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A finite element study on fracture patterns in human scaphoid wrist bone due to free fall.

机译:自由落体导致的舟骨腕骨骨折模式的有限元研究。

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摘要

Scaphoid is one of the 8 carpal bones found adjacent to the thumb supported proximally by Radius bone. During the free fall, on outstretched hand, the impact load gets transferred to the scaphoid at its free anterior end. Unique arrangement of other carpal bones in the palm is also one of the reasons for the load to get transferred to scaphoid. About half of the total load acting upon carpal bone gets transferred to scaphoid at its distal pole. There are about 10 to 12 clinically observed fracture pattern in the scaphoid due to free fall.;The aim of the study is to determine the orientation of the load, magnitude of the load and the corresponding fracture pattern. This study includes both static and dynamic finite element models validated by experiments. The scaphoid model has been prepared from CT scans of a 27 year old person. The 2D slices of the CT scans have been converted to 3D model by using MIMICS software. There are four cases of loading studied which are considered to occur clinically more frequently. In case (i) the load is applied at the posterior end at distal pole whereas in case (ii), (iii) and (iv), the load is applied at anterior end at different directions. The model is given a fixed boundary condition at the region which is supported by Radius bone during the impact. Same loading and boundary conditions have been used in both static and dynamic explicit finite element analysis. The site of fracture initiation and path of fracture propagation have been identified by using max principal stress / gradient and max principal strain / gradient criterion respectively in static and dynamic explicit finite element analysis.;Static and dynamic impact experiments were performed on the polyurethane foam specimens to validate the finite element results. Experimental results such as load at fracture, site of fracture initiation and path of fracture propagation have been compared with the results of finite element analysis. Four different types of fracture patterns observed in clinical studies have been identified in this study.
机译:舟骨是由半径骨向近端支撑的拇指附近发现的8个腕骨之一。在自由下落期间,伸出的手将冲击载荷转移到舟骨的自由前端。其他腕骨在手掌中的独特排列也是负载转移到舟骨的原因之一。作用在腕骨上的总载荷的大约一半转移到其远端的舟骨。在舟状骨中,由于自由落体引起的临床上观察到大约10到12个断裂模式。研究的目的是确定载荷的方向,载荷的大小以及相应的断裂模式。该研究包括通过实验验证的静态和动态有限元模型。舟骨模型是根据27岁的人的CT扫描准备的。使用MIMICS软件已将CT扫描的2D切片转换为3D模型。研究了4种负载情况,这些情况被认为在临床上更常见。在情况(i)中,载荷施加在远端的后端,而在情况(ii),(iii)和(iv)中,载荷施加在前端的不同方向。在碰撞过程中,该模型在半径半径所支撑的区域处具有固定的边界条件。在静态和动态显式有限元分析中都使用了相同的载荷和边界条件。在静态和动态显式有限元分析中,分别使用最大主应力/梯度和最大主应变/梯度判据,确定了裂缝的起始部位和裂缝的传播路径。对聚氨酯泡沫试样进行了静态和动态冲击试验验证有限元结果。实验结果与有限元分析结果进行了比较,如断裂时的载荷,断裂的起始位置和断裂的传播路径。在这项研究中已经确定了在临床研究中观察到的四种不同类型的骨折类型。

著录项

  • 作者

    Madni, Munsif Ahmed.;

  • 作者单位

    Michigan Technological University.;

  • 授予单位 Michigan Technological University.;
  • 学科 Applied Mechanics.;Biophysics Biomechanics.;Engineering Mechanical.
  • 学位 M.S.
  • 年度 2011
  • 页码 106 p.
  • 总页数 106
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:44:08

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