Noerholm M, Bruus H, Jakobsen M H, Telleman P, Ramsing N B. Lab Chip, 2004, 4: 28—37
[2]
Keramas G, Perozziello G, Geschke O, Christensen C B V. Lab Chip, 2004, 4: 152—158
[3]
Liu J, Williams B A, Gwirtz R M, Wold B J, Quake S. Angew. Chem. Int. Ed., 2006, 45: 3618—3623
[4]
Wei C W, Cheng J Y, Huang C T, Yen M H, Young T H. Nucleic Acids Res., 2005, 33: art. no. e78
[5]
Erickson D, Liu X Z, Krull U, Li D Q. Anal. Chem., 2004, 76: 7269—7277
[6]
Erickson D, Liu X Z, Venditti R, Li D Q, Krull U J. Anal. Chem., 2005, 77: 4000—4007
[7]
Chen H, Wang L, Li P C H. Lab Chip, 2008, 8: 826—829
[8]
Tan W S, Lewis C L, Horelik N E, Pregibon D C, Doyle P S, Yi H. Langmuir, 2008, 24: 12483—12488
[9]
Yuen P K, Li G S, Bao Y J, Muller U R. Lab Chip, 2003, 3: 46—50
[10]
Bynum M A, Gordon G B. Anal. Chem., 2004, 76: 7039—7044
[11]
Lenigk R, Liu R H, Athavale M, Chen Z J, Ganser D, Yang J N, Rauch C, Liu Y J, Chan B, Yu H N, Ray M, Marrero R, Grodzinski P. Anal. Biochem., 2002, 311: 40—49
[12]
Chung Y C, Lin Y C, Shiu M Z, Chang W N T. Lab Chip, 2003, 3: 228—233
[13]
Chung Y C, Lin Y C, Hsu Y L, Chang W N T, Shiu M Z. J. Micromech. Microeng., 2004, 14: 1376—1383
[14]
Chung Y C, Lin Y C, Chueh C D, Ye C Y, Lai L W, Zhao Q L. Electrophoresis, 2008, 29: 1859—1865
Liu Y J, Rauch C B, Stevens R L, Lenigk R, Yang J N, Rhine D B, Grodzinski P. Anal. Chem., 2002, 74: 3063—3070
[39]
Liu R H, Yang J N, Lenigk R, Bonanno J, Grodzinski P. Anal. Chem., 2004, 76: 1824—1831
[40]
Liu R H, Lodes M J, Nguyen T, Siuda T, Slota M, Fuji H S, McShea A. Anal. Chem., 2006, 78: 4184—4193
[41]
Wick L M, Rouillard J M, Whittam T S, Gulari E, Tiedje J M, Hashsham S A. Nucleic Acids Res., 2006, 34: art. no. e26
[42]
Dodge A, Turcatti G, Lawrence I, de Rooij N F, Verpoorte E. Anal. Chem., 2004, 76: 1778—1787
[43]
Bau S, Schracke N, Kranzle M, Wu H G, Stahler P F, Hoheisel J D, Beier M, Summerer D. Anal. Bioanal. Chem., 2009, 393: 171—175
[44]
Summerer D, Schracke N, Wu H G, Cheng Y, Bau S, Stahler C F, Stahler P F, Beier M. Genomics, 2010, 95: 241—246
[45]
Summerer D, Hevroni D, Jain A, Oldenburger O, Parker J, Caruso A, Stahler C F, Stahler P F, Beier M. New Biotechnology, 2010, 27: 149—155
[46]
Liu R H, Nguyen T, Schwarzkopf K, Fuji H S, Petrova A, Siuda T, Peyvan K, Bizak M, Danley D, McShea A. Anal. Chem., 2006, 78: 1980—1986
[47]
Anderson R C, Su X, Bogdan G J, Fenton J. Nucleic Acids Res., 2000, 28: art. no. e60
[48]
Manz A, Graber N, Widemer H M. Sens. Acturators B, 1990, 1: 244—288
[49]
肖守军(Xiao S H), 陈凌(Chen L), 许宁(Xu L). 化学进展(Progress in Chemistry), 2009, 21(11): 2397—2410
[50]
Peytavi R, Raymond F R, Gagne D, Picard F J, Jia G Y, Zoval J, Madou M, Boissinot K, Boissinot M, Bissonnette L, Ouellette M, Bergeron M G. Clin. Chem., 2005, 51: 1836—1844
[51]
