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21.
Kazutoshi Kudo T. Ohtsuki 《Experimental brain research. Experimentelle Hirnforschung. Expérimentation cérébrale》1998,122(1):23-30
Subjects made a fast elbow extension movement to designated target in response to a go signal. In 45% of trials a stop signal
was presented after the go signal, to which subjects were asked to stop the movement as rapidly as possible. The interstimulus
interval (ISI), or time interval between the go and stop signals, was randomly varied between 0 and 200 ms. Electromyographic
(EMG) activity was recorded from biceps brachii and triceps brachii. Subjects could sometimes completely inhibit initiation
of the movements when the ISI was 0 ms, but could rarely do so when the ISI exceeded 100 ms. For responses that were initiated
but stopped on the way, the amplitude of the movement decreased linearly as the time interval (=modification time) from the
stop signal to EMG onset increased. The peak velocity increased linearly as the movement amplitude increased. This tendency
was similar to those previously reported in step-tracking movements with various amplitudes. In spite of the similarity in
the kinematics of the movement, the EMG pattern was different from that of step-tracking movement. While the initial agonist
burst (AG1) decreased linearly after the modification time exceeded 100 ms, the antagonist burst (ANT) increased compared
with the go trial for the modification time from 0 to 200 ms and decreased after the modification time exceeded 300 ms. This
change of activation is analogous to functional modification of middle-latency reflex EMG response to load, or cutaneous perturbation.
In conclusion, it is suggested that adaptive mechanisms, which would functionally modify the reflex responses, are also continuously
working during voluntary movements in response to sudden changes in environmental information.
Received: 3 November 1997 / Accepted: 3 February 1998 相似文献
22.
The significance of somatosensory stimulations to the human foot in the control of postural reflexes 总被引:1,自引:0,他引:1
G. Wu Jin-Hsien Chiang 《Experimental brain research. Experimentelle Hirnforschung. Expérimentation cérébrale》1997,114(1):163-169
The purpose of this study was to investigate the possible pathways in the somatosensory system that relate to the postural
reflexes in the leg muscles during a sudden, toes-up platform rotation. The inputs to the cutaneous mechanoreceptors in the
sole of the foot as well as to the joint receptors in the ankle joint were modulated by standing on different supporting surfaces
and by immobilizing the ankle joints; and three leg muscle responses (characterized by short latency, medium latency, and
long latency) to the platform movement were recorded in 15 healthy young subjects. It was found that: (1) the short latency
was not affected by the changes in either plantar pressure or ankle joint movement; (2) the medium latency was regulated by
the plantar pressures under the foot, as sensed by the cutaneous mechanoreceptors in the sole of the foot, and by the ankle
joint movement, as perceived by the joint receptors in the ankle joint; (3) the long latency was also related to the ankle
joint movement, but this relation seems to be modulated by the plantar pressures under the foot; and (4) both medium and long
latencies were well correlated with the time derivative of the pressure difference between the forefoot and the rear foot
regions (r=0.7), as well as with the static pressure in the antagonist foot region (r>0.6).
Received: 12 January 1996 / Accepted: 30 September 1996 相似文献
23.
Hisashi Aoki Reiko Tsukahara Kyonosuke Yabe 《European journal of applied physiology》1989,58(4):426-432
Summary The effects of pre-motion silent period (PSP) on dynamic force exertion were studied in ten healthy subjects performing ballistic elbow extensions. The experiments were designed to evaluate the significance of mean differences between the averaged dynamic force curves of two groups: PSP-presence groups and PSP-absence groups. The presence of PSP was judged quantitatively and automatically by means of a newly developed method using statistical analysis. The results indicated that there were two effects of PSP on dynamic force exertion: one was a reducing effect, observed prior to the movement; the other was a reinforcing effect, observed in the first part of the ballistic movement. The duration of the reinforcement was significantly correlated with the duration of the reducing effect of PSP. The findings suggested that the reinforcement of dynamic force may be produced by the pre-stretch of agonistic muscles caused by prior force reduction due to PSP occurrence. The fact that PSP plays an important role in dynamic force exertion suggests that PSP may be incorporated in the central motor control system designed to interrupt the background activity, to stretch the agonist and to reinforce the dynamic force. 相似文献
24.
Electromyographic activity of m. rectus femoris at submaximal and maximal voluntary contractions was quantified by conventional integration technique and also be a more “qualitative” procedure of automated motor unit averaging and frequency spectrum analysis. By relating the EMG parameters to produced muscle tension it was observed that the integrated EMG increased in a slightly nonlinear fashion with the increase in muscle force. The other EMG variables also showed clear changes as a function of muscle tension. The averaged motor unit potential (AMUP) and its specific parameters (number of spikes, amplitude, rise time and amplitude-rise time ratio) showed such changes with muscle tension that they may be useful in estimation of the recruitment pattern of the different types of motor units. 相似文献
25.
