-
1
-
-
0141892535
-
An integrated microfluidic biochemical detection system for protein analysis with magnetic bead-based sampling capabilities
-
J. Choi, K. Oh, J. Thomas, W. Heineman, H. Halsall, J. Nevin, A. Helmicki, H. Hendersona, and C. Ahn, "An integrated microfluidic biochemical detection system for protein analysis with magnetic bead-based sampling capabilities," Lab Chip, vol. 2, pp. 27-30, 2002.
-
(2002)
Lab Chip
, vol.2
, pp. 27-30
-
-
Choi, J.1
Oh, K.2
Thomas, J.3
Heineman, W.4
Halsall, H.5
Nevin, J.6
Helmicki, A.7
Hendersona, H.8
Ahn, C.9
-
2
-
-
56549083018
-
Innovations in optical microfluidic technologies for point-of-care diagnostics
-
F. Myers and L. Lee, "Innovations in optical microfluidic technologies for point-of-care diagnostics," Lab Chip, vol. 8, pp. 2015-2031, 2008.
-
(2008)
Lab Chip
, vol.8
, pp. 2015-2031
-
-
Myers, F.1
Lee, L.2
-
3
-
-
0034781959
-
Substitution of antibodies and receptors with molecularly imprinted polymers in enzyme-linked and fluorescent assays
-
S. Piletsky, E. Piletska, A. Bossi, K. Karim, P. Lowe, A. Turner, "Substitution of antibodies and receptors with molecularly imprinted polymers in enzyme-linked and fluorescent assays," Biosens Bioelectron, vol. 16, pp. 701-707, 2001.
-
(2001)
Biosens Bioelectron
, vol.16
, pp. 701-707
-
-
Piletsky, S.1
Piletska, E.2
Bossi, A.3
Karim, K.4
Lowe, P.5
Turner, A.6
-
4
-
-
84862966798
-
An electric detection of immunoglobulin G in the enzyme-linked immunosorbent assay using an indium oxide nanoparticle ion-sensitive field-effect transistor
-
D. Lee and T. Cui, "An electric detection of immunoglobulin G in the enzyme-linked immunosorbent assay using an indium oxide nanoparticle ion-sensitive field-effect transistor," J. Micromech. Microeng., vol. 22, pp. 1-9, 2012.
-
(2012)
J. Micromech. Microeng.
, vol.22
, pp. 1-9
-
-
Lee, D.1
Cui, T.2
-
5
-
-
45449087291
-
Neisseria meningitidis detection based on a microcalorimetric biosensor with a split-flow microchannel
-
S. Yoon, M.-H. Lim, S.-C. Park, J.-S. Shin, and Y.-J. Kim, "Neisseria meningitidis detection based on a microcalorimetric biosensor with a split-flow microchannel," J. Microelectromech. Syst., vol. 17, pp. 590-598, 2008.
-
(2008)
J. Microelectromech. Syst.
, vol.17
, pp. 590-598
-
-
Yoon, S.1
Lim, M.-H.2
Park, S.-C.3
Shin, J.-S.4
Kim, Y.-J.5
-
6
-
-
61849149444
-
An electrochemical immunosensing lab-on - A-chip integrated with latch mechanism for hand operation
-
S. Park, J. Lee, K. Kim, H. Yoon, and S. Yang, "An electrochemical immunosensing lab-on - A-chip integrated with latch mechanism for hand operation," J. Micromech. Microeng., vol. 19, pp. 1-11, 2009.
-
(2009)
J. Micromech. Microeng.
, vol.19
, pp. 1-11
-
-
Park, S.1
Lee, J.2
Kim, K.3
Yoon, H.4
Yang, S.5
-
7
-
-
84896736657
-
Design considerations for CMOS-integrated Hall-effect magnetic bead detectors for biosensor applications
-
K. Skucha, S. Gambini, P. Liu, M. Megens, J. Kim, and B. Boser, "Design considerations for CMOS-integrated Hall-effect magnetic bead detectors for biosensor applications," J. Microelectromech. Syst., 2259615, 2013.
