Do, Loc Quang and Bui, Thanh Tung and Vu, Quoc Tuan and Pham, Thanh Luan and Tran, Thi Thuy Ha and Dau, Thanh Van and Jen, Chun-Ping and Chu, Duc Trinh (2017) Dielectrophoresis enrichment with built-in capacitive sensor microfluidic platform for tumor rare cell detection. In: 2017 19th International Conference on Solid-State Sensors, Actuators and Microsystems (TRANSDUCERS), Kaohsiung, Taiwan.
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Abstract
This paper presents a dielectrophoresis (DEP) enrichment microfluidic platform with built-in anti-bodybased capacitive sensor for tumor rare cells detection. We take the advantages of the effective DEP actuation, the high selectivity property of antibody for rare cell immobilization, and the high sensitivity of differential capacitive sensing for quantitatively reading out, to produce advanced platform, toward single tumor cell detection for the rapid laboratory tests of cancers diagnoses and other metabolic diseases applications.
Item Type: | Conference or Workshop Item (Lecture) |
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Uncontrolled Keywords: | Sensors, microsensors, microfabrication, capacitive sensors, Electrodes, microfluidics, Dielectrophoresis, cancer, tumours, Microfluidics, antibody-based differential capacitive sensor, Biological cells, biological techniques, biomedical transducers, Cancer, cancer diagnoses, capacitance measurement, DEP actuation, DEP enrichment microfluidic platform, dielectrophoresis actuation, dielectrophoresis enrichment microfluidic platform, Differential capacitive sensing, electrophoresis, metabolic disease application, rare cell immobilization, tumor rare cell detection, Tumors |
Subjects: | Electronics and Communications > Electronics and Computer Engineering |
Divisions: | Center for Electronics and Telecommunications Research (CETR) Faculty of Electronics and Telecommunications (FET) |
Depositing User: | Bùi Thanh Tùng |
Date Deposited: | 04 Dec 2017 02:56 |
Last Modified: | 09 Dec 2019 07:02 |
URI: | http://eprints.uet.vnu.edu.vn/eprints/id/eprint/2726 |
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- Dielectrophoresis enrichment with built-in capacitive sensor microfluidic platform for tumor rare cell detection. (deposited 04 Dec 2017 02:56) [Currently Displayed]
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