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"Jong Youb Lim"

Case Reports

Late-Onset Post-radiation Lymphedema Provoked by Bee Venom Therapy: A Case Report
Young Jae Seo, Yong Sung Jeong, Hyo Sik Park, Shin Who Park, Ja Young Choi, Kang Jae Jung, Jong Youb Lim
Ann Rehabil Med 2018;42(4):626-629.   Published online August 31, 2018
DOI: https://doi.org/10.5535/arm.2018.42.4.626
Lymphedema is a common complication associated with cancer itself or with cancer treatment. Lymphedema infrequently occurs after drug therapy. Bee venom is one of the materials used in acupuncture, and it has been used in the treatment of a variety of inflammatory diseases including arthritis. We report a 74-year-old male patient with late-onset post-radiation lymphedema provoked by bee venom therapy. He was free of lymphedema for 5 years after the complete remission of prostate cancer which had been treated with transurethral resection and radiation therapy. The patient developed left leg swelling after undergoing bee venom therapy for left hip pain. Computed tomography and lymphoscintigraphy showed lymphedema without tumor recurrence or infection. The lymphatic system was suspected to be injured by bee venom therapy and lymphedema was provoked. Bee venom therapy should be used cautiously in patients prone to lymphedema.

Citations

Citations to this article as recorded by  
  • Melittin and phospholipase A2: Promising anti-cancer candidates from bee venom
    Ziyan Cui, Zegao Zhou, Ziyan Sun, Jiayue Duan, Runtian Liu, Cheng Qi, Changqing Yan
    Biomedicine & Pharmacotherapy.2024; 179: 117385.     CrossRef
  • Pharmacological properties and therapeutic potential of honey bee venom
    Amjad Ullah, Fahad Mohammed Aldakheel, Syed Ishtiaq Anjum, Ghulam Raza, Saeed Ahmad Khan, Ivana Tlak Gajger
    Saudi Pharmaceutical Journal.2023; 31(1): 96.     CrossRef
  • Update December 2018
    Francine Blei
    Lymphatic Research and Biology.2018; 16(6): 567.     CrossRef
  • 6,267 View
  • 83 Download
  • 3 Web of Science
  • 3 Crossref
Repetitive Transcranial Magnetic Stimulation for Wernicke-Korsakoff Syndrome: A Case Report
So Won Chung, Shin Who Park, Young Jae Seo, Jae-Hyung Kim, Chan Ho Lee, Jong Youb Lim
Ann Rehabil Med 2017;41(1):162-166.   Published online February 28, 2017
DOI: https://doi.org/10.5535/arm.2017.41.1.162

A 57-year-old man who was diagnosed with Wernicke-Korsakoff syndrome showed severe impairment of cognitive function and a craving for alcohol, even after sufficient supplementation with thiamine. After completing 10 sessions of 10 Hz repetitive transcranial magnetic stimulation (rTMS) at 100% of the resting motor threshold over the left dorsolateral prefrontal cortex, dramatic improvement in cognitive function and a reduction in craving for alcohol were noted. This is the first case report of the efficacy of a high-frequency rTMS in the treatment of Wernicke-Korsakoff syndrome.

Citations

Citations to this article as recorded by  
  • Managing substance use in patients receiving therapeutic repetitive transcranial magnetic stimulation: A scoping review
    Victor M. Tang, Christine Ibrahim, Terri Rodak, Rachel Goud, Daniel M. Blumberger, Daphne Voineskos, Bernard Le Foll
    Neuroscience & Biobehavioral Reviews.2023; 155: 105477.     CrossRef
  • Non-invasive Brain Stimulation for Alcohol Use Disorders: State of the Art and Future Directions
    Noah S. Philip, David O. Sorensen, Daniel M. McCalley, Colleen A. Hanlon
    Neurotherapeutics.2020; 17(1): 116.     CrossRef
  • Effects of neuromodulation on cognitive performance in individuals exhibiting addictive behaviors: A systematic review
    Katherine R. Naish, Lana Vedelago, James MacKillop, Michael Amlung
    Drug and Alcohol Dependence.2018; 192: 338.     CrossRef
  • 5,716 View
  • 84 Download
  • 3 Web of Science
  • 3 Crossref
Bilateral Anterior Opercular Syndrome With Partial Kluver–Bucy Syndrome in a Stroke Patient: A Case Report
Ah-Ra Cho, Young-Ho Lim, Sae-Hoon Chung, Eun-Hi Choi, Jong Youb Lim
Ann Rehabil Med 2016;40(3):540-544.   Published online June 29, 2016
DOI: https://doi.org/10.5535/arm.2016.40.3.540

