A new stiffness evaluation toward high speed cell sorter

Cell stiffness could be an index for evaluating its activity. Although various systems measuring cell stiffness have been proposed so far, they are slow for adaptively connecting to cell sorters capable of handling more than 1000 [cells/sec]. This paper proposes a new approach that can indirectly ev...

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Published in2010 IEEE International Conference on Robotics and Automation pp. 4113 - 4118
Main Authors Hirose, Yuki, Tadakuma, Kenjiro, Higashimori, Mitsuru, Arai, Tatsuo, Kaneko, Makoto, Iitsuka, Ryo, Yamanishi, Yoko, Arai, Fumihito
Format Conference Proceeding
LanguageEnglish
Japanese
Published IEEE 01.05.2010
Subjects
Online AccessGet full text
ISBN9781424450381
1424450381
ISSN1050-4729
DOI10.1109/ROBOT.2010.5509970

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Abstract Cell stiffness could be an index for evaluating its activity. Although various systems measuring cell stiffness have been proposed so far, they are slow for adaptively connecting to cell sorters capable of handling more than 1000 [cells/sec]. This paper proposes a new approach that can indirectly evaluate the cell stiffness by measuring the passing time for a narrow channel. When a cell passes through the channel, it receives a viscous force depending upon how much deformation is exerted on the cell. We show that the stiffness is a function of both the passing time and the initial diameter of cell. We also show that the stiffness is proportional to the passing time and inversely proportional to the initial diameter, under the assumption that the thickness of fluid film is inversely proportional to the normal force. The experimental validation is given together with the basic working principle.
AbstractList Cell stiffness could be an index for evaluating its activity. Although various systems measuring cell stiffness have been proposed so far, they are slow for adaptively connecting to cell sorters capable of handling more than 1000 [cells/sec]. This paper proposes a new approach that can indirectly evaluate the cell stiffness by measuring the passing time for a narrow channel. When a cell passes through the channel, it receives a viscous force depending upon how much deformation is exerted on the cell. We show that the stiffness is a function of both the passing time and the initial diameter of cell. We also show that the stiffness is proportional to the passing time and inversely proportional to the initial diameter, under the assumption that the thickness of fluid film is inversely proportional to the normal force. The experimental validation is given together with the basic working principle.
Author Arai, Fumihito
Arai, Tatsuo
Iitsuka, Ryo
Tadakuma, Kenjiro
Higashimori, Mitsuru
Yamanishi, Yoko
Hirose, Yuki
Kaneko, Makoto
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  givenname: Kenjiro
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  givenname: Yoko
  surname: Yamanishi
  fullname: Yamanishi, Yoko
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  organization: Dept. of Bioeng. & Robot., Tohoku Univ., Sendai, Japan
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  givenname: Fumihito
  surname: Arai
  fullname: Arai, Fumihito
  email: arai@imech.mech.tohoku.ac.jp
  organization: Dept. of Bioeng. & Robot., Tohoku Univ., Sendai, Japan
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Snippet Cell stiffness could be an index for evaluating its activity. Although various systems measuring cell stiffness have been proposed so far, they are slow for...
SourceID ieee
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StartPage 4113
SubjectTerms Atomic force microscopy
Cells (biology)
Displacement measurement
Drag
Force measurement
Joining processes
Microchannel
Robotics and automation
Tissue engineering
USA Councils
Title A new stiffness evaluation toward high speed cell sorter
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