DESIGN AND FABRICATION MICROFLUIDIC INTEGRATED DEP-QCM FOR SEPARATING X-SPERM AND Y-SPERM

碩士 === 大同大學 === 機械工程學系(所) === 101 === In the recent year, MEMS technology have been developed and applied in various kinds of fields, such as optics, power, sensor, bioengineer and etc. However, with the improvement of quality of the life, people want to have better medical treatment. MEMS technolog...

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Main Authors: Chin-Yuan Cheng, 鄭金源
Other Authors: Chao-Heng Chen
Format: Others
Language:zh-TW
Published: 2013
Online Access:http://ndltd.ncl.edu.tw/handle/06665147860315024366
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spelling ndltd-TW-101TTU053110262015-10-13T22:56:53Z http://ndltd.ncl.edu.tw/handle/06665147860315024366 DESIGN AND FABRICATION MICROFLUIDIC INTEGRATED DEP-QCM FOR SEPARATING X-SPERM AND Y-SPERM 設計與製作微流道整合DEP-QCM分離精蟲 Chin-Yuan Cheng 鄭金源 碩士 大同大學 機械工程學系(所) 101 In the recent year, MEMS technology have been developed and applied in various kinds of fields, such as optics, power, sensor, bioengineer and etc. However, with the improvement of quality of the life, people want to have better medical treatment. MEMS technology is applied by biotechnology such as separate bio particles to do some things like medical treatment. In this paper, we focus on human genetics to choose different gender for every people requirement. We designed a microchip to affect sperm in microfluidic by the structure、PH value. After separation, we used DEP-QCM structure to detect and measurement all off the experiment controlled value and the QCM frequency value with voltage and frequency from function generator. In this research, we design a corner and changed the PH value to affect the sperm between X-sperm and Y-sperm. We finally made much of the Y-sperm to turn direct by the different PH value with the buffer solution. And then, sperm would been adsorbed on the QCM and detected with frequency to proof the design is true and effective. Chao-Heng Chen 簡昭珩 2013 學位論文 ; thesis 98 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 大同大學 === 機械工程學系(所) === 101 === In the recent year, MEMS technology have been developed and applied in various kinds of fields, such as optics, power, sensor, bioengineer and etc. However, with the improvement of quality of the life, people want to have better medical treatment. MEMS technology is applied by biotechnology such as separate bio particles to do some things like medical treatment. In this paper, we focus on human genetics to choose different gender for every people requirement. We designed a microchip to affect sperm in microfluidic by the structure、PH value. After separation, we used DEP-QCM structure to detect and measurement all off the experiment controlled value and the QCM frequency value with voltage and frequency from function generator. In this research, we design a corner and changed the PH value to affect the sperm between X-sperm and Y-sperm. We finally made much of the Y-sperm to turn direct by the different PH value with the buffer solution. And then, sperm would been adsorbed on the QCM and detected with frequency to proof the design is true and effective.
author2 Chao-Heng Chen
author_facet Chao-Heng Chen
Chin-Yuan Cheng
鄭金源
author Chin-Yuan Cheng
鄭金源
spellingShingle Chin-Yuan Cheng
鄭金源
DESIGN AND FABRICATION MICROFLUIDIC INTEGRATED DEP-QCM FOR SEPARATING X-SPERM AND Y-SPERM
author_sort Chin-Yuan Cheng
title DESIGN AND FABRICATION MICROFLUIDIC INTEGRATED DEP-QCM FOR SEPARATING X-SPERM AND Y-SPERM
title_short DESIGN AND FABRICATION MICROFLUIDIC INTEGRATED DEP-QCM FOR SEPARATING X-SPERM AND Y-SPERM
title_full DESIGN AND FABRICATION MICROFLUIDIC INTEGRATED DEP-QCM FOR SEPARATING X-SPERM AND Y-SPERM
title_fullStr DESIGN AND FABRICATION MICROFLUIDIC INTEGRATED DEP-QCM FOR SEPARATING X-SPERM AND Y-SPERM
title_full_unstemmed DESIGN AND FABRICATION MICROFLUIDIC INTEGRATED DEP-QCM FOR SEPARATING X-SPERM AND Y-SPERM
title_sort design and fabrication microfluidic integrated dep-qcm for separating x-sperm and y-sperm
publishDate 2013
url http://ndltd.ncl.edu.tw/handle/06665147860315024366
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AT chinyuancheng shèjìyǔzhìzuòwēiliúdàozhěnghédepqcmfēnlíjīngchóng
AT zhèngjīnyuán shèjìyǔzhìzuòwēiliúdàozhěnghédepqcmfēnlíjīngchóng
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