Fromherz P, Offenhäusser A, Vetter T, Weis J
Abteilung Biophysik der Universität Ulm, Germany.
Science. 1991 May 31;252(5010):1290-3. doi: 10.1126/science.1925540.
An identified neuron of the leech, a Retzius cell, has been attached to the open gate of a p-channel field-effect transistor. Action potentials, spontaneous or stimulated, modulate directly the source-drain current in silicon. The electronic signals match the shape of the action potential. The average voltage on the gate was up to 25 percent of the intracellular voltage change. Occasionally weak signals that resemble the first derivative of the action potential were observed. The junctions can be described by a model that includes capacitive coupling of the plasma membrane and the gate oxide and that accounts for variable resistance of the seal.
已将一种已识别的水蛭神经元——勒兹乌斯细胞,连接到一个p沟道场效应晶体管的栅极开口处。动作电位,无论是自发的还是受刺激产生的,都能直接调节硅中的源漏电流。电子信号与动作电位的形状相匹配。栅极上的平均电压高达细胞内电压变化的25%。偶尔会观察到类似于动作电位一阶导数的微弱信号。这种连接可以用一个模型来描述,该模型包括质膜与栅极氧化物的电容耦合,并考虑了封接的可变电阻。