Bilateral anterior opercular syndrome and partial Kluver–Bucy syndrome are associated with bilateral middle cerebral artery lesions. The combination of these two syndromes has only been reported in a child with limbic encephalitis. In this case, a 44-year-old woman with bilateral middle cerebral artery infarction, which occurred 2 years prior, could walk independently. However, she showed automatic-voluntary dissociation and anarthria with preserved writing skills. She also presented hypersexuality, hypermetamorphosis, and memory disturbances. Here, we report a case of an adult stroke patient who suffered from bilateral anterior opercular syndrome accompanied by partial Kluver–Bucy syndrome.

Citations

Citations to this article as recorded by  
  • Partial Klüver–Bucy syndrome in a Paediatric patient: A post‐neurosurgical and neuropsychological cases
    Alejandra Estefanía Hernández‐Martínez, Carlos Alberto Serrano‐Juárez, Karen Grisel Barrera‐Medellín, Cecilia Inés Ramírez‐Quiroga, Alma Griselda Ramírez‐Reyes, Roberto Casarrubias Islas, Belén Prieto‐Corona
    Journal of Neuropsychology.2024; 18(S1): 61.     CrossRef
  • Transient Kluver-Bucy Syndrome as a Manifestation of Post-temporal Lobe Seizure: A Rare Case Entity
    Nicole Latchminarine, Emad A Wahashi, Benedict Amalraj, Ahmed Abubakr
    Cureus.2022;[Epub]     CrossRef
  • Clinical Reasoning: A 33-Year-Old Patient With Left-Sided Hemiparesis and Anarthria
    Sean Schowalter, Douglas I. Katz, David J. Lin
    Neurology.2021; 96(3): 128.     CrossRef
  • Importance of Rapid Clinical Recognition of the Anterior Opercular Syndrome (Foix-Chavany-Marie Syndrome): A Case Report
    Hafed Amin Saidane, Helle Klingenberg Iversen, Hanne Søndergaard, Faisal Mohammad Amin
    Case Reports in Neurology.2021; 13(1): 166.     CrossRef
  • 10,351 View
  • 74 Download
  • 4 Web of Science
  • 4 Crossref
Original Articles
Effect of the Presence of Brain-Derived Neurotrophic Factor Val66Met Polymorphism on the Recovery in Patients With Acute Subcortical Stroke
Won-Seok Kim, Jong Youb Lim, Joon Ho Shin, Hye Kyung Park, Samuel Arnado Tan, Kyoung Un Park, Nam-Jong Paik
Ann Rehabil Med 2013;37(3):311-319.   Published online June 30, 2013
DOI: https://doi.org/10.5535/arm.2013.37.3.311
Objective

To investigate the effect of brain-derived neurotrophic factor (BDNF) Val66Met polymorphism on the recovery after subcortical stroke, using the modified Rankin Scale (mRS).

Methods

Subcortical stroke patients with copies of BDNF Val66Met polymorphism (n=7) were compared to their controls (n=7) without a copy of BDNF Val66Met polymorphism after matching for initial severity, location and type of stroke. The mRS scores at 1 and 3 months after discharge from the neurorehabilitation unit were compared between the groups.

