Εμφανίζονται 1 - 20 Αποτελέσματα από 95 για την αναζήτηση '"НЕВРОЛОГИЧЕСКИЙ СТАТУС"', χρόνος αναζήτησης: 0,87δλ Περιορισμός αποτελεσμάτων
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    Academic Journal

    Πηγή: POLYTRAUMA; № 3 (2025): сентябрь; 63-74 ; ПОЛИТРАВМА / POLYTRAUMA; № 3 (2025): сентябрь; 63-74 ; 2541-867X ; 1819-1495

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    Θέμα γεωγραφικό: USPU

    Relation: Специальное образование. 2021. № 1 (61)

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    Academic Journal

    Πηγή: Creative surgery and oncology; Том 14, № 3 (2024); 243-254 ; Креативная хирургия и онкология; Том 14, № 3 (2024); 243-254 ; 2076-3093 ; 2307-0501

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    Relation: https://www.surgonco.ru/jour/article/view/986/616; Dea N., Gokaslan Z., Choi D., Fisher C. Spine oncology = primary spine tumors. Neurosurgery. 2017;80(3S):S124–30. DOI:10.1093/neuros/nyw064; Ciftdemir M., Kaya M., Selcuk E., Yalniz E. Tumors of the spine. World J Orthop. 2016;7(2):109–16. DOI:10.5312/wjo.v7.i2.109; Missenard G., Bouthors C., Fadel E., Court C. Surgical strategies for primary malignant tumors of the thoracic and lumbar spine. Orthop Traumatol Surg Res. 2020;106(1S):S53–62. DOI:10.1016/j.otsr.2019.05.028; Dang L., Liu Z., Liu X., Jiang L., Yu M., Wu F., et al. Sagittal en bloc resection of primary tumors in the thoracic and lumbar spine: feasibility, safety and outcome. Sci Rep. 2020;10(1):9108. DOI:10.1038/s41598-020-65326-0; Dandurand C., Fisher C.G., Rhines L.D., Boriani S., Charest-Morin R., Gasbarrini A., et al. Feasibility of achieving planned surgical margins in primary spine tumor: a PTRON study. Neurosurg Focus. 2021;50(5):E16. DOI:10.3171/2021.2.FOCUS201091; Schilling A.T., Ehresman J., Huq S., Ahmed A.K., Lubelski D., Cottrill E., et al. Risk Factors for wound-related complications after surgery for primary and metastatic spine tumors: a systematic review and meta-analysis. World Neurosurg. 2020;141:467–78.e3. DOI:10.1016/j.wneu.2020.03.210; Alan N., Cohen J., Ozpinar A., Agarwal N., Kanter A.S., Okonkwo D.O., et al. Top 50 most cited articles on primary tumors of the spine. J Clin Neurosci. 2017;42:19–27. DOI:10.1016/j.jocn.2017.02.019; Mesfin A., El Dafrawy M.H., Jain A., Hassanzadeh H., Kebaish K.M. Total en bloc spondylectomy for primary and metastatic spine tumors. Orthopedics. 2015;38(11):e995–1000. DOI:10.3928/01477447-20151020-08; Sciubba D.M., De la Garza Ramos R., Goodwin C.R., Xu R., Bydon A., Witham T.F., et al. Total en bloc spondylectomy for locally aggressive and primary malignant tumors of the lumbar spine. Eur Spine J. 2016;25(12):4080–7. DOI:10.1007/s00586-016-4641-y; Shah A.A., Paulino Pereira N.R., Pedlow F.X., Wain J.C., Yoon S.S., Hornicek F.J., et al. Modified en bloc spondylectomy for tumors of the thoracic and lumbar spine: surgical technique and outcomes. J Bone Joint Surg Am. 2017;99(17):1476–84. DOI:10.2106/JBJS.17.00141; Quintana L.M. Primary vertebral tumors-and enneking was right. World Neurosurg. 2017;99:775–6. DOI:10.1016/j.wneu.2016.12.092; Darwish A.E., Hasan B.Z., Elgebery A.O., Badr I.T. The clinical and radiological outcome of stages 1 and 2 enneking benign bone lesions with pathological fracture. Injury. 2021;52(10):2920–5. DOI:10.1016/j.injury.2021.01.026; Sciubba D.M., De la Garza Ramos R., Goodwin C.R., Abu-Bonsrah N., Bydon A., Witham T.F., et al. Clinical, surgical, and molecular prognostic factors for survival after spinal sarcoma resection. Neurosurg Focus. 