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双重任务训练结合经颅超声神经肌肉电刺激对脑梗死患者运动功能及平衡功能的影响
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作者 马千里 孙兆玺 +1 位作者 肖岩光 祁洪凯 《反射疗法与康复医学》 2024年第3期188-190,194,共4页
目的探究双重任务训练结合经颅超声神经肌肉电刺激对脑梗死患者运动功能及平衡功能的影响.方法选取2022年1月—2023年3月滨州医学院附属医院收治的100例脑梗死患者为研究对象,按随机数字表法将其分为对照组和观察组,各50例.对照组实施... 目的探究双重任务训练结合经颅超声神经肌肉电刺激对脑梗死患者运动功能及平衡功能的影响.方法选取2022年1月—2023年3月滨州医学院附属医院收治的100例脑梗死患者为研究对象,按随机数字表法将其分为对照组和观察组,各50例.对照组实施经颅超声神经肌肉电刺激,在此基础上,观察组实施双重任务训练.比较两组的肢体运动功能、平衡功能及日常生活能力.结果干预后,观察组上肢功能评分为(38.73±2.65)分、下肢功能评分为(27.55±2.27)分及Fugl-Meyer运动功能评定量表总分为(79.98±7.57)分,分别高于对照组的(35.39±2.25)分、(24.52±2.43)分及(71.55±5.46)分,Berg平衡量表评分为(43.27±2.58)分,高于对照组的(35.58±2.04)分,Barthel指数评分为(81.26±7.35)分,高于对照组的(77.92±6.23)分,组间差异有统计学意义(P<0.05).结论脑梗死患者采用双重任务训练结合经颅超声神经肌肉电刺激治疗的效果显著,不仅可提升患者的运动功能及平衡功能,且可有效促进患者日常生活能力的恢复. 展开更多
关键词 脑梗死 双重任务训练 经颅超声神经肌肉电刺激 肢体运动功能 平衡功能 日常生活能力
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Extensive Numerical Tests of Leapfrog Integrator in Middle Thermostat Scheme in Molecular Simulations
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作者 Zhaoxi Sun Payam Kalhor +1 位作者 Yang Xu Jian Liu 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2021年第6期932-948,I0005,共18页
Accurate and efficient integration of the equations of motion is indispensable for molecular dynamics(MD)simulations.Despite the massive use of the conventional leapfrog(LF)integrator in modern computational tools wit... Accurate and efficient integration of the equations of motion is indispensable for molecular dynamics(MD)simulations.Despite the massive use of the conventional leapfrog(LF)integrator in modern computational tools within the framework of MD propagation,further development for better performance is still possible.The alternative version of LF in the middle thermostat scheme(LFmiddle)achieves a higher order of accuracy and efficiency and maintains stable dynamics even with the integration time stepsize extended by several folds.In this work,we perform a benchmark test of the two integrators(LF and LF-middle)in extensive conventional and enhanced sampling simulations,aiming at quantifying the time-stepsizeinduced variations of global properties(e.g.,detailed potential energy terms)as well as of local observables(e.g.,free energy changes or bondlengths)in practical simulations of complex systems.The test set is composed of six chemically and biologically relevant systems,including the conformational change of dihedral flipping in the N-methylacetamide and an AT(AdenineThymine)tract,the intra-molecular proton transfer inside malonaldehyde,the binding free energy calculations of benzene and phenol targeting T4 lysozyme L99A,the hydroxyl bond variations in ethaline deep eutectic solvent,and the potential energy of the blue-light using flavin photoreceptor.It is observed that the time-step-induced error is smaller for the LFmiddle scheme.The outperformance of LF-middle over the conventional LF integrator is much more significant for global properties than local observables.Overall,the current work demonstrates that the LF-middle scheme should be preferably applied to obtain accurate thermodynamics in the simulation of practical chemical and biological systems. 展开更多
关键词 Molecular dynamics Leapfrog integrator Middle thermostat scheme
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