Ross W N, Lasser-Ross N, Werman R
Department of Physiology, New York Medical College, Valhalla 10595.
Proc R Soc Lond B Biol Sci. 1990 May 22;240(1297):173-85. doi: 10.1098/rspb.1990.0032.
We have used the calcium indicator dye arsenazo III, together with a photodiode array, to record intracellular calcium changes simultaneously from all regions of individual guinea pig cerebellar Purkinje cells in slices. The optical signals, recorded with millisecond time resolution, are good indicators of calcium-dependent electrical events. For many cells the sensitivity of the recordings was high enough to detect signals from each array element without averaging. Consequently, it was possible to use these signals to follow the complex spatial and temporal patterns of plateau and spike potentials. Calcium entry corresponding to action potentials was detected from all parts of the dendritic field including the fine spiny branchlets, demonstrating that calcium action potentials spread over the entire arbor. Usually, the entire dendritic tree fired at once. But sometimes only restricted areas had signals at any one moment with transients detected in different regions at other times. In one cell, six separate zones were distinguished. These results show that calcium action potentials could be regenerative in some dendrites and could fail to propagate into others. Signals from plateau potentials were also detected from extensive areas in the dendritic field but were always smaller than those caused by a burst of action potentials.
我们使用钙指示剂偶氮胂III,结合光电二极管阵列,来同时记录豚鼠小脑浦肯野细胞切片中单个细胞所有区域的细胞内钙变化。以毫秒级时间分辨率记录的光信号,是钙依赖性电活动的良好指标。对于许多细胞来说,记录的灵敏度足够高,无需平均就能检测到每个阵列元件的信号。因此,利用这些信号追踪平台电位和动作电位复杂的时空模式成为可能。在包括细棘状小分支在内的树突野的所有部位,均检测到与动作电位相对应的钙内流,这表明钙动作电位在整个树突分支上传播。通常,整个树突立即放电。但有时在任何时刻只有受限区域有信号,而在其他时间不同区域检测到瞬变信号。在一个细胞中,区分出了六个不同的区域。这些结果表明,钙动作电位在某些树突中可以再生,而在其他树突中可能无法传播。在树突野的广泛区域也检测到了平台电位信号,但总是小于动作电位爆发所引起的信号。