School of Electrical Engineering, Korea Advanced Institute of Science and Technology, Daejeon, Republic of Korea.
Department of Electrical, Computer and Energy Engineering, University of Colorado, Boulder, CO, USA.
Nat Biomed Eng. 2022 Jun;6(6):771-786. doi: 10.1038/s41551-021-00814-w. Epub 2021 Nov 25.
The use of rodents to acquire understanding of the function of neural circuits and of the physiological, genetic and developmental underpinnings of behaviour has been constrained by limitations in the scalability, automation and high-throughput operation of implanted wireless neural devices. Here we report scalable and modular hardware and software infrastructure for setting up and operating remotely programmable miniaturized wireless networks leveraging Bluetooth Low Energy for the study of the long-term behaviour of large groups of rodents. The integrated system allows for automated, scheduled and real-time experimentation via the simultaneous and independent use of multiple neural devices and equipment within and across laboratories. By measuring the locomotion, feeding, arousal and social behaviours of groups of mice or rats, we show that the system allows for bidirectional data transfer from readily available hardware, and that it can be used with programmable pharmacological or optogenetic stimulation. Scalable and modular wireless-network infrastructure should facilitate the remote operation of fully automated large-scale and long-term closed-loop experiments for the study of neural circuits and animal behaviour.
啮齿动物在获取对神经回路功能的理解以及对行为的生理、遗传和发育基础的理解方面发挥了重要作用,但受到植入式无线神经设备的可扩展性、自动化和高通量操作的限制。在这里,我们报告了一种可扩展的模块化硬件和软件基础设施,用于建立和远程操作可远程编程的小型化无线网络,利用蓝牙低能耗技术来研究大量啮齿动物的长期行为。该集成系统允许通过同时和独立使用多个神经设备和设备在实验室内部和实验室之间进行自动化、预定和实时实验。通过测量群体小鼠或大鼠的运动、进食、觉醒和社交行为,我们表明该系统允许从现成的硬件进行双向数据传输,并且可以与可编程药理学或光遗传学刺激一起使用。可扩展和模块化的无线网络基础设施应有助于远程操作全自动大规模和长期闭环实验,以研究神经回路和动物行为。