يعرض 1 - 10 نتائج من 140 نتيجة بحث عن '"Russo, María Julieta"', وقت الاستعلام: 0.87s تنقيح النتائج
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    وصف الملف: 19 páginas; application/pdf

    العلاقة: Journal of Applied Cognitive Neuroscience; Abrahams, S.; McFie, S.; Patricios, J.; Posthumus, M. & September, A. V. (2014). Risk factors for sports concussion: an evidence-based systematic review. British Journal of Sports Medicine, 48(2), 91–97. https://doi.orgTest/ 10.1136/BJSPORTS-2013-092734; Ahmed, O. H. & Hall, E. E. (2017). “It was only a mild concussion”: Exploring the description of sports concussion in online news articles. Physical Therapy in Sport : Official Journal of the Association of Chartered Physiotherapists in Sports Medicine, 23, 7–13. https://doi.orgTest/ 10.1016/J.PTSP.2016.07.003; Cosgrave, M. & Williams, S. (2019). The epidemiology of concussion in professional rugby union in Ireland. Physical Therapy in Sport : Official Journal of the Association of Chartered Physiotherapists in Sports Medicine, 35, 99–105. https://doi.orgTest/ 10.1016/J.PTSP.2018.11.010; Cross, M. J.; Tucker, R.; Raftery, M.; Hester, B.; Williams, S.; Stokes, K. A.; Ranson, C.; Mathema, P. & Kemp, S. (2019). Tackling concussion in professional rugby union: a case-control study of tackle-based risk factors and recommendations for primary prevention. British Journal of Sports Medicine, 53(16), 1021–1025. https://doi.orgTest/ 10.1136/BJSPORTS-2017-097912; Fann, J. R.; Ribe, A. R.; Pedersen, H. S.; Fenger-Grøn, M.; Christensen, J.; Benros, M. E. & Vestergaard, M. (2018). Long-term risk of dementia among people with traumatic brain injury in Denmark: a population-based observational cohort study. The Lancet. Psychiatry, 5(5), 424–431. https://doi.orgTest/ 10.1016/S2215-0366(18)30065-8; Fuller, C. W.; Taylor, A. & Raftery, M. (2015). Epidemiology of concussion in men’s elite Rugby-7s (Sevens World Series) and Rugby-15s (Rugby World Cup, Junior World Championship and Rugby Trophy, Pacific Nations Cup and English Premiership). British Journal of Sports Medicine, 49(7), 478–483. https://doi.orgTest/ 10.1136/BJSPORTS-2013-093381; Gardner, A.; Iverson, G. L.; Levi, C. R.; Schofield, P. W.; Kay-Lambkin, F.; Kohler, R. M. N. & Stanwell, P. (2015). A systematic review of concussion in rugby league. British Journal of Sports Medicine, 49(8), 495–498. https://doi.orgTest/ 10.1136/BJSPORTS-2013-093102; Guskiewicz, K. M.; McCrea, M.; Marshall, S. W.; Cantu, R. C.; Randolph, C.; Barr, W.; Onate, J. A. & Kelly, J. P. (2003). Cumulative effects associated with recurrent concussion in collegiate football players: the NCAA Concussion Study. JAMA, 290(19), 2549–2555. https://doi.orgTest/ 10.1001/JAMA.290.19.2549; Hinton-Bayre, A. D.; Geffen, G. & Friis, P. (2004). Presentation and mechanisms of concussion in professional Rugby League Football. Journal of Science and Medicine in Sport, 7(3), 400–404. https://doi.orgTest/ 10.1016/S1440-2440(04)80035-5; Hollis, S. J.; Stevenson, M. R.; McIntosh, A. S.; Shores, A., Collins, M. W. & Taylor, C. B. (2009). Incidence, risk, and protective factors of mild traumatic brain injury in a cohort of Australian nonprofessional male rugby players. The American Journal of Sports Medicine, 37(12), 2328–2333. https://doi.orgTest/ 10.1177/0363546509341032; Hume, P. A.; Theadom, A.; Lewis, G. N.; Quarrie, K. L.; Brown, S. R.; Hill, R. & Marshall, S. W. (2017). A Comparison of Cognitive Function in Former Rugby Union Players Compared with Former