Vibrational Analysis During Cell Injection in ICSI Operation

Ferhat Sadak, M. Saadat, A. M. Hajiyavand, G. Nomicos
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引用次数: 3

Abstract

_ Intracytoplasmic sperm injection is an assisted reproductive technology in which a single spermatozoon is physically injected into the cytoplasm of an oocyte using a narrow glass needle. Over the past decade, rapid development of intracytoplasmic sperm injection (ICSI) has led to high demand on having precise injector motion and control during the injection task. Injector speed is a restricted dynamical factor in the injection task as it has a direct impact on the amplitude of the lateral displacement at the micropipette tip and therefore cell deformation creation. Analytical and numerical approaches have been instigated and the results have been compared to show the effect of injection speed on lateral displacement of the micro pipette tip. Euler-Bernoulli thin beam theory and the Matlab-Simscape Multibody dynamics simulation tool have been employed for analytical and numerical solution respectively. Cell deformation has been reported when evaluating the resultant lateral displacement of the micropipette during injection. It is found that this displacement helps to pierce the cell membrane during injection. This is due to additional stress created on the cell membrane. An optimal injection speed has thus been determined considering the lateral vibration induced by injection speed and cell deformation.
ICSI手术中细胞注射的振动分析
胞浆内单精子注射是一种辅助生殖技术,将单个精子用狭窄的玻璃针物理注射到卵母细胞的细胞质中。近十年来,胞浆内单精子注射技术(ICSI)的快速发展对注射过程中精确的注射运动和控制提出了很高的要求。注射速度是注射任务中的一个受限制的动态因素,因为它直接影响微移管尖端的横向位移幅度,从而影响细胞变形的产生。本文采用了解析法和数值法,比较了注射速度对微移管尖端侧向位移的影响。采用Euler-Bernoulli薄梁理论和Matlab-Simscape多体动力学仿真工具分别进行了解析解和数值解。在注射过程中,当评估微管的侧向位移时,已经报道了细胞变形。发现这种位移有助于在注射时刺穿细胞膜。这是由于细胞膜上产生了额外的压力。从而确定了考虑注射速度和胞体变形引起的横向振动的最佳注射速度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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