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基于 Teensy 微控制器的接口,用于在行为实验期间控制光学成像相机。

A Teensy microcontroller-based interface for optical imaging camera control during behavioral experiments.

机构信息

Boston University, Department of Biomedical Engineering, Boston, MA 02215, United States.

Boston University, Department of Biomedical Engineering, Boston, MA 02215, United States.

出版信息

J Neurosci Methods. 2019 May 15;320:107-115. doi: 10.1016/j.jneumeth.2019.03.019. Epub 2019 Apr 1.

Abstract

BACKGROUND

Systems neuroscience experiments often require the integration of precisely timed data acquisition and behavioral monitoring. While specialized commercial systems have been designed to meet various needs of data acquisition and device control, they often fail to offer flexibility to interface with new instruments and variable behavioral experimental designs.

NEW METHOD

We developed a Teensy 3.2 microcontroller-based interface that is easily programmable, and offers high-speed, precisely timed behavioral data acquisition and digital and analog outputs for controlling sCMOS cameras and other devices.

RESULTS

We demonstrate the flexibility and the temporal precision of the Teensy interface in two experimental settings. In one example, we used the Teensy interface to record an animal's directional movement on a spherical treadmill, while delivering repeated digital pulses that can be used to control image acquisition from a sCMOS camera. In another example, we used the Teensy interface to deliver an auditory stimulus and a gentle eye puff at precise times in a trace conditioning eye blink behavioral paradigm, while delivering repeated digital pulses to trigger camera image acquisition.

COMPARISON WITH EXISTING METHODS

This interface allows high-speed and temporally precise digital data acquisition and device control during diverse behavioral experiments.

CONCLUSION

The Teensy interface, consisting of a Teensy 3.2 and custom software functions, provides a temporally precise, low-cost, and flexible platform to integrate sCMOS camera control into behavioral experiments.

摘要

背景

系统神经科学实验通常需要精确定时的数据采集和行为监测的整合。虽然专门设计了商业化的系统来满足数据采集和设备控制的各种需求,但它们往往无法灵活地与新仪器和可变的行为实验设计接口。

新方法

我们开发了一种基于 Teensy 3.2 微控制器的接口,该接口易于编程,提供高速、精确定时的行为数据采集以及数字和模拟输出,用于控制 sCMOS 相机和其他设备。

结果

我们在两个实验设置中展示了 Teensy 接口的灵活性和时间精度。在一个示例中,我们使用 Teensy 接口在球形跑步机上记录动物的定向运动,同时发出重复的数字脉冲,可用于控制 sCMOS 相机的图像采集。在另一个示例中,我们使用 Teensy 接口在痕迹条件反射眨眼行为范式中精确时间地发出听觉刺激和轻柔的眼部吹气,同时发出重复的数字脉冲来触发相机图像采集。

与现有方法的比较

该接口允许在各种行为实验中进行高速和时间精确的数字数据采集和设备控制。

结论

由 Teensy 3.2 和定制软件功能组成的 Teensy 接口为将 sCMOS 相机控制集成到行为实验中提供了一个时间精确、低成本和灵活的平台。

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