exercise countermeasures
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2021 ◽  
Vol 27 (3) ◽  
pp. 338-341
Author(s):  
Xiutao Yu

ABSTRACT Introduction Chronic fatigue syndrome (CFS) is a group of long-term fatigue; the rest is difficult to achieve. At the same time, it is accompanied by corresponding physical dysfunction and psychological and mental symptoms. It is very meaningful to find exercise countermeasures to cope with chronic fatigue syndrome actively. Object This article analyzes the current students’ CFS to realize the cognition of the disease. At the same time, it analyzes the effect of sports on the treatment of chronic fatigue to help students formulate related sports programs. Method The article conducts a related questionnaire survey and analysis of students and analyzes CFS and exercise status symptoms. Results Generally, students with CFS did not actively participate in sports and had poor physical fitness, especially muscle endurance and cardiopulmonary function. However, students who actively participate in sports training basically do not have CFS. Conclusion CFS students should strengthen physical exercise and improve the CFS situation through exercise. Level of evidence II; Therapeutic studies - investigation of treatment results.


2021 ◽  
Vol 7 (1) ◽  
Author(s):  
Charlotte Richter ◽  
Bjoern Braunstein ◽  
Benjamin Staeudle ◽  
Julia Attias ◽  
Alexander Suess ◽  
...  

AbstractVigorous exercise countermeasures in microgravity can largely attenuate muscular degeneration, albeit the extent of applied loading is key for the extent of muscle wasting. Running on the International Space Station is usually performed with maximum loads of 70% body weight (0.7 g). However, it has not been investigated how the reduced musculoskeletal loading affects muscle and series elastic element dynamics, and thereby force and power generation. Therefore, this study examined the effects of running on the vertical treadmill facility, a ground-based analog, at simulated 0.7 g on gastrocnemius medialis contractile behavior. The results reveal that fascicle−series elastic element behavior differs between simulated hypogravity and 1 g running. Whilst shorter peak series elastic element lengths at simulated 0.7 g appear to be the result of lower muscular and gravitational forces acting on it, increased fascicle lengths and decreased velocities could not be anticipated, but may inform the development of optimized running training in hypogravity. However, whether the alterations in contractile behavior precipitate musculoskeletal degeneration warrants further study.


2021 ◽  
pp. 119-151
Author(s):  
D Moosavi ◽  
D Wolovsky ◽  
A Depompeis ◽  
D Uher ◽  
D Lennington ◽  
...  

The purpose of this systematic review is twofold: 1) to identify, evaluate, and synthesize the heretofore disparate scientific literatures regarding the effects of direct exposure to microgravity on the musculoskeletal system, taking into account for the first time both bone and muscle systems of both humans and animals; and 2) to investigate the efficacy and limitations of exercise countermeasures on the musculoskeletal system under microgravity in humans. The Framework for Scoping Studies (Arksey and O'Malley 2005) and the Cochrane Handbook for Systematic Reviews of Interventions (Higgins JPT 2011) were used to guide this review. The Preferred Reporting Items for Systematic Reviews and Meta-Analyses (PRISMA) checklist was utilized in obtaining the combined results (Moher, Liberati et al. 2009). Data sources, PubMed, Embase, Scopus, and Web of Science were searched for published articles through October 2019 using the Mesh terms of microgravity, musculoskeletal system, and exercise countermeasures. A total of 84 references were selected, including 40 animal studies and 44 studies with human participants. The heterogeneity in the study designs, methodologies, and outcomes deemed this review unsuitable for a meta-analysis. Thus, we present a narrative synthesis of the results for the key domains under five categories: 1) Skeletal muscle responses to microgravity in humans 2) Skeletal muscle responses to microgravity in animals 3) Adaptation of the skeletal system to microgravity in humans 4) Adaptation of the skeletal system to microgravity in animals 5) Effectiveness of exercise countermeasures on the human musculoskeletal system in microgravity. Existing studies have produced only limited data on the combined effects on bone and muscle of human spaceflight, despite the likelihood that the effects on these two systems are complicated due to the components of the musculoskeletal system being anatomically and functionally interconnected. Bone is directly affected by muscle atrophy as well as by changes in muscle strength, notably at muscle attachments. Given this interplay, the most effective exercise countermeasure is likely to be robust, individualized, resistive exercise, primarily targeting muscle mass and strength.


Nutrients ◽  
2020 ◽  
Vol 12 (8) ◽  
pp. 2400
Author(s):  
Shahid Baba ◽  
Ted Smith ◽  
Jason Hellmann ◽  
Aruni Bhatnagar ◽  
Kathy Carter ◽  
...  

Immune system dysregulation is among the many adverse effects incurred by astronauts during space flights. Omega-3 fatty acids, β-alanine, and carnosine are among the many nutrients that contribute to immune system health. For space flight, crewmembers are prescribed a diet with a macronutrient composition of 55% carbohydrate, 30% fat, and 15% protein. To quantify omega-3 fatty acid, β-alanine and carnosine intakes from such a diet, and to examine each nutrient’s impact on exercise performance, 21 participants adhered to the aforementioned macronutrient ratio for 14 days which was immediately followed by a workout performed on gravity-independent resistive exercise hardware. Results included daily omega-3 fatty acid intakes below the suggested dietary intake. Daily omega-3 fatty acid, β-alanine and carnosine intakes each correlated with non-significant amounts of variance from the workout’s volume of work. Given the nutritional requirements to maintain immune system function and the demands of in-flight exercise countermeasures for missions of increasingly longer durations current results, in combination with previously published works, imply in-flight supplementation may be a prudent approach to help address the physiological and mental challenges incurred by astronauts on future space flights.


2020 ◽  
Vol 34 (6) ◽  
pp. 7958-7969 ◽  
Author(s):  
Rodrigo Fernandez‐Gonzalo ◽  
Per A. Tesch ◽  
Tommy R. Lundberg ◽  
Björn A. Alkner ◽  
Eric Rullman ◽  
...  

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