Εμφανίζονται 1 - 20 Αποτελέσματα από 32 για την αναζήτηση '"тригеминальная невралгия"', χρόνος αναζήτησης: 0,60δλ Περιορισμός αποτελεσμάτων
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    Academic Journal

    Πηγή: Ukrainian Neurosurgical Journal; Vol. 31 (2025): Special issue
    Ukrainian Neurosurgical Journal; Том 31 (2025): Специальный выпуск
    Ukrainian Neurosurgical Journal; Том 31 (2025): Спеціальний випуск

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    Σύνδεσμος πρόσβασης: https://theunj.org/article/view/313858

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    Academic Journal

    Πηγή: Ukrainian Neurosurgical Journal; Vol. 31 (2025): Special issue ; Ukrainian Neurosurgical Journal; Том 31 (2025): Специальный выпуск ; Ukrainian Neurosurgical Journal; Том 31 (2025): Спеціальний випуск ; 2663-9092 ; 2663-9084

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    Διαθεσιμότητα: https://theunj.org/article/view/313858

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    Academic Journal

    Πηγή: Diagnostic radiology and radiotherapy; Том 12, № 4 (2021); 33-40 ; Лучевая диагностика и терапия; Том 12, № 4 (2021); 33-40 ; 2079-5343

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    Relation: https://radiag.bmoc-spb.ru/jour/article/view/654/505; Antonini G., di Pasquale A., Cruccu G., Truini A., Morino S., Saltelli G., Romano A., Trasimeni G., Vanacore N., Bozzao A. Magnetic resonance imaging contribution for diagnosing symptomatic neurovascular contact in classical trigeminal neuralgia: A blinded case-control study and meta-analysis // Pain. International Association for the Study of Pain. 2014. Vol. 155, No. 8. Р. 1464–1471. doi:10.1016/j.pain.2014.04.020.; Jannetta P. Neurovascular compression in cranial nerve and systemic disease // Ann. Surg. 1980. Vol. 194, No. 4. Р. 518–525. doi:10.1097/00000658-198010000-00010.; Hamlyn P.J. Neurovascular relationships in the posterior cranial fossa, with special reference to trigeminal neuralgia. 1. Review of the literature and development of a new method of vascular injection-filling in cadaveric controls // Clin. Anat. 1997, Vol. 10, No. 6. Р. 371–379. doi:10.1002/(SICI)1098-2353(1997)10:63.0.CO;2-S.; Быченко В.Г., Курашвили Ю.Б., Шиманский В.Н. и др. Особенности выполнения МР-томографии и лучевой анатомии тройничного нерва // REJR. 2011. Т. 1, № 3. с. 62.; Bullitt E., Zeng D., Mortamet B., Ghosh A., Aylward S.R., Lin W., Marks B.L., Smith K. The effects of healthy aging on intracerebral blood vessels visualized by magnetic resonance angiography // Neurobiol. Aging. 2010. Vol. 31, No. 2. Р. 290–300. doi:10.1016/j.neurobiolaging.2008.03.022.; Bullitt E., Rahman F.N., Smith J.K., Kim E., Zeng D., Katz L.M., Marks B.L. The effect of exercise on the cerebral vasculature of healthy aged subjects as visualized by MR angiography // AJNR Am. J. Neuroradiol. 2009. Vol. 30, No. 10. Р. 1857–1863. doi:10.3174/ajnr.A1695.; Chen L., Sun J., Hippe D.S., Balu N., Yuan Q., Yuan I., Zhao X., Li R., He L., Hatsukami T.S., Hwang J.N., Yuan C. Quantitative assessment of the intracranial vasculature in an older adult population using iCafe // Neurobiol. Aging. 2019. Vol. 79. Р. 59–65. doi:10.1016/j.neurobiolaging.2019.02.027.; Ngo M.T., Kwak H.S., Chung G.H. Change in basilar artery length and bending according to aging and vertebral artery dominance: A longitudinal study // Sci. Rep. 2020. Vol. 10, No. 1. Р. 8904. doi:10.1038/s41598-020-65682-x.; Burulday V., Doğan A., Akgül M.H., Alpua M., Çankaya I. Is there a relationship between basilar artery tortuosity and vertigo? // Clin. Neurol. Neurosurg. 2019. Vol. 178. Р. 97–100. doi:10.1016/j.clineuro.2019.02.006.; Del Corso L., Moruzzo D., Conte B., Agelli M., Romanelli A.M., Pastine F., Protti M., Pentimone F., Baggiani G. Tortuosity, kinking, and coiling of the carotid artery: expression of atherosclerosis or aging? // Angiology. 1998. Vol. 49, No. 5. Р. 361–371. doi:10.1177/000331979804900505.; Kim B.J., Kim S.M., Kang D.W., Kwon S.U., Suh D.C., Kim J.S. Vascular tortuosity may be related to intracranial artery atherosclerosis // Int. J. Stroke. 2015. Vol. 10, No. 7. Р. 1081–1086. doi:10.1111/ijs.12525.; Diedrich K.T., Roberts J.A., Schmidt R.H., Kang C.K., Cho Z.H., Parker D.L. Validation of an arterial tortuosity measure with application to hypertension collection of clinical hypertensive patients // BMC Bioinformatics. 2011. Vol. 12, Suppl. 10–15. doi:10.1186/1471-2105-12-S10-S15. doi:10.1186/1471-2105-12-S10-S15.; Устюжанцев Н.Е. Топографическая анатомия корешка тройничного нерва в боковой цистерне моста // Казанский медицинский журнал. 2010. Т. 91, № 2. Р. 187–192.

