Literature DB >> 20938381

Asymptomatic cervical cord compression in lumbar spinal stenosis patients: a whole spine magnetic resonance imaging study.

Sang-Hun Lee1, Ki-Tack Kim, Kyung-Soo Suk, Jung-Hee Lee, Jae-Hung Shin, Dong-Hyuk So, Yoon-Ho Kwack.   

Abstract

STUDY
DESIGN: A retrospective study.
OBJECTIVE: To analyze incidence of asymptomatic cervical cord compression and related factors in lumbar stenosis patients. SUMMARY OF BACKGROUND DATA: Neural compression resulted from degenerative disc is not unusual in the asymptomatic cervical spine. However, its incidence and clinically related factors in lumbar stenosis patients have not been studied.
METHODS: We analyzed lumbar stenosis index (LSI), cervical cord compression index (CCI), and Torg-Pavlov ratio of whole spine magnetic resonance images of 93 lumbar stenosis patients. We compared lumbar stenosis involving a single segment versus multiple segments in the cases with the LSI of double-level or more, patients in 60s versus in 70s, and male versus female for the above variables.
RESULTS: Of total 93 cases, 71 cases did not demonstrate cervical cord compression, but moderate or severe cervical cord compression was observed in 22 cases (23.7%). The multiple segment lumbar stenosis group, the 70s group, and male group had statistically significant higher CCI. The correlation coefficient between the CCI and the LSI indicated a strong positive linear relationship with 0.54 (P = 0).
CONCLUSION: Moderate or severe cervical cord compression was observed in 24% of lumbar stenosis patients. Asymptomatic cervical cord compression is more likely to be developed in lumbar stenosis patients who are aged, male, and involving multiple segments. These factors should be considered for management of lumbar stenosis patients.

Entities:  

Mesh:

Year:  2010        PMID: 20938381     DOI: 10.1097/BRS.0b013e3181f4588a

Source DB:  PubMed          Journal:  Spine (Phila Pa 1976)        ISSN: 0362-2436            Impact factor:   3.468


  16 in total

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3.  A novel MRI classification system for congenital functional lumbar spinal stenosis predicts the risk for tandem cervical spinal stenosis.

Authors:  Carola F van Eck; Nicholas T Spina Iii; Joon Y Lee
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5.  Transcranial electrical stimulation motor-evoked potentials rescue from postoperative neurological deficit due to inadequate neck position for the case of lumbar surgery with asymptomatic cervical stenosis.

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8.  Simultaneous or Staged Decompressions for Patients with Tandem Spinal Stenosis.

Authors:  Wei-Zong Sun; Xu Yan; Ya-Lin Yang; Hong Song; Zi-Wei Xia; Shi-Chang Yang; Fu-Lin Chen; Wen-Hui Li; Zi-Qi Yu; Bin Liu; Yu-Xin Liu; Kai Wang; Liang Zhang
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9.  The Prevalence of Asymptomatic and Symptomatic Spinal Cord Compression on Magnetic Resonance Imaging: A Systematic Review and Meta-analysis.

Authors:  Sam S Smith; Max E Stewart; Benjamin M Davies; Mark R N Kotter
Journal:  Global Spine J       Date:  2020-06-24

10.  Reoperations after fusion surgeries for degenerative spinal diseases depending on cervical and lumbar regions: a national database study.

Authors:  Moon Soo Park; Young-Su Ju; Seong-Hwan Moon; Young-Woo Kim; Jong Ho Jung; Jung Hyun Oh; Chi Heon Kim; Chun Kee Chung
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