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91.
George M. Pamboris Marika Noorkoiv Vasilios Baltzopoulos Amir A. Mohagheghi 《Scandinavian journal of medicine & science in sports》2019,29(2):200-212
The acute effects of two dynamic stretching (DS) protocols on changes in the ankle range of motion (RoM), neuromechanical, and sensorimotor properties of the plantarflexor muscle group were examined. Eighteen participants received slow (SDS) or fast dynamic stretching (FDS) on two separate days. Outcome measures were assessed pre‐ and 2 minutes post‐interventions, and included maximum dorsiflexion angle, maximum isometric torque at neutral ankle position, maximum concentric and eccentric torques, force matching capacity, joint position sense and medial gastrocnemius muscle and tendon strain. Possibly and likely small increases in dorsiflexion RoM were observed after SDS (mean ± 90% confidence intervals; 1.8 ± 1.2°) and FDS (2.1 ± 1.2°), respectively. Very likely moderate decreases in muscle strain after SDS (?38.0 ± 20.6%) and possibly small decrease after FDS (?13.6 ± 21.2%) were observed. SDS resulted in a likely beneficial small increase in tendon strain (25.3 ± 29.7%) and a likely beneficial moderate increase after FDS (41.4 ± 44.9%). Effects on strength were inconsistent. Possibly small effect on positional error after SDS (?27.1 ± 37.5%), but no clear effect after FDS was observed. Both DS protocols increased RoM, and this was more due to an increase in tendon elongation rather than the muscle. However, SDS showed greater improvement than FDS in both neuromechanical and sensorimotor performance, and hence, SDS can be recommended as part of warm‐up in sporting contexts. 相似文献
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Pamela P. W. Lee Koon-Wing Chan Tong-Xin Chen Li-Ping Jiang Xiao-Chuan Wang Hua-Song Zeng Xiang-Yuan Chen Woei-Kang Liew Jing Chen Kit-Man Chu Lee-Lee Chan Lynette Pei-Chi Shek Anselm C. W. Lee Hsin-Hui Yu Qiang Li Chen-Guang Xu Geraldine Sultan-Ugdoracion Zarina Abdul Latiff Amir Hamzah Abdul Latiff Orathai Jirapongsananuruk Marco H. K. Ho Tsz-Leung Lee Xi-Qiang Yang Yu-Lung Lau 《Journal of clinical immunology》2013,33(7):1269-1270
100.
Lichen Rozitsky Amir Fine Dekel Dado Shahar Nussbaum-Ben-Shaul Shulamit Levenberg Gilad Yossifon 《Biomedical microdevices》2013,15(5):859-865
An interdigitated electrode array embedded within a micro-channel with forced flow is shown to enable dielectrophoretic (DEP) characterization of particles and/or cells based on measurements of their trapping percentage over a continuous frequency range. A simplified model of the trapping percentage, using spatial averaging of the convective and DEP force, linearly correlated it to the effective DEP force (in its positive mode). Thus, the Clausius–Mossotti factor was fitted to the experimental data, yielding effective electrical characteristics of the particles and/or cells. Also, the generated trapping percentage curve response over a continuous range of frequencies facilitates sorting and detection based on differences other than just the cross-over frequencies. 相似文献