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  1. Through the Looking Glass: Self and Others.Corrado Sinigaglia & Giacomo Rizzolatti - 2011 - Cosciousness and Cognition 20 (1):64-74.
    In the present article we discuss the relevance of the mirror mechanism for our sense of self and our sense of others. We argue that, by providing us with an understanding from the inside of actions, the mirror mechanism radically challenges the traditional view of the self and of the others. Indeed, this mechanism not only reveals the common ground on the basis of which we become aware of ourselves as selves distinct from other selves, but also sheds new light (...)
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  • How Can Transcranial Magnetic Stimulation Be Used to Modulate Episodic Memory?: A Systematic Review and Meta-Analysis.Nicholas Yeh & Nathan S. Rose - 2019 - Frontiers in Psychology 10.
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  • Neurobiological Mechanisms of Transcranial Direct Current Stimulation for Psychiatric Disorders; Neurophysiological, Chemical, and Anatomical Considerations.Yuji Yamada & Tomiki Sumiyoshi - 2021 - Frontiers in Human Neuroscience 15.
    Backgrounds: Transcranial direct current stimulation is a non-invasive brain stimulation technique for the treatment of several psychiatric disorders, e.g., mood disorders and schizophrenia. Therapeutic effects of tDCS are suggested to be produced by bi-directional changes in cortical activities, i.e., increased/decreased cortical excitability via anodal/cathodal stimulation. Although tDCS provides a promising approach for the treatment of psychiatric disorders, its neurobiological mechanisms remain to be explored.Objectives: To review recent findings from neurophysiological, chemical, and brain-network studies, and consider how tDCS ameliorates psychiatric conditions.Findings: (...)
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  • Increased Low-Frequency Resting-State Brain Activity by High-Frequency Repetitive TMS on the Left Dorsolateral Prefrontal Cortex.Shao-Wei Xue, Yonghu Guo, Wei Peng, Jian Zhang, Yu-Feng da ChangZang & Ze Wang - 2017 - Frontiers in Psychology 8.
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  • Modulation of spontaneous alpha brain rhythms using low-intensity transcranial direct-current stimulation.Grazia F. Spitoni, Rocco L. Cimmino, Chiara Bozzacchi, Luigi Pizzamiglio & Francesco Di Russo - 2013 - Frontiers in Human Neuroscience 7.
  • Both High Cognitive Load and Transcranial Direct Current Stimulation Over the Right Inferior Frontal Cortex Make Truth and Lie Responses More Similar.Nuria Sánchez, Jaume Masip & Carlos J. Gómez-Ariza - 2020 - Frontiers in Psychology 11:519573.
    Deception scholars have argued that increasing the liar’s cognitive system artificially can produce deception cues. However, if too much load is imposed the truth tellers’ performance can also be impaired. To address this issue, we designed a veracity task that incorporated a secondary task to increase cognitive load gradually. Also, because deception has been associated with activity in the inferior frontal cortex (IFC), we examined the influence of transcranial direct current stimulation of the IFC on performance. During stimulation, participants truthfully (...)
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  • Through the looking glass: Self and others.Corrado Sinigaglia & Giacomo Rizzolatti - 2011 - Consciousness and Cognition 20 (1):64-74.
    In the present article we discuss the relevance of the mirror mechanism for our sense of self and our sense of others. We argue that, by providing us with an understanding from the inside of actions, the mirror mechanism radically challenges the traditional view of the self and of the others. Indeed, this mechanism not only reveals the common ground on the basis of which we become aware of ourselves as selves distinct from other selves, but also sheds new light (...)
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  • On the Mechanisms of Transcranial Magnetic Stimulation : How Brain State and Baseline Performance Level Determine Behavioral Effects of TMS.Juha Silvanto, Silvia Bona, Marco Marelli & Zaira Cattaneo - 2018 - Frontiers in Psychology 9.
  • Combining functional magnetic resonance imaging with transcranial electrical stimulation.Catarina Saiote, Zsolt Turi, Walter Paulus & Andrea Antal - 2013 - Frontiers in Human Neuroscience 7.
  • Cognitive Neuroscience of Attention Deficit Hyperactivity Disorder and Its Clinical Translation.Katya Rubia - 2018 - Frontiers in Human Neuroscience 12.
  • Correcting the Brain? The Convergence of Neuroscience, Neurotechnology, Psychiatry, and Artificial Intelligence.Stephen Rainey & Yasemin J. Erden - 2020 - Science and Engineering Ethics 26 (5):2439-2454.
    The incorporation of neural-based technologies into psychiatry offers novel means to use neural data in patient assessment and clinical diagnosis. However, an over-optimistic technologisation of neuroscientifically-informed psychiatry risks the conflation of technological and psychological norms. Neurotechnologies promise fast, efficient, broad psychiatric insights not readily available through conventional observation of patients. Recording and processing brain signals provides information from ‘beneath the skull’ that can be interpreted as an account of neural processing and that can provide a basis to evaluate general behaviour (...)
