Nagle Elizabeth F, Sanders Mary E, Franklin Barry A
Department of Health and Physical Activity, University of Pittsburgh, Pittsburgh, Pennsylvania (EFN).
Community Health Sciences and School of Medicine, University of Nevada, Reno, Nevada (MES).
Am J Lifestyle Med. 2016 Jun 22;11(1):64-76. doi: 10.1177/1559827615583640. eCollection 2017 Jan-Feb.
High-intensity interval training (HIIT) has emerged as an attractive alternative to traditional continuous exercise training (CT) programs for clinical and healthy populations who find that they can achieve equal or greater fitness benefits in less time. Land-based HIIT may not be an appropriate choice for some participants. Few studies have explored the acute responses and chronic adaptations of HIIT in an aquatic environment, and no study has compared the cardiometabolic responses of an aquatic-based program to a land-based HIIT program. Shallow-water aquatic exercise (AE) programs utilizing HIIT have elicited comparable and, in some cases, greater physiological responses compared with constant-intensity or continuous AE regimens. Factors that may explain why HIIT routines evoke greater cardiometabolic responses than CT protocols may be based on the types of exercises and how they are cued to effectively manipulate hydrodynamic properties for greater intensities. Favorable aquatic HIIT protocols such as the S.W.E.A.T. system may serve as a beneficial alternative to land-based HIIT programs for clinical, and athletic populations, potentially reducing the likelihood of associated musculoskeletal and orthopedic complications. Hence, the purpose of this review is to examine the role of AE as an alternative safe and effective HIIT modality.
高强度间歇训练(HIIT)已成为一种有吸引力的替代方案,适用于临床患者和健康人群,他们发现相较于传统的持续运动训练(CT)项目,能在更短时间内获得同等或更大的健身益处。陆上HIIT可能并非某些参与者的合适选择。很少有研究探讨过HIIT在水环境中的急性反应和慢性适应情况,也没有研究比较过水上HIIT项目与陆上HIIT项目的心脏代谢反应。与恒定强度或持续的水上运动(AE)方案相比,采用HIIT的浅水AE项目引发了相当且在某些情况下更大的生理反应。可能解释HIIT训练为何比CT方案引发更大心脏代谢反应的因素,或许基于运动类型以及如何通过提示有效地操控水动力特性以实现更高强度。诸如S.W.E.A.T.系统等有利的水上HIIT方案,对于临床患者和运动员群体而言,可能是陆上HIIT项目的有益替代方案,有可能降低相关肌肉骨骼和骨科并发症的发生几率。因此,本综述的目的是探讨AE作为一种安全有效的HIIT替代方式的作用。