Non-Contact-Sport Players and the Impact of Concussion History. Sports Medicine (Auckland, N.Z.), 47(6), 1209–1220. https://doi.orgTest/ 10.1007/S40279-016-0608-8; Iverson, G. L.; Gardner, A. J.; Terry, D. P.; Ponsford, J. L.; Sills, A. K.; Broshek, D. K. & Solomon, G. S. (2017). Predictors of clinical recovery from concussion: a systematic review. British Journal of Sports Medicine, 51(12), 941–948. https://doi.orgTest/ 10.1136/BJSPORTS-2017-097729; Kelly, J. P. (2001). Loss of Consciousness: Pathophysiology and Implications in Grading and Safe Return to Play. Journal of Athletic Training, 36(3), 249–252. Available: http://www.athletictraininghistory.com/nata/journals/NATA_JOURNAL_VOL_36_03_2001%20sm.pdfTest; Lee, A. J. & Garraway, M. (1996). Epidemiological comparison of injuries in school and senior club rugby. British Journal of Sports Medicine, 30(3), 213–217. https://doi.orgTest/ BJSM.30.3.213; Li, Y.; Li, Y.; Li, X.; Zhang, S.; Zhao, J.; Zhu, X. & Tian, G. (2017). Head Injury as a Risk Factor for Dementia and Alzheimer’s Disease: A Systematic Review and Meta-Analysis of 32 Observational Studies. PLOS ONE, 12(1), 1–17. https://doi.orgTest/ 10.1371/JOURNAL.PONE.0169650; Lopez, V.; Ma, R.; Weinstein, M. G.; Cantu, R. C.; Myers, L. S. D.; Nadkar, N. S.; Victoria, C. & Allen, A. A. (2016). Concussive Injuries in Rugby 7s: An American Experience and Current Review. Medicine and Science in Sports and Exercise, 48(7), 1320–1330. https://doi.orgTest/ 10.1249/MSS.0000000000000892; Makdissi, M.; Darby, D.; Maruff, P.; Ugoni, A.; Brukner, P. & McCrory, P. R. (2010). Natural history of concussion in sport: markers of severity and implications for management. The American Journal of Sports Medicine, 38(3), 464–471. https://doi.orgTest/ 10.1177/0363546509349491; Marshall, S. W. & Spencer, R. J. (2001). Concussion in Rugby: The Hidden Epidemic. Journal of Athletic Training, 36(3), 334–338. https://doi.orgTest/ 10.17615/a349-pn82; McAllister, T. & McCrea, M. (2017). Long-Term Cognitive and Neuropsychiatric Consequences of Repetitive Concussion and Head-Impact Exposure. Journal of Athletic Training, 52(3), 309–317. https://doi.orgTest/ 10.4085/1062-6050-52.1.14; McCrory, P.; Meeuwisse, W.; Dvořák, J.; Aubry, M.; Bailes, J.; Broglio, S.; Cantu, R. C.; Cassidy, D.; Echemendia, R. J.; Castellani, R. J.; Davis, G. A.; Ellenbogen, R.; Emery, C.; Engebretsen, L.; Feddermann-Demont, N.; Giza, C. C., Guskiewicz, K. M.; Herring, S.; Iverson, G. L.; Johnston, K. M.; Kissick, J.; Kutcher, J.; Leddy, J. J.; Maddocks, D.; Makdissi, M.; Manley, G. T.; McCrea, M.; Meehan,W. P.; Nagahiro, S.; Patricios, J.; Putukian, M.; Schneider, K. J.; Sills, A.; Tator, C. H.; Turner, M. & Vos, P. E. (2017). Consensus statement on concussion in sport-the 5 th international conference on concussion in sport held in Berlin, October 2016. British Journal of Sports Medicine, 51(11), 838–847. https://doi.orgTest/ 10.1136/BJSPORTS-2017-097699; McKee, A. C.; Alosco, M. L. & Huber, B. R. (2016). Repetitive Head Impacts and Chronic Traumatic Encephalopathy. Neurosurgery Clinics of North America, 27(4), 529–535. https://doi.orgTest/ 10.1016/J.NEC.2016.05.009; McMillan, T. M.; McSkimming, P.; Wainman-Lefley, J.; Maclean, L. M.; Hay, J.; McConnachie, A. & Stewart, W. (2017). Long-term health outcomes after exposure to repeated concussion in elite level: rugby union players. Journal of Neurology, Neurosurgery, and Psychiatry, 88(6), 505–511. https://doi.orgTest/ 10.1136/JNNP-2016-314279; Meehan, W. P.; D’Hemecourt, P. & Dawn