Class information for:
Level 1: H REFLEX//PRESYNAPTIC INHIBITION//REHABIL NEUROSCI

Basic class information

Class id #P Avg. number of
references
Database coverage
of references
1762 2499 38.7 63%



Bar chart of Publication_year

Last years might be incomplete

Hierarchy of classes

The table includes all classes above and classes immediately below the current class.



Cluster id Level Cluster label #P
11 4 NEUROSCIENCES//CLINICAL NEUROLOGY//NEUROL 1112395
107 3       TRANSCRANIAL MAGNETIC STIMULATION//CEREBRAL PALSY//GAIT 71550
130 2             EXPERIMENTAL BRAIN RESEARCH//MOTOR CONTROL//JOURNAL OF MOTOR BEHAVIOR 23927
1762 1                   H REFLEX//PRESYNAPTIC INHIBITION//REHABIL NEUROSCI 2499

Terms with highest relevance score



rank Term termType Chi square Shr. of publ. in
class containing
term
Class's shr. of
term's tot. occurrences
#P with
term in
class
1 H REFLEX authKW 2171870 15% 46% 383
2 PRESYNAPTIC INHIBITION authKW 452601 5% 29% 130
3 REHABIL NEUROSCI address 423660 2% 68% 51
4 CUTANEOUS REFLEXES authKW 287787 1% 67% 35
5 POST ACTIVATION DEPRESSION authKW 235953 1% 74% 26
6 RECIPROCAL INHIBITION authKW 231885 2% 37% 51
7 HUMAN DISCOVERY SCI address 188489 1% 86% 18
8 STRETCH REFLEX authKW 167609 3% 20% 67
9 HOMOSYNAPTIC DEPRESSION authKW 162883 1% 67% 20
10 SOLEUS H REFLEX authKW 158325 1% 72% 18

Web of Science journal categories



Rank Term Chi square Shr. of publ. in
class containing
term
Class's shr. of
term's tot. occurrences
#P with term
in class
1 Neurosciences 44227 76% 0% 1890
2 Physiology 20006 31% 0% 775
3 Sport Sciences 4641 10% 0% 261
4 Clinical Neurology 2886 16% 0% 399
5 Rehabilitation 2527 7% 0% 174
6 Engineering, Biomedical 696 5% 0% 118
7 Psychology, Biological 59 1% 0% 17
8 Psychology 41 1% 0% 34
9 Psychology, Experimental 37 1% 0% 32
10 Behavioral Sciences 35 1% 0% 33

Address terms



Rank Term Chi square Shr. of publ. in
class containing
term
Class's shr. of
term's tot. occurrences
#P with
term in
class
1 REHABIL NEUROSCI 423660 2% 68% 51
2 HUMAN DISCOVERY SCI 188489 1% 86% 18
3 MOT MOBIL REHABIL 85521 0% 100% 7
4 SENSORY MOTOR PERFORMANCE PROGRAM 78861 3% 10% 63
5 REHABIL MOVEMENT FUNCT 69361 1% 22% 26
6 SIGNAL PROC MOTOR CONTROL 66513 0% 78% 7
7 NERVOUS SYST DISORDERS 64594 1% 23% 23
8 UNITED EDUC 62530 1% 32% 16
9 HLTH SPORT EDUC 55843 0% 57% 8
10 MOTOR DYSFUNCT 55786 1% 35% 13

Journals



Rank Term Chi square Shr. of publ. in
class containing
term
Class's shr. of
term's tot. occurrences
#P with
term in
class
1 EXPERIMENTAL BRAIN RESEARCH 121771 14% 3% 353
2 JOURNAL OF NEUROPHYSIOLOGY 62557 12% 2% 295
3 JOURNAL OF PHYSIOLOGY-LONDON 37059 9% 1% 236
4 JOURNAL OF ELECTROMYOGRAPHY AND KINESIOLOGY 16400 2% 3% 52
5 CLINICAL NEUROPHYSIOLOGY 12170 3% 1% 71
6 ELECTROENCEPHALOGRAPHY AND CLINICAL NEUROPHYSIOLOGY 9454 2% 2% 52
7 SOMATOSENSORY AND MOTOR RESEARCH 7712 1% 3% 21
8 ELECTROMYOGRAPHY AND MOTOR CONTROL-ELECTROENCEPHALOGRAPHY AND CLINICAL NEUROPHYSIOLOGY 6517 0% 4% 12
9 MOTOR CONTROL 6053 1% 3% 15
10 MUSCLE & NERVE 4589 2% 1% 52

Author Key Words



Rank Term Chi square Shr. of publ. in
class containing
term
Class's shr. of
term's tot. occurrences
#P with
term in
class
LCSH search Wikipedia search
1 H REFLEX 2171870 15% 46% 383 Search H+REFLEX Search H+REFLEX
2 PRESYNAPTIC INHIBITION 452601 5% 29% 130 Search PRESYNAPTIC+INHIBITION Search PRESYNAPTIC+INHIBITION
3 CUTANEOUS REFLEXES 287787 1% 67% 35 Search CUTANEOUS+REFLEXES Search CUTANEOUS+REFLEXES
4 POST ACTIVATION DEPRESSION 235953 1% 74% 26 Search POST+ACTIVATION+DEPRESSION Search POST+ACTIVATION+DEPRESSION
5 RECIPROCAL INHIBITION 231885 2% 37% 51 Search RECIPROCAL+INHIBITION Search RECIPROCAL+INHIBITION
6 STRETCH REFLEX 167609 3% 20% 67 Search STRETCH+REFLEX Search STRETCH+REFLEX
7 HOMOSYNAPTIC DEPRESSION 162883 1% 67% 20 Search HOMOSYNAPTIC+DEPRESSION Search HOMOSYNAPTIC+DEPRESSION
8 SOLEUS H REFLEX 158325 1% 72% 18 Search SOLEUS+H+REFLEX Search SOLEUS+H+REFLEX
9 PRIMARY AFFERENT DEPOLARIZATION 140717 1% 48% 24 Search PRIMARY+AFFERENT+DEPOLARIZATION Search PRIMARY+AFFERENT+DEPOLARIZATION
10 HOFFMANN REFLEX 125102 1% 39% 26 Search HOFFMANN+REFLEX Search HOFFMANN+REFLEX

