THE FEATURES OF BLOOD SUPPLY OF CORPUS CALLOSUM AND THE STRUCTURE OF ITS HEMOMICROCIRCULATORY CHANNEL
Abstract
Today we know the location of the sources of arterial blood delivery to the corpus callosum and we can approximately say, where are situated the venous vessels that the blood outflows from it to, but it is absolutely unknown, what is the intermediate link – the blood microcirculatory channel.
Aim of research. The aim of our research is in identification of the ways of venous outflow from corpus callosum and in clarification of the principle of structural organization of its hemomicrocirculatory channel.
Materials and methods. In the work are used the median total preparations of the corpus callosum (together with septum pellucidum and cerebral fornix formations) of 10 men 36–60 years old. Histological paraffin sections, colored by hematoxylin and eosin and according to Van-gieson were made of these preparations, and the methods of plastination of the corpus callosum tissues in epoxy resin with further creation of polished sections of different width and serial fine sections of blocs, for which coloration served the 1 % solution of blue methene for 1% borax solution, were also used.
Results. It was established, that the arterial microvessels, starting from vascular plexus that covers the upper surface of corpus callosum, penetrate it as arterioles along interfunicular connective tissue septs that divide its commissural funicles between them. The arterioles are prolonged directly in venous microvessels that can be related to gathering venules. These direct microvascular communications, coming through the thickness of corpus callosum, can be named perforating arteriolovenular anastomoses. The aforesaid collector venules, localized in the lowest sections of interfunicular interlayers, are the direct inflows of venous channel of septum pellucidum. In general system of blood supply of corpus callosum the main arteries on the one side and the veins of septum pellucidum – on the other, are not accompanied by the vessels of opposite type.
Conclusions. The blood microcirculatory channel of corpus callosum is the complexly branched in its thickness net of resistive, metabolic and capacitive microvessels, placed on the running way between arterial channel of soft cerebral tunic that covers the upper surface of corpus callosum and collector veins of septum pellucidum, situated below it. The direct shunting tracts between them are perforating arteriolovenular anastomoses.Keywords
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Garel, C., Cont, I., Alberti, C., Josserand, E., Moutard, M. L., Ducou le Pointe, H. (2011). Biometry of the Corpus Callosum in Children: MR Imaging Reference Data. American Journal of Neuroradiology, 32 (8), 1436–1443. doi: 10.3174/ajnr.a2542
Li, Y., Mandal, M., Ahmed, S. N. (2013). Fully automated segmentation of corpus callosum in midsagittal brain MRIs. 35th Annual International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC). doi: 10.1109/embc.2013.6610698
Prakash, K. N. B., Nowinski, W. L. (2006). Morphologic Relationship Among the Corpus Callosum, Fornix, Anterior Commissure, and Posterior Commissure. Academic Radiology, 13 (1), 24–35. doi: 10.1016/j.acra.2005.06.018
Raybaud, C. (2010). The corpus callosum, the other great forebrain commissures, and the septum pellucidum: anatomy, development, and malformation. Neuroradiology, 52 (6), 447–477. doi: 10.1007/s00234-010-0696-3
Roy, E., Hague, C., Forster, B., Colistro, R., Andrews, G. (2014). The Corpus Callosum: Imaging the Middle of the Road. Canadian Association of Radiologists Journal, 65 (2), 141–147. doi: 10.1016/j.carj.2013.02.004
Fabri, M. (2014). Functional topography of the corpus callosum investigated by DTI and fMRI. World Journal of Radiology, 6 (12), 895–906. doi: 10.4329/wjr.v6.i12.895
Fabri, M., Polonara, G. (2013). Functional Topography of Human Corpus Callosum: An fMRI Mapping Study. Neural Plasticity, 1–15. doi: 10.1155/2013/251308
Fabri, M., Polonara, G., Mascioli, G., Salvolini, U., Manzoni, T. (2011). Topographical organization of human corpus callosum: An fMRI mapping study. Brain Research, 1370, 99–111. doi: 10.1016/j.brainres.2010.11.039
Biryukov, A. N. (2010). Pat. RU 2396907. Sposob prizhiznennogo opredeleniya razmerov mozolistogo tela [In vivo method of determining the size of the corpus callosum]. MPK8 A 61 V 6/03. # 2008106151/14; declareted: 18.02.2008; published 20.08.2010, 9.
Boyagina, O. D. (2015). Individual'naya variativnost' formy mozolistogo tela muzhchin i zhenshchin v zrelom vozraste po dannym MRT-izobrazhenij. Vіsnik problem bіologіi і medicini, 4/2 (125), 291–294.
Boyagina, O. D., Kostilenko, Yu. P. (2015). Planimetricheskij analiz individual'noj variativnosti i polovogo dimorfizma mozolistogo tela lyudej v zrelom vozraste po dannym MRT-izobrazhenij. Morfologіya, 9/4, 21–25.
Boyagina, O. D., Kostilenko, Yu. P., Mangov, A. V., Inyutochkina, I. A. (2016). Linejnye metricheskie parametry individual'noj variativnosti polovogo dimorfizma mozolistogo tela lyudej zrelogo vozrasta po dannym MRT-izobrazhenij. Vіsnik problem bіologіi і medicini, 2 (1 (128)), 353–359.
Bruner, E., de la Cuétara, J. M., Colom, R., Martin-Loeches, M. (2012). Gender-based differences in the shape of the human corpus callosum are associated with allometric variations. Journal of Anatomy, 220 (4), 417–421. doi: 10.1111/j.1469-7580.2012.01476.x
Boyagina, O. D. (2015). Sovremennye predstavleniya o mozolistom tele kak o spajke novogo plashcha. Aktual'nі problemi suchasnoi medicine, 15 (3-2 (51)), 293–299.
Ego, H., N’Da, H., Viart, L., Foulon, P., Le Gars, D., Havet, E., Peltier, J. (2015). Anatomie microchirurgicale des branches perforantes de l’artère communicante antérieure. Morphologie, 99 (324), 6–13. doi: 10.1016/j.morpho.2014.11.001
Sinel'nikov, R. D., Sinel'nikov, Ya. R., Sinel'nikov, A. Ya. (2008). Atlas anatomii cheloveka. Moscow: Novaya volna, 216.
Ivanov, G. F. (1949). Osnovy normal'noj anatomii cheloveka. Vol. 2. Moscow: Medgiz, 80–137.
Kostilenko, Yu. P., Bojko, I. V., Starchenko, I. I. (2007). Metod izgotovleniya gistologicheskih preparatov, ravnocennyh polutonkim srezam bol'shoj obzornoj poverhnosti, dlya mnogocelevyh morfologicheskih issledovanij. Morfologiya, 5, 94–96.
Boyagina, O. D. (2016). Stroenie mozolistogo tela cheloveka v posmertnom sostoyanii sravnitel'no s ego MRT-izobrazheniem. Georgian Medical News, 5 (254), 87–92.
Kostilenko, Ju. P., Bojagina, O. D. (2016). Form of the male and female corpus callosum internal organization at the mature age. ScienceRise, 4 (3 (21)), 4–8. doi: 10.15587/2313-8416.2016.67450
DOI: http://dx.doi.org/10.21303/2504-5679.2017.00266
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