Comstock, R. (2010). High school concussions in the 2008-2009 academic year: mechanism, symptoms, and management. The American Journal of Sports Medicine, 38(12), 2405–2409. https://doi.orgTest/ 10.1177/0363546510376737; Merritt, V. C.; Lapira, K. M.; Clark, A. L.; Sorg, S. F.; Werhane, M. L.; Jak, A. J.; Bondi, M. W.; Schiehser, D. M. & Delano-Wood, L. (2019). APOE-ε4 Genotype is Associated with Elevated Post-Concussion Symptoms in Military Veterans with a Remote History of Mild Traumatic Brain Injury. Archives of Clinical Neuropsychology: The Official Journal of the National Academy of Neuropsychologists, 34(5), 706–712. https://doi.orgTest/ 10.1093/ARCLIN/ACY082; Merritt, V. C.; Rabinowitz, A. R. & Arnett, P. A. (2015). Injury-related predictors of symptom severity following sports-related concussion. Journal of Clinical and Experimental Neuropsychology, 37(3), 265–275. https://doi.orgTest/ 10.1080/13803395.2015.1004303; Omalu, B. I.; DeKosky, S. T.; Minster, R. L.; Kamboh, M. I., Hamilton, R. L. & Wecht, C. H. (2005). Chronic traumatic encephalopathy in a National Football League player. Neurosurgery, 57(1), 128–133. https://doi.orgTest/ 10.1227/01.NEU.0000163407.92769.ED; Register-Mihalik, J. K.; Mihalik, J. P. & Guskiewicz, K. M. (2009). Association between Previous Concussion History and Symptom Endorsement during Preseason Baseline Testing in High School and Collegiate Athletes. Sports Health, 1(1), 61–65. https://doi.orgTest/ 10.1177/1941738108325920; Russo, M. J.; Salvat, F.; Saco, M.; della Vedova, F., Alonso Hidalgo, I., Blaquier, J. B., Rodriguez Lucci, F.; Carpani, F.; Allegri, R. F. & Sevlever, G. (2020). Protocolo para la evaluación y el manejo de las conmociones cerebrales asociadas al deporte. Neurología Argentina, 12(2), 113–123. https://doi.orgTest/ 10.1016/J.NEUARG.2019.12.001; WR. (2021, January 28). Concussion Guidance. World Rugby. https://www.world.rugby/news/612885Test; 19; Russo, M.-J., Salvat, F. ., Kañevsky, A. ., Helou, M.-B. ., Lamaletto, L. ., Marinangeli, A., & Sevlever, G. . (2022). Creation of Argentina-Sports Concussion Assessment & Research Study (Arg-SCARS): study protocol: Creación de Argentina-Sports Concussion Assessment & Research Study (Arg-SCARS): protocolo de estudio. Journal of Applied Cognitive Neuroscience, 2(2), e00213990. https://doi.org/10.17981/JACN.2.2.2021.03Test; https://hdl.handle.net/11323/10142Test; Corporación Universidad de la Costa; REDICUC - Repositorio CUC; https://repositorio.cuc.edu.coTest/

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    المصدر: Appl Neuropsychol Adult ; https://pubmed.ncbi.nlm.nih.gov/32349554/#affiliation-1Test

    وصف الملف: application/pdf

    العلاقة: Hypothetical model of dynamic biomarkers of the Alzheimer's pathological cascade; Neuropsychological Testing Predicts Cerebrospinal Fluid Amyloid-β in Mild Cognitive Impairment; Early neuropsychological detection of Alzheimer's disease; “Mini-Mental State”. A practical method for grading the cognitive state of patients for the clinician; Mini-mental state-practical method for grading cognitive state of patients for clinicians; Usefulness of Discriminability and Response Bias Indices for the Evaluation of Recognition Memory in Mild Cognitive Impairment and Alzheimer Disease; The validity of the Trail Making Test as an indicator of organic brain damage; Neuropsychological Markers of Cognitive Decline in Persons With Alzheimer Disease Neuropathology; Creation of the Argentina-Alzheimer