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91篇 您的检索式:作者名="Emmerik"
    题名 作者 年代 出处 被引量
1多尺度熵:理解姿势控制复杂度的一种工具(英文)显示文摘Clinical disorders often are characterized by a breakdown in dynamical processes that contribute to the control of upright standing.Disruption to a large number of physiological processes operating at different time scales can lead to alterations in postural center of pressure(Co P)fluctuations.Multiscale entropy(MSE) has been used to identify differences in fluctuations of postural Co P time series between groups with and without known physiological impairments at multiple time scales.The purpose of this paper is to:1) review basic elements and current developments in entropy techniques used to assess physiological complexity;and 2) identify how MSE can provide insights into the complexity of physiological systems operating at multiple time scales that underlie the control of posture.We review and synthesize evidence from the literature providing support for MSE as a valuable tool to evaluate the breakdown in the physiological processes that accompany changes due to aging and disease in postural control.This evidence emerges from observed lower MSE values in individuals with multiple sclerosis,idiopathic scoliosis,and in older individuals with sensory impairments.Finally,we suggest some future applications of MSE that will allow for further insight into how physiological deficits impact the complexity of postural fluctuations;this information may improve the development and evaluation of new therapeutic interventions.Michael A.Busa Richard E.A.van Emmerik 2016Journal of Sport and Health Science2016,5,1:5
2High cardiovascular risk in severely obese young children and adolescents显示文摘Nathalie M A van Emmerik Carry M Renders Marije van de Veer Stef van Buuren Olga H van der Baan-Slootweg Joana E Kist-van Holthe Remy A HiraSing 2012Archives of Disease in Childhood2012,,9:2
3动态系统理论的概念与技术在生物力学分析中的应用(英文)显示文摘Traditional biomechanical analyses of human movement are generally derived from linear mathematics.While these methods can be useful in many situations,they do not describe behaviors in human systems that are predominately nonlinear.For this reason,nonlinear analysis methods based on a dynamical systems approach have become more prevalent in recent literature.These analysis techniques have provided new insights into how systems(1) maintain pattern stability,(2) transition into new states,and(3) are governed by short-and long-term(fractal) correlational processes at different spatio-temporal scales.These different aspects of system dynamics are typically investigated using concepts related to variability,stability,complexity,and adaptability.The purpose of this paper is to compare and contrast these different concepts and demonstrate that,although related,these terms represent fundamentally different aspects of system dynamics.In particular,we argue that variability should not uniformly be equated with stability or complexity of movement.In addition,current dynamic stability measures based on nonlinear analysis methods(such as the finite maximal Lyapunov exponent) can reveal local instabilities in movement dynamics,but the degree to which these local instabilities relate to global postural and gait stability and the ability to resist external perturbations remains to be explored.Finally,systematic studies are needed to relate observed reductions in complexity with aging and disease to the adaptive capabilities of the movement system and how complexity changes as a function of different task constraints.Richard E.A.van Emmerik Scott W.Ducharme Avelino C.Amado Joseph Hamill 2016Journal of Sport and Health Science2016,5,1:2
4leadership and team cohesiveness across cultures显示文摘HEIN WENDT MARTIN C EUWEMA I J HETTY VAN EMMERIK 2009The Leadership Quarterly2009,20,3:1
5UQBT:Adaptable binary translation at low cost显示文摘C Cifuentes M Van Emmerik 2000Computer2000,33,3:1
6Sorption of 17 β -estradiol onto selected soil minerals显示文摘Tristan Van Emmerik Michael J. Angove Bruce B. Johnson John D. Wells Milena B. Fernandes 2003Journal of Colloid And Interface Science2003,,1:1
7Relative phase coordination analysis in the assessment of dynamic gait symmetry显示文摘HADDAD J VAN EMMERIK R WHEAT J 2010J Appl Biom2010,26,1:1
8UQBT: adaptable binary translation at low cost 显示文摘CRISTINA C VAN EMMERIK M 2000IEEE Computer2000,33,3:1
9Prevention of IHHNV vertical transmission in the white shrimp Litopenaeus vannamei显示文摘Emmerik M Edwin Y Juan L 2003Aquaculture2003,219,:1
10^31p solid-state nuclear magnetic resonance study of the sorption of phosphate onto Gibbsite and Kaolinite显示文摘Van Emmerik T J Sandstr6m D E Antzutkin O N 2007Langmuir2007,23,6:1
11UQBT: adaptable binary translation at low cost显示文摘 2000Computer IEEE Computer Society Press March 20002000,33,3:1
12UQBT:Adaptable Binary Translation at Low Cost显示文摘 M Van Emmerik 2000Computer IEEE Computer Society Press2000,33,3:1
13Static series compensators applied to very long distance transmission lines显示文摘Aredes M Portela C Emmerik E L 2004Electrical Engineering2004,,86:1
14Resonant frequencies of arms and legs identify different walking patterns显示文摘Wagenaar R C van Emmerik R E 2000Journal of Biomechanical2000,33,7:1
15Static series compensators applied to very long distance transmission lines显示文摘Aredes M Portela C Emmerik E L 2004Electrical Engineering2004,86,2:1
16Quality of guidelines on the management of diabetes in pregnancy : A systematic review 显示文摘Greuter M J van Emmerik N M Wouters M G 2012BMC Pregnancy Childbirth2012,12,1:1
17Psycho- metric evaluation of the Dutch version of the posttraumatic cognitions inventory显示文摘van Emmerik AA Schoorl M Emmelkamp PM 2006Behav Res Ther2006,44,7:1
18Leadership Styles and Group Organizational Citizenship Behavior across Cultures 显示文摘Martin CE Wendt H Emmerik HV 2007Journal of Organizational Behavior2007,288,:1
19Single session debr-iefing after psychological trauma:a recta-analysis显示文摘 Kamphuis JH Hulsbosch AM 2002Lancet2002,360,9335:1
20Deep-level Similarity and Group Social Capital:Associations with Team Functioning显示文摘Van Emmerik I J H Brenninkmeijer V 2009Small Group Research2009,40,6:1
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