Results

A repeated measures ANOVA for mRS revealed significant interaction between time and group (F(2, 24) =37.2, p<0.001) and a significant effect of time (F(2, 24)=10.8, p<0.001), thereby reflecting significant differences between the Met allele (+) group and the Met allele (-) group. There was a significant difference in mRS scores at 3 months post-discharge between the two groups (p=0.01) although no difference was evident in mRS scores at 1 month post-discharge between the two groups. There were significant improvements between mRS scores on admission and mRS scores at 1 month post-discharge (p=0.02), and between mRS scores at 1 month post-discharge and mRS scores at 3 months post-discharge (p=0.004) in the Met allele (-) group.

Conclusion

BDNF Val66Met polymorphism may be associated with worse functional outcome in Korean patients with subcortical stroke. Therefore, BDNF Val66Met polymorphism should be considered as an important prognostic factor for recovery and responses to rehabilitation therapies after stroke in Korean patients. There is a need for developing different rehabilitation strategies for the population with BDNF Val66Met polymorphism. Further studies assessing different outcomes for various functional domains of stroke recovery are needed to clarify the role of BDNF Val66Met polymorphism.

Citations

Citations to this article as recorded by  
  • BDNF: New Views of an Old Player in Traumatic Brain Injury
    Lauren P. Giesler, Richelle Mychasiuk, Sandy R. Shultz, Stuart J. McDonald
    The Neuroscientist.2024; 30(5): 560.     CrossRef
  • BDNF (rs6265) Val < Met polymorphism can buffer cognitive functions against post stroke CT/MRI pathological findings
    Sajjad Rezaei, Karim Asgari Mobarake, Alia Saberi
    Applied Neuropsychology: Adult.2022; 29(5): 971.     CrossRef
  • Brain-Derived Neurotrophic Factor Gene Polymorphism Predicts Response to Continuous Theta Burst Stimulation in Chronic Stroke Patients
    Shreya Parchure, Denise Y. Harvey, Priyanka P. Shah-Basak, Laura DeLoretta, Rachel Wurzman, Daniela Sacchetti, Olufunsho Faseyitan, Falk W. Lohoff, Roy H. Hamilton
    Neuromodulation: Technology at the Neural Interface.2022; 25(4): 569.     CrossRef
  • Determining the Optimal Administration Conditions under Which MIF Exerts Neuroprotective Effects by Inducing BDNF Expression and Inhibiting Apoptosis in an In Vitro Stroke Model
    Chul Jung, Mi Hee Kim, Ye Yeong Kim, Ji Ae Kim, Eun Jae Ko, Seung Hak Lee, Dae Yul Kim
    Brain Sciences.2021; 11(2): 280.     CrossRef
  • Biomarkers of Angiogenesis and Neuroplasticity as Promising Clinical Tools for Stroke Recovery Evaluation
    Lidia Wlodarczyk, Rafal Szelenberger, Natalia Cichon, Joanna Saluk-Bijak, Michal Bijak, Elzbieta Miller
    International Journal of Molecular Sciences.2021; 22(8): 3949.     CrossRef
  • The Influence of Val66Met Polymorphism in Brain-Derived Neurotrophic Factor on Stroke Recovery Outcome: A Systematic Review and Meta-analysis
    Xuan Liu, Jun-Chao Fang, Xin-Yue Zhi, Qiu-Yu Yan, Hong Zhu, Juan Xie
    Neurorehabilitation and Neural Repair.2021; 35(6): 550.     CrossRef
  • Genetics of stroke recovery: BDNF val66met polymorphism in stroke recovery and its interaction with aging
    Mustafa Balkaya, Sunghee Cho
    Neurobiology of Disease.2019; 126: 36.     CrossRef
  • Differences in brain-derived neurotrophic factor gene polymorphisms between acute ischemic stroke patients and healthy controls in the Han population of southwest China
    Jie Zhou, Meng-Meng Ma, Jing-Huan Fang, Lei Zhao, Mu-Ke Zhou, Jian Guo, Li He
    Neural Regeneration Research.2019; 14(8): 1404.     CrossRef
  • Can pharmacological manipulation of LTP favor the effects of motor rehabilitation in multiple sclerosis?
    Mario Stampanoni Bassi, Letizia Leocani, Giancarlo Comi, Ennio Iezzi, Diego Centonze
    Multiple Sclerosis Journal.2018; 24(7): 902.     CrossRef
  • The relationship between BDNF Val66Met polymorphism and functional mobility in chronic stroke survivors
    Margaret A. French, Susanne M. Morton, Ryan T. Pohlig, Darcy S. Reisman