Disease Neuroimaging Initiative; The learning profile of persistent mild cognitive impairment (MCI): A potential diagnostic marker of persistent amnestic MCI; Reduced FDG-PET brain metabolism and executive function predict clinical progression in elderly healthy subjects; Neuropsychological Predictors of Conversion from Mild Cognitive Impairment to Alzheimer's Disease; Neuropsychological Assessment, 4th Edn; Boston Naming Test; Wechsler Memory Scale - Revised; A Combination of Neuropsychological, Neuroimaging, and Cerebrospinal Fluid Markers Predicts Conversion from Mild Cognitive Impairment to Dementia; The Clinical Examination in Psychology/L'examen Clinique En Psychologie; Albert MS, DeKosky ST, Dickson D, Dubois B, Feldman HH, Fox NC, Gamst A, Holtzman DM, Jagust WJ, Petersen RC, Snyder PJ, Carrillo MC, Thies B, Phelps CHThe diagnosis of mild cognitive impairment due to Alzheimer’s disease: recommendations from the National Institute on Aging-Alzheimer’s Association workgroups on diagnostic guidelines; The Alzheimerʼs Disease Centersʼ Uniform Data Set (UDS): The Neuropsychologic Test Battery; Differential Memory Test Sensitivity for Diagnosing Amnestic Mild Cognitive Impairment and Predicting Conversion to Alzheimer's Disease; Serial PIB and MRI in normal, mild cognitive impairment and Alzheimer's disease: implications for sequence of pathological events in Alzheimer's disease; Episodic memory loss is related to hippocampal-mediated beta-amyloid deposition in elderly subjects; Cerebrospinal Fluid Biomarker Signature in Alzheimer's Disease Neuroimaging Initiative Subjects; Combining Early Markers Strongly Predicts Conversion from Mild Cognitive Impairment to Alzheimer's Disease; Cerebral Blood Flow in Dementia; The Consortium to Establish a Registry for Alzheimer's Disease (CERAD). Part I. Clinical and neuropsychological assesment of Alzheimer's disease; Development of a multilingual aphasia battery. Progress and problems; A New Clinical Scale for the Staging of Dementia; Memory function in very early Alzheimer's disease; The FAB: a Frontal Assessment Battery at bedside; Neuropsychological Evaluation of Mild Cognitive Impairment: Three Case Reports; ??-amyloid deposition and other measures of neuropathology predict cognitive status in Alzheimer's disease; Neuropathological and Neuropsychological Changes in “Normal” Aging: Evidence for Preclinical Alzheimer Disease in Cognitively Normal Individuals; Re: De Jager, CA, et al. Sensitivity and specificity of neuropsychological tests for mild cognitive impairment, vascular cognitive impairment and Alzheimer's disease; Neuropsychological Prediction of Conversion to Alzheimer Disease in Patients With Mild Cognitive Impairment; Memory Evaluation in Mild Cognitive Impairment using Recall and Recognition Tests; Profiles of neuropsychological impairment in autopsy-defined Alzheimer's disease and cerebrovascular disease; WAIS-III: Wechsler adult intelligence scale: Psychological Corporation; A, for the Alzheimer's Disease Neuroimaging Initiative; The consortium to establish a registry for Alzheimer's disease (CERAD): I. Clinical and neuropsychological assessment of Alzheimer; https://hdl.handle.net/11323/7778Test; Corporación Universidad de la Costa; REDICUC - Repositorio CUC; https://repositorio.cuc.edu.coTest/

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    المصدر: Alzheimer's and Dementia: Diagnosis, Assessment and Disease Monitoring ; https://pubmed.ncbi.nlm.nih.gov/32490138Test/

    وصف الملف: application/pdf

