9
Views
0
CrossRef citations to date
0
Altmetric
Original Article

Peculiarities of Participation of the Fronto-Thalamo-Caudate System in Extrapolatory Behavior

, &
Pages 181-202 | Received 23 Sep 1987, Published online: 07 Jul 2009

References

  • Adrianov O. S. To the question of connections and function of the so-called specific reticular system of thalamus. 18 Soveshanie po problemam vyssh. nervn. deiat. AN SSSR, Leningrad 1958; 1: 5–7
  • Adrianoff O. S. Sur les liaisons et les fonctions des noyaux thalamiques du systeme “non spécifique”. Ac'a Neurologie et Psychialrice Belgica 1960; 60: 704–722
  • Adrianov O. S. On the principles of organization of integrative activity of the brain. Meditsina, Moscow 1976
  • Adrianov O. S. Upon the role of different brain systems in the organization of cerebral functions. Projectional and association brain systems. Trudi Institula mozga AMN SSSR, Moscow 1977; 6: 40
  • Adrianov O. S. The problem of organization of thalamocortical connections. Journal für Hirnforschung 1977; 18(3)191–221
  • Adrianov O. S. Central problems of localization and organization of cerebral functions. Modern aspects of localization and organization of cerebral functions. Meditzina, Moscow 1980; 200–215
  • Adrianov O. S., Molodkina L. N. The extrapolatory task solving of prefrontal cats. Zhournal Vysshei Nervnci Deiatelnosti 1974; 24: 957–964
  • Adrianov O. S., Molodkina L. N. Influence of ablation of frontal and parietal neocortical areas in dogs on their ability to solve an extrapolatory task. Zhournal Vysshei Nervnoi Deiatelnosti 1979; 29: 537–542
  • Adrianov O. S., Molodkina L. N., Mukhin E. I., Shugalev N. P., Yamshikova N. G. Participation of caudate nucleus in different forms of voluntary activity in cats. Acta Neurobiologiae Experimentalis 1980; 40: 729–740
  • Adrianov O. S., Popova N. S. Evoked potentials as an index of shaping of avoidance behavior mechanisms. International Journal of Neuroscience 1982; 17: 243–254
  • Adrianov O. S., Shugalev N. P. Mechanisms of participation of caudate nuclei in the organization of conditioned motor reflexes. In Mechanisms of movement organization. Proceedings of the Symposium, Leningrad, 1976; 7–10
  • Adrianov O. S., Amounts V. V., Zvegintseva E. G., Orzhekhovskaya N. S., Pavliedis T. P., Panina P. S., Urmancheeva T. G. Morphological changes of the thalamic nuclei after extirpation of individual fields of frontal region in monkey's cerebral cortex. Central mechanisms of compensatory functional recovery. Armeniam Academy of Sciences, Yerevan 1983; 12–17
  • Akert K. Comparative anatomy of frontal cortex and thalamo-frontal connections. The frontal granular cortex and behavior, J. Warren, K. Akert, New York 1964; 372–396
  • Anokhin P. K. Biology and neurophysiology of conditioned reflex. Meditzina, Moscow 1968
  • Arushanian E. B., Otellin V. A. Caudate nucleus. Essays on morphology, physiology and pharmacology. Nauka, Leningrad 1976
  • Asratian E. A. Physiology of central nervous system. Scientific works. USSR Academy of Sciences, Moscow 1953
  • Bartus R. T., Levere T. T. Frontal decortication in rhesus monkeys: a test of the interference hypothesis. Brain Research 1977; 119: 233–248
  • Bekhterev V. M. The main principles of brain functions. 1907, Saint Petersburg
  • Bekhtereva N. P. Neurophysiological aspects of the main psychic activity(2nd ed.). Meditzina, Leningrad 1974
  • Brownell C. A., Strauss M. S. Infant stimulation and development: conceptual and empirical considerations. Journal of Children in Comtemporary Society 1984; 17: 109–130
  • Brutkowski A. Prefrontal cortex and drive inhibition. Frontal granular cortex and behavior, J. Warren, A. Akert, New York 1964; 242–269
  • Buchwald N. A., RakiČ L., Wyers E. T., Hull C. The caudate spindel. A behavioral index of caudate induced inhibition. EEG and Clinical Neurophysiology 1961; 13: 531–537
