Effects of Low-Energy Laser Irradiation on Sperm Cells Dynamics of Rabbit (Oryctolagus Cuniculus)
Journal: Journal of Nuclear Physics, Material Sciences, Radiation and Applications (Vol.5, No. 1)Publication Date: 2017-08-07
Authors : J.M. De Jesús-Miranda; I. A. Mandujano; F. Méndez; Y.J. Castillo; J. Mulia; C. García; Y.E. Felipe; D. Osorio-González;
Page : 187-196
Keywords : sperm motility; photo-biostimulation.;
Abstract
Infertility is a world disease in which a couple is unable to achieve pregnancy. There are numerous parameters to determinate fertility; nevertheless, sperm motility is by consensus one of the most important attributes to evaluate male fertility. Contributions to a better understanding of this crucial parameter are imperative; hence, the aim of this investigation was to assess the effect of low-energy laser irradiation on sperm cell dynamics in thawed samples that were cryopreserved. We used a 405 nm blue laser beam to irradiate spermatic cells from rabbit inside a temperature-controlled dispersion chamber at 37 °C; then, we applied an image recognizing system to calculate individual sperm trajectories and velocities. We found that sperms raise its motility after irradiation suggesting that λ=405 nm is an optimal wavelength for spermatic photo-stimulation.
Other Latest Articles
- Study of L-Glutamic Acid in Solid State for its Possible Use as a Gamma Dosimeter at Different Temperatures (77, 195 and 295 K)
- Radio-Optically- and Thermally Stimulated Luminescence of Zn(BO2)2:Tb3+ exposed to Ionizing Radiation
- Sperm Hyperactivation and Capacitation Induced By Light Stimuli in Cryopreserved Semen
- Implementation of a Low Cost For Internal Dosimetry Radiological Survey of Ionization Radiation Exposed Workers In Nuclear Medicine Services
- Radiolysis of the Glycolaldehyde-Na+Montmorillonite and Glycolaldehyde-Fe3+Montmorillonite Systems in Aqueous Suspension under Gamma Radiation Fields: Implications in Chemical Evolution
Last modified: 2019-12-07 18:48:02