2016;41(2):E9. DOI:10.3171/2016.5.FOCUS16118; Jones M., Alshameeri Z., Uhiara O., Rehousek P., Grainger M., Hughes S., et al. En bloc resection of tumors of the lumbar spine: a systematic review of outcomes and complications. Int J Spine Surg. 2021;15(6):1211–21. DOI:10.14444/8155; Gazzeri R., Telera S., Galarza M., Callovini G.M., Isabella S., Alfieri A. Surgical treatment of intramedullary spinal cord metastases: functional outcome and complications-a multicenter study. Neurosurg Rev. 2021;44(6):3267–75. DOI:10.1007/s10143-021-01491-8; Yamazaki T., McLoughlin G.S., Patel S., Rhines L.D., Fourney D.R. Feasibility and safety of en bloc resection for primary spine tumors: a systematic review by the Spine Oncology Study Group. Spine (Phila Pa 1976). 2009;34(22 Suppl):S31–8. DOI:10.1097/BRS.0b013e3181b8b796; Fisher C.G., DiPaola C.P., Ryken T.C., Bilsky M.H., Shaffrey C.I., Berven S.H., et al. A novel classification system for spinal instability in neoplastic disease: an evidence-based approach and expert consensus from the Spine Oncology Study Group. Spine (Phila Pa 1976). 2010;35(22):E1221–9. DOI:10.1097/BRS.0b013e3181e16ae2; Kim B., Moon S.H., Kim S.Y., Kim H.J., Lee H.M. Delayed spinal epidural hematoma after en block spondylectomy for vertebral ewing’s sarcoma. Asian Spine J. 2010;4(2):118–22. DOI:10.4184/asj.2010.4.2.118; Tu C.H., Chiu Y.P., Ji H.R., Chiu C.D. Primary osseous chondrosarcoma in the lumbar spine: case report and literature review with analysis. J Int Med Res. 2021;49(11):3000605211058890. DOI:10.1177/03000605211058890; Howell E.P., Williamson T., Karikari I., Abd-El-Barr M., Erickson M., Goodwin M.L., et al. Total en bloc resection of primary and metastatic spine tumors. Ann Transl Med. 2019;7(10):226. DOI:10.21037/atm.2019.01.25; Ashraf N., Hoffe S., Kim R. French FNCLCC/FFCD 9703 study. Oncologist. 2014;19(4):431. DOI:10.1634/theoncologist.2013-0456; Singh H.P., Grover S., Garg B., Sood N. Histopathological spectrum of soft-tissue tumors with immunohistochemistry correlation and FNCLCC grading: a North Indian experience. Niger Med J. 2017;58(5):149–55. DOI:10.4103/nmj.NMJ_226_16; Versteeg A.L, Dea N., Boriani S., Varga P.P., Luzzati A., Fehlings M.G., et al. Surgical management of spinal osteoblastomas. J Neurosurg Spine. 2017;27(3):321–7. DOI:10.3171/2017.1.SPINE16788; Amendola L., Cappuccio M., De Iure F., Bandiera S., Gasbarrini A., Boriani S. En bloc resections for primary spinal tumors in 20 years of experience: effectiveness and safety. Spine J. 2014;14(11):2608–17. DOI:10.1016/j.spinee.2014.02.030; Kaloostian P.E., Yurter A., Etame A.B., Vrionis F.D., Sciubba D.M., Gokaslan Z.L. Palliative strategies for the management of primary and metastatic spinal tumors. Cancer Control. 2014;21(2):140–3. DOI:10.1177/107327481402100206; Desai B., Hobbs J., Hartung G., Xu G., Gokaslan Z.L., Linninger A., et al. Image-guidance technology and the surgical resection of spinal column tumors. J Neurooncol. 2017;131(3):425–35. DOI:10.1007/s11060-016-2325-4; Barber S.M., Konakondla S., Nakhla J., Fridley J.S., Xia J., Oyelese A.A., et al. Spinal dural resection for oncological purposes: a systematic analysis of risks and outcomes in patients with malignant spinal tumors. J Neurosurg Spine. 2019:32(1):69–78. DOI:10.3171/2019.7.SPINE19477; Varga P.P., Szövérfi Z., Lazary A. Surgical treatment of primary malignant tumors of the sacrum. Neurol Res. 2014;36(6):577–87. DOI:10.1179/1743132814Y.0000000366; Shimizu T., Murakami H., Demura S., Kato S., Yoshioka K., Yokogawa N., et al. Total en bloc spondylectomy for primary tumors of the lumbar spine. Medicine (Baltimore). 2018;97(37):e12366. DOI:10.1097/MD.0000000000012366; Ng S., Boetto J., Poulen G., Berthet J.P., Marty-Ane C., Lonjon N. Partial vertebrectomies without instrumented stabilization during en bloc resection of primary bronchogenic carcinomas invading the spine: feasibility study and results on spine balance. World Neurosurg. 2019;122:e1542–50. DOI:10.1016/j.wneu.2018.11.098; Bakar D., Tanenbaum J.E., Phan K., Alentado V.J., Steinmetz M.P., Benzel E.C., et al. Decompression surgery for spinal metastases: a systematic review. Neurosurg Focus. 