Core articles

The table includes core articles in the class. The following variables is taken into account for the relevance score of an article in a cluster c:
(1) Number of references referring to publications in the class.
(2) Share of total number of active references referring to publications in the class.
(3) Age of the article. New articles get higher score than old articles.
(4) Citation rate, normalized to year.



Rank Reference # ref. in
cl.
Shr. of ref. in
cl.
Citations
1 ROSSIGNOL, S , DUBUC, RJ , GOSSARD, JP , (2006) DYNAMIC SENSORIMOTOR INTERACTIONS IN LOCOMOTION.PHYSIOLOGICAL REVIEWS. VOL. 86. ISSUE 1. P. 89 -154 187 43% 388
2 KNIKOU, M , (2008) THE H-REFLEX AS A PROBE: PATHWAYS AND PITFALLS.JOURNAL OF NEUROSCIENCE METHODS. VOL. 171. ISSUE 1. P. 1-12 82 92% 101
3 ZEHR, EP , (2002) CONSIDERATIONS FOR USE OF THE HOFFMANN REFLEX IN EXERCISE STUDIES.EUROPEAN JOURNAL OF APPLIED PHYSIOLOGY. VOL. 86. ISSUE 6. P. 455 -468 82 82% 219
4 ZEHR, EP , DUYSENS, J , (2004) REGULATION OF ARM AND LEG MOVEMENT DURING HUMAN LOCOMOTION.NEUROSCIENTIST. VOL. 10. ISSUE 4. P. 347-361 86 72% 183
5 NIELSEN, JB , (2016) HUMAN SPINAL MOTOR CONTROL.ANNUAL REVIEW OF NEUROSCIENCE, VOL 39. VOL. 39. ISSUE . P. 81 -101 86 62% 0
6 ZEHR, EP , STEIN, RB , (1999) WHAT FUNCTIONS DO REFLEXES SERVE DURING HUMAN LOCOMOTION?.PROGRESS IN NEUROBIOLOGY. VOL. 58. ISSUE 2. P. 185 -205 74 82% 231
7 SUZUKI, S , NAKAJIMA, T , FUTATSUBASHI, G , MEZZARANE, RA , OHTSUKA, H , OHKI, Y , ZEHR, EP , KOMIYAMA, T , (2016) SOLEUS HOFFMANN REFLEX AMPLITUDES ARE SPECIFICALLY MODULATED BY CUTANEOUS INPUTS FROM THE ARMS AND OPPOSITE LEG DURING WALKING BUT NOT STANDING.EXPERIMENTAL BRAIN RESEARCH. VOL. 234. ISSUE 8. P. 2293 -2304 45 96% 2
8 VOERMAN, GE , GREGORIC, M , HERMENS, HJ , (2005) NEUROPHYSIOLOGICAL METHODS FOR THE ASSESSMENT OF SPASTICITY: THE HOFFMANN REFLEX, THE TENDON REFLEX, AND THE STRETCH REFLEX.DISABILITY AND REHABILITATION. VOL. 27. ISSUE 1-2. P. 33-68 104 53% 95
9 KNIKOU, M , (2010) NEURAL CONTROL OF LOCOMOTION AND TRAINING-INDUCED PLASTICITY AFTER SPINAL AND CEREBRAL LESIONS.CLINICAL NEUROPHYSIOLOGY. VOL. 121. ISSUE 10. P. 1655 -1668 107 47% 21
10 KNIKOU, M , SMITH, AC , MUMMIDISETTY, CK , (2015) LOCOMOTOR TRAINING IMPROVES RECIPROCAL AND NONRECIPROCAL INHIBITORY CONTROL OF SOLEUS MOTONEURONS IN HUMAN SPINAL CORD INJURY.JOURNAL OF NEUROPHYSIOLOGY. VOL. 113. ISSUE 7. P. 2447 -2460 57 80% 2

Classes with closest relation at Level 1



Rank Class id link
1 21757 LONG LATENCY REFLEX//LONG LATENCY STRETCH REFLEX//CORTICAL RELAY TIME
2 4933 LOCOMOTOR TRAINING//SPINAL CORD INJURY//SCIM
3 6291 PERSISTENT INWARD CURRENT//MOTOR UNIT//PLATEAU POTENTIAL
4 6573 MUSCLE SPINDLE//INTRAFUSAL FIBERS//PROPRIOCEPTION
5 32736 SCI FORMAT//NEUROL OPERAT UNIT//SIMPLE SPIKE ACTIVITY
6 22053 MUSCLE SYNERGIES//MOTOR MODULES//NEUROMOTOR PHYSIOL
7 7986 RED NUCLEUS//CORTICOSPINAL TRACT//RUBROSPINAL
8 2526 NOBEL NEUROPHYSIOL//LAMPREY//MAMMALIAN LOCOMOTOR
9 10879 CENTRAL FATIGUE//VOLUNTARY ACTIVATION//TWITCH INTERPOLATION
10 3904 SPASTICITY//MUSCLE SPASTICITY//BOTULINUM TOXIN

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