Literature DB >> 3655230

Carpal tunnel volume determination by magnetic resonance imaging three-dimensional reconstruction.

J A Richman1, R H Gelberman, B L Rydevik, V M Gylys-Morin, P C Hajek, D J Sartoris.   

Abstract

Three-dimensional computer reconstruction of magnetic resonance images (MRI) of ten cadaveric specimens was used to determine carpal tunnel volume and carpal arch width. Magnetic resonance images-acquired data were compared with direct measurement of cadaveric carpal canal volume by means of a silicone-injection technique. Mean MRI three-dimensional reconstruction volume was 5.84 ml +/- 1.24 ml. Mean silicone-mold volume was 4.73 +/- 1.01 ml. A correction factor of 0.8161 was used to accurately calculate carpal tunnel volume from MRI-acquired data. There was no significant difference between calculated carpal tunnel volumes and silicone-mold volumes (p = 0.623), and there was a linear relationship between MRI-acquired volumes and silicone-mold volumes (correlation coefficient r = 0.97). Differences in MRI-volume determinations between observers were not significant (0.25 greater than or equal to p greater than 0.1). MRI three-dimensional reconstruction, a valid and reproducible technique for measuring carpal tunnel volume and dimensions, has considerable research potential for the evaluation of the relationship between the carpal canal and its contents before and after carpal tunnel release.

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Year:  1987        PMID: 3655230     DOI: 10.1016/s0363-5023(87)80054-0

Source DB:  PubMed          Journal:  J Hand Surg Am        ISSN: 0363-5023            Impact factor:   2.230


  11 in total

1.  Carpal tunnel and median nerve volume changes after tunnel release in patients with the carpal tunnel syndrome: a magnetic resonance imaging (MRI) study.

Authors:  T Crnković; V Trkulja; R Bilić; D Gašpar; R Kolundžić
Journal:  Int Orthop       Date:  2015-11-23       Impact factor: 3.075

2.  Morphological analysis of the carpal tunnel.

Authors:  Corey A Pacek; Jie Tang; Robert J Goitz; Robert A Kaufmann; Zong-Ming Li
Journal:  Hand (N Y)       Date:  2009-09-04

3.  Diagnosis and staging of carpal tunnel syndrome: comparison of magnetic resonance imaging and intra-operative findings.

Authors:  A Kleindienst; B Hamm; G Hildebrandt; N Klug
Journal:  Acta Neurochir (Wien)       Date:  1996       Impact factor: 2.216

4.  Carpal tunnel release: do we understand the biomechanical consequences?

Authors:  Nathan T Morrell; Andrew Harris; Christian Skjong; Edward Akelman
Journal:  J Wrist Surg       Date:  2014-11

5.  Area and shape changes of the carpal tunnel in response to tunnel pressure.

Authors:  Zong-Ming Li; Tamara L Masters; Tracy A Mondello
Journal:  J Orthop Res       Date:  2011-05-23       Impact factor: 3.494

6.  Influence of Injection Volume on Rate of Subsequent Intervention in Carpal Tunnel Syndrome Over 1-Year Follow-Up.

Authors:  Stefanie Evers; Andrew J Bryan; Thomas L Sanders; Tina Gunderson; Russell Gelfman; Peter C Amadio
Journal:  J Hand Surg Am       Date:  2018-04-14       Impact factor: 2.230

7.  Quantitative MRI of the wrist and nerve conduction studies in patients with idiopathic carpal tunnel syndrome.

Authors:  S Uchiyama; T Itsubo; T Yasutomi; H Nakagawa; M Kamimura; H Kato
Journal:  J Neurol Neurosurg Psychiatry       Date:  2005-08       Impact factor: 10.154

8.  Narrowing carpal arch width to increase cross-sectional area of carpal tunnel--a cadaveric study.

Authors:  Zong-Ming Li; Joseph N Gabra; Tamara L Marquardt; Dong Hee Kim
Journal:  Clin Biomech (Bristol, Avon)       Date:  2013-04-09       Impact factor: 2.063

9.  Carpal Tunnel Cross-Sectional Area Affected by Soft Tissues Abutting the Carpal Bones.

Authors:  Joseph N Gabra; Zong-Ming Li
Journal:  J Wrist Surg       Date:  2013-02

10.  Ultrasonographic evaluation of age-related changes in bowing of the flexor retinaculum.

Authors:  T Altinok; H M Karakas
Journal:  Surg Radiol Anat       Date:  2004-12       Impact factor: 1.246

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