Analysis of the Concentric Distraction and Distraction Loss of the Bridged Elbow by a Dynamic Fixator
The mechanisms of concentric distraction and distraction loss within the elbow-fixator-pin construct remains unclear. Furthermore, the literature reports are inconsistent regarding the correct distraction distance between the articulating surfaces of a bridged elbow. This study investigated the mech...
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| Published in | Journal of mechanics Vol. 26; no. 1; pp. 105 - 112 |
|---|---|
| Main Authors | , , , , , |
| Format | Journal Article |
| Language | English |
| Published |
Cambridge, UK
Cambridge University Press
01.03.2010
Oxford University Press |
| Subjects | |
| Online Access | Get full text |
| ISSN | 1727-7191 1811-8216 1811-8216 |
| DOI | 10.1017/S1727719100003774 |
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| Abstract | The mechanisms of concentric distraction and distraction loss within the elbow-fixator-pin construct remains unclear. Furthermore, the literature reports are inconsistent regarding the correct distraction distance between the articulating surfaces of a bridged elbow. This study investigated the mechanism of the distraction loss in terms of the relevant fixator design and elbow angle. Four elbow joints flexed at 90°, 120°, 150°, and 180° were developed in this study. The contribution of each humeral and ulnar distractor to the concentric distraction at the elbow center was evaluated by the finite-element method. The distraction loss within the elbow-fixator-pin construct was studied along the specific load-transferring paths on both elbow sides. Among four elbow models, both concentric and eccentric distractions simultaneously occur at the elbow center. The distraction loss always exists in the joint distraction of the bridged elbow. Comparatively, the 120° elbow model showed the more effectively concentric distraction. For the 180° elbow model, the distraction loss was the highest. This distraction loss was mainly attributed to the lateral deflection of the fixing pins and the vectorial transformation of the distracted length of the distractors. The lateral deflection of the fixing pins is a function of the stiffness of both pins and periarticular tissues. The spatial relationship of the elbow anatomy, elbow angle, and fixator frame plays a significant role in the vectorial transformation of the effective distraction between the elbow articulating surfaces. |
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| AbstractList | Abstract The mechanisms of concentric distraction and distraction loss within the elbow-fixator-pin construct remains unclear. Furthermore, the literature reports are inconsistent regarding the correct distraction distance between the articulating surfaces of a bridged elbow. This study investigated the mechanism of the distraction loss in terms of the relevant fixator design and elbow angle. Four elbow joints flexed at 90°, 120°, 150°, and 180° were developed in this study. The contribution of each humeral and ulnar distractor to the concentric distraction at the elbow center was evaluated by the finite-element method. The distraction loss within the elbow-fixator-pin construct was studied along the specific load-transferring paths on both elbow sides. Among four elbow models, both concentric and eccentric distractions simultaneously occur at the elbow center. The distraction loss always exists in the joint distraction of the bridged elbow. Comparatively, the 120° elbow model showed the more effectively concentric distraction. For the 180° elbow model, the distraction loss was the highest. This distraction loss was mainly attributed to the lateral deflection of the fixing pins and the vectorial transformation of the distracted length of the distractors. The lateral deflection of the fixing pins is a function of the stiffness of both pins and periarticular tissues. The spatial relationship of the elbow anatomy, elbow angle, and fixator frame plays a significant role in the vectorial transformation of the effective distraction between the elbow articulating surfaces. [PUBLICATION ABSTRACT] The mechanisms of concentric distraction and distraction loss within the elbow-fixator-pin construct remains unclear. Furthermore, the literature reports are inconsistent regarding the correct distraction distance between the articulating surfaces of a bridged elbow. This study investigated the mechanism of the distraction loss in terms of the relevant fixator design and elbow angle. Four elbow joints flexed at 90°, 120°, 150°, and 180° were developed in this study. The contribution of each humeral and ulnar distractor to the concentric distraction at the elbow center was evaluated by the finite-element method. The distraction loss within the elbow-fixator-pin construct was studied along the specific load-transferring paths on both elbow sides. Among four elbow models, both concentric and eccentric distractions simultaneously occur at the elbow center. The distraction loss always exists in the joint distraction of the bridged elbow. Comparatively, the 120° elbow model showed the more effectively concentric distraction. For the 180° elbow model, the distraction loss was the highest. This distraction loss was mainly attributed to the lateral deflection of the fixing pins and the vectorial transformation of the distracted length of the distractors. The lateral deflection of the fixing pins is a function of the stiffness of both pins and periarticular tissues. The spatial relationship of the elbow anatomy, elbow angle, and