2016;41(2):E2. DOI:10.3171/2016.6.FOCUS16166; Avila M.J., Skoch J., Fennell V.S., Palejwala S.K., Walter C.M., Kim S., et al. Combined posterior hemiosteotomies and stabilization with lateral thoracotomy for en bloc resection of thoracic paraspinal primary bone tumors: technical note. J Neurosurg Spine. 2016;24(2):223–7. DOI:10.3171/2015.4.SPINE15107; Cappelletto B., Giorgiutti F., Balsano M. Evaluation of the effectiveness of expandable cages for reconstruction of the anterior column of thespine. J Orthop Surg (Hong Kong). 2020;28(1):2309499019900472. DOI:10.1177/2309499019900472; Fourney D.R., Abi-Said D., Rhines L.D., Walsh G.L., Lang F.F., Mc- Cutcheon I.E., et al. Simultaneous anterior-posterior approach to the thoracic and lumbar spine for the radical resection of tumors followed by reconstruction and stabilization. J Neurosurg. 2001;94(2 Suppl):232–44. DOI:10.3171/spi.2001.94.2.0232; Wei F., Liu Z., Liu X., Jiang L., Dang G., Passias P.G., et al. An approach to primary tumors of the upper cervical spine with spondylectomy using a combined approach: our experience with 19 cases. Spine (Phila Pa 1976). 2018;43(2):81–8. DOI:10.1097/BRS.0000000000001007; Zhong N., Yang M., Ma X., Gao X., Ye C., Yang J., et al. Early major complications after radical resection of primary C2-involved upper cervical chordoma through the combined anterior retropharyngealposterior approach: incidence and risk factors. World Neurosurg. 2021;154:e790–6. DOI:10.1016/j.wneu.2021.08.001; Dubory A., Missenard G., Lambert B., Court C. Interest of laparoscopy for “en bloc” resection of primary malignant sacral tumors by combined approach: comparative study with open median laparotomy. Spine (Phila Pa 1976). 2015;40(19):1542–52. DOI:10.1097/BRS.0000000000001069; Rao P.J., Thayaparan G.K., Fairhall J.M., Mobbs R.J. Minimally invasive percutaneous fixation techniques for metastatic spinal disease. Orthop Surg. 2014;6(3):187–95. DOI:10.1111/os.12114; Payer M., Sottas C. Mini-open anterior approach for corpectomy in the thoracolumbar spine. Surg Neurol. 2008;69(1):25–31; discussion 31–2. DOI:10.1016/j.surneu.2007.01.075; Gibbs W.N., Nael K., Doshi A.H., Tanenbaum L.N. Spine oncology: imaging and intervention. Radiol Clin North Am. 2019;57(2):377–95. DOI:10.1016/j.rcl.2018.10.002; Uei H., Tokuhashi Y., Maseda M., Nakahashi M., Sawada H., Nakayama E., et al. Clinical results of multidisciplinary therapy including palliative posterior spinal stabilization surgery and postoperative adjuvant therapy for metastatic spinal tumor. J Orthop Surg Res. 2018;13(1):30. DOI:10.1186/s13018-018-0735-z; Moussazadeh N., Rubin D.G., McLaughlin L., Lis E., Bilsky M.H., Laufer I. Short-segment percutaneous pedicle screw fixation with cement augmentation for tumor-induced spinal instability. Spine J. 2015;15(7):1609–17. DOI:10.1016/j.spinee.2015.03.037; Kumar N., Malhotra R., Maharajan K., Zaw A.S., Wu P.H., Makandura M.C., et al. Metastatic spine tumor surgery: a comparative study of minimally invasive approach using percutaneous pedicle screws fixation versus open approach. Clin Spine Surg. 2017;30(8):E1015–21. DOI:10.1097/BSD.0000000000000400; Yimin Y., Zhiwei R., Wei M., Jha R. Current status of percutaneous vertebroplasty and percutaneous kyphoplasty--a review. Med Sci Monit. 2013;19:826–36. DOI:10.12659/MSM.889479; Redini F., Heymann D. Bone tumor environment as a potential therapeutic target in ewing sarcoma. Front Oncol. 2015;5:279. DOI:10.3389/fonc.2015.00279; Barzilai O., McLaughlin L., Lis E., Reiner A.S., Bilsky M.H., Laufer I. Utility of cement augmentation via percutaneous fenestrated pedicle screws for stabilization of cancer-related spinal instability. Oper Neurosurg (Hagerstown). 2019;16(5):593–9. DOI:10.1093/ons/opy186; Wagner A., Haag E., Joerger A.K., Gempt J., Krieg S.M., Wostrack M., et al. Cement-augmented carbon fiber-reinforced pedicle screw instrumentation for spinal metastases: safety and efficacy. World Neurosurg. 