-
1
-
-
29144455448
-
A novel fabrication method of flexible and monolithic 3D microfluidic structures using lamination of SU-8 films
-
10.1088/0960-1317/16/1/016 10.1088/0960-1317/16/1/016
-
P. Abgrall, C. Lattes, V. Conédéra, X. Dollat, S. Colin, A.M. Gué, A novel fabrication method of flexible and monolithic 3D microfluidic structures using lamination of SU-8 films. J. Micromech. Microeng. 16(1), 113-121 (2006). doi: 10.1088/0960-1317/16/1/016
-
(2006)
J. Micromech. Microeng.
, vol.16
, Issue.1
, pp. 113-121
-
-
Abgrall, P.1
Lattes, C.2
Conédéra, V.3
Dollat, X.4
Colin, S.5
Gué, A.M.6
-
2
-
-
77953590739
-
Microfluidic electroporation of tumor and blood cells: Observation of nucleus expansion and implications on selective analysis and purging of circulating tumor cells
-
10.1039/b919820b 10.1039/b919820b
-
N. Bao, T.T. Le, J.-X. Cheng, C. Lu, Microfluidic electroporation of tumor and blood cells: observation of nucleus expansion and implications on selective analysis and purging of circulating tumor cells. Integr. Biol. 2, 113-120 (2010). doi: 10.1039/b919820b
-
(2010)
Integr. Biol.
, vol.2
, pp. 113-120
-
-
Bao, N.1
Le, T.T.2
Cheng, J.-X.3
Lu, C.4
-
3
-
-
37549023085
-
Polymer microfabrication technologies for microfluidic systems
-
10.1007/s00216-007-1692-2 10.1007/s00216-007-1692-2
-
H. Becker, C. Gärtner, Polymer microfabrication technologies for microfluidic systems. Anal. Bioanal. Chem. 390(1), 89-111 (2008). doi: 10.1007/s00216-007-1692-2
-
(2008)
Anal. Bioanal. Chem.
, vol.390
, Issue.1
, pp. 89-111
-
-
Becker, H.1
Gärtner, C.2
-
4
-
-
33644844136
-
Fabrication and characterization of poly(methylmethacrylate) microfluidic devices bonded using surface modifications and solvents
-
10.1039/b512179e 10.1039/b512179e
-
L. Brown, T. Koerner, J.H. Horton, R.D. Oleschuk, Fabrication and characterization of poly(methylmethacrylate) microfluidic devices bonded using surface modifications and solvents. Lab On A Chip 6(1), 66-73 (2006). doi: 10.1039/b512179e
-
(2006)
Lab on A Chip
, vol.6
, Issue.1
, pp. 66-73
-
-
Brown, L.1
Koerner, T.2
Horton, J.H.3
Oleschuk, R.D.4
-
5
-
-
55249104596
-
Current techniques for single-cell lysis
-
10.1098/rsif.2008.0009.focus 10.1098/rsif.2008.0009.focus
-
R.B. Brown, J. Audet, Current techniques for single-cell lysis. J. Royal Soc., Interface / the Royal Society 5(Suppl 2), S131-8 (2008). doi: 10.1098/rsif.2008.0009.focus
-
(2008)
J. Royal Soc., Interface / the Royal Society
, vol.5
, Issue.SUPPL 2
, pp. 131-138
-
-
Brown, R.B.1
Audet, J.2
-
6
-
-
1842834076
-
Reagentless mechanical cell lysis by nanoscale barbs in microchannels for sample preparation
-
10.1039/b305162e 10.1039/b305162e
-
D. Di Carlo, K.-H. Jeong, L.P. Lee, Reagentless mechanical cell lysis by nanoscale barbs in microchannels for sample preparation. Lab On A Chip 3(4), 287-91 (2003). doi: 10.1039/b305162e
-
(2003)
Lab on A Chip
, vol.3
, Issue.4
, pp. 287-291
-
-
Di Carlo, D.1
Jeong, K.-H.2
