Waseda University · 의학
Yuri Hosokawa 교수의 연구실은 스포츠 현장에서의 열질환 예방 및 응급 관리 체계 구축을 핵심으로 하며, 특히 열환경에서의 운동 안전성과 응급처치의 효율성을 높이기 위한 종합적 접근을 연구하고 있습니다. 기후 데이터 기반의 위험 평가, 체온 모니터링 기술(예: 체온 측정 피ル)의 임상적 유효성, 그리고 스포츠 이벤트 기간 동안의 전문적 응급 대응 체계 개발에 초점을 맞추고 있습니다. 특히 장애인 올림픽과 같은 특수 환경에서도 적용 가능한 응급 관리 가이드라인 개발에 기여하고 있습니다.
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
A coordination of care among all medical stakeholders at the sports venue, during transport, and at the hospital is warranted to ensure effective management is provided to the EHS athlete.
Directors of mass sporting events should consider using climatologic data in their organizational decision making to assess the potential heat illness risk and to implement risk-mitigation plans.
After participants completed a warm-weather road race, TGI provided a valid measure of body temperature compared with the criterion measure of TREC. Therefore, TGI may be a viable option for monitoring postexercise-induced hyperthermia, if the pill is administered prophylactically.
Prehospital management of EHS in the Paralympic setting employs the same procedures as for Olympic athletes with some important alterations.
In conclusion, the highest rates of sports-related death among Japanese student athletes were observed in the following: rugby, male athletes, and during practices. The leading cause of death was sudden cardiac arrest.
Assessment of wet bulb globe temperature at the site of activity and throughout the duration of the event is recommended to assist clinicians and administrators in making appropriate decisions regarding the duration and frequency of activity and rest periods. Activity-modification guidelines should be predetermined and approved by stakeholders and should outline specific actions to be followed, such as the work-to-rest ratio, frequency and timing of hydration breaks, and adjustment of total exer
Clinicians should consider an MH-like syndrome when a diagnosis of EHS or ER cannot be fully explained by clinical signs and symptoms presented by a patient or when recurrent episodes of EHS or ER (or both) are unexplained. Further research is required to elucidate the genetic and pathophysiological links among MH, EHS, and ER.
Tokyo 2020 Summer Olympics are projected to experience environmental heat stress that surpasses the environmental conditions observed in the Atlanta (1996), Athens (2004), Beijing (2008), and Rio (2016) Summer Olympics. This raises particular concerns for athletes who will likely to be exposed to extreme heat during the competitions. Therefore, in mass-participation event during warm season, it is vital for the hosting organization to build preparedness and resilience against heat, including app
Elite athletes competing at high-intensity in the hot and humid ambient conditions of the upcoming Games of the XXXII Olympiad (Tokyo 2020) are likely to reach elevated core temperature (≈41.5°C) as previously reported in elite competitions in the heat and the risk of exertional heat stroke (EHS) is heightened.1 EHS is a medical condition defined as an internal body temperature exceeding 40.5°C with central nervous system dysfunction (eg, disorientation, aggressiveness, hysteria, delirium, alter