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Биологические ритмы. В 2-х т. Т. 1. Пер. С англ. — м.: Мир, 1984.— 414 с.

Контроль циркадианных ритмов у беспозвоночных 183

торецептора (см. выше), либо от контралатерального глазного колебателя. Известно, что глаз содержит большое количество серотонина, но в каких клетках он образуется, не установлено [18].

Литература

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  2. Aréchiga H., Fuentes Б. Correlative changes between retinal shielding pigments position and electroretinogram in crayfish, The Physiologist, 13, 137 ,(1970).

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  5. Aréchiga H., Funetes В., Barrera B. Circadian rhythm of responsiveness in the visual system of the crayfish. In: J. Salânki (éd.), Neurobiology of Invertebrates, Budapest, Akadémiai Kiado, 1973, pp. 403—427.

  6. Aréchiga H., Huberman Α., Naylor Ε. Hormonal modulation of Circadian neural activity in Carcinus maenas (L), Proceedings of the Royal Society of London, B, 187, 299—313 (1974).

  7. Barlow R. В., Jr., Balanowski S. J., Jr., Brachman M. L. Efferent optic nerve fibers mediate Circadian rhythm in the Limulus eye, Science, 197, 86—89 (1977).

  8. Barrera-Mera B. The effect of cerebroid ganglion lesions on ERG Circadian rhythm in the crayfish, Physiology and Behavior, 17, 59—64 (1976).

  9. -Bennitt R. Diurnal rhythm in the proximal cells of the crayfish retina, Physiological Zoology, 5, 65—69 ,(1932).

  1. Bliss D. E. Neuroendocrine control of locomotor activity in the land crab Cecarcinus lateralis, Memoirs of the Society of Endocrinology, 12, 391 (1962).

  2. Block G. D. Evidence for an entrainable circadian oscillator in the abdominal ganglia of crayfish, Neuroscience Abstracts, 2, 315 (1976).

  3. Block G. D., Lickey M. E. Extraocular photoreceptors and oscillators can control the circadian rhythm of behavioral activity in Aplysia, J. of Comparative Physiology; 84, 367—374 (1973).

  4. Block G. D., Page T. L. Circadian pacemakers in the nervous system, Annual Review of Neuroscience, 1, 19—34 (1978).

  5. Block G. D., Hudson D. J., Lickey M. E. Extraocular photoreceptors can entrain the circadian oscillator in the eye of Aplysia, J. of Comparative Physiology, 89, 237—250 (1974).

  6. Brady J. Control of circadian rhythm of activity in the cockroach. II. The role of the subesophageal ganglion and ventral nerve cord, J. of Experimental Biology, 47, 165—178 (1967).

  7. Brady J. The search ïor the insect clock. In: M. Menaker (éd.), Biochronoinetry, Washington, D. C., National Academy of Sciences, 1971, pp. 517— 524.

  8. Brady J. The physiology of insect circadian rhythms. Advances in Insect Physiology, 10, 1—115 (1974).

  9. Carrent G., McAdoo D. J., Eskin A. Serotonin phase shifts the circadian rhythm from the Aplysia eye, Science, 202, 977—979 (1978).

  10. Cymborowski B. Control of the circadian rhythm of locomotor activity in the house cricket, J. of Insect Physiology, 19, 1423—1440 (1973).