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The Study of the Effect of Microcont...
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Lopes, Ana Raquel Jacome.
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The Study of the Effect of Microcontrations in the Separation of Blood Cells: Soft Lithography and Micromilling.
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
The Study of the Effect of Microcontrations in the Separation of Blood Cells: Soft Lithography and Micromilling./
作者:
Lopes, Ana Raquel Jacome.
出版者:
Ann Arbor : ProQuest Dissertations & Theses, : 2014,
面頁冊數:
69 p.
附註:
Source: Masters Abstracts International, Volume: 84-05.
Contained By:
Masters Abstracts International84-05.
標題:
Circulatory system. -
電子資源:
https://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=30167415
ISBN:
9798357521828
The Study of the Effect of Microcontrations in the Separation of Blood Cells: Soft Lithography and Micromilling.
Lopes, Ana Raquel Jacome.
The Study of the Effect of Microcontrations in the Separation of Blood Cells: Soft Lithography and Micromilling.
- Ann Arbor : ProQuest Dissertations & Theses, 2014 - 69 p.
Source: Masters Abstracts International, Volume: 84-05.
Thesis (M.Sc.)--Instituto Politecnico de Braganca (Portugal), 2014.
The detection, separation and manipulation of microparticles and blood cells are important stages for biologic and chemical analysis. A new application in the area of Biomedical Engineering with potential is the development of portables micro devices for diagnostic, those are known as lab-on-chips or blood-on-chips. Their principal function is the separation and identification pathological cells in a blood sample. For example, infected cells with diabetes and malaria, present different deformation indices from healthy ones. This device should be a simple and low cost way to separate pathologic cells from healthy. The goal of this work is to design a geometry containing a microcontraction and test its effect in the cell free layer (CFL) and consequently in the separation of cells from plasma.In a first phase, it is used a soft lithography method for the fabrication of hyperbolic microchannels in PDMS. The hyperbolic microchannels are tested with a hematocrit of 5% of ovine red blood cells. Some results were presented and discussed.A low cost fabrication method was used, consisting in using a micromilling machine to mill in PMMA glass or Plexiglass to fabricate microchannels with simple contractions. The microchannels were tested with 5% of ovine red blood cells. The low cost method was discussed and some results about cell separation were presented.
ISBN: 9798357521828Subjects--Topical Terms:
3680756
Circulatory system.
The Study of the Effect of Microcontrations in the Separation of Blood Cells: Soft Lithography and Micromilling.
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The detection, separation and manipulation of microparticles and blood cells are important stages for biologic and chemical analysis. A new application in the area of Biomedical Engineering with potential is the development of portables micro devices for diagnostic, those are known as lab-on-chips or blood-on-chips. Their principal function is the separation and identification pathological cells in a blood sample. For example, infected cells with diabetes and malaria, present different deformation indices from healthy ones. This device should be a simple and low cost way to separate pathologic cells from healthy. The goal of this work is to design a geometry containing a microcontraction and test its effect in the cell free layer (CFL) and consequently in the separation of cells from plasma.In a first phase, it is used a soft lithography method for the fabrication of hyperbolic microchannels in PDMS. The hyperbolic microchannels are tested with a hematocrit of 5% of ovine red blood cells. Some results were presented and discussed.A low cost fabrication method was used, consisting in using a micromilling machine to mill in PMMA glass or Plexiglass to fabricate microchannels with simple contractions. The microchannels were tested with 5% of ovine red blood cells. The low cost method was discussed and some results about cell separation were presented.
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A detecao, separacao e manipulacao de microparticulas e celulas sanguineas sao fases importantes para uma analise quimica e biologica. Uma nova aplicacao na area de Engenharia Biomedica com potencial e o desenvolvimento de microdispositivos portateis para diagnostico, mais conhecidos como "lab-on-chips" ou "blood-on-chips".A principal funcao destes dispositivos e a separacao e identificacao de celulas patologicas numa amostra de sangue. Certas doencas como a diabetes e a malaria alteram os indices de deformacao dos Globulos vermelhos, sendo o objetivo deste dispositivo a separacao das celulas saudaveis das patologicas de uma maneira simples e barata. O objetivo deste trabalho e projetar uma geometria com uma microcontracao e testar o efeito na camada livre de celula e consequentemente a sua eficacia na separacao de celulas do plasma. Numa primeira fase e realizada uma pequena explicacao sobre litografia, assim como os resultados e discussao dos escoamentos com sangue dos canais produzidos em PDMS a partir de um molde em uma wafer feitos por litografia com SU8.Numa segunda fase e explicado brevemente o processo de produzir microcanais, com uma micro-fresadora, em vidro de PMMA. Este processo consistiu em desenhar a geometria, o manuseamento dos softwares e os acabamentos finais nos microcanais fabricados.
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