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Scalable nanophotonic neural probes for multicolor and on-demand light delivery in brain tissue

机译:用于脑组织中的多色和按需光递送的可缩放纳米光学神经探针

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摘要

Neural probes are in vivo brain-invasive devices that record and manipulate neural circuits using electricity, light, or drugs. The capability to shine distinct wavelengths and control their respective output locations for activation or deactivation of specific groups of neurons is desirable but remains unachieved. Here, we discuss our probe's capability to deliver two independently controllable wavelengths (450 and 655 nm) in the location(s) of interest using nanophotonic directional couplers and ring resonators. These nanophotonics are scalable to dozens of outputs without significantly increasing the device's lateral dimensions. Furthermore, they are entirely passive and thus do not require electrical input that results in heat generation. Besides, we integrate a high number of electrodes for a simultaneous neural activity readout. Thus, we overcome the challenges associated with multicolor illumination for neural devices by exploiting the capability of miniaturizable, passive probes to deliver two different frequencies in several areas of interest. These devices open the path towards investigating the in vivo electrical signal propagation under the individual or simultaneous activation or inhibition of distinct brain regions.
机译:神经探针是一种在体脑侵入性设备,可使用电、光或药物记录和操纵神经回路。发光不同波长并控制其各自输出位置以激活或停用特定神经元组的能力是可取的,但尚未实现。在这里,我们讨论了我们的探测器使用纳米光子定向耦合器和环形谐振器在感兴趣的位置传输两个独立可控波长(450和655 nm)的能力。这些纳米光子学可以扩展到几十个输出,而不会显著增加设备的横向尺寸。此外,它们完全是被动的,因此不需要产生热量的电输入。此外,我们还集成了大量电极,以实现同步神经活动读数。因此,我们通过利用小型无源探针在几个感兴趣的领域提供两种不同频率的能力,克服了与神经设备的多色照明相关的挑战。这些设备为研究不同脑区单独或同时激活或抑制下的体内电信号传播开辟了道路。

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