Lee H H, Smoot J, Murray Z M, Stahl D A, Yager P. Lab Chip, 2006, 6: 1163—1170
[52]
Jia G Y, Ma K S, Kim J, Zoval J V, Peytavi R, Bergeron M G, Madou M J. Sens. Actuators B, 2006, 114: 173—181
[53]
Wang L, Li P C H. J. Agric. Food Chem., 2007, 55: 10509—10516
[54]
Peng X Y, Li P C H, Yu H Z, Parameswaran M, Chou W L. Sens. Actuators B, 2007, 128: 64—69
[55]
Wang L, Li P C H. Anal. Biochem., 2010, 400: 282—288
[56]
Pregibon D C, Toner M, Doyle P S. Science, 2007, 315: 1393—1396
[57]
Pregibon D C, Doyle P S. Anal. Chem., 2009, 81: 4873—4881
[58]
Kim J H S, Marafie A, Jia X Y, Zoval J V, Madou M J. Sens. Actuators B, 2006, 113: 281—289
[59]
Das S, Subramanian K, Chakraborty S. Colloids Surf. B, 2007, 58: 203—217
[60]
Lambert R A, Das S, Madou M J, Chakraborty S, Rangel R H. Int. J. Heat Mass Transfer, 2008, 51: 4367—4378
[61]
Das S, Chakraborty S. AlChE J., 2007, 53: 1086—1099
[62]
Erickson D, Li D Q, Krull U J. Anal. Biochem., 2003, 317: 186—200
[63]
Fodor S P A, Read J L, Pirrung M C. Science, 1991, 251: 767—773
[64]
Frank R. Tetrahedron, 1992, 48: 9217—9232
[65]
余志文(Yu Z W), 于军(Yu J), 徐静平(Xu J P), 周文利(Zhou W L). 微电子学(Microelectronics), 2001, 31(2): 100—102
[66]
Zhang L G, Liu J F, Lu Z H. Science, 1998, 5: 713—715
[67]
Cheng J Y, Chen H Y. Biotechnol. Bioeng., 2009, 104: 400—407
[68]
Zhou X C, Cai S Y, Hong A L, You Q M, Yu P L, Sheng N J, Srivannavit O, Muranjan S, Rouillard J M, Xia Y M, Zhang X L, Xiang Q, Ganesh R, Zhu Q, Matejko A, Gulari E, Gao X L. Nucleic Acids Res., 2004, 32: 5409—5417
[69]
Srivannavit O, Gulari M, Hua Z S, Gao X L, Zhou X C, Hong A L, Zhou T C, Gulari E. Sens. Actuators B, 2009, 140: 473—481
[70]
Tian J D, Gong H, Sheng N J, Zhou X C, Gulari E, Gao X L, Church G. Nature, 2004, 432: 1050—1054
[71]
Liu D J, Perdue R K, Sun L, Crooks R M. Langmuir, 2004, 20: 5905—5910
[72]
Sui G D, Wang J Y, Lee C C, Lu W X, Lee S P, Leyton J V, Wu A M, Tseng H R. Anal. Chem., 2006, 78: 5543—5551
[73]
Situma C, Wang Y, Hupert M, Barany F, McCarley R L, Soper S A. Anal. Biochem., 2005, 340: 123—135
[74]
Zhao Z S, Peytavi R, Diaz-Quijada G A, Picard F J, Huletsky A, Leblanc E, Frenette J, Boivin G, Veres T, Dumoulin M M, Bergeron M G. J. Clin. Microbiol., 2008, 46: 3752—3758
[75]
Li Y C, Wang Z, Ou L M L, Yu H Z. Anal. Chem., 2007, 79: 426—433
[76]
Saaem I, Ma K S, Marchi A N, LaBean T H, Tian J D. ACS Appl. Mater. Interfaces, 2010, 2: 491—497
[77]
Marie R, Schmid S, Johansson A, Ejsing L, Nordstrom M, Hafliger D, Christensen C B V, Boisen A, Dufva M. Biosens. Bioelectron., 2006, 21: 1327—1332
[78]
Li C Y, Li H J, Qin J H, Lin B C. Electrophoresis, 2009, 30: 4270—4276
[79]
Berdat D, Rodríguez A C M, Herrera F, Gijs M A M. Lab Chip, 2008, 8: 302—308
[80]
Schuler T, Kretschmer R, Jessing S, Urban M, Fritzsche W, Moller R, Popp J. Biosens. Bioelectron., 2009, 25: 15—21