-
9
-
-
32344438401
-
-
T. E. Ludwig M. E. Levenstein J. M. Jones W. T. Berggren E. R. Mitchen J. L. Frane L. J. Crandall C. A. Daigh K. R. Conard M. S. Piekarczyk R. A. Llanas J. A. Thomson Nat. Biotechnol. 2006 24 185 187
-
(2006)
Nat. Biotechnol.
, vol.24
, pp. 185-187
-
-
Ludwig, T.E.1
Levenstein, M.E.2
Jones, J.M.3
Berggren, W.T.4
Mitchen, E.R.5
Frane, J.L.6
Crandall, L.J.7
Daigh, C.A.8
Conard, K.R.9
Piekarczyk, M.S.10
Llanas, R.A.11
Thomson, J.A.12
-
10
-
-
20144380595
-
-
C. Xu E. Rosler J. Jiang J. S. Lebkowski J. D. Gold C. O'Sullivan K. Delavan-Boorsma M. Mok A. Bronstein M. K. Carpenter Stem Cells 2005 23 315 323
-
(2005)
Stem Cells
, vol.23
, pp. 315-323
-
-
Xu, C.1
Rosler, E.2
Jiang, J.3
Lebkowski, J.S.4
Gold, J.D.5
O'Sullivan, C.6
Delavan-Boorsma, K.7
Mok, M.8
Bronstein, A.9
Carpenter, M.K.10
-
13
-
-
34547858511
-
-
H. Lee G. Al Shamy Y. Elkabetz C. M. Schofield N. L. Harrsion G. Panagiotakos N. D. Socci V. Tabar L. Studer Stem Cells 2007 25 1931 1939
-
(2007)
Stem Cells
, vol.25
, pp. 1931-1939
-
-
Lee, H.1
Al Shamy, G.2
Elkabetz, Y.3
Schofield, C.M.4
Harrsion, N.L.5
Panagiotakos, G.6
Socci, N.D.7
Tabar, V.8
Studer, L.9
-
23
-
-
29144528086
-
-
C. C. Lee G. Sui A. Elizarov C. J. Shu Y. S. Shin A. N. Dooley J. Huang A. Daridon P. Wyatt D. Stout H. C. Kolb O. N. Witte N. Satyamurthy J. R. Heath M. E. Phelps S. R. Quake H. R. Tseng Science 2005 310 1793 1796
-
(2005)
Science
, vol.310
, pp. 1793-1796
-
-
Lee, C.C.1
Sui, G.2
Elizarov, A.3
Shu, C.J.4
Shin, Y.S.5
Dooley, A.N.6
Huang, J.7
Daridon, A.8
Wyatt, P.9
Stout, D.10
Kolb, H.C.11
Witte, O.N.12
Satyamurthy, N.13
Heath, J.R.14
Phelps, M.E.15
Quake, S.R.16
Tseng, H.R.17
-
27
-
-
85022119177
-
-
in press
-
Z. T. F. Yu K. Kamei H. Takahashi C. J. Shu X. Wang G. W. He R. Silverman G. G. Radu O. N. Witte K. B. Lee H. R. Tseng Biomed. Microdevices
-
Biomed. Microdevices
-
-
Yu, Z.T.F.1
Kamei, K.2
Takahashi, H.3
Shu, C.J.4
Wang, X.5
He, G.W.6
Silverman, R.7
Radu, G.G.8
Witte, O.N.9
Lee, K.B.10
Tseng, H.R.11
-
34
-
-
59649121176
-
-
SPIE, Adelaide, Australia, pp. 64160N-64168
-
N. Korin, A. Bransky, U. Dinnar and S. Levenberg, in Biomedical Applications of Micro- and Nanoengineering III, SPIE, Adelaide, Australia, 2006, pp. 64160N-64168
-
(2006)
Biomedical Applications of Micro- And Nanoengineering III
-
-
Korin, N.1
Bransky, A.2
Dinnar, U.3
Levenberg In, S.4
-
39
-
-
49149120112
-
-
Z. Li Y. Suzuki M. Huang F. Cao X. Xie A. J. Connolly P. C. Yang J. C. Wu Stem Cells 2008 26 864 873
-
(2008)
Stem Cells
, vol.26
, pp. 864-873
-
-
Li, Z.1
Suzuki, Y.2
Huang, M.3
Cao, F.4
Xie, X.5
Connolly, A.J.6
Yang, P.C.7
Wu, J.C.8
-
42
-
-
0037336820
-
-
In routine hESC culture, hESCs are passaged in clusters using well plates or culture dishes. Freshly dissociated hESC colonies contain approximately 20-200 cells. Due to the fast-growing nature of hESCs, freshly dissociated hESC colonies grow to critical mass at about Day 6. To prevent loss of pluripotency of large hESC conies, hESC passage has to be carried out within 6 days. For the same reason, we normally carry out hESC culture no more than 6 days. When small hESC conies were loaded into the chips, we were able to culture hESCs in the microfluidic devices for more than six days (maximum 12 days)
-
T. P. Zwaka J. A. Thomson Nat. Biotechnol. 2003 21 319 321
-
(2003)
Nat. Biotechnol.
, vol.21
, pp. 319-321
-
-
Zwaka, T.P.1
Thomson, J.A.2
|