2021;154:e536–46. DOI:10.1016/j.wneu.2021.07.092; Sanli I., van Kuijk S.M.J., de Bie R.A., van Rhijn L.W., Willems P.C. Percutaneous cement augmentation in the treatment of osteoporotic vertebral fractures (OVFs) in the elderly: a systematic review. Eur Spine J. 2020;29(7):1553–72. DOI:10.1007/s00586-020-06391-x; Cheng J.S., Upadhyaya C., Wu J.C., Tu T.H., Mummaneni P.V. Mini-open removal of intradural spinal tumor. Neurosurg Focus. 2012;33(Suppl.1):1. DOI:10.3171/2012.V2.FOCUS12152; Uribe J.S., Dakwar E., Le T.V., Christian G., Serrano S., Smith W.D. Minimally invasive surgery treatment for thoracic spine tumor removal: a mini-open, lateral approach. Spine (Phila Pa 1976). 2010;35(26 Suppl):S347–54. DOI:10.1097/BRS.0b013e3182022d0f; Tan L.A., O’Toole J.E. Tubular retractor selection in minimally invasive spinal tumor resection. J Neurosurg Spine. 2014;20(5):596–7. DOI:10.3171/2013.10.SPINE13944; Dorman J.K. Tumor resection utilizing a minimally invasive spinal retractor with a novel cranial adaptor. Minim Invasive Neurosurg. 2008;51(6):358–60. DOI:10.1055/s-0028-1085447; Álvarez Delgado A. Endoscopic closure systems for perforations, fistulas, and leaks. In expert hands or in all endoscopy units? Rev Esp Enferm Dig. 2020;112(5):335–7. DOI:10.17235/reed.2020.7112/2020; Soldozy S., Syed H.R., Jha R.T., O’Connell K., Ozdemirli M., Voyadzis J.M. Giant granular cell tumor of the cervical spinal cord resected via anterior corpectomy with reconstruction: technical note and review of literature. World Neurosurg. 2020;139:136–41. DOI:10.1016/j.wneu.2020.03.157; Park M.S., Deukmedjian A.R., Uribe J.S. Minimally invasive anterolateral corpectomy for spinal tumors. Neurosurg Clin N Am. 2014;25(2):317–25. DOI:10.1016/j.nec.2013.12.009; Lau D., Chou D. Posterior thoracic corpectomy with cage reconstruction for metastatic spinal tumors: comparing the mini-open approach to the open approach. J Neurosurg Spine. 2015;23(2):217–27. DOI:10.3171/2014.12.SPINE14543; D’Souza M., Gendreau J., Feng A., Kim L.H., Ho A.L., Veeravagu A. Robotic-assisted spine surgery: history, efficacy, cost, and future trends. Robot Surg. 2019;6:9–23. DOI:10.2147/RSRR.S190720; Campbell D.H., McDonald D., Araghi K., Araghi T., Chutkan N., Araghi A. The clinical impact of image guidance and robotics in spinal surgery: a review of safety, accuracy, efficiency, and complication reduction. Int J Spine Surg. 2021;15(s2):S10–20. DOI:10.14444/8136; Lieberman I.H., Kisinde S., Hesselbacher S. Robotic-assisted pedicle screw placement during spine surgery. JBJS Essent Surg Tech. 2020;10(2):e0020. DOI:10.2106/JBJS.ST.19.00020; Cazzato R.L., Auloge P., De Marini P., Boatta E., Koch G., Dalili D., et al. Spinal tumor ablation: indications, techniques, and clinical management. Tech Vasc Interv Radiol. 2020;23(2):100677. DOI:10.1016/j.tvir.2020.100677; Gazis A., Beuing O., Jöllenbeck B., Franke J., Skalej M. Bipolar radio frequency ablation of spinal neoplasms in late stage cancer disease: a report of three cases. Spine (Phila Pa 1976). 2012;37(1):E64–8. DOI:10.1097/BRS.0b013e31821cc57e; Lv N., Geng R., Ling F., Zhou Z., Liu M. Clinical efficacy and safety of bone cement combined with radiofrequency ablation in the treatment of spinal metastases. BMC Neurol. 2020;20(1):418. DOI:10.1186/s12883-020-01998-5; Jimenez-Ruiz F., Arnold B., Tatsui C.E., Cata J.P. Perioperative and anesthetic considerations for neurosurgical laser interstitial thermal therapy ablations. J Neurosurg Anesthesiol. 2018;30(1):10–7. DOI:10.1097/ANA.0000000000000376; Massaad E., Shankar G.M., Shin J.H. Novel applications of spinal navigation in deformity and oncology surgery-beyond screw placement. Oper Neurosurg (Hagerstown). 2021;21(Supp 1):S23–38. DOI:10.1093/ons/opaa322; Overley S.C., Cho S.K., Mehta A.I., Arnold P.M. Navigation and robotics in spinal surgery: Where are we now? Neurosurgery. 2017;80(3S):S86–99. DOI:10.1093/neuros/nyw077; https://www.surgonco.ru/jour/article/view/986

