Newman Jonathan P, Zhang Jie, Cuevas-López Aarón, Miller Nicholas J, Honda Takato, van der Goes Marie-Sophie H, Leighton Alexandra H, Carvalho Filipe, Lopes Gonçalo, Lakunina Anna, Siegle Joshua H, Harnett Mark T, Wilson Matthew A, Voigts Jakob
Department of Brain and Cognitive Sciences, MIT, Cambridge, MA, USA.
Picower Institute for Learning and Memory, MIT, Cambridge, MA, USA.
bioRxiv. 2023 Sep 1:2023.08.30.554672. doi: 10.1101/2023.08.30.554672.
Behavioral neuroscience faces two conflicting demands: long-duration recordings from large neural populations and unimpeded animal behavior. To meet this challenge, we developed ONIX, an open-source data acquisition system with high data throughput (2GB/sec) and low closed-loop latencies (<1ms) that uses a novel 0.3 mm thin tether to minimize behavioral impact. Head position and rotation are tracked in 3D and used to drive active commutation without torque measurements. ONIX can acquire from combinations of passive electrodes, Neuropixels probes, head-mounted microscopes, cameras, 3D-trackers, and other data sources. We used ONIX to perform uninterrupted, long (~7 hours) neural recordings in mice as they traversed complex 3-dimensional terrain. ONIX allowed exploration with similar mobility as non-implanted animals, in contrast to conventional tethered systems which restricted movement. By combining long recordings with full mobility, our technology will enable new progress on questions that require high-quality neural recordings during ethologically grounded behaviors.
对大量神经群体进行长时间记录以及保证动物行为不受阻碍。为应对这一挑战,我们开发了ONIX,这是一个开源数据采集系统,具有高数据吞吐量(2GB/秒)和低闭环延迟(<1毫秒),它使用一种新型的0.3毫米细缆绳来最小化对行为的影响。头部位置和旋转在三维空间中被跟踪,并用于驱动主动换向,无需扭矩测量。ONIX可以从无源电极、神经像素探针、头戴式显微镜、相机、三维跟踪器和其他数据源的组合中采集数据。我们使用ONIX在小鼠穿越复杂三维地形时进行了不间断的长时间(约7小时)神经记录。与限制运动的传统系留系统相比,ONIX允许小鼠以与未植入设备的动物相似的移动性进行探索。通过将长时间记录与完全移动性相结合,我们的技术将在需要在基于行为学的行为中进行高质量神经记录的问题上取得新进展。