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影响精子运动学分析准确性的取样因素。

Sampling factors influencing accuracy of sperm kinematic analysis.

作者信息

Owen D H, Katz D F

机构信息

Department of Chemical Engineering, University of California School of Medicine, Davis.

出版信息

J Androl. 1993 May-Jun;14(3):210-21.

PMID:8407577
Abstract

Sampling conditions that influence the accuracy of experimental measurement of sperm head kinematics were studied by computer simulation methods. Several archetypal sperm trajectories were studied. First, mathematical models of typical flagellar beats were input to hydrodynamic equations of sperm motion. The instantaneous swimming velocities of such sperm were computed over sequences of flagellar beat cycles, from which the resulting trajectories were determined. In a second, idealized approach, direct mathematical models of trajectories were utilized, based upon similarities to the previous hydrodynamic constructs. In general, it was found that analyses of sampling factors produced similar results for the hydrodynamic and idealized trajectories. A number of experimental sampling factors were studied, including the number of sperm head positions measured per flagellar beat, and the time interval over which these measurements are taken. It was found that when one flagellar beat is sampled, values of amplitude of lateral head displacement (ALH) and linearity (LIN) approached their actual values when five or more sample points per beat were taken. Mean angular displacement (MAD) values, however, remained sensitive to sampling rate even when large sampling rates were used. Values of MAD were also much more sensitive to the initial starting point of the sampling procedure than were ALH or LIN. On the basis of these analyses of measurement accuracy for individual sperm, simulations were then performed of cumulative effects when studying entire populations of motile cells. It was found that substantial (double digit) errors occurred in the mean values of curvilinear velocity (VCL), LIN, and MAD under the conditions of 30 video frames per second and 0.5 seconds of analysis time. Increasing the analysis interval to 1 second did not appreciably improve the results. However, increasing the analysis rate to 60 frames per second significantly reduced the errors. These findings thus suggest that computer-aided sperm analysis (CASA) application at 60 frames per second will significantly improve the accuracy of kinematic analysis in most applications to human and other mammalian sperm.

摘要

通过计算机模拟方法研究了影响精子头部运动学实验测量准确性的采样条件。研究了几种典型的精子轨迹。首先,将典型鞭毛摆动的数学模型输入精子运动的流体动力学方程。在一系列鞭毛摆动周期内计算此类精子的瞬时游动速度,并据此确定最终轨迹。在第二种理想化方法中,基于与先前流体动力学结构的相似性,使用了轨迹的直接数学模型。总体而言,发现对采样因素的分析对于流体动力学轨迹和理想化轨迹产生了相似的结果。研究了许多实验采样因素,包括每个鞭毛摆动测量的精子头部位置数量以及进行这些测量的时间间隔。结果发现,当对一个鞭毛摆动进行采样时,每摆动取五个或更多采样点时,头部横向位移幅度(ALH)和线性度(LIN)的值接近其实际值。然而,即使使用大采样率,平均角位移(MAD)值对采样率仍很敏感。与ALH或LIN相比,MAD值对采样程序的初始起点也更为敏感。基于对单个精子测量准确性的这些分析,随后对研究整个活动细胞群体时的累积效应进行了模拟。结果发现,在每秒30个视频帧和0.5秒分析时间的条件下,曲线速度(VCL)、LIN和MAD的平均值出现了显著(两位数)误差。将分析间隔增加到1秒并没有明显改善结果。然而,将分析速率提高到每秒60帧可显著减少误差。因此,这些发现表明,在大多数对人类和其他哺乳动物精子的应用中,每秒60帧的计算机辅助精子分析(CASA)应用将显著提高运动学分析的准确性。

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