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G C Agarwal
Author PubWeight™ 40.42
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Top papers
Rank
Title
Journal
Year
PubWeight™
‹?›
1
Interactions between voluntary and postural mechanisms of thehuman motor system.
J Neurophysiol
1970
1.99
2
Response to sudden torques about ankle in man: myotatic reflex.
J Neurophysiol
1979
1.94
3
Physiological clonus in man.
Exp Neurol
1977
1.31
4
Oscillation of the human ankle joint in response to applied sinusoidal torque on the foot.
J Physiol
1977
1.28
5
Movement deficits caused by hyperexcitable stretch reflexes in spastic humans.
Brain
1986
1.25
6
Organizing principles for single-joint movements. I. A speed-insensitive strategy.
J Neurophysiol
1989
1.23
7
Response to sudden torques about ankle in man. II. Postmyotatic reactions.
J Neurophysiol
1980
1.21
8
Electromechanical delay: An experimental artifact.
J Electromyogr Kinesiol
1992
1.21
9
Organizing principles for single-joint movements. II. A speed-sensitive strategy.
J Neurophysiol
1989
1.17
10
Effects of initial conditions on the Hoffman reflex.
J Neurol Neurosurg Psychiatry
1971
1.06
11
Reciprocal excitation of antagonistic muscles as a differentiating feature in spasticity.
Ann Neurol
1982
1.01
12
Filtering of electromyographic signals.
Am J Phys Med
1970
0.98
13
Response to sudden torques about ankle in man: V effects of peripheral ischemia.
J Neurophysiol
1983
0.97
14
Chronic cerebellar stimulation for cerebral palsy. Prospective and double-blind studies.
J Neurosurg
1980
0.94
15
Dependence of human ankle compliance on joint angle.
J Biomech
1978
0.89
16
Sinusoidal oscillation of the ankle as a means of evaluating the spastic patient.
J Neurol Neurosurg Psychiatry
1978
0.89
17
A lumped parameter model of the cerebrospinal fluid system.
IEEE Trans Biomed Eng
1969
0.89
18
Dynamic relationship between isometric muscle tension and the electromyogram in man.
J Appl Physiol
1971
0.88
19
Stretch and Hoffmann reflexes during phasic voluntary contractions of the human soleus muscle.
Electroencephalogr Clin Neurophysiol
1978
0.88
20
Principles for learning single-joint movements. I. Enhanced performance by practice.
Exp Brain Res
1993
0.88
21
Response to sudden torques about ankle in man. III. Suppression of stretch-evoked responses during phasic contraction.
J Neurophysiol
1980
0.87
22
Organizing principles for single joint movements. III. Speed-insensitive strategy as a default.
J Neurophysiol
1990
0.86
23
Stretch reflexes of the normal infant.
Dev Med Child Neurol
1986
0.86
24
Decomposition of multiunit electromyographic signals.
IEEE Trans Biomed Eng
1999
0.86
25
The muscle silent period and reciprocal inhibition in man.
J Neurol Neurosurg Psychiatry
1972
0.85
26
Afferent contributions to stretch-evoked myoelectric responses.
J Neurophysiol
1982
0.85
27
The role of the myotatic reflex in the voluntary control of movements.
Brain Res
1972
0.85
28
Myoelectric responses at flexors and extensors of human wrist to step torque perturbations.
J Neurophysiol
1982
0.85
29
Modulation of postural reflexes by voluntary movement. II. Modulation at an inactive joint.
J Neurol Neurosurg Psychiatry
1973
0.84
30
Reciprocal excitation of muscle antagonists by the primary afferent pathway.
Exp Brain Res
1982
0.84
31
Modulation of postural reflexes by voluntary movement. I. Modulation of the active limb.
J Neurol Neurosurg Psychiatry
1973
0.83
32
An analysis of the electromyogram by Fourier, simulation and experimental techniques.
IEEE Trans Biomed Eng
1975
0.83
33
Practice improves even the simplest movements.
Exp Brain Res
1988
0.82
34
Effect of vibration of the ankle stretch reflex in man.
Electroencephalogr Clin Neurophysiol
1980
0.81
35
Cerebellar stimulation in man. Quantitative changes in spasticity.
J Neurosurg
1978
0.80
36
Response to sudden torques about ankle in man. IV. A functional role of alpha-gamma linkage.
J Neurophysiol
1981
0.80
37
Compliance of single joints: elastic and plastic characteristics.
J Neurophysiol
1988
0.79
38
Accuracy constraints upon rapid elbow movements.
J Mot Behav
1988
0.79
39
Organizing principles for single-joint movements. IV. Implications for isometric contractions.
J Neurophysiol
1990
0.78
40
Mathematical modeling and simulation of the postural control loop: Part I.
Crit Rev Biomed Eng
1982
0.77
41
Extinction of the Hoffmann reflex by antidromic conduction.
Electroencephalogr Clin Neurophysiol
1976
0.77
42
Organizing principles for single joint movements: V. Agonist-antagonist interactions.
J Neurophysiol
1992
0.77
43
Mathematical modeling and simulation of the postural control loop--Part II.
Crit Rev Biomed Eng
1984
0.76
44
Principles for learning single-joint movements. II. Generalizing a learned behavior.
Exp Brain Res
1993
0.76
45
An investigation of the servobehavior of the stretch reflex.
ISA Trans
1976
0.75
46
Computerised evaluation of cognitive and motor function.
Med Biol Eng Comput
2000
0.75
47
Directional errors of movement and their correction in a discrete tracking task.
J Mot Behav
1979
0.75
48
Reflex responses to ankle perturbations during electrical stimulation of muscle: 1. Measurement techniques and preliminary examples.
Biomed Sci Instrum
1990
0.75
49
Time series modeling of neuromuscular system.
Biol Cybern
1984
0.75
50
A note on accepting the null hypothesis: problems with respect to the mass-spring and pulse-step models of movement control.
J Mot Behav
1985
0.75
51
Mathematical modeling and simulation of the postural control loop. Part III.
Crit Rev Biomed Eng
1984
0.75
52
Predictor operator in pursuit and compensatory tracking.
Hum Factors
1980
0.75
53
An investigation of the servo-behavior of the stretch reflex.
Biomed Sci Instrum
1975
0.75
54
Nonlinear mechanical behavior in striated muscle and its relationship to underlying crossbridge activity.
IEEE Trans Biomed Eng
1988
0.75
55
Orientation-induced artifacts in the measurement of monosynaptic reflexes.
Neurosci Lett
1984
0.75
56
Biomechanical and reflex responses to joint perturbations during electrical stimulation of muscle: instrumentation and measurement techniques.
Med Biol Eng Comput
1994
0.75
57
Muscle spindle contributions to the stretch-evoked electromyogram: nerve block studies.
Exp Neurol
1984
0.75