    العلاقة: Bloom GS. Amyloid‐β and tau: the trigger and bullet in Alzheimer disease pathogenesis. JAMA Neurol. 2014;71(4):505‐508.; Russo MJ, Gustafson S, Vazquez S, et al. Argentina‐Alzheimer's disease neuroimaging initiative. Creation of the Argentina—Alzheimer Disease Neuroimaging Initiative. Alzheimers Dement. 2014;10(1 suppl):S84‐S87.; Sperling RA, Aisen PS, Beckett LA, et al. Toward defining the preclinical stages of Alzheimer's disease: recommendations from the National Institute on Aging‐Alzheimer's Association workgroups on diagnostic guidelines for Alzheimer's disease. Alzheimers Dement. 2011;7(3):280‐292.; Albert MS, DeKosky ST, Dickson D, et al. The diagnosis of mild cognitive impairment due to Alzheimer's disease: recommendations from the National Institute on Aging‐Alzheimer's Association workgroups on diagnostic guidelines for Alzheimer's disease. Alzheimers Dement. 2011;7(3):270‐279.; Jack CR Jr, Knopman DS, Weigand SD, et al. An operational approach to National Institute on Aging–Alzheimer's Association criteria for preclinical Alzheimer disease. Ann Neurol. 2012;71(6):765–775.; Jack CR Jr, Bennett DA, Blennow K, et al. ATN: an unbiased descriptive classification scheme for Alzheimer disease biomarkers. Neurology. 2016;87(5):539‐547.; Jack CR Jr, Bennett DA, Blennow K, et al. NIA‐AA Research Framework: toward a biological definition of Alzheimer's disease. Alzheimers Dement. 2018;14(4):535‐562.; Allegri RF, Ollari JA, Mangone CA, Arizaga RL, De Pascale A, Pellegrini M. Mini‐Mental State Examination in Argentina: instruction for assessment. Rev Neurol Argent. 1999;24(1):31‐35.; Wechsler D. Wechsler Memory Scale 3rd ed Psychol Corp, San Antonio: TX, 1997.; Burin D, Ramenzoni VA. Neuropsychological assessment in elderly: norms by age and educational level. Rev Neurol Argent. 2003;28(3):149‐152.; Kaplan EF, Goodglass H, Weintraub S. Boston Naming Test. Philadelphia, PA: Lea & Febiger; 1983.; Serrano C, Allegri RF, Drake M, et al. A shortened form of the Spanish Boston naming test: a useful tool for the diagnosis of Alzheimer's disease. Rev Neurol. 2001;33(7):624‐647. - PubMed; Butman J, Allegri RF, Harris PD. Spanish verbal fluency. Normative data in Argentina. Medicina. 2000;60(5 pt1):561‐564.; Arango‐Lasprilla JC, Rivera D, Aguayo A, et al. Trail Making Test: normative data for the Latin American Spanish speaking adult population. NeuroRehabilitation. 2015;37(4):639‐661.; Berg L. Clinical Dementia Rating (CDR). Psychopharmacol Bull 1988;24(4):637‐639.; Kaufer DI, Cummings JL, Ketchel P, et al. Validation of the NPI‐Q, a brief clinical form of the Neuropsychiatric Inventory. J Neuropsychiatry Clin Neurosci. 2000;12(2):233‐239.; Sheikh JI, Yesavage JA. Geriatric Depression Scale (GDS): recent evidence and development of a shorter version Clinical Gerontology: A Guide to Assessment and Intervention. New York: Haworth Press; 1986: 165‐173.; Pfeffer RI, Kurosaki TT, Jr Harrah CH, Chance JM, Filos S. Measurement of functional activities in older adults in the community. J Gerontol.1982;37(3):323‐329.; Wahlund LO, Julin P, Johansson SE, Scheltens P. Visual rating and volumetry of the medial temporal lobe on magnetic resonance imaging in dementia: a comparative study. J Neurol Neurosurg Psychiatry. 2000;69(5):630‐635.; McKhann G, Drachman D, Folstein M, Katzman R, Price D, Stadlan EM. Clinical diagnosis of Alzheimer's disease: report of the NINCDS ADRDA work group under the auspices of Department of Health and Human Services Task Force on Alzheimer's disease. Neurology. 