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  1. 1.   Large-scale identification of novel transcripts in the human genome
  2. Peters, B. A.; Croix, B. S.; Sjoblom, T.; Cummins, J. M.; Silliman, N.; Ptak, J.; Saha, S.; Kinzler, K. W.; Hatzis, C.; Velculescu, V. E.
  3. Genome Research. 2007, Mar; 17(3): 287-292.
  1. 2.   Transcriptomic analysis of an in vitro murine model of ovarian carcinoma: Functional similarity to the human disease and identification of prospective tumoral markers and targets
  2. Urzua, U.; Roby, K. F.; Gangi, L. M.; Cherry, J. M.; Powell, J. I.; Munroe, D. J.
  3. Journal of Cellular Physiology. 2006, MAR; 206(3): 594-602.
  1. 3.   Simian immunodeficiency virus integration preference is similar to that of human immunodeficiency virus type 1
  2. Crise, B.; Li, Y.; Yuan, C. C.; Morcock, D. R.; Whitby, D.; Munroe, D. J.; Arthur, L. O.; Wu, X. L.
  3. Journal of Virology. 2005, OCT; 79(19): 12199-12204.
  1. 4.   Transgenic mice expressing Cre-recombinase specifically in retinal rod bipolar neurons
  2. Zhang, X. M.; Chen, B. Y.; Ng, A. H. L.; Tanner, J. A.; Tay, D.; So, K. F.; Rachel, R. A.; Copeland, N. G.; Jenkins, N. A.; Huang, J. D.
  3. Investigative Ophthalmology & Visual Science. 2005, OCT; 46(10): 3515-3520.
  1. 5.   Region-specific saturation germline mutagenesis in mice using the Sleeping Beauty transposon system
  2. Keng, V. W.; Yae, K.; Hayakawa, T.; Mizuno, S.; Uno, Y.; Yusa, K.; Kokubu, C.; Kinoshita, T.; Akagi, K.; Jenkins, N. A.; Copeland, N. G.; Horie, K.; Takeda, J.
  3. Nature Methods. 2005, OCT; 2(10): 763-769.
  1. 6.   Molecular alterations in primary prostate cancer after androgen ablation therapy
  2. Best, C. J. M.; Gillespie, J. W.; Yi, Y. J.; Chandramouli, G. V. R.; Perlmutter, M. A.; Gathright, Y.; Erickson, H. S.; Georgevich, L.; Tangrea, M. A.; Duray, P. H.; Gonzalez, S.; Velasco, A.; Linehan, W. M.; Matusik, R. J.; Price, D. K.; Figg, W. D.; Emmert-Buck, M. R.; Chuaqui, R. F.
  3. Clinical Cancer Research. 2005, OCT 1; 11(19, Part 1): 6823-6834.
  1. 7.   Intraspecific mating with CzechII/Ei mice rescue lethality associated with loss of function mutations of the imprinted genes, Igf2r and Cdkn1c
  2. Hagan, J. P.; Kozlov, S. V.; Chiang, Y. S.; Sewell, L.; Stewart, C. L.
  3. Genomics. 2004, NOV; 84(5): 836-843.
  1. 8.   Toxicogenomic analysis of aberrant gene expression in liver tumors and nontumorous livers of adult mice exposed in utero to inorganic arsenic
  2. Liu, J.; Xie, Y. X.; Ward, J. M.; Diwan, B. A.; Waalkes, M. P.
  3. Toxicological Sciences. 2004 77(2): 249-257.
  1. 9.   Disruption of the mouse necdin gene results in early post-natal lethality
  2. Gerard, M.; Hernandez, L.; Wevrick, R.; Stewart, C. L.
  3. Nature Genetics. 1999 23(2): 199-202.
  1. 10.   A Mouse Model For Prader-Willi Syndrome Imprinting-Centre Mutations
  2. Yang, T.; Adamson, T. E.; Resnick, J. L.; Leff, S.; Wevrick, R.; Francke, U.; Jenkins, N. A.; Copeland, N. G.; Brannan, C. I.
  3. Nature Genetics. 1998 19(1): 25-31.
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