    Topics in Stroke Rehabilitation.2018; 25(4): 276.     CrossRef
  • Intracerebral Delivery of Brain-Derived Neurotrophic Factor Using HyStem®-C Hydrogel Implants Improves Functional Recovery and Reduces Neuroinflammation in a Rat Model of Ischemic Stroke
    Kristine Ravina, Denise I. Briggs, Sezen Kislal, Zuha Warraich, Tiffany Nguyen, Rachel K. Lam, Thomas I. Zarembinski, Mehrdad Shamloo
    International Journal of Molecular Sciences.2018; 19(12): 3782.     CrossRef
  • The role of brain-derived neurotrophic factor and its single nucleotide polymorphisms in stroke patients
    Dariusz Kotlęga, Barbara Peda, Agnieszka Zembroń-Łacny, Monika Gołąb-Janowska, Przemysław Nowacki
    Neurologia i Neurochirurgia Polska.2017; 51(3): 240.     CrossRef
  • Office paper decorated with silver nanostars - an alternative cost effective platform for trace analyte detection by SERS
    Maria João Oliveira, Pedro Quaresma, Miguel Peixoto de Almeida, Andreia Araújo, Eulália Pereira, Elvira Fortunato, Rodrigo Martins, Ricardo Franco, Hugo Águas
    Scientific Reports.2017;[Epub]     CrossRef
  • Hydrogel-delivered brain-derived neurotrophic factor promotes tissue repair and recovery after stroke
    Douglas J Cook, Cynthia Nguyen, Hyun N Chun, Irene L Llorente, Abraham S Chiu, Michal Machnicki, Thomas I Zarembinski, S Thomas Carmichael
    Journal of Cerebral Blood Flow & Metabolism.2017; 37(3): 1030.     CrossRef
  • Effect of short-term exercise training on brain-derived neurotrophic factor signaling in spontaneously hypertensive rats
    Alice Monnier, Philippe Garnier, Aurore Quirie, Nicolas Pernet, Céline Demougeot, Christine Marie, Anne Prigent-Tessier
    Journal of Hypertension.2017; 35(2): 279.     CrossRef
  • BDNF Genotype Interacts with Motor Function to Influence Rehabilitation Responsiveness Poststroke
    Christine T. Shiner, Kerrie D. Pierce, Angelica G. Thompson-Butel, Terry Trinh, Peter R. Schofield, Penelope A. McNulty
    Frontiers in Neurology.2016;[Epub]     CrossRef
  • Endogenous recovery after brain damage: molecular mechanisms that balance neuronal life/death fate
    Luis B. Tovar‐y‐Romo, Andrés Penagos‐Puig, Josué O. Ramírez‐Jarquín
    Journal of Neurochemistry.2016; 136(1): 13.     CrossRef
  • Linking Genes to Neurological Clinical Practice
    Allon Goldberg, Catherine L. Curtis, Jeffrey A. Kleim
    Journal of Neurologic Physical Therapy.2015; 39(1): 52.     CrossRef
  • Aging, the Central Nervous System, and Mobility in Older Adults: Neural Mechanisms of Mobility Impairment
    Farzaneh A. Sorond, Yenisel Cruz-Almeida, David J. Clark, Anand Viswanathan, Clemens R. Scherzer, Philip De Jager, Anna Csiszar, Paul J. Laurienti, Jeffery M. Hausdorff, Wen G. Chen, Luiggi Ferrucci, Caterina Rosano, Stephanie A. Studenski, Sandra E. Blac
    The Journals of Gerontology Series A: Biological Sciences and Medical Sciences.2015; 70(12): 1526.     CrossRef
  • Polymorphismus des „brain derived neurotrophic factor“ und Erholung nach Schlaganfall
    J. Liepert, A. Heller, G. Behnisch, A. Schoenfeld
    Der Nervenarzt.2015; 86(10): 1255.     CrossRef
  • Brain-derived neurotrophic factor: its impact upon neuroplasticity and neuroplasticity inducing transcranial brain stimulation protocols
    L. Chaieb, A. Antal, G. G. Ambrus, W. Paulus
    neurogenetics.2014; 15(1): 1.     CrossRef
  • An Update on Translating Stem Cell Therapy for Stroke from Bench to Bedside
    Travis Dailey, Christopher Metcalf, Yusef Mosley, Robert Sullivan, Kazutaka Shinozuka, Naoki Tajiri, Mibel Pabon, Sandra Acosta, Yuji Kaneko, Harry Loveren, Cesar Borlongan
    Journal of Clinical Medicine.2013; 2(4): 220.     CrossRef
  • 4,623 View
  • 43 Download
  • 22 Crossref
The Factors Associated with Good Responses to Speech Therapy Combined with Transcranial Direct Current Stimulation in Post-stroke Aphasic Patients
Il-Young Jung, Jong Youb Lim, Eun Kyoung Kang, Hae Min Sohn, Nam-Jong Paik
Ann Rehabil Med 2011;35(4):460-469.   Published online August 31, 2011
DOI: https://doi.org/10.5535/arm.2011.35.4.460
Objective

