Intertrochanteric fracture: Association between the coronal position of the lag screw and stress distribution

Summary: Background/Purpose: The best position of the lag screw in the femoral head for the fixation of intertrochanteric fracture is controversial. Traditional view suggests that it should be positioned in the central axis of the femoral neck with a tip–apex distance (TAD) of <25 mm, but the me...

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Main Authors: Changxiang Liang, Ruiping Peng, Nan Jiang, Guoping Xie, Lei Wang, Bin Yu
Format: Article
Language:English
Published: Elsevier 2018-05-01
Series:Asian Journal of Surgery
Online Access:http://www.sciencedirect.com/science/article/pii/S1015958416303797
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spelling doaj-c669290f4671404d865b5eb26003682d2020-11-24T22:39:34ZengElsevierAsian Journal of Surgery1015-95842018-05-01413241249Intertrochanteric fracture: Association between the coronal position of the lag screw and stress distributionChangxiang Liang0Ruiping Peng1Nan Jiang2Guoping Xie3Lei Wang4Bin Yu5Department of Orthopaedics and Traumatology, Nanfang Hospital of Southern Medical University, Guangzhou 510515, China; Department of Orthopaedics, Guangdong General Hospital and Guangdong Academy of Medical Sciences, Guangzhou 510080, ChinaDepartment of Ophtalmology, Third Affiliated Hospital of Sun Yat-sen University, Guangzhou 510630, ChinaDepartment of Orthopaedics and Traumatology, Nanfang Hospital of Southern Medical University, Guangzhou 510515, ChinaDepartment of Orthopaedics and Traumatology, Nanfang Hospital of Southern Medical University, Guangzhou 510515, ChinaDepartment of Orthopaedics and Traumatology, Nanfang Hospital of Southern Medical University, Guangzhou 510515, ChinaDepartment of Orthopaedics and Traumatology, Nanfang Hospital of Southern Medical University, Guangzhou 510515, China; Corresponding author. Department of Orthopaedics and Traumatology, Nanfang Hospital of Southern Medical University, No. 1838, Guangzhou Avenue North, Baiyun District, Guangzhou 510515, China.Summary: Background/Purpose: The best position of the lag screw in the femoral head for the fixation of intertrochanteric fracture is controversial. Traditional view suggests that it should be positioned in the central axis of the femoral neck with a tip–apex distance (TAD) of <25 mm, but the mechanical properties have not been reported yet. Herein, we aimed to investigate internal fixation with the lag screw placed in different positions on the femoral coronal plane by performing a finite element analysis and to identify a reasonable lag screw position after the internal stress distributions at the femoral head. Methods: A three-dimensional finite element model of a healthy male's femur was set up, on which the intertrochanteric fracture model with proximal femoral nail antirotation (PFN-A) was based. Nine modalities of the model were established in accordance with different lag screw positions in the femoral head. Three-dimensional finite element calculations were conducted, and the distribution trends of characteristic high-stress concentration points were observed. Results: The area of high-stress concentration was distributed from the top of the femoral head to the medial cortex of the trochanteric region. Four characteristic high-stress concentration points were observed, and the following trends indicated that the lower the position of the lag screw, the greater its length. Conclusions: A longer and lower lag screw may make the fixation sustain greater stress, reduce bone tissue stress correspondingly in intertrochanteric fractures fixated with PFN-A, and sustain greater stress and more cyclic load at the same bone density. Keywords: cut-out, finite element analysis, intertrochanteric fracture, lag screw position, PFN-Ahttp://www.sciencedirect.com/science/article/pii/S1015958416303797
collection DOAJ
language English
format Article
sources DOAJ
author Changxiang Liang
Ruiping Peng
Nan Jiang
Guoping Xie
Lei Wang
Bin Yu
spellingShingle Changxiang Liang
Ruiping Peng
Nan Jiang
Guoping Xie
Lei Wang
Bin Yu
Intertrochanteric fracture: Association between the coronal position of the lag screw and stress distribution
Asian Journal of Surgery
author_facet Changxiang Liang
Ruiping Peng
Nan Jiang
Guoping Xie
Lei Wang
Bin Yu
author_sort Changxiang Liang
title Intertrochanteric fracture: Association between the coronal position of the lag screw and stress distribution
title_short Intertrochanteric fracture: Association between the coronal position of the lag screw and stress distribution
title_full Intertrochanteric fracture: Association between the coronal position of the lag screw and stress distribution
title_fullStr Intertrochanteric fracture: Association between the coronal position of the lag screw and stress distribution
title_full_unstemmed Intertrochanteric fracture: Association between the coronal position of the lag screw and stress distribution
title_sort intertrochanteric fracture: association between the coronal position of the lag screw and stress distribution
publisher Elsevier
series Asian Journal of Surgery
issn 1015-9584
publishDate 2018-05-01
description Summary: Background/Purpose: The best position of the lag screw in the femoral head for the fixation of intertrochanteric fracture is controversial. Traditional view suggests that it should be positioned in the central axis of the femoral neck with a tip–apex distance (TAD) of <25 mm, but the mechanical properties have not been reported yet. Herein, we aimed to investigate internal fixation with the lag screw placed in different positions on the femoral coronal plane by performing a finite element analysis and to identify a reasonable lag screw position after the internal stress distributions at the femoral head. Methods: A three-dimensional finite element model of a healthy male's femur was set up, on which the intertrochanteric fracture model with proximal femoral nail antirotation (PFN-A) was based. Nine modalities of the model were established in accordance with different lag screw positions in the femoral head. Three-dimensional finite element calculations were conducted, and the distribution trends of characteristic high-stress concentration points were observed. Results: The area of high-stress concentration was distributed from the top of the femoral head to the medial cortex of the trochanteric region. Four characteristic high-stress concentration points were observed, and the following trends indicated that the lower the position of the lag screw, the greater its length. Conclusions: A longer and lower lag screw may make the fixation sustain greater stress, reduce bone tissue stress correspondingly in intertrochanteric fractures fixated with PFN-A, and sustain greater stress and more cyclic load at the same bone density. Keywords: cut-out, finite element analysis, intertrochanteric fracture, lag screw position, PFN-A
url http://www.sciencedirect.com/science/article/pii/S1015958416303797
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