Lauren E. Sergio David J. Ostry 《Experimental brain research. Experimentelle Hirnforschung. Expérimentation cérébrale》1995,105(1):123-137
The present study quantifies electromyographic (EMG) magnitude, timing, and duration in one and two degree of freedom elbow movements involving combinations of flexion-extension and pronation-supination. The aim is to understand the organization of commands subserving motion in individual and multiple degrees of freedom. The muscles tested in this study fell into two categories with respect to agonist burst magnitude: those whose burst magnitude varied with motion in a second degree of freedom at the elbow, and those whose burst magnitude depended on motion in one degree of freedom only. In multiarticular muscles contributing to motion in two degrees of freedom at the elbow, we found that the magnitude of the agonist burst was greatest for movements in which a muscle acted as agonist in both degrees of freedom. The burst magnitudes for one degree of freedom movements were, in turn, greater than for movements in which the muscle was agonist in one degree of freedom and antagonist in the other. It was also found that, for movements in which a muscle acted as agonist in two degrees of freedom, the burst magnitude was, in the majority of cases, not different from the sum of the burst magnitudes in the component movements. When differences occurred, the burst magnitude for the combined movement was greater than the sum of the components. Other measures of EMG activity such as burst onset time and duration were not found to vary in a systematic manner with motion in these two degrees of freedom. It was also seen that several muscles which produced motion in one degree of freedom at the elbow, including triceps brachii (long head), triceps brachii (lateral head), and pronator quadratus displayed first agonist bursts whose magnitude did not vary with motion in a second degree of freedom. However, for the monoarticular elbow flexors brachialis and brachioradialis, agonist burst magnitude was affected by pronation or supination. Lastly, it was observed that during elbow movements in which muscles acted as agonist in one degree of freedom and antagonist in the other, the muscle activity often displayed both agonist and antagonist components in the same movement. It was found that, for pronator teres and biceps brachii, the timing of the bursts was such that there was activity in these muscles concurrent with activity in both pure agonists and pure antagonists. The empirical summation of EMG burst magnitudes and the presence in a single muscle of both agonist and antagonist bursts within a movement suggest that central commands associated with motion in individual degrees of freedom at the elbow may be superimposed to produce elbow movements in two degrees of freedom. 相似文献
26.
An adaptive algorithm is described that groups motor unit action potentials (MUAPs), detected in a composite EMG signal during
signal decomposition, and creates partial motor unit action potential trains (MUAPTs). Data-driven MUAP shape and motor unit
firing-pattern based criteria are used to form the clusters. An algorithm for estimating MUAPT temporal parameter, which provides
accurate estimates even for partially defined trains, is used to obtain firing-pattern information. No a priori knowledge
is required regarding the number of clusters or the distribution of their template shapes. The clustering algorithm when applied
to real concentric-needle detected MUAP data provides accurate and useful clustering results. Compared to a classical leader-based
algorithm, it provides more robust performance, is better able to estimate the true number of motor units represented in a
set of detected MUAPs, and obtains more complete and accurate MUAPTs. 相似文献
27.
Summary A new stochastic model of the surface EMG is suggested and the spectral density of the surface EMG is studied theoretically and experimentally to confirm the validity of this model.Theoretical results show that while the contraction level is not so high, the shape of the spectral density (distribution) does not change and its amplitude is directly proportional to the motor unit firing frequency and recruitment.To illustrate the theoretical results, experiments were carried out for rectus femoris and biceps brachii. The surface EMG was lead off by bipolar surface electrodes. And the spectral density of the surface EMG was calculated using FFT algorithm.From these experimental results, it was confirmed that our theoretical results were almost valid. 相似文献
28.
29.
腕管综合征患者的临床与神经电生理研究 总被引:6,自引:0,他引:6
目的:观察神经电生理检测对腕管综合征(CTS)的诊断价值。方法:对腕管综合征的临床特征及病因进行了分析,并作神经传导速度(NCV)和肌电图检测和分析。结果:40条患病神经中8条正中神经诱发波形消失,32条正中神经感觉潜伏期延长、波幅降低或(和)感觉神经传导速度减慢。25例患者伴有30条正中神经运动末梢潜伏期延长或(和)动作电位波幅降低。22块正中神经支配肌有去神经电位。结论:神经电生理检查在腕管综合征的诊断与鉴别诊断中有重要意义。 相似文献
30.
Nonspecific factors such as placebo or expectancy effects may materially influence therapeutic outcome in EMG relaxation training. Yet, controlling for the expectations of experimenters has received little attention even though Rosenthal's Experimenter Expectancy Effect is well-documented. This study examined the effects of experimenter expectancy on frontal EMG conditioning. During training, experimenters were given either no expectancy or led to believe that EMG conditioning would he either difficult (low expectancy) or easy (high expectancy) to achieve. Then, the three groups of experimenters collected data from subjects undergoing 20 min of either contingent or noncontingent reinforcement for frontal EMG decreases. Postexperimental credibility checks indicated that experimenters were unaware they were being studied but could identify their expectancy condition when informed of the three conditions. Differential EMG behavior was observed between groups conditioned by experimenters with no expectancies, with contingent subjects achieving significantly lower EMG levels than noncontingent subjects. Differences were not exhibited, however, between contingent and noncontingent subjects trained by experimenters with either low or high expectancies. These findings suggest that experimenters with prior expectations may covertly communicate to subjects response sets that interfere with acquisition of differential EMG behavior. 相似文献