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    Academic Journal

    Πηγή: Rossiyskiy Vestnik Perinatologii i Pediatrii (Russian Bulletin of Perinatology and Pediatrics); Том 67, № 1 (2022); 89-93 ; Российский вестник перинатологии и педиатрии; Том 67, № 1 (2022); 89-93 ; 2500-2228 ; 1027-4065

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    Relation: https://www.ped-perinatology.ru/jour/article/view/1584/1205; Шалькевич Л.В., Львова О.А., Кулагин А.Е., Талабаев М.В., Ивашина Е.Н., Сулимов А.В. Черепно-мозговая травма у детей. Федеральное руководство по детской неврологии. Под ред. В.И. Гузевой. М.: ООО «МК»; 2016: 361– 377.; Клиническое руководство по черепно-мозговой травме. Под ред. А.Н. Коновалова, Л.Б. Лихтермана, А.А. Потапова М.: Антидор; 2001.; Гузева В.И., Белоусова Е.Д., Карлов В.А., Мухин К.Ю., Петрухин А.С., Гузева О.В. и др. Эпилепсия у детей. Федеральное руководство по детской неврологии. Под ред. В.И. Гузевой. М.: ООО «МК»; 2016: 270–322.; Гузева В.И., Максимова Н.Е., Гузева О.В., Гузева В.В., Разумовский М.А., Чокмосов М.С. Особенности симптоматической эпилепсии у детей с закрытой черепно-мозговой травмой. Нейрохирургия и неврология детского возраста 2016; 2(48): 18–24.; Смирнов Н.В., Дунин-Барковский И.В. Курс теории вероятностей и математической статистики. М.: Наука; 1969; Гублер Е.В. Информатика в патологии, клинической медицине и педиатрии. М.: Медицина, 1990; Орел В.В. Клинико-анамнестические данные и неврологические расстройства в различные периоды черепно-мозговой травмы у детей. Современные проблемы науки и образования (онлайн издание). 2020; 4.

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    Academic Journal

    Συνεισφορές: This work was supported by the Kazan Federal University Strategic Academic Leadership Program (PRIORITY-2030)., Работа выполнена за счет средств Программы стратегического академического лидерства Казанского (Приволжского) федерального университета» (Приоритет-2030).

    Πηγή: Rossiyskiy Vestnik Perinatologii i Pediatrii (Russian Bulletin of Perinatology and Pediatrics); Том 67, № 5 (2022); 153-157 ; Российский вестник перинатологии и педиатрии; Том 67, № 5 (2022); 153-157 ; 2500-2228 ; 1027-4065

