يعرض 1 - 3 نتائج من 3 نتيجة بحث عن '"V. Drobakha E."', وقت الاستعلام: 0.34s تنقيح النتائج
  1. 1
    Academic Journal

    المصدر: Neurology, Neuropsychiatry, Psychosomatics; Vol 12, No 4 (2020); 65-72 ; Неврология, нейропсихиатрия, психосоматика; Vol 12, No 4 (2020); 65-72 ; 2310-1342 ; 2074-2711 ; 10.14412/2074-2711-2020-4

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Confusional state as first symptom of HaNDL syndrome. Neurol Sci. 2015 May;36 Suppl 1:71-4. doi:10.1007/s10072-015-2194-1; Chapman KM, Szczygielski BI, Toth C, et al. Pseudomigraine with lymphocytic pleocytosis: a calcium channelopathy? Clinical description of 10 cases and genetic analysis of the familial hemiplegic migraine gene CACNA1A. Headache 2003 Sep;43(8):892-5. doi:10.1046/j.1526-4610.2003.03168.x; Apetse K, Breynaert L, Butaud C, et al. Transient headache and neurological deficits with cerebrospinal fluid lymphocytosis associated with IgM antibodies to the Epstein-Barr virus viral capsid antigen. Case Rep Neurol Med. 2013;2013:975709. doi:10.1155/2013/975709; Nelson S. Confusional state in HaNDL syndrome: case report and literature review. Case Rep Neurol Med. 2013;2013:317685. doi:10.1155/2013/317685; Soto-Insuga V, Lopez-Villanueva L, Rodrigo M, et al. Confusion as a presentation symptom of pseudomigraine with pleocytosis in a paediatric patient. Ann Pediatr (Barc). 2014 Jun;80(6):394-8. doi:10.1016/j.anpedi.2013.10.025; Lo Re M, di Sapio A, Malentacchi M, et al. Acute confusional state in HaNDL syndrome (transient headache and neurologic deficits with cerebrospinal fluid lymphocytosis). Neurol Sci. 2015 Mar;36(3):477-8. doi:10.1007/s10072-014-2017-9; Guillan M, DeFelipe-Mimbrera A, AlonsoCanovas A, et al. The syndrome of transient headache and neurological deficits with cerebrospinal fluid lymphocytosis mimicking an acute stroke. Eur J Neurol. 2016 Jul;23(7):1235-40. doi:10.1111/ene.13008; Yilmaz A, Kaleagasi H, Dogu O, et al. Abnormal MRI in a patient with ‘headache with neurological deficits and CSF lymphocytosis (HaNDL)’. Cephalalgia. 2010 May;30(5):615-9. doi:10.1111/j.1468-2982.2009.01950.x; Garcia-Esperon C, Carrera D, PratsSanchez L, et al. Focal leptomeningeal uptake, a new radiological finding in pseudomigraine with pleocytosis. Captacion leptomeningea focal, un nuevo hallazgo radiologico en la seudomigrana con pleocitosis. Neurologia. 2017 Jan–Feb;32(1):63-5. doi:10.1016/j.nrl.2015.03.007; Rodriguez-Lopez C, Garzo Caldas N, Uriarte Perez de Urabayen D, et al. A new MR radiological sign in HaNDL syndrome. A case report. J Clin Neurosci. 2019 Mar;61:274-6. doi:10.1016/j.jocn.2018.11.018; Fuentes B, Diez Tejedor E, Pascual J, et al. Cerebral blood flow changes in pseudomigraine with pleocytosis analyzed by single photon emission computed tomography. A spreading depression mechanism? Cephalalgia. 1998 Oct;18(8):570-3. doi:10.1046/j.14682982.1998.1808570.x; Kappler J, Mohr S, Steinmetz H. Cerebral vasomotor changes in the transient syndrome of headache with neurologic deficits and CSF lymphocytosis (HaNDL). Headache. 1997 Sep;37(8):516-8. doi:10.1046/j.15264610.1997.3708516.x; Tabeeva G, Azimova J, Skorobogatych K. Syndrome of transient headache and neurological deficits with cerebrospinal fluid lymphocytosis (HaNDL). J Neurol Stroke. 2018;8(3):147-9. doi:10.15406/jnsk.2018.08.00299; Gnann JW Jr, Whitley RJ. Herpes simplex encephalitis: an update. Curr Infect Dis Rep. 2017 Mar;19(3):13. doi:10.1007/s11908-017-0568-7; Rabinstein AA. Herpes virus encephalitis in adults: current knowledge and old myths. Neurol Clin. 2017;35(4):695-705. doi:10.1016/j.ncl.2017.06.006; Steiner I, Budka H, Chaudhuri A, et al. Viral meningoencephalitis: a review of diagnostic methods and guidelines for management. Eur J Neurol. 2010 Aug;17(8):999-e57. doi:10.1111/j.1468-1331.2010.02970.x; Adler AC, Kadimi S, Apaloo C, et al. Herpes simplex encephalitis with two false-negative cerebrospinal fluid PCR tests and review of negative PCR results in the clinical setting. Case Rep Neurol. 2011 May;3(2):172-8. doi:10.1159/000330298; Bradshaw MJ, Venkatesan A. 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  2. 2
    Academic Journal

    المصدر: Neurology, Neuropsychiatry, Psychosomatics; Vol 11, No 3 (2019); 26-34 ; Неврология, нейропсихиатрия, психосоматика; Vol 11, No 3 (2019); 26-34 ; 2310-1342 ; 2074-2711 ; 10.14412/2074-2711-2019-3

