Purpose: Aim of the present study was to compare two culture strategies used in our routine in vitro fertilization program.
Methods: This is a retrospective analysis. Two culture systems were used in parallel and analysed retrospectively: 1) Use of atmospheric oxygen tension (~20 %) until insemination followed by use of low (~5 %) oxygen concentration; 2) Exclusive use of low oxygen concentration. Main outcome was the utilization rate defined as the number of transferred + vitrified embryos per inseminated oocytes. Secondary outcomes were clinical pregnancy and live birth rates.
Results: A total of 402 in vitro fertilization cycles were analyzed. Demographic and clinical data of patients belonging to the two culture systems were not significantly different. Utilization rate, cumulative clinical pregnancy rate and cumulative live birth rate per cycle was similar using two different oxygen concentration compared to exclusive use of low oxygen tension (37 % versus 39 %; 30 % versus 30 %; 23 % versus 28 %, respectively).
Conclusions: The use of a culture system with atmospheric oxygen tension from recovery of oocytes until insemination followed by culture in low oxygen gives results similar to exclusive use of low oxygen concentration.
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http://dx.doi.org/10.1007/s10815-014-0368-z | DOI Listing |
Sports Med Open
January 2025
Department of Sports Science and Clinical Biomechanics, SDU Sport and Health Sciences Cluster, University of Southern Denmark, Odense, Denmark.
Background: A small number of reviews have explored lower- versus higher-volume training in non-athletes, but the growing challenge of congested schedules in team sports highlights the need to synthesize evidence specific to team sport athletes. Thus, the objectives of this systematic review with meta-analysis are twofold: (i) to summarize the primary physiological and physical fitness outcomes of lower-volume versus higher-volume training interventions in team sports players; and (ii) to compare the effects of lower-volume training with higher, considering the training modalities used.
Methods: We conducted searches across key databases, including PubMed, Scopus, SPORTDiscus, and Web of Science.
Ann Emerg Med
January 2025
Department of Emergency Medicine, Medical University of Vienna, Vienna, Austria. Electronic address:
Study Objective: Extracorporeal cardiopulmonary resuscitation (eCPR) is a rescue therapy for selected patients when conventional cardiopulmonary resuscitation (CPR) fails. Current evidence suggests that the success of eCPR depends on well-structured in- and out-of-hospital protocols. This article describes the Vienna eCPR program, and the interventions implemented to improve clinical processes and patient outcomes.
View Article and Find Full Text PDFNanoscale
January 2025
School of Chemistry, Southwest Jiaotong University, Chengdu, Sichuan 610031, China.
Engineering the local electronic structure of single atom catalysts (SACs) still remains challenging. In this study, a Ru-NiS single atom catalyst with a controlled S coordination environment, where Ru single atoms are implanted on a NiS nanoflower consisting of plenty of cross-linked nanosheets, has been developed a facile atom capture strategy. Using Density Functional Theory (DFT) calculations, it has been revealed that the fine-tuned local S coordination environment can optimize the electronic structure of Ru active sites, and reduce the energy barrier of the rate-determining step for the oxygen evolution reaction (OER), thus boosting the electrocatalytic activity, such as a low overpotential of 269 mV at 10 mA cm.
View Article and Find Full Text PDFSmall
January 2025
Department of Chemistry, Nanoscience Center, University of Jyväskylä, P.O. Box 35, Jyväskylä, FI-40014, Finland.
Designing cost-effective electrocatalysts with fast reaction kinetics and high stability is an outstanding challenge in green hydrogen generation through overall water splitting (OWS). Layered double hydroxide (LDH) heterostructure materials are promising candidates to catalyze both oxygen evolution reaction (OER) and hydrogen evolution reaction (HER), the two OWS half-cell reactions. This work develops a facile hydrothermal route to synthesiz hierarchical heterostructure MoS@NiFeCo-LDH and MoS@NiFeCo-Mo(doped)-LDH electrocatalysts, which exhibit extremely good OER and HER performance as witnessed by their low IR-corrected overpotentials of 156 and 61 mV with at a current density of 10 mA cm under light assistance.
View Article and Find Full Text PDFMicrob Biotechnol
January 2025
Estación Experimental del Zaidín, Consejo Superior de Investigaciones Científicas, Granada, Spain.
The discovery at the end of the 20th century of genes that induce cell death revolutionised the biocontaintment of genetically manipulated bacteria for environmental or agricultural applications. These bacterial 'killer' genes were then assayed for their potential to target and control malignant cells in human cancers. The identification of the bacteriomes in different human organs and tissues, coupled with the observation that bacteria tend to accumulate near tumours, has opened new avenues for anti-cancer strategies.
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