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    Relation: https://www.ped-perinatology.ru/jour/article/view/1716/1298; Zeidan J., Fombonne E., Scorah J., Ibrahim A., Durkin M.S., Saxena S. et al. Global prevalence of autism: A systematic review update. Autism Res 2022; 15(5): 778-790. DOI:10.1002/aur.2696; Макушкин Е.В., Макаров И.В., Пашковский В.Э. Распространенность аутизма: подлинная и мнимая. Журнал неврологии и психиатрии им. С.С. Корсакова. 2019; 119(2): 80-86. DOI:10.17116/jnevro201911902180; Posar A., Visconti, P. Sensory abnormalities in children with autism spectrum disorder. J de Pediatria 2018; 94(4): 342- 350. DOI:10.1016/j.jped.2017.08.008; Mulligan S., Douglas S., Armstrong C. Characteristics of Idiopathic Sensory Processing Disorder in Young Children. Frontiers in integrative neuroscience 2021; 15: 647928. DOI:10.3389/fnint.2021.647928; Crippa A., Del Vecchio G., Busti S., Ceccarelli, Nobile M., Arrigoni F., Brambilla P. Cortico-Cerebellar Connectivity in Autism Spectrum Disorder: What Do We Know So Far? Front Psychiatry 2016; 7: 20. DOI:10.3389/fpsyt.2016.00020; Bhat A.N. Is Motor Impairment in Autism Spectrum Disorder Distinct From Developmental Coordination Disorder? A Report From the SPARK Study. Physical Ther 2020; 100(4): 633-644. DOI:10.1093/ptj/pzz190; Keller R., Costa T., Imperiale D., Bianco A., Rondini E., Hassiotis A., Bertelli M.O. Stereotypies in the Autism Spectrum Disorder: Can We Rely on an Ethological Model? Brain Scie 2021; 11(6): 762. DOI:10.3390/brainsci11060762; Kojovic N., Ben Hadid L., Franchini M., Schaer M. Sensory Processing Issues and Their Association with Social Difficulties in Children with Autism Spectrum Disorders. J Clin Med 2019; 8(10): 1508. DOI:10.3390/jcm8101508; Purpura G., Cerroni F., Carotenuto M., Nacinovich R., Tagliabue L. Behavioural Differences in Sensorimotor Profiles: A Comparison of Preschool-Aged Children with Sensory Processing Disorder and Autism Spectrum Disorders. Children (Basel, Switzerland) 2022; 9(3): 408. DOI:10.3390/children9030408; Surgent O. J., Walczak M., Zarzycki O., Ausderau K., Travers B.G. IQ and Sensory Symptom Severity Best Predict Motor Ability in Children With and Without Autism Spectrum Disorder. J Autism Developmental Dis 2021; 51(1): 243-254. DOI:10.1007/s10803-020-04536-x; Neely K.A., Mohanty S., Schmitt L.M., Wang Z., Sweeney J.A., Mosconi M.W. Motor Memory Deficits Contribute to Motor Impairments in Autism Spectrum Disorder. J Autism Developmental Dis 2019; 49(7): 2675-2684. DOI:10.1007/s10803-016-2806-5; Kaur M., M Srinivasan S., N Bhat A. Comparing motor performance, praxis, coordination, and interpersonal synchrony between children with and without Autism Spectrum Disorder (ASD). Res Development Dis 2018; 72: 79-95. DOI:10.1016/j.ridd.2017.10.025; Arteaga A., Vélez E., Cornejo W., Solarte R., Lobo A., Jaramillo V., Otero J. Epilepsy and electroencephalographic abnormalities in patients with diagnosis of idiopathic autism spectrum disorder in Medellín. Int J Psychol Res 2021; 14(1): 115-120. DOI:10.21500/20112084.5335; Wuang Y.P., Huang C.L., Tsai H.Y. Sensory Integration and Perceptual-Motor Profiles in School-Aged Children with Autistic Spectrum Disorder. Neuropsychiatr Dis Treat 2020; 16: 1661-1673. DOI:10.2147/NDT.S253337; Ming X., Brimacombe M., Wagner G.C. Prevalence of motor impairment in autism spectrum disorders. Brain Dev. Brain Develop 2007; 29(9): 565-570. DOI:10.1016/j.braindev.2007.03.002; Morgan L., Wetherby A.M., Barber A. Repetitive and stereotyped movements in children with autism spectrum disorders late in the second year of life. J Child Psychol Psychiatr 2008; 49(8): 826-837. DOI:10.1111/j.1469-7610.2008.01904.x; Pruccoli J., Spadoni C., Orsenigo A., Parmeggiani A. Should Echolalia Be Considered a Phonic Stereotypy? A Narrative Review. Brain Scie 2021; 11(7): 862. DOI:10.3390/brainsci11070862; Bell L., Wittkowski A., Hare D.J. Movement Disorders and Syndromic Autism: A Systematic Review. J Autism Developmental Dis 2019; 49(1): 54-67. DOI:10.1007/s10803-018- 3658-y; Maniscalco L., Frédérique B. B., Roccella M., Matranga D., Tripi G. A Preliminary Study on Cranio-Facial Characteristics Associated with Minor Neurological Dysfunctions (MNDs) in Children with Autism Spectrum Disorders (ASD). Brain Scie 2020; 10(8): 566. DOI:10.3390/brainsci10080566