To determine factors associated with good responses to speech therapy combined with transcranial direct current stimulation (tDCS) in aphasic patients after stroke.

Method

The language function was evaluated using Korean version of Western aphasia battery (K-WAB) before and after speech therapy with tDCS in 37 stroke patients. Patients received speech therapy for 30 minutes over 2 to 3 weeks (10 sessions) while the cathodal tDCS was performed to the Brodmann area 45 with 1 mA for 20 minutes. We compared the improvement of aphasia quotient % (AQ%) between two evaluation times according to age, sex, days after onset, stroke type, aphasia type, brain lesion confirmed by magnetic resonance image and initial severity of aphasia. The factors related with good responses were also checked.

Results

AQ% improved from pre- to post-therapy (14.94±6.73%, p<0.001). AQ% improvement was greater in patients with less severe, fluent type of aphasia who received treatment before 30 days since stroke was developed (p<0.05). The adjusted logistic regression model revealed that patients with hemorrhagic stroke were more likely to achieve good responses (odds ratio=4.897, p<0.05) relative to infarction. Initial severity over 10% in AQ% was also found to be significantly associated with good improvement (odds ratio=8.618, p<0.05).

Conclusion

Speech therapy with tDCS was established as a treatment tool for aphasic patients after stroke. Lower initial severity was associated with good responses.

