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一种分析平稳跟踪眼球运动的新方法。一个微型计算机程序的描述及在健康志愿者中的评估。

A new method for analyzing smooth-pursuit eye movements. Description of a microcomputer program and evaluation in healthy volunteers.

作者信息

Zaccara G, Baldini S, Gangemi P F, Messori A, Parigi A, Nencioni C

机构信息

Dipartimento di Scienze Neurologiche e Psichiatriche, Università di Firenze.

出版信息

Ital J Neurol Sci. 1991 Dec;12(6):537-44. doi: 10.1007/BF02336949.

DOI:10.1007/BF02336949
PMID:1783531
Abstract

The study of ocular movements has been increasingly used to detect subtle pathological modifications, caused by a wide variety of neurological diseases. We have developed a new microcomputer-based method for the analysis of smooth-pursuit ocular movements induced by constant velocity targets moving unpredictably at different velocities (including velocity values as high as 100 deg/s). The ocular movements are recorded by an electro-oculographic technique using silver-silver chloride electrodes fixed near the inner and outer canthi of both eyes. The signals are amplified by two DC amplifiers after a low-pass filtering (50 Hz), sampled at 250 Hz and digitized in a 12-bit form by an analog/digital converter. For each patient's evaluation, a series of 20 sweeps of the target is generated. The data analysis, which is performed automatically by the microcomputer, is based on the calculation of four parameters: average peak eye velocity (APEV); typical target velocity (TTV); percent target matching index after saccade removal (PTMI); typical matching target velocity (TMTV) after saccade removal. APEV is calculated as the average of the peak velocities estimated from the 20 sweeps. The purpose of TTV, which is defined as the value of target velocity at which the percent gain has decreased to slightly more than one third of the maximum percent gain, is to provide an overall index of the rate at which the percent gain decreases as the target velocity increases. PTMI describes the eye performance for each value of target velocity.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

眼球运动研究越来越多地用于检测由多种神经疾病引起的细微病理改变。我们开发了一种基于微型计算机的新方法,用于分析由以不同速度(包括高达100度/秒的速度值)不可预测地移动的恒速目标诱发的平稳跟踪眼球运动。眼球运动通过使用固定在双眼内眦和外眦附近的银 - 氯化银电极的眼电图技术进行记录。信号在经过50Hz低通滤波后由两个直流放大器放大,以250Hz采样,并由模拟/数字转换器以12位形式数字化。对于每位患者的评估,会生成一系列20次目标扫描。由微型计算机自动执行的数据分析基于四个参数的计算:平均峰值眼速度(APEV);典型目标速度(TTV);去除扫视后的目标匹配指数百分比(PTMI);去除扫视后的典型匹配目标速度(TMTV)。APEV计算为从20次扫描估计的峰值速度的平均值。TTV定义为增益百分比下降到略高于最大增益百分比三分之一时的目标速度值,其目的是提供增益百分比随目标速度增加而下降速率的总体指标。PTMI描述了每个目标速度值下的眼睛表现。(摘要截短为250字)

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