Department of Physical and Rehabilitation Medicine, Sungkyunkwan University School of Medicine, Suwon, 16419, Republic of Korea.
Department of Intelligent Robotics, Sungkyunkwan University, Suwon, 16419, Republic of Korea.
Sci Rep. 2024 Nov 2;14(1):26424. doi: 10.1038/s41598-024-77092-4.
Guidelines encouraging social distancing, limited outings, and remote work due to COVID-19 have increased sedentary periods and reduced levels of physical activity. These habits increase the risk of metabolic diseases, obesity, cardiovascular disease, and diabetes mellitus. The World Health Organization recommends muscle-strengthening exercises as well as regular physical activity to promote overall health. This study investigates the effect of a wearable hip exoskeleton on muscle activity and heart rate during anaerobic exercise in 40 healthy adults (mean age of 40.00 ± 11.51 years; n = 20 females). Bot Fit, a wearable hip-type robotic exoskeleton, was developed by Samsung Electronics Co., Ltd. (Suwon, Republic of Korea) to enhance the effects of both aerobic and anaerobic exercise. All study participants performed a fitness exercise protocol, including knee-ups, good mornings, squats, mountain climbs, kick-backs, reverse lunges, and split jacks, with and without a Bot Fit. To evaluate the effect of anaerobic exercise with the Bot Fit, muscle activity and heart rate were measured during fitness exercises with and without a Bot Fit. Measured muscles were the rectus abdominis (RA), erector spinae (ES), rectus femoris (RF), vastus lateralis (VL), vastus medialis (VM), biceps femoris (BF), tibialis anterior (TA), gastrocnemius medialis (GCM), and gluteus maximus (GM). During anaerobic exercises with the Bot Fit, there was a significant increase in muscle activity compared to exercising without the Bot Fit. Muscle activity increased significantly in the RA, RF, VL, BF and TA muscles during knee-ups; in the ES, BF, and GM during good mornings; in the RF, VL, VM, BF, and GM during squats; in RA, RF, VL, VM, and GM during mountain climbs; in the RA and BF during kick-backs; in the RF, BF, and GCM during reverse lunges; and in the RF and VL during split jacks (p < 0.05). Heart rates showed a statistically significant increase during good mornings, mountain climbs, and reverse lunge exercises while wearing the Bot Fit (p < 0.05). This study demonstrated that anaerobic exercises by healthy adults using a Bot Fit led to enhanced activation of abdominal and lower-limb muscles as well as an improved heart rate, maximizing the effect of anaerobic exercise compared with the same exercise protocol without a Bot Fit. This suggests that use of a Bot Fit can increase the effectiveness of anaerobic exercise in healthy adults.
由于 COVID-19,鼓励保持社交距离、减少外出和远程工作的指南增加了久坐时间并减少了身体活动水平。这些习惯会增加患代谢疾病、肥胖、心血管疾病和糖尿病的风险。世界卫生组织建议进行肌肉强化运动和定期的身体活动,以促进整体健康。本研究调查了可穿戴式臀部外骨骼在 40 名健康成年人(平均年龄为 40.00±11.51 岁;n=20 名女性)进行无氧运动期间对肌肉活动和心率的影响。Bot Fit 是由三星电子有限公司(韩国水原市)开发的一种可穿戴式臀部型机器人外骨骼,旨在增强有氧运动和无氧运动的效果。所有研究参与者都进行了一项健身运动方案,包括仰卧起坐、早安式、深蹲、登山、踢腿、反向弓步和分腿跳,同时佩戴和不佩戴 Bot Fit。为了评估 Bot Fit 对无氧运动的影响,在佩戴和不佩戴 Bot Fit 的情况下,测量了健身运动期间的肌肉活动和心率。测量的肌肉包括腹直肌(RA)、竖脊肌(ES)、股四头肌(RF)、股外侧肌(VL)、股内侧肌(VM)、半腱肌(BF)、胫骨前肌(TA)、腓肠肌内侧(GCM)和臀大肌(GM)。在佩戴 Bot Fit 进行无氧运动时,与不佩戴 Bot Fit 相比,肌肉活动明显增加。在仰卧起坐时,RA、RF、VL、BF 和 TA 肌肉的肌肉活动明显增加;在早安式中,ES、BF 和 GM 肌肉的肌肉活动明显增加;在深蹲时,RF、VL、VM、BF 和 GM 肌肉的肌肉活动明显增加;在登山时,RA、RF、VL、VM 和 GM 肌肉的肌肉活动明显增加;在踢腿时,RA 和 BF 肌肉的肌肉活动明显增加;在反向弓步时,RF、BF 和 GCM 肌肉的肌肉活动明显增加;在分腿跳时,RF 和 VL 肌肉的肌肉活动明显增加(p<0.05)。佩戴 Bot Fit 进行早安式、登山和反向弓步运动时,心率显示出统计学上的显著增加(p<0.05)。本研究表明,健康成年人使用 Bot Fit 进行无氧运动可增强腹部和下肢肌肉的激活,并提高心率,与不使用 Bot Fit 的相同运动方案相比,最大限度地提高了无氧运动的效果。这表明使用 Bot Fit 可以提高健康成年人无氧运动的效果。