Cooling milt conserves viable spermatozoa to extend the period available for artificial fertilization and avoids the robust protocols and high costs associated with cryopreservation. Yet, the sperm quality curves of fresh and refrigerated milt have not yet been compared for pacu (Piaractus mesopotamicus), which is often used as a biological model. This study aimed to analyze the milt quality of male P. mesopotamicus across 24 h of refrigeration. Six adult males were induced with carp pituitary extract. Sperm movement, membrane integrity, and morphology was compared between extruded milt samples stored for 24 h under either ambient temperature or under refrigeration at 12.63 °C. Sperm motility differed significantly over time. After 24 h of storage, motility values were higher in refrigerated spermatozoa than in those kept at ambient temperature. Sperm cell survival rates did not differ 4-8 h post collection. After 16 h, refrigerated cells showed superior membrane integrity (82.05 ± 4.23%) compared to those stored at ambient temperature (66.98 ± 6.45%), maintaining this pattern up to 24 h. In terms of sperm morphology rate, milt from both treatment groups was still viable for use 8 h after collection. However, after 16 h of storage, both groups exhibited a large reduction in normality rates, and at 24 h, all milt were unfeasible. In conclusion, P. mesopotamicus milt can be stored up to 8 h after collection when refrigerated at 12.63 °C, without the use of extenders and/or cryoprotectants, maintaining enough quality for egg fertilization.
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http://dx.doi.org/10.1590/1519-6984.287330 | DOI Listing |
Analyst
January 2025
School of Mechanical and Electrical Engineering, Soochow University, Suzhou, 215021, China.
A portable gas chromatograph-mass spectrometer (GC-MS) is an effective instrument for rapid on-site detection of volatile organic compounds (VOCs). Current instruments typically adsorb samples at ambient temperature, challenging the detection of low-boiling VOCs. In this study, a low-temperature adsorption thermal desorption method is proposed for sample enrichment in a portable GC-MS.
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January 2024
Department of Biological Sciences, Ajou University, Suwon 16499, Republic of Korea.
Bacterial species adapt to cold environments with diverse molecular mechanisms enabling their growth under low ambient temperature. The emergence of cold-adapted species at macro-evolutionary scale, however, has not been systematically explored. In this study, we performed phylogenetic analysis on the growth temperature traits in the genera that occupy broad environmental and host niches and contain known cold-adapted species.
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January 2025
Department of Dermatology, Davis Medical Center, University of California, Sacramento, CA and Touro University California College of Osteopathic Medicine, Vallejo, CA;
A 64-year-old man participated in a 13.1-mile half marathon in San Diego, CA on April 23, 2023. The ambient temperature when he started the race was 54°F, which increased to 64°F on his completing the race 3 hours and 58 minutes later.
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January 2025
Department of Physics & Applied Physics, Kennedy College of Sciences, University of Massachusetts Lowell, Lowell, Massachusetts, USA.
Under various atmospheric conditions, laser-induced breakdown spectroscopy (LIBS) is a powerful technique for elemental analysis, including in Earth- and Mars-like environments. However, understanding the plasma behavior and its dependence on ambient pressure and laser parameters remains a challenge. In this study, a numerical model based on a three-temperature Eulerian radiation framework under non-local thermodynamic equilibrium conditions is employed to investigate the interaction of a nanosecond laser pulse with a graphite target under helium (He) and carbon dioxide (CO atmospheres.
View Article and Find Full Text PDFSci Rep
January 2025
School of Physics, Engineering and Technology, University of York, York, YO10 5DD, UK.
Using first principles calculations, we show that [Formula: see text] materials have strong electron-phonon coupling, with many having a superconducting critical temperature ([Formula: see text]) that exceeds that of the more familiar [Formula: see text] at ambient pressure. In particular, we find that [Formula: see text] is the most stable member of the family, with [Formula: see text] whilst the peak [Formula: see text] is with [Formula: see text] which has [Formula: see text]. Our results reveal that these materials are both thermodynamically and dynamically stable, with strong electron-phonon coupling, indicating significant potential for practical superconducting applications.
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