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    Relation: https://nnp.ima-press.net/nnp/article/view/1169/924; https://nnp.ima-press.net/nnp/article/view/1169/925; Puig J, Blasco G, Schlaug G, et al. Diffusion tensor imaging as a prognostic biomarker for motor recovery and rehabilitation after stroke. Neuroradiology. 2017 Apr;59(4):343-351. doi:10.1007/s00234-017-1816-0. Epub 2017 Mar 14.; Stebbins GT, Murphy CM. Diffusion tensor imaging in Alzheimer's disease and mild cognitive impairment. Behav Neurol. 2009;21(1): 39-49. doi:10.3233/BEN-2009-0234.; Lindenberg R, Renga V, Zhu LL, et al. Structural integrity of corticospinal motor fibers predicts motor impairment in chronic stroke. Neurology. 2010 Jan 26;74(4):280-7. doi:10.1212/WNL.0b013e3181ccc6d9.; Park CH, Kou N, Boudrias MH, et al. Assessing a standardised approach to measuring corticospinal integrity after stroke with DTI. Neuroimage Clin. 2013 Apr 11;2:521-33. doi:10.1016/j.nicl.2013.04.002. eCollection 2013.; Song J, Nair VA, Young BM, et al. DTI measures track and predict motor function outcomes in stroke rehabilitation utilizing BCI technology. Front Hum Neurosci. 2015 Apr 27; 9:195. doi:10.3389/fnhum.2015.00195. eCollection 2015.; Puig J, Pedraza S, Blasco G, et al. Wallerian degeneration in the corticospinal tract evaluated by diffusion tensor imaging correlates with motor deficit 30 days after middle cerebral artery ischemic stroke. AJNR Am J Neuroradiol. 2010 Aug;31(7):1324-30. doi:10.3174/ajnr.A2038. Epub 2010 Mar 18.; Thomalla G, Glauche V, Koch MA, et al. Diffusion tensor imaging detects early Wallerian degeneration of the pyramidal tract after ischemic stroke. Neuroimage. 2004 Aug;22(4): 1767-74.; Stinear CM, Barber PA, Petoe M, et al. The PREP algorithm predicts potential for upper limb recovery after stroke. Brain. 2012 Aug;135(Pt 8):2527-35. doi:10.1093/brain/aws146. Epub 2012 Jun 10.; Stinear CM, Byblow WD, Ackerley SJ, et al. PREP2: A biomarker-based algorithm for predicting upper limb function after stroke. Ann Clin Transl Neurol. 2017 Oct 24;4(11):811-820. doi:10.1002/acn3.488. eCollection 2017 Nov.; Kim SH, Jang SH. Prediction of aphasia outcome using diffusion tensor tractography for arcuate fasciculus in stroke. AJNR Am J Neuroradiol. 2013 Apr;34(4):785-90. doi:10.3174/ajnr.A3259. Epub 2012 Oct 4.; Kulesh A, Drobakha V, Kuklina E, et al. Tract-Specific Fractional Anisotropy, and Brain Morphometry in Post-Stroke Cognitive Impairment. J Stroke Cerebrovasc Dis. 2018 Jul;27(7):1752-1759. doi:10.1016/j.jstrokecerebrovasdis.2018.02.004. Epub 2018 Mar 30.; Кулеш АА, Дробаха ВЕ, Куклина ЕМ и др. Когнитивная траектория пациентов в восстановительном периоде ишемического инсульта: роль нейровоспаления и структурных церебральных факторов. Казанский медицинский журнал. 2017;(4):513-8. doi:10.17750/KMJ2017-513.; Baron RM, Kenny DA. The moderator– mediator variable distinction in social psychological research: Conceptual, strategic, and statistical considerations. 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Am J Phys Med Rehabil. 2016 Aug; 95(8):e117-20. doi:10.1097/PHM.0000000000000483.; Jang SH, Chang CH, Jung YJ, et al. Bilateral injury of the superior longitudinal fasciculus in a patient with Balint syndrome. Neurology. 2016 Oct 4;87(14):1519-1520.; Koyama T, Domen K. Diffusion Tensor Fractional Anisotropy in the Superior Longitudinal Fasciculus Correlates with Functional Independence Measure Cognition Scores in Patients with Cerebral Infarction. J Stroke Cerebrovasc Dis. 2017 Aug;26(8): 1704-1711. doi:10.1016/j.jstrokecerebrovasdis.2017.03.034. Epub 2017 May 3.; Ramsey LE, Siegel JS, Lang CE, et al. Behavioural clusters and predictors of performance during recovery from stroke. Nat Hum Behav. 2017;1. pii: 0038. doi:10.1038/s41562-016-0038. Epub 2017 Feb 17.; Dong G, Li H, Potenza MN. Short-Term Internet-Search Training Is Associated with Increased Fractional Anisotropy in the Superior Longitudinal Fasciculus in the Parietal Lobe. 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  3. 3
    Academic Journal

    المصدر: Neurology, Neuropsychiatry, Psychosomatics; Vol 10, No 3 (2018); 4-11 ; Неврология, нейропсихиатрия, психосоматика; Vol 10, No 3 (2018); 4-11 ; 2310-1342 ; 2074-2711 ; 10.14412/2074-2711-2018-3

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