1984;34(7):939‐944.; McKhann GM, Knopman DS, Chertkow H, et al. The diagnosis of dementia due to Alzheimer's disease: recommendations from the National Institute on Aging and the Alzheimer's Association Workgroup. Alzheimers Dement. 2011;7(3):263–269.; Chrem P, Cohen G, Russo JM, et al. Concordance between 11C‐PIB‐PET and clinical diagnosis in a memory clinic. Am J Alzheimers Dis Other Dement. 2015;30(6):599‐606.; Allegri RF, Chrem Mendez P, Russo MJ, et al. Biomarkers of Alzheimer's disease in mild cognitive impairment: experience in a memory clinic from Latin America. Neurologia, 2018. pii: S0213‐4853(18)30028‐8. 10.1016/j.nrl.2017.12.011.; Allegri RF, Pertierra L, Cohen G, et al. A biological classification for Alzheimer's disease—Amyloid, Tau and Neurodegeneration (A/T/N): results from the Argentine‐Alzheimer's Disease Neuroimaging Initiative. Int Psychogeriatr. 2019;31(12):1837‐1838. 10.1017/S1041610219000085.; Russo MJ, Cohen G, Chrem Mendez P. Predicting episodic memory performance using different biomarkers: results from Argentina‐Alzheimer's Disease Neuroimaging Initiative. Neuropsychiatr Dis Treat. 2016;12:2199‐2206.; Lowe VJ, Peller PJ, Weigand SD, et al. Application of the National Institute on Aging‐Alzheimer's Association AD criteria to ADNI. Neurology. 2013;80(23):2130‐2137.; Petersen RC, Aisen P, Boeve BF, et al. Criteria for mild cognitive impairment due to Alzheimer's disease in the community. Ann Neurol. 2013;74(2):199‐208.; Scheltens P, Blennow K, Breteler MM, et al. Alzheimer's disease. Lancet. 2016;388(10043):505‐517.; Serrano‐Pozo A, Qian J, Monsell SE, Betensky RA, Hyman BT. Mild to moderate Alzheimer dementia with insufficient neuropathological changes. Ann Neurol. 2014;75(4):597‐601.; Schneider JA, Arvanitakis Z, Leurgans SE, Bennett DA. The neuropathology of probable Alzheimer disease and mild cognitive impairment. Ann Neurol. 2009;66(2):200‐208.; De Carli Ch. Mild cognitive impairment: Prevalence, prognosis, aetiology and treatment. Lancet Neurol. 2003;2:15‐21; Allegri RF, Glaser FB, Taragano FE, Buschke H. Mild cognitive impairment: believe it or not?. Int Rev Psychiatry. 2008;20(4):357‐363.; Dubois B, Feldman HH, Jacova C, et al. Research criteria for the diagnosis of Alzheimer's disease: revising the NINCDS‐ADRDA criteria. Lancet Neurol. 2007;6(8):734‐746.; Alexopoulos P, Werle L, Roesler J, et al. Conflicting cerebrospinal fluid biomarkers and progression to dementia due to Alzheimer's disease. Alzheimers Res Ther. 2016;8(1):51; Riudavets MA, Bartoloni L, Troncoso JC, et al. Familial dementia with frontotemporal features associated with M146V presenilin‐1 mutation. Brain Pathol. 2013;23(5):595‐600.; Palmqvist S, Mattsson N. Hansson O and for the Alzheimer Disease Neuroimaging Initiative . Cerebrospinal fluid analysis detects cerebral amyloid‐B accumulation earlier than positron emission tomography. Brain 2016;139(pt 4):1226‐1236.; Petersen RC, Aisen PS, Beckett LA, et al. Alzheimer's Disease Neuroimaging Initiative (ADNI): clinical characterization. Neurology 2010;74(3):201‐209.; Cece Y, Shifu X. Are the revised diagnostic criteria for Alzheimer's disease useful in low‐ and middle‐income countries? Shanghai Arch Psychiatry 2015;27(2):119‐123.; https://hdl.handle.net/11323/8236Test; https://doi.org/10.1002/dad2.12026Test; Corporación Universidad de la Costa; REDICUC - Repositorio CUC; https://repositorio.cuc.edu.coTest/

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