Borghuis Bart G, Perge János A, Vajda Ildikó, van Wezel Richard J A, van de Grind Wim A, Lankheet Martin J M
Department of Functional Neurobiology, Helmholtz Institute, Utrecht University, Padualaan 8, The Netherlands.
J Neurosci Methods. 2003 Mar 15;123(2):153-66. doi: 10.1016/s0165-0270(02)00347-3.
We introduce the motion reverse correlation method (MRC), a novel stimulus paradigm based on a random sequence of motion impulses. The method is tailored to investigate the spatio-temporal dynamics of motion selectivity in cells responding to moving random dot patterns. Effectiveness of the MRC method is illustrated with results obtained from recordings in both anesthetized cats and an awake, fixating macaque monkey. Motion tuning functions are computed by reverse correlating the response of single cells with a rapid sequence of displacements of a random pixel array (RPA). Significant correlations between the cell's responses and various aspects of stimulus motion are obtained at high temporal resolution. These correlations provide a detailed description of the temporal dynamics of, for example, direction tuning and velocity tuning. In addition, with a spatial array of independently moving RPAs, the MRC method can be used to measure spatial as well as temporal receptive field properties. We demonstrate that MRC serves as a powerful and time-efficient tool for quantifying receptive field properties of motion selective cells that yields temporal information that cannot be derived from existing methods.
我们介绍了运动反向相关方法(MRC),这是一种基于随机运动脉冲序列的新型刺激范式。该方法专为研究对移动随机点图案做出反应的细胞中运动选择性的时空动态而设计。通过在麻醉猫和清醒、注视的猕猴身上记录获得的结果,说明了MRC方法的有效性。运动调谐函数是通过将单细胞的反应与随机像素阵列(RPA)的快速位移序列进行反向相关来计算的。在高时间分辨率下,获得了细胞反应与刺激运动的各个方面之间的显著相关性。这些相关性详细描述了例如方向调谐和速度调谐的时间动态。此外,利用独立移动的RPA的空间阵列,MRC方法可用于测量空间以及时间感受野特性。我们证明,MRC是一种强大且省时的工具,可用于量化运动选择性细胞的感受野特性,产生现有方法无法获得的时间信息。