• Corpus ID: 85928496

НЕЙРОФИЗИОЛОГИя ОбОНяТЕЛЬНОЙ СИСТЕМЫ МОРСКИх РЫб: ЭКОЛОГО-ЭВОЛюЦИОННЫЕ АСПЕКТЫ

@inproceedings{Sotnikov2012,
  title={НЕЙРОФИЗИОЛОГИя ОбОНяТЕЛЬНОЙ СИСТЕМЫ МОРСКИх РЫб: ЭКОЛОГО-ЭВОЛюЦИОННЫЕ АСПЕКТЫ},
  author={O. S. Sotnikov and L. E. Frumkina and V. N. Mayorov and N. M. Paramonova and Aleksandra Laktionova and N. N. Bogolepov and I. P. Pavlov},
  year={2012}
}
40. Nicol J.A.C. Giant axons of Eudistylia vancouveri (Kinberg) // Transact. Roy. Soc. Canada, XIII, (III). 1948. P. 107–124. 41. Nicol J.A.C., Young J.Z. Giant nerve fibre of Myxicola infundibulum (Grube) // Nature. 1946. Vol. 158. P. 167–168. 42. Paramonova N.M., Sotnikov O.S., Cytoplasmic syncytial connections between neuron bodies in the CNS of adult animals // Neurosci. Behav. Physiol. 2010. Vol. 40. P. 73–77. 43. Peters A. Golgi, Cajal, and fine structure of the nervous system // Brain… 

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Preface Commentaries on The Neuron Doctrine Cajal, Golgi and Ariadne's Needle - Marina Bentivoglio Reflections on the Neuron Doctrine - Javier DeFelipe The Neuron Doctrine Revisited: A Personal
The structure of the nervous system of the nematode Caenorhabditis elegans.
The structure and connectivity of the nervous system of the nematode Caenorhabditis elegans has been deduced from reconstructions of electron micrographs of serial sections. The hermaphrodite nervous
Fused Neurons and Synaptic Contacts in the Giant Nerve Fibres of Cephalopods
The fact that there are two very large nerve cells in the central nervous system of the squid, Loligo , was discovered by Williams (1909), who also gave a brief description of their connexions. His
Neuronismo y reticulismo: neuronal–glial circuits unify the reticular and neuronal theories of brain organization
The neuronal doctrine, which shaped the development of neuroscience, was born from a long‐lasting struggle between reticularists, who assumed internal continuity of neural networks and neuronists,
Ultrastructural analysis of interneuronal syncytial perforations
The structural regularities of the organization of interneuronal syncytial cytoplasmic connections between neuronal bodies in gyrus dentatus and CA1 and CA2 (CA is cornu ammonis) of hippocampus, as
Cajal and the retina: a 100-year retrospective
TLDR
Some of the difficulties Cajal encountered in interpreting the cellular architecture of the retina and its function are considered, which reveals interesting aspects of his personality and sheds light on the mechanisms underlying the progress of understanding in science.
The forebrain of the Pacific hagfish: a cladistic reconstruction of the ancestral craniate forebrain.
TLDR
It is concluded that the forebrains of the earliest craniates may have been more complex than previously believed, and cladistic methodology is used to reconstruct a morphotype.
Syncytial coupling of neurons in tissue culture and early ontogenesis
TLDR
Electron microscopic studies of the nerve processes of cells in the intramural intestinal plexus in the early postnatal period demonstrated all the transitional states from fusion and perforation of the membranes of contacting dendrites to complete fusion of the neuroplasm of processes with formation of residual membranous structures at the location of the former intercellular contact.
Early development of the olfactory organ in sturgeons of the genus Acipenser: a comparative and electron microscopic study
TLDR
The mode of formation of the nasal sac and its ventilatory openings found in the acipenserids examined here, represents a widespread and probably a plesiomorphic condition of osteognathostomes, and clearly demonstrate close resemblance to the morphogenetic process in the tetrapod Xenopus.
Development of sense organs in the Japanese sardine Sardinops melanostictus
TLDR
The basic structure of the sense organs was almost completed by 32mm SL, and the adult condition might be attained at 60–70 mm SL, as suggested by the second inflection point in the relationship between the number of olfactory lamellae and standard length.
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