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Análisis de circuitos eléctricos
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681por Wu, Meihong, Liao, Lifang, Luo, Xin, Ye, Xiaoquan, Yao, Yuchen, Chen, Pinnan, Shi, Lei, Huang, Hui, Wu, Yunfeng“…Such results suggest that healthy children may better modulate their gait cadence rhythm with the development of their musculoskeletal and neurological systems. …”
Publicado 2016
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682“…Capacity was assessed via the iTUG and standard gait parameters (stride length, stride velocity, and cadence). Performance was assessed in real life over a period of 6.95 ± 1.99 days using smartphone technology to calculate following parameters: active and gait time, number of steps, life-space, mean action-range, and maximum action-range. …”
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683por Bouchalová, Vendula, Houben, Els, Tancsik, Dorine, Schaekers, Lotte, Meuws, Leni, Feys, Peter“…The Y-tech in addition improved velocity and cadence. Among the balance tests, only the Timed Up and Go test showed improvements in favor of Maramed and Y-tech. …”
Publicado 2016
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684por Levasseur, Anthony, Andreani, Julien, Delerce, Jeremy, Bou Khalil, Jacques, Robert, Catherine, La Scola, Bernard, Raoult, Didier“…The comparison between fossil and modern Pithovirus species provided an estimation of the cadence of the molecular clock, reaching up to 3 × 10(−6) mutations/site/year. …”
Publicado 2016
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685“…Time decay of angular velocity, stepping cadence, head acceleration, and ratio of angular velocity after to angular velocity before were similar between both protocols. …”
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686por Larimore, Jennifer, Zlatic, Stephanie A., Arnold, Miranda, Singleton, Kaela S., Cross, Rebecca, Rudolph, Hannah, Bruegge, Martha V., Sweetman, Andrea, Garza, Cecilia, Whisnant, Eli, Faundez, Victor“…Our results suggest that dysbindin deficiency phenotypes, such as GABAergic defects, are modulated by the expression of molecules controlling the magnitude and cadence of neuronal excitability.…”
Publicado 2017
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687por Vasileva, Danche, Izov, Nikolai, Maznev, Ivan, Lubenova, Daniela, Mihova, Marija, Markovski, Velo, Cseppento, Carmen Nistor“…To evaluate the changes in the gait were followed cadence of 6 m and 10 m and the speed of movement which are the most informative kinetic parameters. …”
Publicado 2017
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688por dos Santos, Wanderson Divino Nilo, Gentil, Paulo, de Moraes, Rafael Felipe, Ferreira Júnior, João Batista, Campos, Mário Hebling, de Lira, Claudio Andre Barbosa, Freitas Júnior, Ruffo, Bottaro, Martim, Vieira, Carlos Alexandre“…PEDro score ranged from 5 to 9. Rest interval and cadence were not reported. Two studies reported continuous training supervision. …”
Publicado 2017
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689por König, Alexandra, Klaming, Laura, Pijl, Marten, Demeurraux, Alexandre, David, Renaud, Robert, Philippe“…Objective measures of gait features such as walking speed, cadence (i.e., number of steps per minute), and step variance (i.e., variance in time between two consecutive steps) were derived and analyzed. …”
Publicado 2017
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690por Takayanagi, Naoto, Sudo, Motoki, Fujii, Masahiko, Sakai, Hirokazu, Morimoto, Keiko, Tomisaki, Masumi, Niki, Yoshifumi, Tokimitsu, Ichiro“…Gait parameters (speed, cadence, step length, step width, gait angle, toe angle, double support phase, swing phase, and stance phase) and foot pressure during a 5-m walk were measured and analyzed in the two groups. …”
Publicado 2018
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691por Avelino, Patrick Roberto, Nascimento, Lucas R., Menezes, Kênia K.P., Scianni, Aline A., Ada, Louise, Teixeira-Salmela, Luci F.“…Secondary outcomes will include walking step length, walking cadence, walking capacity, walking confidence, and participation. …”
Publicado 2018
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692“…The meta-analysis revealed enhancements in spatiotemporal parameters of gait i.e., velocity (Hedge's g: 0.67), stride length (0.70), and cadence (1.0), and reduction in timed 25 feet walking test (−0.17). …”
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693por Zhang, Wei, Schwenk, Michael, Mellone, Sabato, Paraschiv-Ionescu, Anisoara, Vereijken, Beatrix, Pijnappels, Mirjam, Mikolaizak, A. Stefanie, Boulton, Elisabeth, Jonkman, Nini H., Maier, Andrea B., Klenk, Jochen, Helbostad, Jorunn, Taraldsen, Kristin, Aminian, Kamiar“…Changes in conventional univariate PA metrics (percentage of walking and sedentary time, step counts, mean cadence) and complexity were compared to the change as measured by the CBMS. …”
Publicado 2018
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694por Datta Gupta, Anupam, Tucker, Graeme, Koblar, Simon, Visvanathan, Renuka, Cameron, Ian D.“…The improvements in the lower limb functional outcomes were also significant—FMDS, VAS, TUG, and UPDRS–LL decreased significantly after treatment (all p < 0.001), and BBS (p = 0.001), GAS (p < 0.001) except cadence (p = 0.37). BT injection improved walking in foot dystonia as evidenced through gait analysis, pain and lower limb functional outcomes. …”
Publicado 2018
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695por Lee, GyuChang“…RESULTS: On comparing the outcome variables before and after training in the WBV group, significant differences were observed in the cadence and single support time of gait ability. However, there were no significant differences in other variables, including velocity, step length, stride length, and double support time. …”
Publicado 2019
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696“…Meta-analyses revealed positive effects of virtual-reality training on gait velocity (Hedge's g = 0.68), stride length (0.30), cadence (0.66), and gross motor function measure (0.44). …”
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697por Olcina, Guillermo, Perez-Sousa, Miguel Ángel, Escobar-Alvarez, Juan Antonio, Timón, Rafael“…No effects were reported in vertical oscillation, ground contact time, running cadence, and average heart rate. These findings may only be relevant to ‘moderate level’ triathletes, but not to ‘elite’ ones. …”
Publicado 2019
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698“…In the secondary outcomes, the stepping variability decreased significantly (AC: P = .033; NC: P = .009), whereas walking cadence increased after training (AC: P = .019; NC: P = .0023). …”
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699“…The maximum arm-swing gait showed no significant differences from normal gait in terms of cadence, velocity, and stride. Pelvic fluctuations also had no significant differences among all gaits. …”
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700por Muñoz-Chimeno, Milagros, Cenalmor, Alejandro, Garcia-Lugo, Maira Alejandra, Hernandez, Marta, Rodriguez-Lazaro, David, Avellon, Ana“…We describe for the first time: (1) the specific placement of HEV-3 PPR rearrangements in sites 1 to 14 of the PPR, noting that duplications are more frequently attached to sites 11 and 12 (AAs 74–79 and 113–118, respectively); (2) the cadence of repetitions follows a circular-like pattern of blocks A to J, with F, G, H, and I being the most frequent; (3) a previously unreported insertion homologous to apolipoprotein C1; and (4) the increase in frequency of potential N-glycosylation sites and differences in AAs composition related to duplications.…”
Publicado 2020
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