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    Πηγή: Medicine in Kuzbass; Том 18, № 3 (2019): сентябрь; 72-79 ; Медицина в Кузбассе; Том 18, № 3 (2019): сентябрь; 72-79 ; 2588-0411 ; 1819-0901

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    Academic Journal

    Πηγή: Russian Sklifosovsky Journal "Emergency Medical Care"; Том 8, № 3 (2019); 295-301 ; Журнал им. Н.В. Склифосовского «Неотложная медицинская помощь»; Том 8, № 3 (2019); 295-301 ; 2541-8017 ; 2223-9022 ; 10.23934/2223-9022-2019-8-3

    Περιγραφή αρχείου: application/pdf

    Relation: https://www.jnmp.ru/jour/article/view/690/688; https://www.jnmp.ru/jour/article/view/690/703; Крылов В.В. (ред.) Лекции по черепно-мозговой травме: учебное пособие. Москва: Медицина; 2010.; Murray CJ, Lopez AD. Global Health Statistics. Geneva: WHO; 1996.; Крылов В.В., Талыпов А.Э., Левченко О.В. (ред.) Хирургия тяжелой черепно-мозговой травмы. Москва: АБВ-пресс; 2019.; Лихтерман Л.Б. Неврология черепно-мозговой травмы. Москва: Т.М. Андреева; 2009.; Пурас Ю.В., Талыпов А.Э., Петриков С.С., Крылов В.В. Факторы вторичного ишемического повреждения головного мозга при черепно-мозговой травме. Ч.1. Внутричерепные и внечерепные факторы вторичного повреждения мозга. Журнал им. Н.В. Склифосовского «Неотложная медицинская помощь». 2012;(1):56–65.; Parizel P, Van Goethem J, Ozsarlak O, Maes M, Philips SD. New developments in the neuroradiological diagnosis of craniocerebral trauma. Eur Radiol. 2005;15(3):569–581. PMID: 15696294 https://doi.org/10.1007/s00330-004-2558-z; Клименко Н.Б., Касумов Р.Д., Григорьев С.Г. Прогнозирование ранних исходов тяжелой черепно-мозговой травмы в зависимости от длительности неврологических синдромов и наличия осложнений. Вестник хирургии им. И.И. Грекова. 2001;(2):46–49.; Дуус П. Топический диагноз в неврологии. Анатомия. Физиология. Клиника. Москва: ВАЗАР-ФЕРРО; 1996.; Greenberg MS. Handbook of neurosurgery. 5th ed. New York: Thieme, Verlag; 2001.; Ragasis V. Brain contusion: morphology, pathogenesis, and treatment. Medicina (Kaunas). 2002;38(3):243–249. PMID: 12474694; Пурас Ю.В., Кордонский А.Ю., Талыпов А.Э. Механизмы эволюции очагов ушиба головного мозга. Нейрохирургия. 2013;(4):91–96.; Bullock MR, Chesnut R, Ghajar J, Gordon D, Hartl R, Newell DW, et al. Surgical management of acute subdural hematomas. Neurosurgery. 2006; 58(3Suppl):S16–24. PMID: 16710968. https://doi.org/10.1227/01.neu.0000210364.29290.c9; Petridis AK, Dorner L, Doukas A, Eifrig S, Barth H, Mehdorn M. Acute subdural hematoma in the elderly; clinical and CT factors influencing the surgical treatment decision. Cent Eur Neurosurg. 2009;70(2):73–78. PMID: 19711259. https://doi.org/10.1055/s-0029-1224096; Won SY, Dubinski D, Behmanesh B, Strzelczyk A, Seifert V, Konczalla J, et al. Clinical relevance of seizure in pediatric patients with isolated acute subdural hematoma without parenchymal brain injury. J Neurol Surg A Cent Eur Neurosurg. 2019;80(4)233–239. PMID: 30895570. https://doi.org/10.1055/s-0039-1677824; Won SY, Dubinski D, Brawanski N, Strzelczyk A, Seifert V, Freiman TM, et al. Significant increase in acute subdural hematoma in octoand nonagenarians: surgical treatment, functional outcome, and predictors in this patient cohort. J Neurosurg Focus. 2017;43(5):E10. PMID: 29088952 https://doi.org/10.3171/2017.7.focus17417; Bajsarowicz P, Prakash I, Lamoureux J, Saluja RS, Feyz M, Maleki M, et al. Nonsurgical acute traumatic subdural hematoma: what is the risk? J Neurosurg. 