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移液器抽吸用于软组织的局部硬度测量。

The pipette aspiration applied to the local stiffness measurement of soft tissues.

作者信息

Aoki T, Ohashi T, Matsumoto T, Sato M

机构信息

Department of Aeronautics and Astronautics, University of Tokyo, Japan.

出版信息

Ann Biomed Eng. 1997 May-Jun;25(3):581-7. doi: 10.1007/BF02684197.

Abstract

A simple method of identifying the initial slope of the stress-strain curve (i.e., Young's modulus of the soft tissue) by introducing the pipette aspiration technique is presented. The tissue was assumed to be isotropic and macroscopically homogeneous. Numerical simulations by the linear finite element analysis were performed for the axisymmetric model to survey the effects of friction at the tissue-pipette contact boundary, pipette cross-sectional geometry, relative size of the specimen to the pipette, and the layered inhomogeneity of the specimen tissue. The friction at the contact region had little effect on the measurement of Young's modulus. The configuration of the pipette was shown to affect the measurement for small pipette wall thickness. The measurement also depended on the relative size of the specimen to the pipette for relatively small specimens. The extent of the region contributing to the measurement was roughly twice the inside radius of the pipette. In this region, the maximum stress did not exceed the level of the aspiration pressure, with only minor exceptional locations. Calculation of strain energy components indicated that the major contributions to the deformation under pipette aspiration were by the normal extension and shear deformation in pipette axial direction. Experimental verification of the present method for the isotropic, homogeneous artificial material is also presented.

摘要

本文提出了一种通过引入移液管抽吸技术来识别应力-应变曲线初始斜率(即软组织的杨氏模量)的简单方法。假定组织为各向同性且宏观均匀。针对轴对称模型进行了线性有限元分析的数值模拟,以研究组织-移液管接触边界处的摩擦、移液管横截面几何形状、样本与移液管的相对尺寸以及样本组织的分层不均匀性的影响。接触区域的摩擦对杨氏模量的测量影响很小。结果表明,对于管壁厚度较小的移液管,其形状会影响测量结果。对于相对较小的样本,测量结果还取决于样本与移液管的相对尺寸。对测量有贡献的区域范围大致是移液管内半径的两倍。在该区域内,最大应力不超过抽吸压力水平,仅有少数例外位置。应变能分量的计算表明,移液管抽吸作用下变形的主要贡献来自于法向伸长和移液管轴向的剪切变形。本文还给出了针对各向同性、均匀人造材料的该方法的实验验证。

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