Giard M H, Peronnet F, Pernier J, Mauguiere F, Bertrand O
Comput Methods Programs Biomed. 1985 May;20(1):9-16. doi: 10.1016/0169-2607(85)90040-9.
We present a colour mapping system for the visualization of both the spatial scalp distribution and the temporal evolution of brain potentials. The system is applicable to recordings of auditory, visual and somatosensory potentials. It uses a Tektronix 4113 colour terminal connected to a Solar 16 (SEMS) mini-computer. The brain potentials are recorded on up to 16 scalp electrodes. The gain and the baseline are corrected separately on each channel. At each point of the scalp the potential is reconstructed by a linear interpolation of the measured potentials of the four nearest electrodes. Simultaneously n2 (1 less than n less than 8) colour maps can be presented on the screen. This allows the study of the temporal evolution of full scalp evoked potentials. The user chooses the two extreme latencies defining the time window to be explored and the latencies of the maps are regularly time-spaced within this window. In a typical case, in which four maps are desired, the latencies of the maps can be chosen independently. The 16-colour palette is predetermined but the user has three possibilities to establish the correspondence between the electrical potential and the colours. Examples are shown in the visual and somatosensory stimulation modalities. The advantages and limitations of such a representation are discussed.
我们提出了一种颜色映射系统,用于可视化头皮电位的空间分布和时间演变。该系统适用于听觉、视觉和体感电位的记录。它使用连接到Solar 16(SEMS)小型计算机的泰克4113彩色终端。脑电位通过多达16个头皮电极进行记录。每个通道的增益和基线分别进行校正。在头皮的每个点,通过对四个最近电极测量电位的线性插值来重建电位。同时,n2(1小于n小于8)个颜色图可以显示在屏幕上。这使得能够研究全头皮诱发电位的时间演变。用户选择定义要探索的时间窗口的两个极端潜伏期,并且图的潜伏期在该窗口内按规则的时间间隔分布。在典型情况下,如果需要四个图,图的潜伏期可以独立选择。16色调色板是预先确定的,但用户有三种方式来建立电位与颜色之间的对应关系。在视觉和体感刺激模式下展示了示例。讨论了这种表示方式的优点和局限性。