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    Academic Journal
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    Academic Journal

    Πηγή: Diagnostic radiology and radiotherapy; № 1 (2016); 54-57 ; Лучевая диагностика и терапия; № 1 (2016); 54-57 ; 2079-5343 ; 10.22328/2079-5343-2016-1

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    Relation: https://radiag.bmoc-spb.ru/jour/article/view/109/110; Baker F. G., Janetta P. J., Bissonette D. J. et al. The long-term outcome of microvascular decompression for trigeminal neuralgia // N. Engl. J. Med.- 1996.- Vol. 334.- Р 1077-1083.; Janetta P. J. Arterial compression of the trigeminal nerve at the pons in patients with trigeminal neuralgia // J. Neurosurg.- 2007.- Vol. 107.- Р 216-237.; Nurmikko T. J. Trigeminal neuralgia-pathophysiology, diagnosis and current treatment // Br. J. Anaesth.- 2001.- Vol. 87.- Р 117-132.; Gardner W. J. Concerning the mechanism of trigeminal neuralgia and hemifacial spasm // J. Neurosurg.- 1962.- Vol. 19 - Р 947-958.; Kitt C. A., Gruber K., Davis M. et al. Trigeminal neuralgia: opportunities for research and treatment // Pain. - 2000. - Vol. 85. - Р. 3-7.; Raslan A. M., DeJesus R., Berk C. et al. Sensitivity of high-resolution three-dimensional magnetic resonance angiography and three-dimensional spoiledgradient recalled imaging in the prediction of neurovascular compression in patients with hemifacial spasm // J. Neurosurg.- 2009.- Vol. 111.- P. 733-736.; Anderson V. С., Berryhill P. С., Sandquist M. A. et al. High-resolution three-dimensional magnetic resonance angiography and three-dimensional spoiled gradient-recalled imaging in the evaluation of neurovascular compression in patients with trigeminal neuralgia: a double-blind pilot study // Neurosurgery.- 2006.- Vol. 58.- Р. 666-673.; Yoshino N., Akimoto H., Yamada I. et al. Trigeminal neuralgia: evaluation of neuralgic manifestation and site of neurovascular compression with 3D CISS MR imaging and MR angiography // Radiology.- 2003.- Vol. 228.- Р. 539-545.; Zhou Q., Liu Z. L., Qu C. С. et al. Preoperative demonstration of neurovascular relationship in trigeminal neuralgia by using 3D FIE STA sequence // Magn. Reson. Imaging.- 2012.- Vol. 30.- Р. 666-671.; Lorenzoni J., David P., Levivier M. Patterns of neurovascular compression in patients with classic trigeminal neuralgia: a high-resolution MRI-based study // Eur. J. Radiol.- 2012.- Vol. 81.- Р. 1851-1857.; Трофимова Т. Н., Вишневский А. А., Шулешова Н. В., Яновская И. В. Гл. 4. МРТ-визуализация черепных нервов в норме и при заболеваниях, сопровождающихся их дисфункцией // Черепные нервы.- М.: Умный доктор, 2015. - С. 120-157.; Трофимова Т. Н., Яновская И. В. Высокопольная МРТ в диагностике дисфункции черепных нервов // Диагностическая и интервенционная радиология.- № 3 (3).- 2009.- C. 21-29.; Suzuki M., Yoshino N., Shimada M. et al. Trigeminal neuralgia: differences in magnetic resonance imaging characteristics of neurovascular compression between symptomatic and asymptomatic nerves // Oral and maxillofacial radiology.- 2015.- Vol. 1.- Р. 113-118.