-
(2013)
J. Microelectromech. Syst.
, pp. 2259615
-
-
Skucha, K.1
Gambini, S.2
Liu, P.3
Megens, M.4
Kim, J.5
Boser, B.6
-
8
-
-
84874545242
-
A CMOS magnetic microbead-based capacitive biosensor array with on-chip electromagnetic manipulation
-
A.-Y. Chang and M.-C. Lu, "A CMOS magnetic microbead-based capacitive biosensor array with on-chip electromagnetic manipulation," Biosens Bioelectron, vol. 45, pp. 6-12, 2013.
-
(2013)
Biosens Bioelectron
, vol.45
, pp. 6-12
-
-
Chang, A.-Y.1
Lu, M.-C.2
-
9
-
-
84877933854
-
A large area nano-gap interdigitated electrode array on a polymer substrate as a disposable nano-biosensor
-
J. Shim, M. Rust, and C. Ahn, "A large area nano-gap interdigitated electrode array on a polymer substrate as a disposable nano-biosensor," J. Micromech. Microeng., vol. 23, pp. 1-6, 2013.
-
(2013)
J. Micromech. Microeng.
, vol.23
, pp. 1-6
-
-
Shim, J.1
Rust, M.2
Ahn, C.3
-
10
-
-
35148814582
-
An electrolysis-bubble-actuated micropump based on the roughness gradient design of hydrophobic surface
-
C.-M. Cheng and C.-H. Liu, "An Electrolysis-Bubble-Actuated Micropump Based on the Roughness Gradient Design of Hydrophobic Surface," J. Microelectromech. Syst., vol. 16, pp. 1095-1105, 2007.
-
(2007)
J. Microelectromech. Syst.
, vol.16
, pp. 1095-1105
-
-
Cheng, C.-M.1
Liu, C.-H.2
-
11
-
-
78049475961
-
A bubble-activated micropump with high-frequency flow reversal
-
S.-C. Chan, C.-R. Chen, and C.-H. Liu, "A bubble-activated micropump with high-frequency flow reversal," Sens. Actuators A, Phys., vol. 163, pp. 501-509, 2010.
-
(2010)
Sens. Actuators A, Phys.
, vol.163
, pp. 501-509
-
-
Chan, S.-C.1
Chen, C.-R.2
Liu, C.-H.3
-
12
-
-
67349168792
-
Hydrogel-based microsensors for wireless chemical monitoring
-
M. Lei, A. Baldi, E. Nuxoll, R. Siegel, and B. Ziaie, "Hydrogel-based microsensors for wireless chemical monitoring," Biomed. Microdevices, vol. 11, no. 3, pp. 529-538, 2009.
-
(2009)
Biomed. Microdevices
, vol.11
, Issue.3
, pp. 529-538
-
-
Lei, M.1
Baldi, A.2
Nuxoll, E.3
Siegel, R.4
Ziaie, B.5
-
13
-
-
63849105471
-
A wireless bio-MEMS sensor for C-reactive protein detection based on nanomechanics
-
C.-H. Chen, R.-Z. Hwang, L.-S. Huang, S. Lin, H.-C. Chen, Y.-C. Yang, Y.-T. Lin, S.-A. Yu, Y.-H. Wang, N.-K. Chou, and S.-S. Lu, "A wireless bio-MEMS sensor for C-reactive protein detection based on nanomechanics," IEEE Trans. Biomed. Eng., vol. 56, pp. 462-470, 2009.
-
(2009)
IEEE Trans. Biomed. Eng.
, vol.56
, pp. 462-470
-
-
Chen, C.-H.1
Hwang, R.-Z.2
Huang, L.-S.3
Lin, S.4
Chen, H.-C.5
Yang, Y.-C.6
Lin, Y.-T.7
Yu, S.-A.8
Wang, Y.-H.9
Chou, N.-K.10
Lu, S.-S.11
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