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首页> 外文期刊>Journal of biomedical optics >High-selectivity neural probe based on a Fabry-Perot optical filter and a CMOS silicon photodiodes array at visible wavelengths
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High-selectivity neural probe based on a Fabry-Perot optical filter and a CMOS silicon photodiodes array at visible wavelengths

机译:基于Fabry-Perot滤光片和可见光波长的CMOS硅光电二极管阵列的高选择性神经探针

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This paper presents a silicon neural probe with a high-selectivity optical readout function and light emitting diodes for neurons photostimulation and fluorophore excitation. A high-selectivity Fabry-Perot optical filter on the top of a CMOS silicon photodiodes array can read the emitted fluorescence, which indicates the neurons physiological state. The design, fabrication, and characterization of the optical filter are presented. The SiO_2/TiO_2 based optical filter thin films were deposited by RF sputtering. The performance of the optical filter deposited on the top of the silicon photodiodes array, implemented in the neural probe, was tested through in-vitro fluorescence measurements. The transmittance peak of the fabricated optical filter is 81.8% at 561 nm, with a full width at half maximum of 28 nm. The peak responsivity of the CMOS silicon photodiode with the optical filter deposited on its top is 273.6 mA/W at 578 nm. The in-vitro fluorescence measurements results show a CMOS photodiode current proportional to the fluorophore concentration with a good linearity (R~2 = 0.9361). The results validate the use of the neural probe with the high-selectivity optical readout function to determine the presence of different fluorophore concentrations. The development of the device in a conventional CMOS process allows on-chip electronics readout.
机译:本文提出了一种具有高选择性光学读出功能的硅神经探针,以及用于神经元光刺激和荧光团激发的发光二极管。 CMOS硅光电二极管阵列顶部的高选择性Fabry-Perot光学滤光片可以读取发出的荧光,这表明神经元的生理状态。介绍了滤光片的设计,制造和特性。通过RF溅射沉积基于SiO_2 / TiO_2的滤光器薄膜。通过体外荧光测量测试了在神经探针中实现的沉积在硅光电二极管阵列顶部的滤光片的性能。所制造的滤光器的透射峰在561nm处为81.8%,半峰全宽为28nm。顶部沉积有滤光片的CMOS硅光电二极管在578 nm处的峰值响应率为273.6 mA / W。体外荧光测量结果表明,CMOS光电二极管电流与荧光团浓度成正比,具有良好的线性关系(R〜2 = 0.9361)。结果证实了具有高选择性光学读出功能的神经探针在确定不同荧光团浓度的存在中的使用。以常规CMOS工艺开发的设备允许片上电子设备读出。

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