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    Academic Journal

    Πηγή: Bulletin of Siberian Medicine; Том 9, № 4 (2010); 94-99 ; Бюллетень сибирской медицины; Том 9, № 4 (2010); 94-99 ; 1819-3684 ; 1682-0363 ; 10.20538/1682-0363-2010-9-4

    Περιγραφή αρχείου: application/pdf

    Relation: https://bulletin.tomsk.ru/jour/article/view/1634/1156; Афанасьева Е.В., Балязин И.В. Топографо-анатомические и физические предпосылки нейроваскулярного конфликта у больных тригеминальной невралгией // Нейрохирургия. 2008. № 2. С. 38—42.; Балязин В.А., Балязина Е.В. Пути уменьшения осложнений и рецидивов после микроваскулярной декомпрессии у больных с тригеминальной невралгией // Журн. «Вопросы нейрохирургии» им. Н.Н. Бурденко. 2003. № 2. С. 6—9.; Балязина Е.В. Топографо-анатомические взаимоотношения ствола тройничного нерва с верхней мозжечковой артерией у больных с невралгией тройничного нерва // Морфология. 2009. № 5. С. 27—31.; Горбач Н. Теоретическая механика. Динамика. М.: Интерпрессервис, 2004. 192 с.; Anderson V.C., Berryhill P.C., Sandquist M.A. et al. Highresolution three-dimensional magnetic resonance angiography and three-dimensional spoiled gradient-recalled imaging in the evaluation of neurovascular compression in patients with trigeminal neuralgia: a double-blind pilot study // Neurosurgery. 2006. V. 58, № 4. P. 666—673.; Bagheri S.C., Farhidvash F., Perciaccante V.J. Diagnosis and treatment of patients with trigeminal neuralgia // J. Am. Dent. Assoc. 2004. V. 135, № 12. P. 1713—1717.; Benes L., Shiratori K., Gurschi M. et al. Is preoperative high-resolution magnetic resonance imaging accurate in predicting neurovascular compression in patients with trigeminal neuralgia? A single-blind study // Neurosurg. Rev. 2005. V. 28, № 2. P. 131—136.; Cheshire W.P. Can MRI distinguish injurious from innocuous trigeminal neurovascular contact? // J. Neurol. Neurosurg. Psychiatry. 2005. V. 76, № 11. P. 1470—1471.; Jurjević A., Bralić M., Bucuk M. et al. Trigeminal neuralgia secondary to meningioma of petroclival localization // Coll. Antropol. 2009. V. 33, № 1. P. 323—325.; Kress B., Schindler M., Rasche D. et al. Trigeminal neuralgia: how often are trigeminal nerve-vessel contacts found by MRI in normal volunteers // Sartor. Rofo. 2006. V. 178, № 3. P. 313—315.; Kuroki A., Kayama T., Song J., Saito S. et al. Removal of petrous apex meningioma and microvascular decompression for trigeminal neuralgia through the anterior petrosal approach. Case report // Neurol. Med. Chir (Tokyo). 1999. V. 39, № 6. P. 447—451.; Lang E., Naraghi R., Tanrikulu L. et al. Neurovascular relationship at the trigeminal root entry zone in persistent idiopathic facial pain: findings from MRI 3D visualization // J. Neurol. Neurosurg. Psychiatry. 2005. V. 76, № 11. P. 1506—1509.; Laurent B., Keravel Y., Sindou M. Clinical aspects of trigeminal neuralgia // Neurochirurgie. 2009. V. 55, № 2. P. 181—184.; Miller J.P., Acar F., Hamilton B.E., Burchiel K.J. Radiographic evaluation of trigeminal neurovascular compression in patients with and without trigeminal neuralgia // J. Neurosurg. 2009. V. 110, № 4. P. 627—632.; Monstad P. Microvascular decompression as a treatment for cranial nerve hyperactive dysfunctiona critical view // Acta Neurol. Scand. Suppl. 2007. № 187, P. 30—33.; Revuelta-Gutierrez R., Lіpez Gonzalez M.A., Soto-Hernyndez J.L. Surgical treatment of trigeminal neuralgia without vascular compression: 20 years of experience // Surg. Neurol. 2006. V. 66, № 1. P. 32—36.; Tanaka T., Morimoto Y., Shiiba S. et al. Utility of magnetic resonance cisternography using three-dimensional fast asymmetric spin-echo sequences with multiplanar reconstruction: the evaluation of sites of neurovascular compression of the trigeminal nerve // Oral. Surg. Oral. Med. Oral. Pathol. Oral. Radiol. Endod. 2005. V. 100, № 2. P. 215— 225.; Truelove E. Management issues of neuropathic trigeminal pain from a dental perspective // J. Orofac. Pain. 2004. V. 18, № 4. P. 374—380.; https://bulletin.tomsk.ru/jour/article/view/1634

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