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Ultracompact optrode with integrated laser diode chips and SU-8 waveguides for optogenetic applications

机译:具有集成激光二极管芯片和SU-8波导的超紧凑型光电极,用于光遗传学应用

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This paper reports on the design, fabrication and characterization of an innovative silicon-based neural probe with optical functionality. This so-called optrode is intended as an ultracompact tool for optogenetic applications in neuroscientific research. Beside platinum microe-lectrodes for electrical recording applications, bare laser diode (LD) chips combined with waveguides (WGs) implemented in the negative photoresist SU-8 are integrated on the probe. The assembly of the bare LD chips applies flip-chip and wire bonding and benefits of a lateral alignment accuracy better ±5 μm required for the efficient coupling of light into the 15-μm-wide and 13-μm-high WGs. Undesired tissue illumination due to stray light is effectively blocked using a micromachined cover chip adhesively bonded to the probe base. Probe shafts with a length of up to 8 mm and a thickness of 50 μm carrying four electrodes and two WGs each have been realized. The maximum optical output power per WG was measured to be 29.7 mW/mm2 for LDs with a center wavelength of 650 nm.
机译:本文报道了具有光学功能的创新的基于硅的神经探针的设计,制造和表征。这种所谓的光极旨在作为一种超紧凑的工具,用于神经科学研究中的光遗传学应用。除了用于电记录应用的铂微电极外,裸激光二极管(LD)芯片与在负性光刻胶SU-8中实现的波导(WG)结合在一起,还集成在探头上。裸露LD芯片的组装采用倒装芯片和引线键合技术,并具有横向对准精度更好的优势,以便将光有效地耦合到宽15μm和高13μm的WG中。使用粘附在探头底座上的微加工覆盖芯片可以有效地阻止由于杂散光导致的不良组织照明。已经实现了长度高达8 mm,厚度为50μm的探针杆,该探针杆分别带有四个电极和两个WG。对于中心波长为650 nm的LD,测得的每WG最大光输出功率为29.7 mW / mm 2

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