12/19/2023 0 Comments Ivirma valenciaIdentifying the endocrine and physiological bases of the male and female reproductive systems.Ģ. Learning outcomes expected to be acquired by the student at the end of the course:ġ. To acquire all the necessary training to begin the integration in assisted human reproduction laboratories and also in research centers related. To obtain complete knowledge of cutting-edge techniques applied to different cases of the study and treatment of infertility in humans.ģ. To understand the mechanisms of fertility, the causes of infertility and the techniques used to treat them.Ģ. The Master's Degree in the Biotechnology of Human Assisted Reproduction and Embryology provides the following skills and knowledge:ġ. The course offers a close communication and personal monitoring carried out by the course tutors through several communication tools (forums, chats, internal messaging). Through the Virtual Classroom, students have complete access to all materials and resources related to achieve and improve their knowledge.ģ. Thanks to e-learning, students are able to learn from anywhere, with maximum time and flexibility, besides the opportunity of exchanging knowledge with other students and experts.Ģ. This master is intended for graduates in Biomedical Sciences, such as Biologists, Medical Doctors, Veterinarians, Pharmacists and similar experts.īenefits of the Master Degree in the Biotechnology of Human Assisted Reproduction and Embryology:ġ. Thanks to this master's degree, students will have the opportunity to pursue a career in the human assisted reproduction field, genetic testing and/or research on reproductive science. Attending this situation, the prestigious Valencia Infertility Institute (IVI) together with the University of Valencia have created the Master's Degree in the Biotechnology of Human Assisted Reproduction and Embryology. The reasons are related to multiple factors such as advanced maternal age of first-time mothers, certain harmful life habits as well as diverse genetic and environmental factors.Īs a result, there is an increasing number of infertile patients in need to be treated, which leads to an urgent need for new assisted reproduction units and the consequent need for trained professionals in all areas related to Reproductive Endocrinology. All rights reserved.During the last decades there has been a growing demand on experts in assisted reproduction techniques in several countries around the world. High SDF did not impair live birth rates of unselected males undergoing IVF/ICSI cycles with autologous oocytes per transfer or the cumulative probability of a live birth.Ĭumulative live birth rate IVF/ICSI Male infertility Sperm DNA fragmentation TUNEL assay.Ĭopyright © 2022 Reproductive Healthcare Ltd. When the same number of oocytes were inseminated, similar CLBR were obtained regardless of the degree of male sperm DNA fragmentation. The CLBR according to the number of embryo transfers and the number of embryos replaced showed no statistically significant differences between different SDF groups. No differences in LBR per embryo transfer were found for the first or for all embryo transfers when comparing ≤15% and >15% sperm DNA fragmentation or by SDF ranges. No significant difference was found in clinical pregnancy rate and miscarriage rate between both groups. Live birth rate and CLBR per number of embryo transfers, per number of embryos replaced and consumed oocytes required to achieve the first live birth according to level of SDF were the main outcomes assessed. Main outcomes were calculated according to two different analyses: using 15% SDF as cut-off point (low ≤15% and high >15%) and categorizing participants based on four SDF ranges (30%). Does sperm DNA fragmentation (SDF) affect reproductive success of IVF and intracytoplasmic sperm injection (ICSI) cycles measured as cumulative live birth rates (CLBR) in unselected couples?Ĭlinical data from 1339 couples undergoing 2759 IVF/ICSI cycles using autologous oocytes with a SDF test by TdT (terminal deoxynucleotidyl transferase)-mediated dUDP nick-end labelling (TUNEL) assay on their ejaculated spermatozoa were retrospectively evaluated.
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