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Design of novel three-pronged microgripper for the diagnosis of Dysplasia

机译:新型三爪微夹爪诊断异型增生的设计

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Dysplasia is a precancerous disease that tends to convert into carcinoma in-situ if not diagnosed and treated in time. A MEMS (Microelectromechanical System) based microgripper can mechanically diagnose the disease by measuring microscopic changes in cell size, nuclear to cytoplasmic ratio and cell membrane stiffness. The objective of this paper is to present novel MEMS based microgripper with integrated force sensor. A detailed modeling and simulation of this gripping system has been carried out using the design rules of standard MEMS process: SOI-MUMPS (Silicon-on-insulator Multi-User-MEMS-Process) offered by MEMSCAP Inc. The results show the feasibility of using such system to manipulate biological cells. The system is optimized for smaller chip size of 3.76mm×2.86mm operated at low voltage of 30V. A concept of three pronged design is also introduced signifying an active release of the biological cell after manipulation. The microgripper produces a max displacement of 20um and is capable of handling cells of size 10–30um.
机译:不典型增生是癌前疾病,如果不及时诊断和治疗,往往会原位转化为癌。基于MEMS(微机电系统)的微夹持器可以通过测量细胞大小,核与细胞质比率以及细胞膜硬度的微观变化来机械诊断疾病。本文的目的是提出具有集成力传感器的新型MEMS微抓爪。已使用标准MEMS工艺的设计规则对这种夹持系统进行了详细的建模和仿真:MEMSCAP Inc.提供了SOI-MUMPS(绝缘体上硅多用户MEMS处理)。结果显示了这种夹持系统的可行性。使用这样的系统来操纵生物细胞。该系统针对在30V低压下运行的3.76mm×2.86mm的较小芯片尺寸进行了优化。还引入了三叉设计的概念,表示操纵后生物细胞的主动释放。微型夹具产生的最大位移为20um,并且能够处理10–30um的细胞。

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