The Experts below are selected from a list of 18 Experts worldwide ranked by ideXlab platform
D. N. Shyian - One of the best experts on this subject based on the ideXlab platform.
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morphological features of the Globose Nucleus of the cerebellum
Morphologia, 2016Co-Authors: D. N. ShyianAbstract:Метою даного дослідження є вивчення морфологічних особливостей кулястого ядра мозочка. Дослідження проводилося на 340 препаратах мозочка людей у віці від 20 до 99 років. Використано макро- і мікроскопічні, морфометричні, гістологічні методи і метод статистичного аналізу. За результатами дослідження встановлена індивідуальна мінливість розмірів кулястого ядра з урахуванням розмірів черв’яка мозочка. Визначені межі розташування відносно сагітальної площини, топографоанатомічні особливості розташування по відношенню до інших ядер мозочка. Описані варіанти форм кулястого ядра.
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Morphological features of the Globose Nucleus of the cerebellum
'SE Dnipropetrovsk Medical Academy of Health Ministry of Ukraine', 2016Co-Authors: D. N. ShyianAbstract:Background. The study of the clinical anatomy and functional features of the cortex, subcortical and conductive pathways of the cerebellum is necessary for clinicians for elaboration of rational surgical approaches to these formations, for determination the localization of pathological processes associated with these formations. In this article morphological features of the Globose Nucleus of the cerebellum were studied. Objective. The aim of this study is to investigate the morphological features of spherical nuclei of the cerebellum. Methods. The study was conducted at 340 specimens of the cerebellum of people aged from 20 to 99 years old. Macro- and microscopic, morphometric, histologic methods and methods of statistical analysis were used. Results. Individual variability in size of spherical Nucleus considering the size of the cerebellar vermis was established. It determines the location of the border relatively to the median sagittal plane, topographic and anatomic particular location in relation to other nuclei of the cerebellum. Variantions of the Nucleus were established. Conclusion. We have established dimensions of Globose Nucleus, its shape and location regarding the median-sagittal plane. The Globose Nucleus on the sections made in a horizontal plane has a bulk-rounded shape at 65,88% (224 cases). At 34,12% (116 cases) it consists of a cluster of different sizes` nuclei and it does not always correspond to the shape of the ball, since in this case it may be not only round, but also have an elongated oval outline in the longitudinal direction. The plate of its gray matter has small spherical winding cogs in the shape of wavy line
Shyian D.n. - One of the best experts on this subject based on the ideXlab platform.
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Morphological features of the Globose Nucleus of the cerebellum
Ministry of Health of Ukraine. Dnipropetrovsk Medical Academy, 2016Co-Authors: Shyian D.n.Abstract:Background. The study of the clinical anatomy and functional features of the cortex, subcortical and conductive pathways of the cerebellum is necessary for clinicians for elaboration of rational surgical approaches to these formations, for determination the localization of pathological processes associated with these formations. In this article morphological features of the Globose Nucleus of the cerebellum were studied. Objective. The aim of this study is to investigate the morphological features of spherical nuclei of the cerebellum. Methods. The study was conducted at 340 specimens of the cerebellum of people aged from 20 to 99 years old. Macro- and microscopic, morphometric, histologic methods and methods of statistical analysis were used. Results. Individual variability in size of spherical Nucleus considering the size of the cerebellar vermis was established. It determines the location of the border relatively to the median sagittal plane, topographic and anatomic particular location in relation to other nuclei of the cerebellum. Variantions of the Nucleus were established. Conclusion. We have established dimensions of Globose Nucleus, its shape and location regarding the median-sagittal plane. The Globose Nucleus on the sections made in a horizontal plane has a bulk-rounded shape at 65,88% (224 cases). At 34,12% (116 cases) it consists of a cluster of different sizes` nuclei and it does not always correspond to the shape of the ball, since in this case it may be not only round, but also have an elongated oval outline in the longitudinal direction. The plate of its gray matter has small spherical winding cogs in the shape of wavy line. Citation: Shyian DN. Morphological features of the Globose Nucleus of the cerebellum. Morphologia. 2016;10(1):92-5
Philip T. Hicks - One of the best experts on this subject based on the ideXlab platform.
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Human cerebro-cerebellar system.
2013Co-Authors: Satoru Onodera, Philip T. HicksAbstract:The medial cerebellar system receives cortical information from areas 4, 8 and 7 via the ND [62], [63], [38], [56]. The lateral cerebellar system might not have been related only to skilful motor learning via areas 4, 6, 5 and 8 [35], [36], [63], [38], [56], but also to cognitive and language processing via the prefrontal cortico-rubral projection. CTT–central tegmental tract, dD–dorsal half of cerebellar dentate Nucleus, dl–dorsal lamella, Gl–cerebellar Globose Nucleus, lb–lateral bend, MAO–medial accessory olive, MTT–medial tegmental tract, NB–Nucleus accessorius medialis of Bechterew, ND–Nucleus of Darkschewitsch, pNr–parvicellular red Nucleus, PO–principal olive, vD–ventral half of cerebellar dentate Nucleus, vl–ventral lamella, 4–motor area, 5–somatosensory association cortex, 6–premotor area, 7–posterior parietal cortex, 8–frontal eye field, 44–Broca's speech area.
Alexander G. Pletnev - One of the best experts on this subject based on the ideXlab platform.
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WNV-labeled neurons in the deep cerebellar nuclei.
2016Co-Authors: Olga A. Maximova, John G. Bernbaum, Alexander G. PletnevAbstract:(A) Low magnification overview image showing many WNV-labeled neurons in the dentate Nucleus (Dt), emboliform Nucleus (Emb), and Globose Nucleus (Glo) (9 dpi). B and C show corresponding boxed areas at higher magnification. Scale bars: 100 μm.
Satoru Onodera - One of the best experts on this subject based on the ideXlab platform.
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Human cerebro-cerebellar system.
2013Co-Authors: Satoru Onodera, Philip T. HicksAbstract:The medial cerebellar system receives cortical information from areas 4, 8 and 7 via the ND [62], [63], [38], [56]. The lateral cerebellar system might not have been related only to skilful motor learning via areas 4, 6, 5 and 8 [35], [36], [63], [38], [56], but also to cognitive and language processing via the prefrontal cortico-rubral projection. CTT–central tegmental tract, dD–dorsal half of cerebellar dentate Nucleus, dl–dorsal lamella, Gl–cerebellar Globose Nucleus, lb–lateral bend, MAO–medial accessory olive, MTT–medial tegmental tract, NB–Nucleus accessorius medialis of Bechterew, ND–Nucleus of Darkschewitsch, pNr–parvicellular red Nucleus, PO–principal olive, vD–ventral half of cerebellar dentate Nucleus, vl–ventral lamella, 4–motor area, 5–somatosensory association cortex, 6–premotor area, 7–posterior parietal cortex, 8–frontal eye field, 44–Broca's speech area.