  • Buthuzi S. M. Electrophysiological study of the functions of the caudate nucleus. Metznijereba, Tbilisi 1971
  • Cherkes V. A. Essays on physiology of basal ganglia of the brain. The Ukranian Academy of Sciences, Kiev 1963
  • Deecke L., Grozinger B., Kornhuber H. Voluntary finger movement in man: cerebral potentials and theory. Biological Cybernetics 1976; 23: 99–119
  • De Long M. R., Alexander G. E., Georgopoulas A. P., Crutcher M. D., Mitchell S. J., Richardson R. T. Role of basal ganglia in limb movements. Human Neurobiology 1984; 2: 235–244
  • Divać I. Delayed alternation in cats with lesions of the prefrontal cortex and caudate nucleus. Physiology and Behavior 1972; 8: 519–522
  • Divać I. Functions of neostriatum: cortex-dependent or autonomous. Acta Neurobiologiue Experimentalis 1980; 40: 85–94
  • Gorbatchevskaya A. I. Reciprocal projects of different parts of the caudate nucleus and of some thalamic nuclei. Striopallidary system. Nauka, Leningrad 1973; 111–118
  • Gross C. G., Weiskrantz L. Some changes in behavior produced by lateral frontal lesions in the macaque. The frontal granular cortex and behavior, J. Warren, A. Akert, New York 1964; 74–101
  • Gurevitch M., Khatchaturian A., Khatchaturov A. Methods of cytoarchitectonical mapping of field measures. To the cytoarchitectonics of the cortex cerebri of felidae. Higher nenous activity. Communist Academy, Moscow 1929; 159–187
  • Hopf S., Herzog M., Ploog D. Development of attachment and exploration behavior in infant squirrel monkeys under controlled rearing conditions. International Journal of Behavior Development 1985; 8(1)55–74
  • Jasper H. H., Aimone-Marsan C. A stereotaxic atlas of the diencephalon of the cat. The National Research Council of Canada, Ottawa 1954
  • Johnson T. N. Fiber connections between the dorsal thalamus and corpus striatum in the cat. Experimental Neurology 1961; 30: 556–569
  • Kachalova L. M. Participation of the caudate nucleus, globus pallidus and ventrolateral nucleus of thalamus in selective integrations on different phases of defensive behavior. Vestnik of the USSR Medical Academy of Sciences 1981; 6: 67–71
  • Khananashvili M. M. Experimental pathology of the higher nervous activity. Meditsina, Moscow 1978; 368
  • Khasabov G. A. Neurophysiology of conical connections in primates. Meditsina, Moscow 1978; 184
  • Khasabov G. A., Kurajev G. A. Functional connections of nuclei of strio-pallidary system in monkeys. Zhournal Vysshei Nervnoi Deiaitelnosti 1968; 18: 448–445
  • Khokhriakova N. M. On the projection of ten thalamic nuclei to the proreal sulcus of the cat. Physiology of frontal lobes. Proceedings of the AlhUnion Symposium. Sukhumi 1972; 23–26
  • Kiyonos S., Seo M. L., Shibagaki M., Inouye M. Facilitative effects of material enrichment on maze learning in rat offspring. Physiology and Behavior 1985; 34(3)431–435
  • Kononova E. P. The frontal area of the brain. Medgiz, Leningrad 1962
  • Kornhuber H. H. Cerebral cortex, cerebellum and basal ganglia: an introduction to their motor functions. The third study program of neurosciences. 1974; 267–279
  • Krauthamer G. M., Albe-Fessard D. Inhibition of nonspecific sensory activities following striopallidal and capsular stimulation. Journal of Neurophysiology 1965; 28: 100–124
  • Krushinsky L. V. Thyroid gland and defensive behavior of the dog. Biological Zhournal 1938; 7: 1043–1066
  • Krushinsky L. V. Extrapolatory reflexes as alimentary rational activity in animals. Dokladi Akademii Nauk SSSR 1958; 121(4)726–765
  • Krushinsky L. V. Behavior formation in animals in norm and pathology. The Moscow State University Press, Moscow 1960
  • Krushinsky L. V. Objective study of the animal rational activity. Uspekhi Fisiologilcheskikh Nauk, Moscow 1982; 13: 25–41
  • Krushinsky L. V. Biological basis of rational activity. 2nd revised edition. The Moscow State University Press, Moscow 1986
