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Human Reproduction (Oxford, England)|December 2, 2006
Metabolism of human embryos following cryopreservation: implications for the safety and selection of embryos for transfer in clinical IVFPaula J Stokes, Judith A Hawkhead, Richard K Fawthrop, et al.
Cells|June 2, 2021
Metabolomic Analysis Evidences That Uterine Epithelial Cells Enhance Blastocyst Development in a Microfluidic DeviceVanessa Mancini, Alexandra C Schrimpe-Rutledge, Simona G Codreanu, et al.
Scientific Reports|October 29, 2021
Intracellular oxygen metabolism during bovine oocyte and preimplantation embryo developmentPaul J McKeegan, Selina F Boardman, Amy A Wanless, et al.
Molecular Human Reproduction|June 24, 2010
Association between amino acid turnover and chromosome aneuploidy during human preimplantation embryo development in vitroHelen M Picton, Kay Elder, Franchesca D Houghton, et al.
Biotechnology Progress|July 21, 2021
Probing morphological, genetic and metabolomic changes of in vitro embryo development in a microfluidic deviceVanessa Mancini, Paul J McKeegan, Alexandra C Schrimpe-Rutledge, et al.
Molecular Reproduction and Development|March 25, 2004
Expression of 11 members of the BCL-2 family of apoptosis regulatory molecules during human preimplantation embryo development and fragmentationAnthony D Metcalfe, Helen R Hunter, Debra J Bloor, et al.
Iscience|July 19, 2021
The effects of aging on molecular modulators of human embryo implantationPanagiotis Ntostis, Grace Swanson, Georgia Kokkali, et al.
Human Reproduction (Oxford, England)|July 12, 2007
Human embryos developing in vitro are susceptible to impaired epithelial junction biogenesis correlating with abnormal metabolic activityJudith J Eckert, Franchesca D Houghton, Judith A Hawkhead, et al.
Systems Biology in Reproductive Medicine|December 28, 2022
Trophectoderm non-coding RNAs reflect the higher metabolic and more invasive properties of young maternal age blastocystsPanagiotis Ntostis, Grace Swanson, Georgia Kokkali, et al.
Cryobiology|February 25, 2020
Cryopreservation of primary cultures of mammalian somatic cells in 96-well plates benefits from control of ice nucleationMartin I Daily, Thomas F Whale, Riitta Partanen, et al.
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