为皮层视觉假体同时提供无线供电和数据传输的可穿戴实时系统。

Gian Luca Barbruni;Francesca Rodino;Paolo Motto Ros;Danilo Demarchi;Diego Ghezzi;Sandro Carrara
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引用次数: 0

摘要

无线、微型化和分布式神经接口是新兴的神经技术。尽管大量的研究工作促进了这些技术的发展,但对实时系统的需求仍然至关重要,因为这些系统能够同时向分布式神经植入物进行无线信息和电力传输。在这里,我们展示了一个完整的可穿戴系统,包括一个用于实时图像捕捉、处理和数字数据传输的软件;一个通过移幅键控产生和调制高射频的硬件;以及一个可与多个微型接收器配合使用的三线圈感应链路。该系统实时运行,最大帧频为 20 Hz,每帧以 32 × 32 像素矩阵重建。该设备产生的载波频率为 433.92 MHz。它的最高传输功率为 32 dBm,数据传输速率为 6 Mbps,可变调制指数低至 8%,因此可与 1024 个微型分布式皮质内微刺激器进行无线通信。该系统主要是作为一种外部可穿戴设备,用于覆盖 20 ° 视场的分布式皮质视觉假体。同时,它还具有模块化和多功能的特点,适用于需要同时向大规模神经接口进行无线信息和电力传输的多种应用。
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A Wearable Real-Time System for Simultaneous Wireless Power and Data Transmission to Cortical Visual Prosthesis
Wireless, miniaturised and distributed neural interfaces are emerging neurotechnologies. Although extensive research efforts contribute to their technological advancement, the need for real-time systems enabling simultaneous wireless information and power transfer toward distributed neural implants remains crucial. Here we present a complete wearable system including a software for real-time image capturing, processing and digital data transfer; an hardware for high radiofrequency generation and modulation via amplitude shift keying; and a 3-coil inductive link adapt to operate with multiple miniaturised receivers. The system operates in real-time with a maximum frame rate of 20 Hz, reconstructing each frame with a matrix of 32 × 32 pixels. The device generates a carrier frequency of 433.92 MHz. It transmits the highest power of 32 dBm with a data rate of 6 Mbps and a variable modulation index as low as 8 $\%$ , thus potentially enabling wireless communication with 1024 miniaturised and distributed intracortical microstimulators. The system is primarily conceived as an external wearable device for distributed cortical visual prosthesis covering a visual field of 20 $^{\circ }$ . At the same time, it is modular and versatile, being suitable for multiple applications requiring simultaneous wireless information and power transfer to large-scale neural interfaces.
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