Citations

Citations to this article as recorded by  
  • Evidence of physiological changes associated with single-session pre-frontal tDCS: a pilot study
    Hannah N. Rembrandt, Ellyn A. Riley
    Frontiers in Human Neuroscience.2025;[Epub]     CrossRef
  • Aphasia severity and factors predicting language recovery in the chronic stage of stroke
    Sneha Rozelena Anthony, Praveena Babu, Avanthi Paplikar
    International Journal of Language & Communication Disorders.2025;[Epub]     CrossRef
  • Non-invasive brain stimulation in the treatment of post-stroke aphasia: a scoping review
    Ellen E. R. Williams, Sabrina Sghirripa, Nigel C. Rogasch, Brenton Hordacre, Stacie Attrill
    Disability and Rehabilitation.2024; 46(17): 3802.     CrossRef
  • Combining computer‐based rehabilitative approach with tDCS for recovering of aphasia: Implications from a single case study
    Marianna Contrada, Federica Scarfone, Antonella Iozzi, Simone Carozzo, Martina Vatrano, Maria Grazia Nicoletta, Giuseppe Nudo, Maria Quintieri, Paolo Tonin, Antonio Cerasa
    Clinical Case Reports.2024;[Epub]     CrossRef
  • Prediction models of the aphasia severity after stroke by lesion load of cortical language areas and white matter tracts: An atlas-based study
    Qiwei Yu, Yan Sun, Xiaowen Ju, Tianfen Ye, Kefu Liu
    Brain Research Bulletin.2024; 217: 111074.     CrossRef
  • Transcranial Direct-Current Stimulation in Subacute Aphasia: A Randomized Controlled Trial
    Melissa D. Stockbridge, Jordan Elm, Bonnie L. Breining, Donna C. Tippett, Rajani Sebastian, Christy Cassarly, Abeba Teklehaimanot, Leigh Ann Spell, Shannon M. Sheppard, Emilia Vitti, Kristina Ruch, Emily B. Goldberg, Catherine Kelly, Lynsey M. Keator, Jul
    Stroke.2023; 54(4): 912.     CrossRef
  • Individual Differences in Response to Transcranial Direct Current Stimulation With Language Therapy in Subacute Stroke
    Melissa D. Stockbridge, Jordan Elm, Abeba A. Teklehaimanot, Christy Cassarly, Leigh-Ann Spell, Julius Fridriksson, Argye E. Hillis
    Neurorehabilitation and Neural Repair.2023; 37(8): 519.     CrossRef
  • Does Right-Hemispheric Anodal tDCS Enhance the Impact of Script Training in Chronic Aphasia? A Single-Subject Experimental Study
    Mathieu Figeys, Esther Sung Kim, Tammy Hopper
    Frontiers in Rehabilitation Sciences.2022;[Epub]     CrossRef
  • Transcranial Direct Current Stimulation Paired With Verb Network Strengthening Treatment Improves Verb Naming in Primary Progressive Aphasia: A Case Series
    Shannon M. Sheppard, Emily B. Goldberg, Rajani Sebastian, Alexandra Walker, Erin L. Meier, Argye E. Hillis
    American Journal of Speech-Language Pathology.2022; 31(4): 1736.     CrossRef
  • Predictors of Therapy Response in Chronic Aphasia: Building a Foundation for Personalized Aphasia Therapy
    Sigfus Kristinsson, Dirk B. den Ouden, Chris Rorden, Roger Newman-Norlund, Jean Neils-Strunjas, Julius Fridriksson
    Journal of Stroke.2022; 24(2): 189.     CrossRef
  • Spinal or cortical direct current stimulation: Which is the best? Evidence from apraxia of speech in post-stroke aphasia
    Francesca Pisano, Carlo Caltagirone, Chiara Incoccia, Paola Marangolo
    Behavioural Brain Research.2021; 399: 113019.     CrossRef
  • Transcranial Direct-Current Stimulation and Behavioral Training, a Promising Tool for a Tailor-Made Post-stroke Aphasia Rehabilitation: A Review
    Marina Zettin, Caterina Bondesan, Giulia Nada, Matteo Varini, Danilo Dimitri
    Frontiers in Human Neuroscience.2021;[Epub]     CrossRef
  • The potential effects of transcranial direct current stimulation (tDCS) on language functioning: Combining neuromodulation and behavioral intervention in aphasia