Lee, L.P.3
-
7
-
-
82555176812
-
A low cost point-of-care viscous sample preparation device for molecular diagnosis in the developing world; An example of microfluidic origami
-
10.1039/c1lc20622b 10.1039/c1lc20622b
-
A.V. Govindarajan, S. Ramachandran, G.D. Vigil, P. Yager, K.F. Böhringer, A low cost point-of-care viscous sample preparation device for molecular diagnosis in the developing world; an example of microfluidic origami. Lab On A chip 12(1), 174-81 (2012). doi: 10.1039/c1lc20622b
-
(2012)
Lab on A Chip
, vol.12
, Issue.1
, pp. 174-181
-
-
Govindarajan, A.V.1
Ramachandran, S.2
Vigil, G.D.3
Yager, P.4
Böhringer, K.F.5
-
8
-
-
29244481147
-
3D polymeric microfluidic device fabrication via contact liquid photolithographic polymerization (CLiPP)
-
10.1016/j.snb.2005.03.096 10.1016/j.snb.2005.03.096
-
K.T. Haraldsson, J.B. Hutchison, R.P. Sebra, B.T. Good, K.S. Anseth, C.N. Bowman, 3D polymeric microfluidic device fabrication via contact liquid photolithographic polymerization (CLiPP). Sensors and Actuators B: Chemical 113(1), 454-460 (2006). doi: 10.1016/j.snb.2005.03.096
-
(2006)
Sensors and Actuators B: Chemical
, vol.113
, Issue.1
, pp. 454-460
-
-
Haraldsson, K.T.1
Hutchison, J.B.2
Sebra, R.P.3
Good, B.T.4
Anseth, K.S.5
Bowman, C.N.6
-
9
-
-
77956306329
-
Deformability based cell margination - A simple microfluidic design for malaria-infected erythrocyte separation
-
10.1039/c003873c 10.1039/c003873c
-
H.W. Hou, A.A.S. Bhagat, A.G.L. Chong, P. Mao, K.S.W. Tan, J. Han, C.T. Lim, Deformability based cell margination-a simple microfluidic design for malaria-infected erythrocyte separation. Lab On A Chip 10(19), 2605-13 (2010). doi: 10.1039/c003873c
-
(2010)
Lab on A Chip
, vol.10
, Issue.19
, pp. 2605-2613
-
-
Hou, H.W.1
Bhagat, A.A.S.2
Chong, A.G.L.3
Mao, P.4
Tan, K.S.W.5
Han, J.6
Lim, C.T.7
-
10
-
-
84860479671
-
Microfluidic organic light emitting diode (OLED) using liquid organic semiconductors
-
doi: 10.1109/MEMSYS.2012.6170256
-
T. Kasahara, J. Mizuno, S. Hirata, T. Edura, S. Matsunami, C. Adachi, S. Shoji, Microfluidic organic light emitting diode (OLED) using liquid organic semiconductors. 2012 IEEE 25th International Conference on Micro Electro Mechanical Systems (MEMS). (IEEE 2012), pp. 1069-1072. doi: 10.1109/MEMSYS.2012. 6170256
-
2012 IEEE 25th International Conference on Micro Electro Mechanical Systems (MEMS). (IEEE 2012)
, pp. 1069-1072
-
-
Kasahara, T.1
Mizuno, J.2
Hirata, S.3
Edura, T.4
Matsunami, S.5
Adachi, C.6
Shoji, S.7
-
12
-
-
0023895177
-
Electroporation of cell membrane visualized under a pulsed-laser fluorescence microscope
-
10.1016/S0006-3495(88)83181-3 10.1016/S0006-3495(88)83181-3
-
K. Kinosita, I. Ashikawa, N. Saita, H. Yoshimura, H. Itoh, K. Nagayama, A. Ikegami, Electroporation of cell membrane visualized under a pulsed-laser fluorescence microscope. Biophys. J. 53(6), 1015-9 (1988). doi: 10.1016/S0006-3495(88)83181-3
-
(1988)
Biophys. J.
