physiological investigation
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2021 ◽  
Author(s):  
Troy B Puga ◽  
Josh Schafer ◽  
Prince Agbedanu ◽  
Kevin Treffer

1. Purpose During the COVID 19 Pandemic, the NFL teams have been reported to have limited training sections in preparation for their games. This study compares the prevalence of injury during the 2018, 2019, and 2020 NFL seasons, with the aim to determine the potential causes of the differences in prevalence. 2. Method Official injury reports from each team were counted during the 17-week regular season of each year (2018, 2019, and 2020). The data was analyzed using an unpaired t-test to compare the injury prevalence between each of the three seasons. 3. Results The 2018 season produced a total of 1,561 injuries and a mean of 48.78 injuries per team. The 2019 season produced a total of 1,897 injuries and mean of 59.28 injuries per team, while the 2020 season produced a total of 2, 484 injuries and mean of 77.63 injuries per team. An unpaired t-test was performed using the data to compare the mean number of injuries per team of each of the seasons. Comparison of the 2020 season against the 2019 season showed a statistically significant difference (P=.0003). Comparison of the 2020 season to the 2018 season found a statistically significant difference (P=.0001). Comparison between the 2019 and the 2018 seasons found a statistically significant difference (P=.0314). Conclusion Although the 2019 and 2018 season showed a statistically significant difference (P=0.0314), this difference is not as astronomical when we compare the 2020 seasons vs 2019 and 2018 seasons (P=0.0003 and P=0.0001, respectively) (Figure 2). The astronomical increase in injury prevalence in the 2020 season over the previous years does raise the possibility that there was reduced physiological adaption to stress, due to the limited amount of training embarked on. The limited amount of training was the result of closure of practice facilities during the COVID-19 pandemic. More physiological investigation involving players must be done at the professional and amateur levels to determine if there is a lack of physiological adaptation due to limited use of practice and training facilities during the COVID-19 pandemic.


Cells ◽  
2021 ◽  
Vol 10 (12) ◽  
pp. 3411
Author(s):  
Agnieszka E. Misztak ◽  
Malgorzata Waleron ◽  
Magda Furmaniak ◽  
Michal M. Waleron ◽  
Olga Bazhenova ◽  
...  

Cyanobacteria from the genus Arthrospira/Limnospira are considered haloalkalotolerant organisms with optimal growth temperatures around 35 °C. They are most abundant in soda lakes in tropical and subtropical regions. Here, we report the comprehensive genome-based characterisation and physiological investigation of the new strain O9.13F that was isolated in a temperate climate zone from the winter freezing Solenoye Lake in Western Siberia. Based on genomic analyses, the Siberian strain belongs to the Arthrospira/Limnospira genus. The described strain O9.13F showed the highest relative growth index upon cultivation at 20 °C, lower than the temperature 35 °C reported as optimal for the Arthrospira/Limnospira strains. We assessed the composition of fatty acids, proteins and photosynthetic pigments in the biomass of strain O9.13F grown at different temperatures, showing its potential suitability for cultivation in a temperate climate zone. We observed a decrease of gamma-linolenic acid favouring palmitic acid in the case of strain O9.13F compared to tropical strains. Comparative genomics showed no unique genes had been found for the Siberian strain related to its tolerance to low temperatures. In addition, this strain does not possess a different set of genes associated with the salinity stress response from those typically found in tropical strains. We confirmed the absence of plasmids and functional prophage sequences. The genome consists of a 4.94 Mbp with a GC% of 44.47% and 5355 encoded proteins. The Arthrospira/Limnospira strain O9.13F presented in this work is the first representative of a new clade III based on the 16S rRNA gene, for which a genomic sequence is available in public databases (PKGD00000000).


2021 ◽  
Vol 10 (21) ◽  
pp. 5073
Author(s):  
Reza Mazaheri ◽  
Christian Schmied ◽  
David Niederseer ◽  
Marco Guazzi

Although still underutilized, cardiopulmonary exercise testing (CPET) allows the most accurate and reproducible measurement of cardiorespiratory fitness and performance in athletes. It provides functional physiologic indices which are key variables in the assessment of athletes in different disciplines. CPET is valuable in clinical and physiological investigation of individuals with loss of performance or minor symptoms that might indicate subclinical cardiovascular, pulmonary or musculoskeletal disorders. Highly trained athletes have improved CPET values, so having just normal values may hide a medical disorder. In the present review, applications of CPET in athletes with special attention on physiological parameters such as VO2max, ventilatory thresholds, oxygen pulse, and ventilatory equivalent for oxygen and exercise economy in the assessment of athletic performance are discussed. The role of CPET in the evaluation of possible latent diseases and overtraining syndrome, as well as CPET-based exercise prescription, are outlined.


2021 ◽  
Vol 14 (1) ◽  
pp. 280-294
Author(s):  
Ilhan Dogan ◽  
Ibrahim Ilker Ozyigit ◽  
Bermet Kidiraliyeva ◽  
Kadirbay Cekirov ◽  
Gulbubu Kurmanbekova ◽  
...  

2020 ◽  
Vol 89 ◽  
pp. 103180
Author(s):  
A. Armougum ◽  
A. Gaston-Bellegarde ◽  
C. Joie-La Marle ◽  
P. Piolino

2020 ◽  
Vol 24 ◽  
pp. 00030
Author(s):  
Karine Janjughazyan

Caryological and physiological features of rare species Potentilla porphyrantha Juz. were investigated. It was shown that this species is diploid with 2n = 14 (x = 7). Physiological investigation included study of water regime, intensity of transpiration and photosynthesis. It was shown, that this species growing in-situ conditions on Amulsar Mountain (2900 m a.s.l.) now is very good adapted to ex-situ conditions in the Sevan botanical garden (1900 m a.s.l.). It grows very well, bloom and produce viable seeds, and in the future could be reintroduced into nature.


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