40 results on '"Brain Electrophysiology"'
Search Results
2. [DISTRIBUTION EVOKED RESPONSES TO LIGHT IN VARIOUS STRATA OF THE VISUAL CORTEX IN THE RABBIT].
3. [THE EFFECT OF RETICULAR STIMULATION ON CORTICAL RESPONSES ARISING DURING SIMULTANEOUS PERIPHERAL STIMULATION OF 3 AFFERENT SYSTEMS].
4. [EVOKED POTENTIALS AND MECHANISMS OF DISCRIMINATION OF AN EXTERNAL SIGNAL].
5. [CORTICAL ELECTRICAL ACTIVITY DURING THE PROCESS OF FORMING AND REINFORCING MOTOR FOOD AND DEFENSIVE CONDITIONED REFLEXES].
6. [FORMATION OF TEMPORARY CONNECTIONS IN ASSOCIATION OF "INDIFFERENT" STIMULI IN REPTILES].
7. [SELECTIVE EXTINCTION OF THE ORIENTATION REFLEX TO COMPLEX ACOUSTIC AND MULTIMODAL STIMULI].
8. [ON INDIVIDUAL VARIATION FACTORS IN CEREBRAL BIO-CURRENT REACTIONS TO RHYTHMICAL LIGHT STIMULI].
9. [ON THE MECHANISM OF CORRELATION OF THE VISUAL AND AUDITORY ANALYZER].
10. [USE OF THE CORRELATION ANALYSIS IN THE STUDY OF THE ELECTRICAL ACTIVITY OF THE CEREBRAL CORTEX].
11. [ASYMMETRY IN ELECTRICAL REACTIONS OF THE FROG BRAIN IN RESPONSE TO DIFFERENTLY LOCATED LIGHT SOURCES].
12. [CEREBRAL ELECTRICAL ACTIVITY AFTER HEMISPHERECTOMY].
13. [DIFFERENTIATION OF CONDITIONED REFLEXES TO ELECTRICAL STIMULATION OF VARIOUS SEGMENTS OF THE CEREBRAL CORTEX].
14. [CHANGES IN THE CORTEX-SUBCORTEX RELATIONSHIP UNDER THE INFLUENCE OF AMINAZIN].
15. [ON RELATIONS BETWEEN THE BACKGROUND ELECTRICAL ACTIVITY OF THE BRAIN, AFTER-DISCHARGE AND THE REINFORCEMENT REACTION IN THE ELECTROGRAM FOLLOWING LIGHT STIMULATION IN THE POND TORTOISE].
16. [FEATURES OF BIOELECTRICAL ACTIVITY IN THE BRAIN OF ANIMALS IRRADIATED DURING THE ANTENATAL DEVELOPMENT WITH IONIZING RADIATIONS].
17. [MODIFICATION OF THE BIO-ELECTRICAL ACITIVITY OF THE HUMAN CEREBRAL CORTEX DURING THE PRODUCTION OF MOTOR CONDITIONED REACTIONS TO TIME].
18. [CROSS CORRELATION OF THE BIO-ELECTRICAL ACTIVITY OF SEPARATE PARTS OF THE HUMAN CEREBRAL CORTEX UNDER THE CONDITION OF RELATIVE REST].
19. [DRIVING REACTION AS A FUNCTION OF THE INTENSITY OF THE FLICKERING LIGHT STIMULUS].
20. [ON CHARACTERISTICS OF EVOKED POTENTIALS DURING EXTINCTION OF THE ORIENTING REACTION IN DOGS].
21. [ON SPATIAL DISTRIBUTION OF THE MAGNITUDE OF ASSIMILATED RHYTHM IN THE HUMAN CEREBRAL CORTEX].
22. [PECULIARITIES OF CORTICO-SUBCORTICAL MECHANISMS OF INTEROCEPTIVE AND EXTEROCEPTIVE REFLEXES].
23. [EXPERIMENTAL STUDY OF THE PROPERTIES OF THE HUMAN NERVOUS SYSTEM].
24. [EFFECT OF THE PROBABILITY OF THE APPEARANCE OF THE SIGNAL ON THE PROCESS OF ITS DETECTION].
25. [ON THE REPRESENTATION OF THE VISUAL ANALYZER IN THE CEREBRAL CORTEX].
26. [ON INHIBITION IN THE NEURON SYSTEM OF THE VISUAL CORTEX].
27. [ANALYSIS OF THE INTERACTION OF EVOKED POTENTIALS AND BASIC BIOELECTRICAL ACTIVITY OF THE CEREBRAL CORTEX IN RABBITS].
28. [ON CONDUCTION PATHWAYS OF THE PRIMARY INFORMATION IN THE VISUAL ANALYZER SYSTEM].
29. [CORTICO-VISCERAL DISORDERS EVOKED BY SIMULTANEOUS STIMULATION OF GASTRIC MECHANORECEPTORS AND ORBITAL REGION OF THE CEREBRAL CORTEX].
30. [SOME ELECTROPHYSIOLOGICAL ASPECTS OF CEREBRAL CORTEX NEURONS].
31. [APROPOS OF THE STUDY OF VARIOUS ASPECTS OF HIGHER NERVOUS ACTIVITY IN ANIMALS].
32. [EXTINCTION OF ORIENTATION REACTIONS FOLLOWING CUTTING AND REMOVAL OF THE AUDITORY CORTEX].
33. [STUDIES ON THE DYNAMICS OF THE FREQUENCY-SPECIFIC CEREBRAL AND RETINAL ELECTROPHYSIOLOGICAL REACTION DURING THE COURSE OF PROLONGED PHOTIC STIMULATION USING CORRELATION ANALYSIS].
34. [INTERRELATIONSHIP BETWEEN VARIOUS PARTS OF THE HUMAN CEREBRAL CORTEX DURING INTELLECTUAL WORK].
35. [ON THE NATURE OF CORTICAL INHIBITION].
36. [RELATION OF PRIMARY RESPONSES OF THE AUDITORY CORTEX TO TEMPORARY PARAMETERS OF THE SIGNAL IN ALERT CATS].
37. [SOME DATA ON THE RELATIONSHIP BETWEEN SLOW AND IMPULSE ACTIVITY OF THE PALEOCORTEX IN THE LIZARD].
38. [RELATIONSHIP BETWEEN COMPONENTS OF THE EVOKED POTENTIAL IN VARIOUS SEGMENTS OF THE ANTERIOR CORPUS BIGEMINUM IN THE RABBIT].
39. [ON THE EFFECT OF STIMULATION OF THE CORTICAL PROJECTION ZONES ON THE PROCESS OF GENERALIZATION OF THE ELECTRICAL REACTION (DESYNCHRONI- ZATION) IN THE CEREBRAL CORTEX].
40. [APROPOS OF THE ORIGIN OF GENERALIZED EPILEPTIFORM DISCHARGES IN THE CEREBRAL CORTEX].
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