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MeSH Review

Higher Nervous Activity

 
 
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High impact information on Higher Nervous Activity

  • Surprisingly, a diazo analog, (Z)-3-hexenyl diazoacetate, elicited slightly higher nervous activity than the natural ligand in the neurons specific and selective for (Z)-3-hexenyl acetate [1].
  • The question of the formation of the two types of effect of vasopressin on higher nervous activity is discussed in relation to the evolution of mammals [2].
  • The differences between the effects of ACTH and beta-endorphin on higher nervous activity are discussed, as are the possible mechanisms of these effects [3].
  • The knowledge on the Common Brain Stem System (CBSS) described by Hess is reviewed in order to underline its role as a control centre integrating all the homeostatic and adaptive nervous activities, and in this context, the nervous control of the cardiovascular system is examined, particularly in relation to higher nervous activities [4].
  • On acute effects of some drugs on the higher nervous activity in man. Ethanol (0.5 g/kg) and its interaction with diazepam (5 mg) and meclophenoxate (100 mg). Part LVIII [5].
 

Chemical compound and disease context of Higher Nervous Activity

 

Gene context of Higher Nervous Activity

References

  1. A photoaffinity-labeled green leaf volatile compound 'tricks' highly selective and sensitive insect olfactory receptor neurons. Nikonov, A.A., Valiyaveettil, J.T., Leal, W.S. Chem. Senses (2001) [Pubmed]
  2. The effects of vasopressin on memory processes in Java monkeys. Sollertinskaya, T.N., Korinkina, N.N. Neurosci. Behav. Physiol. (2000) [Pubmed]
  3. Comparative study of the roles of ACTH and beta-endorphin in regulating conditioned reflex activity in the hedgehog. Sollertinskaya, T.N. Neurosci. Behav. Physiol. (1997) [Pubmed]
  4. "Organic" and "functional" diseases of the nervous system. Ferrari, E. Funct. Neurol. (1991) [Pubmed]
  5. On acute effects of some drugs on the higher nervous activity in man. Ethanol (0.5 g/kg) and its interaction with diazepam (5 mg) and meclophenoxate (100 mg). Part LVIII. Hrbek, J., Macáková, J., Komenda, S., Siroká, A., Rypka, M. Acta Universitatis Palackianae Olomucensis Facultatis Medicae. (1989) [Pubmed]
  6. Acute effect of ethanol (0.3 g, 0.6 g and 0.9 g/kg) on the higher nervous activity in man. Hrbek, J., Macáková, J., Komenda, S., Siroká, A., Dostálová, K. Activitas nervosa superior. (1981) [Pubmed]
  7. Effects of different drugs on the higher nervous activity in man. Meclophenoxate. Hrbek, J., Macáková, J., Komenda, S., Dostálová, K., Medek, A. Acta Universitatis Palackianae Olomucensis Facultatis Medicae. (1980) [Pubmed]
  8. Effects of different drugs on the higher nervous activity in man. Piracetam. Hrbek, J., Macáková, J., Komenda, S., Dostálová, K., Medek, A., Navrátil, J. Acta Universitatis Palackianae Olomucensis Facultatis Medicae. (1980) [Pubmed]
  9. The acute effect of diazepine derivatives on the higher nervous activity in man. Hrbek, J., Komenda, S., Macáková, J., Siroká, A., Navrátil, J. Agressologie (1978) [Pubmed]
  10. On acute effects of some drugs on the higher nervous activity in man (the complex tactile analyser). Clorotepin (0.5 mg and 1.0 mg), methaqualone (300 mg). Hrbek, J., Macáková, J., Komenda, S., Siroká, A., Navrátil, J. Acta Universitatis Palackianae Olomucensis Facultatis Medicae. (1980) [Pubmed]
  11. On acute effects of some drugs on the higher nervous activity in man. Ethanol (0.1, 0.2, 0.4 g/kg). Part LVI. Hrbek, J., Macáková, J., Komenda, S., Siroká, A., Rypka, M., Hrbek, J. Acta Universitatis Palackianae Olomucensis Facultatis Medicae. (1987) [Pubmed]
 
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