2015;123(5):1176–1183. PMID: 25955872 https://doi.org/10.3171/2014.10.jns141728; Dunn LT. Raised intracranial pressure. J Neurol Neurosurg Psychiatry. 2002; 73(Suppl 1): i23–27 PMID: 12185258. https://doi.org/10.1136/jnnp.73.suppl_1.i23; Guo C, Liu L, Wang B, Wang Z. Swirl sign in traumatic acute epidural hematoma: prognostic value and surgical management. Neurol Sci. 2017;38(12):2111–2116. PMID: 28894943 https://doi.org/10.1007/s10072-017-3121-4; Alahmadi HS, Vachhrajani S, Cusimano MD. The natural history of brain contusion: an analysis of radiological and clinical progression. J Neurosurg. 2010;112(5):1139–1145. PMID: 19575576 https://doi.org/10.3171/2009.5.jns081369; Kurland D, Hong C, Aarabi B, Gerzanich V, Simard JM. Hemorrhagic progression of a contusion after traumatic brain injury: a review. J Neurotrauma. 2012;29(1):19–31. PMID: 21988198 https://doi.org/10.3410/f.13780957.15206060; Oertel M, Kelly DF, McArthur D, Boscardin WJ, Glenn TC, Lee JH, et al. Progressive hemorrhage after head trauma: predictors and consequences of the evolving injury. J Neurosurg. 2002;96(1):109–116. PMID: 11794591 https://doi.org/10.3171/jns.2002.96.1.0109; Reilly PL, Bullock MR. (eds.) Head injury. Pathophysiology and management. 2nd ed. London: Hodder Arnold; 2005.; Perez-Barcena J, Llompart-Pou JA, Homar J, Abadal JM, Raurich JM, Frontera G, et al. Pentobarbital versus thiopental in the treatment of refractory intracranial hypertension in patients with traumatic brain injury: a randomized controlled trial. Crit Care. 2008;12(4):112. PMID: 18759980 https://doi.org/10.1186/cc6999; Плам Ф., Познер Дж.Б. Диагностика ступора и комы. Москва: Медицина; 1986.; Зайцев О.С. Психопатология тяжелой черепно-мозговой травмы. Москва: Медпресс-информ; 2011.; Крылов В.В., Талыпов А.Э., Кордонский А.Ю. Прогрессирование очагов ушиба головного мозга: варианты и факторы риска. Российский нейрохирургический журнал им. А.Л. Поленова. 2014;6(3):37–45.; Климаш А.В., Кондаков Е.Н. Характеристика дислокационного синдрома при супратенториальном сдавлении головного мозга у больных с тяжелой черепно-мозговой травмой (часть 1). Нейрохирургия. 2015;(3):3–10.; Bullock R, Chesnut R, Clifton G, Ghajar J, Marion D, Narayan R, et al. Guidelines for the management of severe traumatic brain injury. J Neurotrauma. 2007;24 Suppl 1:S1–S106. https://doi.org/10.1089/neu.2007.9976; Van den Brink WA, Zwienenberg M, Zandee SM, van der Meer L, Maas AI, Avezaat CJ. The Prognostic Importance of the Volume of Traumatic Epidural and Subdural Haematomas Revisited. Acta Neurochir (Wien). 1999;141(5):509–514. PMID: 10392207. https://doi.org/10.1007/s007010050332; Крылов В.В., Петриков С.С., Талыпов А.Э., Пурас Ю.В., Солодов А.А., Левченко О.В. и др. Современные принципы хирургии тяжелой черепно-мозговой травмы. Журнал им. Н.В. Склифосовского «Неотложная медицинская помощь». 2013;(4):39–47.; https://www.jnmp.ru/jour/article/view/690

  17. 17
    Academic Journal

    Συγγραφείς: M.E. Mamenko, A.A. Shleyenkova

    Πηγή: Сучасна педіатрія; № 7(71) (2015): Сучасна педіатрія; 111-114
    Современная педиатрия; № 7(71) (2015): Современная педиатрия; 111-114
    Sovremennaya pediatriya; № 7(71) (2015): Sovremennaya pediatriya; 111-114

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