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[email protected] (B.C.); [email protected] (K.T.O.
[email protected] (B.C.); [email protected] (K.T.O.); [email protected] (B.Y.); [email protected] (A.D.); [email protected] (O.U.) Department of Reproduction and Artificial Insemination, Faculty of Veterinary Medicine, Burdur Mehmet Akif Ersoy University, Burdur 15030, Turkey; [email protected] Department of Biostatistics, Faculty of Veterinary Medicine, Ankara University, Ankara 06560, Turkey; [email protected] Division of Reproduction and Artificial Insemination, Faculty of Veterinary Medicine, Aksaray University, Aksaray 68100, Turkey; [email protected] Technical Sciences Vocational College, Mersin University, Mersin 33110, Turkey; [email protected] (P.B.T.); [email protected] (S.B.) Division of Animal Medicine, Production and Wellness, University of Padova, 35122 Padova, Italy Correspondence: [email protected]: Tekin, K.; Inan M.E.; en, D.; Cil, B.; Olga K.T.; Yilmaz, B.; Tademir, U.; Tuncer, P.B.; s B leblebici, S.; Dakin, A.; et al. s Use of Infrared Thermography throughout Ejaculation Method and Its Hyperlink with Semen High quality and Freezability in Dogs. Animals 2021, 11, 3023. https://doi.org/10.3390/ ani11113023 Received: 19 August 2021 Accepted: 15 October 2021 Published: 20 OctoberSimple Summary: Scientific focus to infrared technology has grown more than the final decade. Remote and non-invasive monitoring methods are of terrific value in discovering ejaculation response and future trends as a result of their role in vascular flux regulation. However, detailed details about its use in andrology has yet to be totally explained. As a result, we aimed to reveal information regarding the amount of sperm to be obtained by observing anxiety levels with non-invasive eye DNQX disodium salt In stock temperature measurement, as well as the connection between several reproductive temperature Charybdotoxin Cancer patterns and parameters from the animal’s a variety of physiological conditions including age, physique situation, total ejaculation time and testicular volume. Abstract: This study aimed to describe the thermal variation of external reproductive tracts for the duration of ejaculation in relation to sperm high quality in dogs. Forty-six adult fertile dogs were monitored utilizing a thermal camera before, throughout and after the semen collection, taking into account penile and scrotal temperatures as reproductive thermal patterns though eye and perianal temperatures were recorded as complementary thermal patterns of behavioral response. The parameters had been classified depending on age (four years and 4 years), body weight (BW) (75 kg and 75 kg), sperm concentration (CON) (300 million and 300 million), total testicular volume (TTV) (600 cm3 and 600 cm3 ) and total ejaculation time (TET) (800 s and 800 s) from the animals from which semen was collected successfully. Heavier males (p 0.05) which have more constant testicles (p 0.01) also as quicker ejaculate responders (p 0.001) and lower scrotal temperature had greater semen ( motility) freezability. The reduce eye temperature prior to the ejaculation (p 0.01), reduce scrotal temperature following ejaculation (p 0.01), and conversely, greater penile temperature throughout the ejaculation (p 0.001) had a higher sperm concentration. Furthermore, the sperm freezability was negatively correlated with total ejaculation time (r = -0.39, p 0.05) and sperm abnormalities have been reduce inside the ejaculate of dogs obtaining a higher temperature of your scrotum, bulbus and penis. In conclusion, infrared monitoring throughout semen collectio.

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Author: M2 ion channel