fixator frame plays a significant role in the vectorial transformation of the effective distraction between the elbow articulating surfaces. The mechanisms of concentric distraction and distraction loss within the elbow~fixator~pin construct remains unclear. Furthermore, the literature reports are inconsistent regarding the correct distraction distance between the articulating surfaces of a bridged elbow. This study investigated the mechanism of the distraction loss in terms of the relevant fixator design and elbow angle. Four elbow joints flexed at 90', 120', 150', and 180' were developed in this study. The contribution of each humeral. and ulnar dis-tractor to the concentric distraction at the elbow center was evaluated by the finite-elemen; method. The distraction loss within the elbow-fixator-pin construct was studied along the specific load-transferring paths on both elbow sides. Among four elbow models, both concentric and eccentric distractions simultaneously occur at the elbow center. The distraction loss always exists in the joint distraction of the bridged elbow. Comparatively, the 120' elbow model showed the more effectively concentric distraction. For the 180' elbow model, the distraction loss was the highest. This distraction loss was mainly attributed to the lateral deflection of the fixing pins and the vectorial transformation of the distracted length of the distractors. The lateral deflection of the fixing pins is a function of the stiffness of both pins and periarticular tissues. The spatial relationship of the elbow anatomy, elbow angle, and fixator frame plays a significant role in the vectorial transformation of the effective distraction between the elbow articulating surfaces. |
| Author | Lu, T.-W. Hou, S.-M. Lee, W.-S. Tseng, C.-S. Lin, S.-C. Shih, K.-S. |
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| Copyright | Copyright © The Society of Theoretical and Applied Mechanics, R.O.C. 2010 The Society of Theoretical and Applied Mechanics, R.O.C. © The Society of Theoretical and Applied Mechanics, R.O.C. 2010 2010 The Society of Theoretical and Applied Mechanics, R.O.C. 2010. |
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| Keywords | Finite element analysis Dynamic fixator Joint distraction Arthrodiatasis |
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| References | Morrey (S1727719100003774_ref004) 1993; 293 S1727719100003774_ref009 S1727719100003774_ref017 S1727719100003774_ref006 S1727719100003774_ref005 S1727719100003774_ref016 S1727719100003774_ref008 S1727719100003774_ref018 S1727719100003774_ref007 S1727719100003774_ref013 S1727719100003774_ref002 Regan (S1727719100003774_ref015) 1991; 271 S1727719100003774_ref012 S1727719100003774_ref014 S1727719100003774_ref011 S1727719100003774_ref010 Cheng (S1727719100003774_ref001) 2000 Morrey (S1727719100003774_ref003) 2005; 431 |
| References_xml | – volume: 293 start-page: 46 year: 1993 ident: S1727719100003774_ref004 article-title: Distraction Arthroplasty: Clinical Applications publication-title: Clinical Orthopaedics and Related Research doi: 10.1097/00003086-199308000-00007 – volume: 271 start-page: 170 year: 1991 ident: S1727719100003774_ref015 article-title: Biomechanical Study of Ligaments Around the Elbow Joint publication-title: Clinical Orthopaedics and Related Research doi: 10.1097/00003086-199110000-00023 – ident: S1727719100003774_ref013 doi: 10.1016/S0030-5898(05)70068-7 – ident: S1727719100003774_ref014 doi: 10.1054/jhsb.2000.0425 – start-page: 233 year: 2000 ident: S1727719100003774_ref001 article-title: Treatment of the Mobile, Painful Arthritic Elbow by Distraction Interposition Arthroplasty publication-title: Journal of Bone and Joint Surgery doi: 10.1302/0301-620X.82B2 .9507 – ident: S1727719100003774_ref011 doi: 10.2106/00004623-200209000-00017 – ident: S1727719100003774_ref018 – ident: S1727719100003774_ref006 doi: 10.1016/S0020-1383(01)00113-9 – ident: S1727719100003774_ref007 doi: 10.1097/01.bth.0000137215.29223.9f – volume: 431 start-page: 26 year: 2005 ident: S1727719100003774_ref003 article-title: The Posttraumatic Stiff Elbow publication-title: Clinical Orthopaedics and Related Research – ident: S1727719100003774_ref008 doi: 10.1016/j.injury.2003.09.002 – ident: S1727719100003774_ref017 doi: 10.1017/S172771910000160X – ident: S1727719100003774_ref010 doi: 10.1016/S0020-1383(98)00190-9 – ident: S1727719100003774_ref009 doi: 10.2106/JBJS.D.02090 – ident: S1727719100003774_ref012 doi: 10.1097/00005131-200001000-00009 – ident: S1727719100003774_ref005 doi: 10.1097/00003086-199803000-00033 – ident: S1727719100003774_ref002 doi: 10.1016/S0030-5898(05)70133-4 – ident: S1727719100003774_ref016 doi: 10.1016/j.jse.2004.09.032 |
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| Snippet | The mechanisms of concentric distraction and distraction loss within the elbow-fixator-pin construct remains unclear. Furthermore, the literature reports are... Abstract The mechanisms of concentric distraction and distraction loss within the elbow-fixator-pin construct remains unclear. Furthermore, the literature... The mechanisms of concentric distraction and distraction loss within the elbow~fixator~pin construct remains unclear. Furthermore, the literature reports are... |
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| SubjectTerms | Deflection Elbow Elbow (anatomy) Finite element method Fixing |
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| Title | Analysis of the Concentric Distraction and Distraction Loss of the Bridged Elbow by a Dynamic Fixator |
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