  • Lagutina N. I. To the evolution of the frontal cortical areas of the brain. Evolution oecology and brain. Meditsina, Leningrad 1972; 73–88
  • Liubimov N. N. A new conception on localization of central mechanisms of conditioned reflex. Modern aspects of the study of localization and organization of cerebral functions. Meditsina, Moscow 1980; 215–233
  • Livanov M. N. Spatial organization of the brain processes. Nauka, Moscow 1972
  • Luria A. R. Higher cortical functions in man and their deficits following local lesions of the brain. The Moscow State University Press, Moscow 1962
  • Luria A. R. Frontal lobes and regulation of behavior. Frontal lobes and regulation of psychological processes. Neuropsychological studies. The Moscow State University Press. 1966; 7–37
  • Luria A. R. Human brain and mental processes. Pedagogica, Moscow 1970
  • Malakhova O. E. Projections of different parts of prefrontal cortex to thalamic specific nuclei. Thalamo-strio- cortical interrelations. Trudi Instituta mozga SSSR Akademy Medical Sciences, Moscow 1981; V. 10: 57–60
  • Mekhedova A. Ya. On the role of the brain frontal areas in the formation of conditioned reactions, adequate in values and probability of their reinforcement. In 22 soveshanije po problemam vysshei nervnoi deiaitelnosti, posviash. 120 rozhdenija I. P. Pavlova. Proceedings of the meeting. USSR Academy of Sciences, Riazan 1969; 165–165
  • Molodkina L. N., Adrianov O. S. On the effect of frontal lesions upon the animal ability to solve elementa-y tasks. In Frontal lobes and regulations of behavior. Proceedings of International Congress of Psychologists. Moscow 1966; 117–120
  • Mukhin E. I. The role of the system: frontal cortex-caudate nucleus in generalization function. Zhournal Vysshei Nervnoi Deiaitelnosti 1983; 33: 46–53
  • Mukhin E. I. The role of the medio-dorsal nucleus of thalamus in securing of generalization function in cats. Zhournal Vysshei Nervnoi Deiaitelnosti 1985; 35: 449–457
  • Nauta W. J. H. Neural associations of the frontal cortex. Acta Neurobiologiae Experimental 1972; 32: 125–140
  • Papez I. W. A summary of fiber connections of the basal ganglia with each and with other portions of the brain. Research Publications Association of Nervous & Mental Diseases 1942; 21: 21–68
  • Pavlov I. P. (1949) Pavlovskije Sredi. Protocols and stenograms of physiological meetings, Wednesday. November, 131935. USSR Academy of Sciences, Moscow-Leningrad, 262–263
  • Pazhetnov V. S. My friends bears. Agropromizdat, Moscow 1985
  • Plokhinsky N. A. Mathematical methods in biology. Teaching and methodical handbook. The Moscow State University, Moscow 1978
  • Poliakov G. I. On the principles of neuronal organization of the brain. The Moscow State University Press, Moscow 1965
  • Popova N. S. Systemic analysis of the intercentral integration. Meditsina, Moscow 1983; 160
  • Pribram K., Mishkin M. Analysis of the effects of frontal lesions on monkeys. Ill: Object alternation. Journal of Comparative Physiology and Psychology 1956; 49: 41–45
  • Pribram K. H. Recent studies of the functions of the frontal lobes in monkeys and man. Frontal lobes and regulation of psychological processes. The Moscow State University Press, Moscow 1966; 117–132
  • Pribram K. H. The primate frontal cortex. Neuropsychologia 1969; 7: 259–270
  • Rakic L. Regulatory systems of behavior. Mir, Moscow 1984
  • Robiner I. S. Cortical projection of the thalamic medial group nuclei and their functional significance. Zhournal Vysshei Nervnoi Deiaitelnosti 1968; 18: 886–894
  • Rose I. E., Woolsey C. N. Organization of the mammalian thalamus and its relationship to the cerebral cortex. Electroencephalography and Clinical Neurophysiology 1949; 1: 391–404
  • Semiokhina A. F., Zabelin S. I. Dependence of ability to extrapolation upon the level of brain excitability. Zhournal Vysshei Nervnoi Deiaitelnosti 1979; 29: 88–93