, vol.53
, Issue.6
, pp. 1015-1019
-
-
Kinosita, K.1
Ashikawa, I.2
Saita, N.3
Yoshimura, H.4
Itoh, H.5
Nagayama, K.6
Ikegami, A.7
-
13
-
-
0042040751
-
CO(2)-laser micromachining and back-end processing for rapid production of PMMA-based microfluidic systems
-
10.1039/b206409j 10.1039/b206409j
-
H. Klank, J.P. Kutter, O. Geschke, CO(2)-laser micromachining and back-end processing for rapid production of PMMA-based microfluidic systems. Lab On A Chip 2(4), 242-6 (2002). doi: 10.1039/b206409j
-
(2002)
Lab on A Chip
, vol.2
, Issue.4
, pp. 242-246
-
-
Klank, H.1
Kutter, J.P.2
Geschke, O.3
-
14
-
-
34248579697
-
A continuous electrical cell lysis device using a low dc voltage for a cell transport and rupture
-
10.1016/j.snb.2006.11.054 10.1016/j.snb.2006.11.054
-
D.W. Lee, Y.-H. Cho, A continuous electrical cell lysis device using a low dc voltage for a cell transport and rupture. Sensors and Actuators B: Chemical 124(1), 84-89 (2007). doi: 10.1016/j.snb.2006.11.054
-
(2007)
Sensors and Actuators B: Chemical
, vol.124
, Issue.1
, pp. 84-89
-
-
Lee, D.W.1
Cho, Y.-H.2
-
15
-
-
77951296511
-
The optimization of in vitro high-throughput chemical lysis of Escherichia coli. Application to ACP domain of the polyketide synthase ppsC from Mycobacterium tuberculosis
-
10.1007/s10969-009-9077-8 10.1007/s10969-009-9077-8
-
P. Listwan, J.-D. Pédelacq, M. Lockard, C. Bell, T.C. Terwilliger, G.S. Waldo, The optimization of in vitro high-throughput chemical lysis of Escherichia coli. Application to ACP domain of the polyketide synthase ppsC from Mycobacterium tuberculosis. J. Struct. Funct. Genomics 11(1), 41-9 (2010). doi: 10.1007/s10969-009-9077-8
-
(2010)
J. Struct. Funct. Genomics
, vol.11
, Issue.1
, pp. 41-49
-
-
Listwan, P.1
Pédelacq, J.-D.2
Lockard, M.3
Bell, C.4
Terwilliger, T.C.5
Waldo, G.S.6
-
16
-
-
27644558302
-
Design and fabrication of poly(dimethylsiloxane) electrophoresis microchip with integrated electrodes
-
10.1007/s00542-005-0608-3 10.1007/s00542-005-0608-3
-
C.C. Liu, D.F. Cui, Design and fabrication of poly(dimethylsiloxane) electrophoresis microchip with integrated electrodes. Microsyst. Technol. 11(12), 1262-1266 (2005). doi: 10.1007/s00542-005-0608-3
-
(2005)
Microsyst. Technol.
, vol.11
, Issue.12
, pp. 1262-1266
-
-
Liu, C.C.1
Cui, D.F.2
-
17
-
-
12344334376
-
A microfluidic electroporation device for cell lysis
-
10.1039/b406205a 10.1039/b406205a
-
H. Lu, M.A. Schmidt, K.F. Jensen, A microfluidic electroporation device for cell lysis. Lab On A Chip 5(1), 23-9 (2005). doi: 10.1039/b406205a
-
(2005)
Lab on A Chip
, vol.5
, Issue.1
, pp. 23-29
-
-
Lu, H.1
Schmidt, M.A.2
Jensen, K.F.3
-
18
-
-
33749261761
-
Three dimensional electrode array for cell lysis via electroporation
-
10.1016/j.bios.2006.08.009 10.1016/j.bios.2006.08.009
-
K.-Y. Lu, A.M. Wo, Y.-J. Lo, K.-C. Chen, C.-M. Lin, C.-R. Yang, Three dimensional electrode array for cell lysis via electroporation. Biosens. Bioelectron. 22(4), 568-74 (2006). doi: 10.1016/j.bios.2006.08.009
-
(2006)
Biosens. Bioelectron.
, vol.22
, Issue.4
, pp. 568-574
-
-
Lu, K.-Y.1
Wo, A.M.2
Lo, Y.-J.3
Chen, K.-C.4
Lin, C.-M.5
Yang, C.-R.6
-
20
-
-
84874501440
-
Very high throughput electrical cell lysis and extraction of intracellular compounds using 3D carbon electrodes in Lab-on-a-Chip devices
-
10.3390/mi3030574 10.3390/mi3030574
-
G. Mernier, R. Martinez-Duarte, R. Lehal, F. Radtke, P. Renaud, Very high throughput electrical cell lysis and extraction of intracellular compounds using 3D carbon electrodes in Lab-on-a-Chip devices. Micromachines 3(3), 574-581 (2012). doi: 10.3390/mi3030574
-
(2012)
Micromachines
, vol.3
, Issue.3
, pp. 574-581
-
-
Mernier, G.1
Martinez-Duarte, R.2
Lehal, R.3
Radtke, F.4
Renaud, P.5
-
21
-
-
0002429667
-
Polyimide-based microfluidic devices
-
10.1039/b103896f 10.1039/b103896f
-
S. Metz, R. Holzer, P. Renaud, Polyimide-based microfluidic devices. Lab On A Chip 1(1), 29-34 (2001). doi: 10.1039/b103896f
-
(2001)
Lab on A Chip
, vol.1
, Issue.1
, pp. 29-34
-
-
Metz, S.1
Holzer, R.2
Renaud, P.3
-
22
-
-
58149347087
-
Thick single-layer positive photoresist mold and poly(dimethylsiloxane) (PDMS) dry etching for the fabrication of a glass-PDMS-glass microfluidic device
-
10.1088/0960-1317/18/11/115025 10.1088/0960-1317/18/11/115025
-
S.R. Oh, Thick single-layer positive photoresist mold and poly(dimethylsiloxane) (PDMS) dry etching for the fabrication of a glass-PDMS-glass microfluidic device. J. Micromech. Microeng. 18(11), 115025 (2008). doi: 10.1088/0960-1317/18/11/115025
-
(2008)
