微立体光刻生物化学集成电路——迈向人造细胞装置

K. Ikuta
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引用次数: 0

摘要

研制了新型微流控装置“生化集成电路家族”,并对每个芯片的基本性能和组合芯片的整体能力进行了实验验证。生物化学集成电路的最初概念是由Ikuta提出的。每个圆盘形状(或细胞形状)的化学IC芯片包含不同的功能器件,如多个微泵,阀门,微浓缩器和微反应器等。这种芯片由两种材料构成。芯片的上半部分包括微流体系统是由紫外光固化聚合物制成的,因为它采用了三维微加工。芯片的底部由硅电路构成,用于芯片之间的电气交互。生化IC介绍了当今IC/LSI家族的优势,如C-MOS/TTL芯片组。因此,各种微化仪器可由用户自行组装。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biochemical IC using micro stereolithography-towards artificial cellular device
New types of micro fluidic device named "Biochemical IC Family" were developed and basic performances of each chip as well as overall ability of combined chips were verified experimentally. The original concept of the biochemical IC has been proposed by Ikuta. Each chemical IC chip in a disk shape (or cell shape) contains different functional devices such as multiple micro pumps, valves, micro concentrators and micro reactors etc. This chip is constructed by two kinds of materials. Upper part of the chip including micro fluid system is made of UV curable polymer because 3D micro fabrication is employed to make it. Bottom part of the chip is made of silicon circuit for electrical interaction among the chips. The biochemical IC introduces the strong point of today's IC/LSI family such as C-MOS/TTL chip-set.. Therefore, various kind of micro chemical apparatus can be assembled by the user.
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