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Body balance reduces eczema in stress-related atopic dermatitis
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作者 Anna Utterstrom Solbritt Lonne-Rahm 《Health》 2009年第4期290-293,共4页
Atopic dermatitis (AD) is a common chronic, pruritic, relapsing inflammatory skin disease that affects about two to three percent of the adult population in Sweden. It is characterized by dry, itchy skin and is aggrav... Atopic dermatitis (AD) is a common chronic, pruritic, relapsing inflammatory skin disease that affects about two to three percent of the adult population in Sweden. It is characterized by dry, itchy skin and is aggravated by stress. This study examined if relaxation through movement and body awareness can reduce stress and eczema in patients with AD. Nine pa-tients with atopic dermatitis whose condition worsened due to stress were treated with a body balance relaxation method. Estimation of extent of skin lesions, pruritus, salivary cortisol, as an objective marker for chronic stress, and subjective stress, and DLQI, were performed. Of these parameters, the extent of skin lesions, pruritus, and the subjective stress were de-creased as well as chronic stress. This study indicated that relaxation using body balance reduced stress and eczema in patients with stress-related atopic dermatitis. 展开更多
关键词 Atopic Dermatitis body balance ECZEMA RELAXATION Stress.
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The Massage Therapy of Balancing the Mechanism of the Body
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作者 Li Jun Xin Lu(Kui tun building army teachers training school, Xinjiang) 《中国针灸》 CAS CSCD 北大核心 1995年第S2期357-358,共2页
TheMassageTherapyofBalancingtheMechanismoftheBody¥LiJun;XinLu(Kuitunbuildingarmyteacherstrainingschool,Xinji... TheMassageTherapyofBalancingtheMechanismoftheBody¥LiJun;XinLu(Kuitunbuildingarmyteacherstrainingschool,Xinjiang)Themassagethe... 展开更多
关键词 The Massage Therapy of Balancing the Mechanism of the body
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Combined Effects of Exposure to Noise and Vibration on Human Postural Equilibrium under Simulated Driving Conditions
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作者 Seyyed Mohammad Javad Golhosseini Mohsen Aliabadi +4 位作者 Rostam Golmohammadi Maryam Farhadian Mehdi Akbari Morteza Hamidi Nahrani Mehdi Samavati 《Sound & Vibration》 EI 2022年第1期37-49,共13页
There is little information about drivers’body balance responses to combined exposure of noise and vibration.To fill the gap,this study aims to investigate the combined effects of exposure to noise and whole-body vib... There is little information about drivers’body balance responses to combined exposure of noise and vibration.To fill the gap,this study aims to investigate the combined effects of exposure to noise and whole-body vibration(WBV)on the body balance under simulated driving conditions.For this purpose,30 male participants were exposed to noise level at 85 dB(A)and two vibration levels(0.87 and 1.3 m/s^(2))in five sessions.The design of the study was repeated-measures,and it attempted to assess the effects of 40 minutes of exposure to noise and/or WBV.Moreover,the participants’fatigue was measured with the Borg scale(CR 10).The findings revealed there was a significant change in body sway after WBV and combined noise and WBV exposure(p<0.05).However,no significant difference was found in exposure to noise alone(p>0.05).The effect sizes of exposure to noise,WBV(1.3 m/s^(2)),and combined noise and WBV(1.3 m/s^(2))on body balance were 0.035,0.425,and 0.635,respectively.Also,single exposure to WBV caused more fatigue than single exposure to noise(p<0.05).Combined noise and WBV exposure descriptively caused more fatigue in comparison with the influence of WBV alone.The study concluded that the combined effects of exposure to noise and vibration are more than the sum of them.So,some synergistic effects may be observed in human body balance.It is essential to increase drivers’awareness and revise current health care interventions about new possible effects of combined exposures. 展开更多
关键词 body balance noise whole-body vibration(WBV) FATIGUE combined exposure
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A Measure System of Zero Moment Point Using Wearable Inertial Sensors
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作者 Xianggang Zhang Hao Wang +3 位作者 Yuliang Shi Changjun Fu Huiqin Wang Guoyu Wang 《China Communications》 SCIE CSCD 2016年第5期16-27,共12页
Keeping balance is the premise of human walking. ZMP(zero moment point) is a point where total torque achieves balance. It is an important evaluation parameter of balance ability in walking, since it can be used to be... Keeping balance is the premise of human walking. ZMP(zero moment point) is a point where total torque achieves balance. It is an important evaluation parameter of balance ability in walking, since it can be used to better reflect the dynamic balance during walking. ZMP can be used in many applications, such as medical rehabilitation, disease diagnosis, treatment and etc. In this paper, wearable inertial sensors system based on MEMS is used to measure ZMP(zero moment point) during walking, which is cheap, convenient, and free from the restriction of lab. Our wearable ZMP measurement system consists of inertial measurement subsystem and PC real-time monitoring station. Inertial measurement subsystem includes 9-axis inertial sensing nodes, the body communication network and the central node. Inertial sensing nodes are mounted on different parts of the body to collect body posture information in real-time, and then the best estimation of current posture are obtained by Kalman filter. The data from sensors is aggregated to the central node through the CAN bus, and then ZMP is calculated. Finally, it can be showed in the PC monitoring station. Experiments prove the system can achieve real-time ZMP detection during walking. 展开更多
关键词 zero moment point body balance inertial measurement quaternion Kalman filter
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How did Archimedes discover the law of buoyancy by experiment?
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作者 Hidetaka KUROKI 《Frontiers of Mechanical Engineering》 SCIE CSCD 2016年第1期26-32,共7页
After Archimedes and Vitruvius era, for more than 2000 years, it has been believed that the displaced water measurement of golden crown is impossible, and at his Eureka moment, Archimedes discovered the law of buoyan... After Archimedes and Vitruvius era, for more than 2000 years, it has been believed that the displaced water measurement of golden crown is impossible, and at his Eureka moment, Archimedes discovered the law of buoyancy (Proposition 7 of his principles) and proved the theft of a goldsmith by weighing the golden crown in water. A previous study showed that a small amount of displaced water was able to be measured with enough accuracy by the introduced method. Archimedes measured the weight of displaced water. He did not find the law of buoyancy but rather specific gravity of things at the moment. After which, Archimedes continued to measure the specific gravity of various solids and fluids. Through these measurements, he reached the discovery of the law of buoyancy directly by experiment. In this paper, the process to the discovery of Archimedes' principle (Proposition 5) is presented. 展开更多
关键词 Archimedes' principle BUOYANCY specific gravity Eureka VITRUVIUS displaced water balance floating body
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