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P J Verma

Showing results (1-10 of 12) with videos related to

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Theriogenology|July 10, 2010
The use of signalling pathway inhibitors and chromatin modifiers for enhancing pluripotencyH Sumer, J Liu, P J Verma
Journal of Assisted Reproduction and Genetics|February 1, 1993
Hatching rate: an optimal discriminator for the assessment of single-blastomere biopsyK H Cui, P J Verma, C D Matthews
Theriogenology|November 15, 2011
Inducing pluripotency in somatic cells from the snow leopard (Panthera uncia), an endangered felidR Verma, M K Holland, P Temple-Smith, et al.
Transgenic Research|March 1, 1995
Expression of bacterial cysteine biosynthesis genes in transgenic mice and sheep: toward a new in vivo amino acid biosynthesis pathway and improved wool growthC S Bawden, A V Sivaprasad, P J Verma, et al.
Theriogenology|March 15, 2011
A novel, efficient method to derive bovine and mouse embryonic stem cells with in vivo differentiation potential by treatment with 5-azacytidineM L Lim, I Vassiliev, N M Richings, et al.
Journal of Animal Science|April 12, 2011
NANOG is a key factor for induction of pluripotency in bovine adult fibroblastsH Sumer, J Liu, L F Malaver-Ortega, et al.
Stem Cells International|May 8, 2018
Potential of iPSC-Derived Mesenchymal Stromal Cells for Treating Periodontal DiseaseK Hynes, R Bright, V Marino, et al.
Reproduction, Fertility, and Development|December 2, 2000
Activation of in vivo- and in vitro-derived porcine oocytes by using multiple electrical pulsesC G Grupen, P J Verma, Z T Du, et al.
Journal of Reproduction and Fertility. Supplement|January 1, 1997
Developments in transgenic techniques in pigsM B Nottle, H Nagashima, P J Verma, et al.
Reproduction, Fertility, and Development|January 1, 1990
In vitro assessment of the viability of sheep zygotes after pronuclear microinjectionS K Walker, T M Heard, P J Verma, et al.
Pageof 2

Showing results (1-10 of 12) with videos related to

Sort By:
Pageof 2
Theriogenology|July 10, 2010
The use of signalling pathway inhibitors and chromatin modifiers for enhancing pluripotencyH Sumer, J Liu, P J Verma
Journal of Assisted Reproduction and Genetics|February 1, 1993
Hatching rate: an optimal discriminator for the assessment of single-blastomere biopsyK H Cui, P J Verma, C D Matthews
Theriogenology|November 15, 2011
Inducing pluripotency in somatic cells from the snow leopard (Panthera uncia), an endangered felidR Verma, M K Holland, P Temple-Smith, et al.
Transgenic Research|March 1, 1995
Expression of bacterial cysteine biosynthesis genes in transgenic mice and sheep: toward a new in vivo amino acid biosynthesis pathway and improved wool growthC S Bawden, A V Sivaprasad, P J Verma, et al.
Theriogenology|March 15, 2011
A novel, efficient method to derive bovine and mouse embryonic stem cells with in vivo differentiation potential by treatment with 5-azacytidineM L Lim, I Vassiliev, N M Richings, et al.
Journal of Animal Science|April 12, 2011
NANOG is a key factor for induction of pluripotency in bovine adult fibroblastsH Sumer, J Liu, L F Malaver-Ortega, et al.
Stem Cells International|May 8, 2018
Potential of iPSC-Derived Mesenchymal Stromal Cells for Treating Periodontal DiseaseK Hynes, R Bright, V Marino, et al.
Reproduction, Fertility, and Development|December 2, 2000
Activation of in vivo- and in vitro-derived porcine oocytes by using multiple electrical pulsesC G Grupen, P J Verma, Z T Du, et al.
Journal of Reproduction and Fertility. Supplement|January 1, 1997
Developments in transgenic techniques in pigsM B Nottle, H Nagashima, P J Verma, et al.
Reproduction, Fertility, and Development|January 1, 1990
In vitro assessment of the viability of sheep zygotes after pronuclear microinjectionS K Walker, T M Heard, P J Verma, et al.
Pageof 2