Hidenori Suzuki; Masahiro Funaba; Takashi Sakai; Itsuo Sakuramoto; Xian Chen
Journal:  Neural Regen Res       Date:  2020-07       Impact factor: 5.135

  8 in total

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