J. Micromech. Microeng.
, vol.18
, Issue.11
, pp. 115025
-
-
Oh, S.R.1
-
23
-
-
33244496642
-
Rapid, low cost microfabrication technologies toward realization of devices for dielectrophoretic manipulation of particles and nanowires
-
10.1016/j.snb.2005.06.022 10.1016/j.snb.2005.06.022
-
S. Rajaraman, H.M. Noh, P.J. Hesketh, D.S. Gottfried, Rapid, low cost microfabrication technologies toward realization of devices for dielectrophoretic manipulation of particles and nanowires. Sensors and Actuators B: Chemical 114(1), 392-401 (2006). doi: 10.1016/j.snb.2005.06.022
-
(2006)
Sensors and Actuators B: Chemical
, vol.114
, Issue.1
, pp. 392-401
-
-
Rajaraman, S.1
Noh, H.M.2
Hesketh, P.J.3
Gottfried, D.S.4
-
24
-
-
33745763576
-
Pulsed laser microbeam-induced cell lysis: Time-resolved imaging and analysis of hydrodynamic effects
-
10.1529/biophysj.105.079921 10.1529/biophysj.105.079921
-
K.R. Rau, P.A. Quinto-Su, A.N. Hellman, V. Venugopalan, Pulsed laser microbeam-induced cell lysis: time-resolved imaging and analysis of hydrodynamic effects. Biophys. J. 91(1), 317-29 (2006). doi: 10.1529/biophysj.105.079921
-
(2006)
Biophys. J.
, vol.91
, Issue.1
, pp. 317-329
-
-
Rau, K.R.1
Quinto-Su, P.A.2
Hellman, A.N.3
Venugopalan, V.4
-
25
-
-
79960818972
-
Carbon nanotubes for voltage reduction and throughput enhancement of electrical cell lysis on a lab-on-a-chip
-
10.1088/0957-4484/22/32/325705 10.1088/0957-4484/22/32/325705
-
M. Shahini, J.T.W. Yeow, Carbon nanotubes for voltage reduction and throughput enhancement of electrical cell lysis on a lab-on-a-chip. Nanotechnology 22(32), 325705 (2011). doi: 10.1088/0957-4484/22/32/325705
-
(2011)
Nanotechnology
, vol.22
, Issue.32
, pp. 325705
-
-
Shahini, M.1
Yeow, J.T.W.2
-
26
-
-
33947148671
-
Theoretical and experimental investigations into laser ablation of polyimide and copper films with 355-nm Nd:YVO4 laser
-
10.1016/j.jmatprotec.2006.11.106 10.1016/j.jmatprotec.2006.11.106
-
B.S. Shin, J.Y. Oh, H. Sohn, Theoretical and experimental investigations into laser ablation of polyimide and copper films with 355-nm Nd:YVO4 laser. J. Mater. Process. Technol. 187-188, 260-263 (2007). doi: 10.1016/j.jmatprotec. 2006.11.106
-
(2007)
