Literature DB >> 25487066

Volar morphology of the distal radius in axial planes: a quantitative analysis.

Keiichiro Oura1, Kunihiro Oka, Yohei Kawanishi, Kazuomi Sugamoto, Hideki Yoshikawa, Tsuyoshi Murase.   

Abstract

To investigate the cause of rupture of the flexor pollicis longus (FPL) after volar plate fixation of distal radius fractures, previous studies have examined the shape of the distal radius in the sagittal plane or in the lateral view. However, there are no reports on the anatomical shape of the volar surface concavity of the distal radius in the axial plane. We hypothesized that this concavity might contribute to the mismatch between the plate and the surface of the radius. To test this hypothesis, we constructed three-dimensional models of the radius and FPL based on computed tomography scans of 70 normal forearms. We analyzed axial cross-sectional views with 2 mm intervals. In all cases, the volar surface of the distal radius was concave in the axial plane. The concavity depth was maximum at 6 mm proximal to the palmar edge of the lunate fossa and progressively decreased toward the proximal radius. FPL was closest to the radius at 2 mm proximal to the palmar edge of the lunate fossa. The volar surface of the distal radius was externally rotated from proximal to distal. These results may help to develop new implants which fit better to the radius and decrease tendon irritation.
© 2014 Orthopaedic Research Society. Published by Wiley Periodicals, Inc.

Entities:  

Keywords:  morphology of the distal radius; rupture of the flexor pollicis longus; three-dimensional evaluation; volar locking plate

Mesh:

Year:  2014        PMID: 25487066     DOI: 10.1002/jor.22780

Source DB:  PubMed          Journal:  J Orthop Res        ISSN: 0736-0266            Impact factor:   3.494


  8 in total

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2.  Interpretations of the Term "Watershed Line" Used as Reference for Volar Plating.

Authors:  Minke Bergsma; Job N Doornberg; Laurent Hendrickx; Batur Hayat; Gino M M J Kerkhoffs; Bhavin Jhadav; Ruurd L Jaarsma; Gregory I Bain
Journal:  J Wrist Surg       Date:  2019-08-13

3.  Volar Distal Radius Anatomy Applied to the Treatment of Distal Radius Fracture.

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Journal:  J Wrist Surg       Date:  2017-06-27

4.  Analysis of the three-dimensional anatomical variance of the distal radius using 3D shape models.

Authors:  Sebastian F Baumbach; Jakob Binder; Alexander Synek; Fabian G Mück; Yan Chevalier; Ekkehard Euler; Georg Langs; Lukas Fischer
Journal:  BMC Med Imaging       Date:  2017-03-09       Impact factor: 1.930

5.  Three-dimensional evaluations of preoperative planning reproducibility for the osteosynthesis of distal radius fractures.

Authors:  Yuichi Yoshii; Takeshi Ogawa; Atsuo Shigi; Kunihiro Oka; Tsuyoshi Murase; Tomoo Ishii
Journal:  J Orthop Surg Res       Date:  2021-02-12       Impact factor: 2.359

6.  Computer-Aided Assessment of Displacement and Reduction of Distal Radius Fractures.

Authors:  Yuichi Yoshii; Yasukazu Totoki; Atsuo Shigi; Kunihiro Oka; Takeshi Ogawa; Tsuyoshi Murase; Tomoo Ishii
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7.  Arthroscopic Debridement of Elbow Osteoarthritis Using CT-Based Computer-Aided Navigation Systems Is Accurate.

Authors:  Ryoya Shiode; Kunihiro Oka; Atsuo Shigi; Satoshi Miyamura; Hiroyuki Tanaka; Tatsuo Mae; Tsuyoshi Murase
Journal:  Arthrosc Sports Med Rehabil       Date:  2021-08-28

8.  Correlation between carpal rotational alignment and postoperative wrist range of motion following total wrist arthroplasty.

Authors:  Mitsutoshi Ota; Yuichiro Matsui; Daisuke Kawamura; Atsushi Urita; Takeshi Endo; Norimasa Iwasaki
Journal:  BMC Musculoskelet Disord       Date:  2022-08-30       Impact factor: 2.562

  8 in total

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