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HIGH-YIELD BURIED MICROCHANNEL FORMATION FOR DRUG DELIVERY AT THE CELLULAR LEVEL

机译:高水平埋藏的微通道形成药物在细胞中的传递

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摘要

Fluidic microchannels can be formed in bulk silicon using wet and/or dry etching through a perforated ceiling structure that is subsequently sealed using deposited dielectrics. Isotropic dry (STS) etching and TMAH result in smoother channel walls than EDP at the expense of less selectivity to p++ silicon ceiling ribs. The size of the etch-access holes is important in achieving high yield, with screen and split-beam structures producing better results than chevron and diagonal-slot structures. Reducing 4μm-wide ribs to 2μm and increasing etch openings from 1.4μm to 2μm produces channel yields above 90%. Neural probes combining chemical delivery with electrical stimulation/recording have been realized successfully.
机译:可以使用多孔和/或干法蚀刻通过穿孔的顶棚结构在块状硅中形成流体微通道,然后使用沉积的电介质将其密封。各向同性干法(STS)蚀刻和TMAH导致通道壁比EDP光滑,但对p ++硅顶肋的选择性较低。蚀刻通路孔的尺寸对于实现高产量至关重要,筛网和分束结构比人字形和对角槽结构产生更好的结果。将4μm宽的肋减少到2μm,并将蚀刻开口从1.4μm增加到2μm,可产生超过90%的通道良率。已成功实现了将化学物质输送与电刺激/记录相结合的神经探针。

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