Multiphoton stimulation of neurons.

H. Hirase, Volodymyr Nikolenko, J. Goldberg, R. Yuste
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引用次数: 163

Abstract

We pulsed the activation of neurons using a femtosecond laser. Pyramidal neurons are depolarized and fire action potentials when high intensity mode-locked infrared light irradiates somatic membranes and axon initial segments. This depolarization is reversible, does not occur with CW laser light, and appears to be due to multiphoton excitation. We describe two regimes of multiphoton optical stimulation. Low intensity, long duration laser irradiation produces a sustained depolarization, insensitive to sodium channel blockers yet sensitive to antioxidants. On the other hand, high intensity, short duration irradiation can induce fast depolarizations, which appear due to different mechanism. The combination of multiphoton stimulation and optical probing could enable systematic analysis of circuits.
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神经元的多光子刺激。
我们用飞秒激光脉冲激活神经元。当高强度锁模红外光照射体膜和轴突起始段时,锥体神经元去极化并激发动作电位。这种去极化是可逆的,不发生连续激光,似乎是由于多光子激发。我们描述了两种体制的多光子光刺激。低强度、长时间激光照射产生持续去极化,对钠通道阻滞剂不敏感,但对抗氧化剂敏感。另一方面,高强度、短时间的辐照可诱导快速去极化,其机理不同。多光子刺激与光学探测相结合,可以实现电路的系统分析。
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