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An Optically Stabilized Fast-Switching Light Emitting Diode as a Light Source for Functional Neuroimaging

机译:光稳定的快速开关发光二极管作为功能性神经成像的光源

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摘要

Neuroscience research increasingly relies on optical methods for evoking neuronal activity as well as for measuring it, making bright and stable light sources critical building blocks of modern experimental setups. This paper presents a method to control the brightness of a high-power light emitting diode (LED) light source to an unprecedented level of stability. By continuously monitoring the actual light output of the LED with a photodiode and feeding the result back to the LED's driver by way of a proportional-integral controller, drift was reduced to as little as 0.007% per hour over a 12-h period, and short-term fluctuations to 0.005% root-mean-square over 10 seconds. The LED can be switched on and off completely within 100 µs, a feature that is crucial when visual stimuli and light for optical recording need to be interleaved to obtain artifact-free recordings. The utility of the system is demonstrated by recording visual responses in the central nervous system of the medicinal leech Hirudo verbana using voltage-sensitive dyes.
机译:神经科学研究越来越依赖光学方法来激发和测量神经元活动,从而使明亮稳定的光源成为现代实验装置的重要组成部分。本文提出了一种将大功率发光二极管(LED)光源的亮度控制到前所未有的稳定性水平的方法。通过用光电二极管连续监视LED的实际光输出,并通过比例积分控制器将结果反馈给LED驱动器,在12小时内,漂移每小时可降低至0.007%。短期波动在10秒内达到0.005%均方根。 LED可以在100 µs内完全打开和关闭,当需要交错插入视觉刺激和用于光学记录的光以获得无伪影的记录时,这一功能至关重要。该系统的实用性通过使用电压敏感染料记录药用水echHirudo verbana的中枢神经系统的视觉反应来证明。

著录项

  • 作者

    Wagenaar Daniel A.;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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