  • Semiokhina A. K., Otchinskaya E. I., Rubtzova N. B., Krushinsky L. V. New research data on experimentiil neuroses following overexertion of the higher nervous activity. Dokladi Akademii Nauk SSSR 1976; 231: 503–506
  • Shimamoto T., Verzeano M. Relations between caudate and diffusely projecting thalamic nuclei. Journal of Neurophysiology 1954; 17: 278–288
  • Showers M. J. Correlation of medial thalamic nuclear activity with cortical and subcortical neuronal areas. Journal of Comparative Neurology 1558; 109: 261–275
  • Shugalev N. P. Evoked activity of projection and association zones of the cerebral cortex in cats during elaboration of differentiations in alimentary conditioning. Zhournal Vysshei Nervnoi Deiaitelnosti 1971; 21: 54–60
  • Shugalev N. P. On dynamics of the effect of caudate nuclei involvement in the process of internal inhibition of the food-procuring reflex. Zhournal Vysshei Nervnoi Deiaitelnosti 1975; 25: 974–981
  • Shumilina A. I. The functional organization of neocortical connections. Nauka, Moscow 1931
  • Shustin N. A. The problem of the function of frontal lobes in dogs. Frontal lobes and regulation ofpsychological processes. The Moscow State University Press, Moscow 1966; 82–99
  • Shustin N. A. The brain system activity. Nauka, Leningrad 1980
  • Sotskaya M. N., Molodkina L. N., Kuznctsova L. M. Influence of different environmental conditions of animals raising on the ability to solve an extrapolation problem. Zhournal Vysshei Nervnoi Deiaitelnosti 1983; 32: 1048–1053
  • Stamm J. S. Retardation and facilitation in learning by stimulation of frontal cortex in monkeys. The frontal granular cortex and behavior, J. M. Warren, K. Akert, New York 1964; 102–125
  • Stepien I., Stamm J. S. Impairments on locomotor task involving spatial opposition between cue and reward in frontally ablated monkeys. Ada Neurobiologiae Experimentalis 1970; 30: 1–12
  • Suvorov N. F. The role of the strio-thalamo-cortical system in the conditioned-reflex activity. Strio-pallidary system. Nauka, Leningrad 1973; 3–13
  • Suvorov N. K. Strio-system and behavior. Nauka, Leningrad 1980
  • Svetukhina V. M. Citoarchitecture of precoronal and frontal regions of the cortex in carnivora. The development of the central nervous system. Medgiz, Moscow 1959; 115–138
  • Teuber H.-L. Unity and diversity of frontal lobe functions. Acta Neurobiologiae Experimentalis 1972; 32: 615–656
  • Tolkunov B. F. Striatum and sensory specialization of neuronal network. Nauka, Leningrad 1978
  • Tsitolovskaya L. A. Effect of short-term enrichment on the elaboration of a foodprocuring conditioned reflex in ontogenesis of rats. Zhournal Vysshei Nervnoi Deiaitelnosti 1985; 4: 775–776
  • Van Buren J. M., Burke R. C. Variations and connections of the human thalamus. 2: Variations of the human diencephalon. Springer-Verlag, New York, Heidelberg, Berlin 1972
  • Vasilyeva L. A. The role of some associative thalamic nuclei of cats in the formation of conditioned reflexes to a simultaneous complex. Zhournal Vysshei Nervnoi Deiaitelnosti. 1970; 20: 1182–1188
  • Waller W. H. Thalamic connections of the frontal cortex of the cat. Journal of Comparative Neurology 1940; 73: 117–141
  • Walter W. G. Human frontal lobe function in regulation of active states. Frontal lobes and regulation of psychic processes. The Moscow State University Press, Moscow 1966; 156–175
  • Warren J. M., Akert K. Impaired problem solving by cats with thalamic lesions. Journal of Comparative and Physiological Psychology 1960; 53: 207
  • Watkins D., Hattic J. Longitudinal study of the approaches to learning of Australian tertiary students. Human Learning 1985; 4(2)127–141
  • Yanko Ya. Mathematical-statistical tables. Gosstanizdat, Moscow 1961
  • Zernicki B. The effect of prefrontal lobectomy on water instrumental conditioned reflexes in dogs. Acta Neurobiologiae Experimentalis 1961; 21: 157–162

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.