    Paola Marangolo
    Neuroscience Letters.2020; 719: 133329.     CrossRef
  • Impact of Combined Transcranial Direct Current Stimulation and Speech-language Therapy on Spontaneous Speech in Aphasia: A Randomized Controlled Double-blind Study
    Elodie Guillouët, Mélanie Cogné, Elisabeth Saverot, Nicolas Roche, Pascale Pradat-Diehl, Agnès Weill-Chounlamountry, Vanessa Ramel, Catherine Taratte, Anne-Gaëlle Lachasse, Jean-Arthur Haulot, Isabelle Vaugier, Frédéric Barbot, Philippe Azouvi, Sophie Cha
    Journal of the International Neuropsychological Society.2020; 26(1): 7.     CrossRef
  • Enhancing Stroke Recovery Across the Life Span With Noninvasive Neurostimulation
    Sean Dukelow, Adam Kirton
    Journal of Clinical Neurophysiology.2020; 37(2): 150.     CrossRef
  • Clinical and neuroimaging factors associated with aphasia severity in stroke patients: diffusion tensor imaging study
    Sekwang Lee, Yoonhye Na, Woo-Suk Tae, Sung-Bom Pyun
    Scientific Reports.2020;[Epub]     CrossRef
  • Neurotechnologies as tools for cognitive rehabilitation in stroke patients
    Laurijn R. Draaisma, Maximilian J. Wessel, Friedhelm C. Hummel
    Expert Review of Neurotherapeutics.2020; 20(12): 1249.     CrossRef
  • Enhancement of Facilitation Training for Aphasia by Transcranial Direct Current Stimulation
    Aya S. Ihara, Akiko Miyazaki, Yukihiro Izawa, Misaki Takayama, Kozo Hanayama, Jun Tanemura
    Frontiers in Human Neuroscience.2020;[Epub]     CrossRef
  • Neuroimaging of stroke recovery from aphasia – Insights into plasticity of the human language network
    Gesa Hartwigsen, Dorothee Saur
    NeuroImage.2019; 190: 14.     CrossRef
  • Transcranial direct current stimulation in post-stroke aphasia rehabilitation: A systematic review
    Elisa Biou, Hélène Cassoudesalle, Mélanie Cogné, Igor Sibon, Isabelle De Gabory, Patrick Dehail, Jerome Aupy, Bertrand Glize
    Annals of Physical and Rehabilitation Medicine.2019; 62(2): 104.     CrossRef
  • High-Definition Transcranial Direct Current Stimulation Improves Verb Recovery in Aphasic Patients Depending on Current Intensity
    Valentina Fiori, Michael A. Nitsche, Gabriella Cucuzza, Carlo Caltagirone, Paola Marangolo
    Neuroscience.2019; 406: 159.     CrossRef
  • Left Shifting of Language Related Activity Induced by Bihemispheric tDCS in Postacute Aphasia Following Stroke
    Sarah Feil, Peter Eisenhut, Frauke Strakeljahn, Sarah Müller, Claude Nauer, Jens Bansi, Stefan Weber, Alexandra Liebs, Jean-Pascal Lefaucheur, Jürg Kesselring, Roman Gonzenbach, Veit Mylius
    Frontiers in Neuroscience.2019;[Epub]     CrossRef
  • Predictive role of subcomponents of the left arcuate fasciculus in prognosis of aphasia after stroke
    Qiwei Yu, Hong Wang, Shuqing Li, Yanhong Dai
    Medicine.2019; 98(23): e15775.     CrossRef
  • Relative frequency and prognosis of vascular aphasia (follow-up at 3 months) in the Neurology Department of Assiut University Hospital
    Hamdy Naguib El-Tallawy, Adel Hassanein El Sayed Gad, Anwar Mohamed Ali, Manar Nasr Abd-El-Hakim
    The Egyptian Journal of Neurology, Psychiatry and Neurosurgery.2019;[Epub]     CrossRef
  • Effect of Anodal tDCS on Articulatory Accuracy, Word Production, and Syllable Repetition in Subjects with Aphasia: A Crossover, Double-Blinded, Sham-Controlled Trial
    Camila Vila-Nova, Pedro H. Lucena, Rita Lucena, Giulia Armani-Franceschi, Fernanda Q. Campbell
    Neurology and Therapy.2019; 8(2): 411.     CrossRef
  • Changes in Language Function and Recovery-Related Prognostic Factors in First-Ever Left Hemispheric Ischemic Stroke