J. Mater. Process. Technol.
, vol.187-188
, pp. 260-263
-
-
Shin, B.S.1
Oh, J.Y.2
Sohn, H.3
-
27
-
-
77949705849
-
Combined pulse electroporation-a novel strategy for highly efficient transfection of human and mouse cells
-
10.1371/journal.pone.0009488 10.1371/journal.pone.0009488
-
T. Stroh, U. Erben, A.A. Kühl, M. Zeitz, B. Siegmund, Combined pulse electroporation-a novel strategy for highly efficient transfection of human and mouse cells. PLoS One 5(3), e9488 (2010). doi: 10.1371/journal.pone.0009488
-
(2010)
PLoS One
, vol.5
, Issue.3
, pp. 9488
-
-
Stroh, T.1
Erben, U.2
Kühl, A.A.3
Zeitz, M.4
Siegmund, B.5
-
28
-
-
33846246380
-
PDMS absorption of small molecules and consequences in microfluidic applications
-
10.1039/b612140c 10.1039/b612140c
-
M.W. Toepke, D.J. Beebe, PDMS absorption of small molecules and consequences in microfluidic applications. Lab On A Chip 6(12), 1484-6 (2006). doi: 10.1039/b612140c
-
(2006)
Lab on A Chip
, vol.6
, Issue.12
, pp. 1484-1486
-
-
Toepke, M.W.1
Beebe, D.J.2
-
29
-
-
0041938330
-
Effect of electric field induced transmembrane potential on spheroidal cells: Theory and experiment
-
10.1007/s00249-003-0296-9 10.1007/s00249-003-0296-9
-
B. Valic, M. Golzio, M. Pavlin, A. Schatz, C. Faurie, B. Gabriel, J. Teissié et al., Effect of electric field induced transmembrane potential on spheroidal cells: theory and experiment. European Biophysics Journal: EBJ 32(6), 519-28 (2003). doi: 10.1007/s00249-003-0296-9
-
(2003)
European Biophysics Journal: EBJ
, vol.32
, Issue.6
, pp. 519-528
-
-
Valic, B.1
Golzio, M.2
Pavlin, M.3
Schatz, A.4
Faurie, C.5
Gabriel, B.6
Teissié, J.7
-
30
-
-
81555196338
-
Parallel single-cell analysis microfluidic platform
-
10.1002/elps.201100413 10.1002/elps.201100413
-
F.T.G. Van den Brink, E. Gool, J.-P. Frimat, J. Bomer, A. Van den Berg, S. Le Gac, Parallel single-cell analysis microfluidic platform. Electrophoresis 32(22), 3094-100 (2011). doi: 10.1002/elps.201100413
-
(2011)
Electrophoresis
, vol.32
, Issue.22
, pp. 3094-3100
-
-
Van Den Brink, F.T.G.1
Gool, E.2
Frimat, J.-P.3
Bomer, J.4
Van Den Berg, A.5
Le Gac, S.6
-
31
-
-
33746220203
-
Electroporation of mammalian cells in a microfluidic channel with geometric variation
-
10.1021/ac060733n 10.1021/ac060733n
-
H. Wang, C. Lu, Electroporation of mammalian cells in a microfluidic channel with geometric variation. Anal. Chem. 78(14), 5158-64 (2006a). doi: 10.1021/ac060733n
-
(2006)
Anal. Chem.
, vol.78
, Issue.14
, pp. 5158-5164
-
-
Wang, H.1
Lu, C.2
-
32
-
-
33845450317
-
High-throughput and real-time study of single cell electroporation using microfluidics: Effects of medium osmolarity
-
10.1002/bit 10.1002/bit.21066
-
H. Wang, C. Lu, High-throughput and real-time study of single cell electroporation using microfluidics: effects of medium osmolarity. Biotechnol. Bioeng. 95(6), 1116-1125 (2006b). doi: 10.1002/bit
-
(2006)
Biotechnol. Bioeng.
, vol.95
, Issue.6
, pp. 1116-1125
-
-
Wang, H.1
Lu, C.2
-
33
-
-
12244255362
-
Microfluidic chip for peptide analysis with an integrated HPLC column, sample enrichment column, and nanoelectrospray tip
-
10.1021/ac049068d 10.1021/ac049068d
-
H. Yin, K. Killeen, R. Brennen, D. Sobek, M. Werlich, T. Van de Goor, Microfluidic chip for peptide analysis with an integrated HPLC column, sample enrichment column, and nanoelectrospray tip. Anal. Chem. 77(2), 527-533 (2005). doi: 10.1021/ac049068d
-
(2005)
Anal. Chem.
, vol.77
, Issue.2
, pp. 527-533
-
-
Yin, H.1
Killeen, K.2
Brennen, R.3
Sobek, D.4
Werlich, M.5
Van De Goor, T.6
-
34
-
-
47349129713
-
Microfabricated polydimethylsiloxane microfluidic system including micropump and microvalve for integrated biosensor
-
10.1016/j.cap.2007.04.050 10.1016/j.cap.2007.04.050
-
J.-C. Yoo, G.-S. La, C.J. Kang, Y.-S. Kim, Microfabricated polydimethylsiloxane microfluidic system including micropump and microvalve for integrated biosensor. Curr. Appl. Phys. 8(6), 692-695 (2008). doi: 10.1016/j.cap.2007.04.050
-
(2008)
Curr. Appl. Phys.
, vol.8
, Issue.6
, pp. 692-695
-
-
Yoo, J.-C.1
La, G.-S.2
Kang, C.J.3
Kim, Y.-S.4
|