A wireless neural recording system with a precision motorized microdrive for freely behaving animals

نویسندگان

  • Taku Hasegawa
  • Hisataka Fujimoto
  • Koichiro Tashiro
  • Mayu Nonomura
  • Akira Tsuchiya
  • Dai Watanabe
چکیده

The brain is composed of many different types of neurons. Therefore, analysis of brain activity with single-cell resolution could provide fundamental insights into brain mechanisms. However, the electrical signal of an individual neuron is very small, and precise isolation of single neuronal activity from moving subjects is still challenging. To measure single-unit signals in actively behaving states, establishment of technologies that enable fine control of electrode positioning and strict spike sorting is essential. To further apply such a single-cell recording approach to small brain areas in naturally behaving animals in large spaces or during social interaction, we developed a compact wireless recording system with a motorized microdrive. Wireless control of electrode placement facilitates the exploration of single neuronal activity without affecting animal behaviors. Because the system is equipped with a newly developed data-encoding program, the recorded data are readily compressed almost to theoretical limits and securely transmitted to a host computer. Brain activity can thereby be stably monitored in real time and further analyzed using online or offline spike sorting. Our wireless recording approach using a precision motorized microdrive will become a powerful tool for studying brain mechanisms underlying natural or social behaviors.

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A wireless system with a motorized microdrive for neural recording in freely behaving animals

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Large-scale chronically implantable precision motorized microdrive array for freely behaving animals.

Multiple single-unit recording has become one of the most powerful in vivo electro-physiological techniques for studying neural circuits. The demand has been increasing for small and lightweight chronic recording devices that allow fine adjustments to be made over large numbers of electrodes across multiple brain regions. To achieve this, we developed precision motorized microdrive arrays that ...

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عنوان ژورنال:

دوره 5  شماره 

صفحات  -

تاریخ انتشار 2015