    Kyung Ah Kim, Jung Soo Lee, Won Hyuk Chang, Deog Young Kim, Yong-Il Shin, Soo-Yeon Kim, Young Taek Kim, Sung Hyun Kang, Ji Yoo Choi, Yun-Hee Kim
    Annals of Rehabilitation Medicine.2019; 43(6): 625.     CrossRef
  • Cortico-Muscular Coherence Modulated by High-Definition Transcranial Direct Current Stimulation in People With Chronic Stroke
    Shi-Chun Bao, Wan-Wa Wong, Thomas Wai Hong Leung, Kai-Yu Tong
    IEEE Transactions on Neural Systems and Rehabilitation Engineering.2019; 27(2): 304.     CrossRef
  • Incomplete evidence that increasing current intensity of tDCS boosts outcomes
    Zeinab Esmaeilpour, Paola Marangolo, Benjamin M. Hampstead, Sven Bestmann, Elisabeth Galletta, Helena Knotkova, Marom Bikson
    Brain Stimulation.2018; 11(2): 310.     CrossRef
  • The prognosis for post-stroke aphasia
    V. V. Alferova, V. M. Shklovskij, E. G. Ivanova, G. V. Ivanov, L. A. Mayorova, A. G. Petrushevsky, S. V. Kuptsova, A. B. Guekht
    Zhurnal nevrologii i psikhiatrii im. S.S. Korsakova.2018; 118(4): 20.     CrossRef
  • The rehabilitative effects on written language of a combined language and parietal dual-tDCS treatment in a stroke case
    Barbara De Tommaso, Alessandro Piedimonte, Marcella M. Caglio, Federico D'Agata, Marcello Campagnoli, Laura Orsi, Simona Raimondo, Sergio Vighetti, Paolo Mortara, Giuseppe Massazza, Lorenzo Pinessi
    Neuropsychological Rehabilitation.2017; 27(6): 904.     CrossRef
  • Evidence-based guidelines on the therapeutic use of transcranial direct current stimulation (tDCS)
    Jean-Pascal Lefaucheur, Andrea Antal, Samar S. Ayache, David H. Benninger, Jérôme Brunelin, Filippo Cogiamanian, Maria Cotelli, Dirk De Ridder, Roberta Ferrucci, Berthold Langguth, Paola Marangolo, Veit Mylius, Michael A. Nitsche, Frank Padberg, Ulrich Pa
    Clinical Neurophysiology.2017; 128(1): 56.     CrossRef
  • Where are aphasia theory and management “headed”?
    Donna C. Tippett, Argye E. Hillis
    F1000Research.2017; 6: 1038.     CrossRef
  • The role of the right hemisphere in the recovery of stroke-related aphasia: A systematic review
    Elissa-Marie Cocquyt, Lisa De Ley, Patrick Santens, John Van Borsel, Miet De Letter
    Journal of Neurolinguistics.2017; 44: 68.     CrossRef
  • Moving Beyond the Brain: Transcutaneous Spinal Direct Current Stimulation in Post-Stroke Aphasia
    Paola Marangolo, Valentina Fiori, Jacob Shofany, Tommaso Gili, Carlo Caltagirone, Gabriella Cucuzza, Alberto Priori
    Frontiers in Neurology.2017;[Epub]     CrossRef
  • Should This Patient With Global Aphasia After a Left Cerebral Stroke Be Admitted to Your Hospital‐Based Inpatient Rehabilitation Unit?
    Leroy R. Lindsay, Kirk Lercher, Michael W. O'Dell
    PM&R.2017; 9(6): 629.     CrossRef
  • Non-invasive Brain Stimulation in the Treatment of Post-stroke and Neurodegenerative Aphasia: Parallels, Differences, and Lessons Learned
    Catherine Norise, Roy H. Hamilton
    Frontiers in Human Neuroscience.2017;[Epub]     CrossRef
  • An update on medications and noninvasive brain stimulation to augment language rehabilitation in post-stroke aphasia
    Sadhvi Saxena, Argye E. Hillis
    Expert Review of Neurotherapeutics.2017; 17(11): 1091.     CrossRef
  • Modulating Human Auditory Processing by Transcranial Electrical Stimulation
    Kai Heimrath, Marina Fiene, Katharina S. Rufener, Tino Zaehle
    Frontiers in Cellular Neuroscience.2016;[Epub]     CrossRef
  • Value and Efficacy of Transcranial Direct Current Stimulation in the Cognitive Rehabilitation: A Critical Review Since 2000
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