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大鼠单个触须运动的光电监测

Optoelectronic monitoring of individual whisker movements in rats.

作者信息

Bermejo R, Houben D, Zeigler H P

机构信息

Biopsychology Program, Hunter College, City University of New York, New York 10021, USA.

出版信息

J Neurosci Methods. 1998 Sep 1;83(2):89-96. doi: 10.1016/s0165-0270(98)00050-8.

Abstract

We describe two systems for the real-time recording and display of individual vibrissa movements in head-fixed rats. Both systems utilize high-speed, linear image sensors, each composed of an array of light sensitive elements (CCDs). Uniform illumination of the array generates a constant baseline voltage in each element. The shadow produced by the movement of a whisker interposed between the light source and the sensors produces a voltage shift in a subset of elements. The successive position of the shift is linearly related to the momentary whisker position. Associated software/hardware scans the array at regular intervals to identify the successive positions of voltages above a preset threshold and outputs the data to a microprocessor for computation of the whisker movement trajectory. In both systems, movements of a single whisker may be monitored 'on-line' with high spatial and temporal resolution; in one case with, in the other without the presence of neighboring whiskers. Optoelectronic monitoring facilitates rapid and efficient (computer-assisted) acquisition and analysis of data on rodent whisking behavior.

摘要

我们描述了两种用于实时记录和显示头部固定大鼠个体触须运动的系统。这两种系统都利用高速线性图像传感器,每个传感器由一系列光敏元件(电荷耦合器件)组成。对阵列的均匀照明会在每个元件中产生恒定的基线电压。介于光源和传感器之间的触须运动产生的阴影会在一部分元件中产生电压偏移。该偏移的连续位置与触须的瞬时位置呈线性关系。相关的软件/硬件会定期扫描阵列,以识别高于预设阈值的电压的连续位置,并将数据输出到微处理器以计算触须运动轨迹。在这两种系统中,单个触须的运动都可以以高空间和时间分辨率进行“在线”监测;一种情况下有相邻触须,另一种情况下没有。光电监测有助于快速有效地(计算机辅助)获取和分析关于啮齿动物触须行为的数据。

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