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Development of a Three-Dimensional Anthropometric Model for Simulating Hand Work

机译:模拟手工的三维人体测量模型的开发

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This dissertation aims to increasing the understanding on the variables needed to realistically model a human hand by 1) developing a skeleton-driven 3-D parametric model of the hand, and 2) providing new data for predicting hand strength capabilities. Hand models can be used to understand the effect of hand posture and shape to force exertions while interacting with surfaces. 3D models representing skin and bone surfaces and their axes for use in simulation models were developed from Hand-CT Scans. These models were used to adapt four methods for determining phalange Centers of Rotation (CoR). Sphere- and Ellipsoid-fitted CoRs were considered fixed, with pin-joint rotational axes and simple links. 3D-Reuleaux and ICP-based CoRs were considered instantaneous, with variable link lengths affected by the rotation and gliding of the adjacent anatomical segments. There was a significant difference between fixed and instantaneous CoRs, leading to a more accurate and robust kinematic model. These CoRs were leveraged to develop landmark-free statistical models from 43 clinical hand-CT scans. The 3D-surfaces of flat hand posture, previously developed, were used to standardize the data. Kinematics developed from the ICP method were used to rotate finger segments of fitted hands to 1) obtain hand skin measurements in a common posture, 2) predict whole hand skeleton shape/size, and 3) evaluate final shape predictions in their original postures. Principal component analysis and regression (PCAR) were used to develop statistical models for shape/size prediction of individual finger bone geometries, as well as a whole hand skeleton model with hand skin surface reference points for scaling based on anthropometric data (hand length, hand breadth, hand thickness and sex). The predicted skeleton with the skin reference points can be used as a baseline for any hand surface model to establish kinematics based on internal bone segments. Additionally, to complement data in literature, a study of 12 participants was performed to investigate the effect of hand posture and surface orientation on hand force while pressing a flat surface. Joint moment and finger force distribution data from this study can be incorporated in computerized 3D-models of the hand to compare strength capabilities between postures.
机译:本文旨在通过以下方法来增加对逼真的建模人类手所需的变量的了解:1)开发手的骨架驱动的3-D参数模型,以及2)提供用于预测手强度的新数据。可以使用手模型来了解手的姿势和形状在与曲面交互时施加力的效果。由Hand-CT Scans开发了用于模拟模型的代表皮肤和骨骼表面及其轴的3D模型。这些模型用于调整确定指骨旋转中心(CoR)的四种方法。球形和椭圆形的CoR被认为是固定的,具有销接头旋转轴和简单的链接。 3D-Reuleaux和基于ICP的CoR被认为是瞬时的,可变的链节长度受相邻解剖段的旋转和滑动影响。固定CoR与瞬时CoR之间存在显着差异,从而导致了更加准确和健壮的运动学模型。利用这些CoR,可以从43个临床手动CT扫描中开发无地标的统计模型。先前开发的平坦手部姿势的3D表面用于标准化数据。由ICP方法开发的运动学用于将适合的手的手指段旋转到1)以常用姿势获得手部皮肤的测量值; 2)预测整个手骨骼的形状/大小; 3)以其原始姿势评估最终形状的预测。主成分分析和回归(PCAR)用于开发用于预测单个手指骨骼几何形状/大小的统计模型,以及用于基于人体测量数据(手长,手宽度,手的粗细和性别)。带有皮肤参考点的预测骨骼可以用作任何手部表面模型的基线,以基于内部骨骼段建立运动学。此外,为了补充文献中的数据,对12位参与者进行了一项研究,以研究手的姿势和表面方向对按压平坦表面时手力的影响。这项研究的关节力矩和手指力分布数据可以整合到手的计算机3D模型中,以比较姿势之间的力量能力。

著录项

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Industrial engineering.
  • 学位 Ph.D.
  • 年度 2017
  • 页码 169 p.
  • 总页数 169
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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