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  • Shaping pseudoneglect with transcranial cerebellar direct current stimulation and music listening.Silvia Picazio, Chiara Granata, Carlo Caltagirone, Laura Petrosini & Massimiliano Oliveri - 2015 - Frontiers in Human Neuroscience 9.
  • Smaller magnets for smarter minds?Neil Muggleton & Vincent Walsh - 2012 - Trends in Cognitive Sciences 16 (9):452-453.
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  • The anodal tDCS over the left posterior parietal cortex enhances attention toward a focus word in a sentence.Takehiro Minamoto, Miyuki Azuma, Ken Yaoi, Aoi Ashizuka, Tastuya Mima, Mariko Osaka, Hidenao Fukuyama & Naoyuki Osaka - 2014 - Frontiers in Human Neuroscience 8.
  • Effects of cTBS on the Frequency-Following Response and Other Auditory Evoked Potentials.Fran López-Caballero, Pablo Martin-Trias, Teresa Ribas-Prats, Natàlia Gorina-Careta, David Bartrés-Faz & Carles Escera - 2020 - Frontiers in Human Neuroscience 14.
  • Non-invasive brain stimulation in neurorehabilitation: local and distant effects for motor recovery.Sook-Lei Liew, Emilliano Santarnecchi, Ethan R. Buch & Leonardo G. Cohen - 2014 - Frontiers in Human Neuroscience 8.
  • Transcranial Alternating Current Stimulation Enhances Mental Rotation Performance during and after Stimulation.Florian H. Kasten & Christoph S. Herrmann - 2017 - Frontiers in Human Neuroscience 11.
  • Stimulating the Dorsolateral Prefrontal Cortex Decreases the Asset Bubble: A tDCS Study.Xuejun Jin, Cheng Chen, Xue Zhou & Xiaolan Yang - 2019 - Frontiers in Psychology 10:436402.
    Many studies have discussed the neural basis of asset bubbles. They found that the dorsolateral prefrontal cortex (DLPFC) played an important role in bubble formation, but whether a causal relationship exists and the mechanism of the effect of the DLPFC on bubbles remains unsettled. Using transcranial direct current stimulation (tDCS), we modulated the activity of the DLPFC and investigated the causal relationship between the DLPFC and the asset bubble in the classical learning-to-forecast experiment. 126 subjects were randomly divided into three (...)
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  • Anodal tDCS Enhances Verbal Episodic Memory in Initially Low Performers.Habich Annegret, Klöppel Stefan, Abdulkadir Ahmed, Scheller Elisa, Nissen Christoph & Peter Jessica - 2017 - Frontiers in Human Neuroscience 11.
  • Binding Mechanisms in Visual Perception and Their Link With Neural Oscillations: A Review of Evidence From tACS. [REVIEW]Andrea Ghiani, Marcello Maniglia, Luca Battaglini, David Melcher & Luca Ronconi - 2021 - Frontiers in Psychology 12.
    Neurophysiological studies in humans employing magneto- and electro- encephalography increasingly suggest that oscillatory rhythmic activity of the brain may be a core mechanism for binding sensory information across space, time, and object features to generate a unified perceptual representation. To distinguish whether oscillatory activity is causally related to binding processes or whether, on the contrary, it is a mere epiphenomenon, one possibility is to employ neuromodulatory techniques such as transcranial alternating current stimulation. tACS has seen a rising interest due to (...)
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  • Oscillatory Correlates of Visual Consciousness.Stefano Gallotto, Alexander T. Sack, Teresa Schuhmann & Tom A. de Graaf - 2017 - Frontiers in Psychology 8.
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  • Brain neural activity patterns yielding numbers are operators, not representations.Walter J. Freeman & Robert Kozma - 2009 - Behavioral and Brain Sciences 32 (3-4):336.
  • International Consensus Based Review and Recommendations for Minimum Reporting Standards in Research on Transcutaneous Vagus Nerve Stimulation.Adam D. Farmer, Adam Strzelczyk, Alessandra Finisguerra, Alexander V. Gourine, Alireza Gharabaghi, Alkomiet Hasan, Andreas M. Burger, Andrés M. Jaramillo, Ann Mertens, Arshad Majid, Bart Verkuil, Bashar W. Badran, Carlos Ventura-Bort, Charly Gaul, Christian Beste, Christopher M. Warren, Daniel S. Quintana, Dorothea Hämmerer, Elena Freri, Eleni Frangos, Eleonora Tobaldini, Eugenijus Kaniusas, Felix Rosenow, Fioravante Capone, Fivos Panetsos, Gareth L. Ackland, Gaurav Kaithwas, Georgia H. O'Leary, Hannah Genheimer, Heidi I. L. Jacobs, Ilse Van Diest, Jean Schoenen, Jessica Redgrave, Jiliang Fang, Jim Deuchars, Jozsef C. Széles, Julian F. Thayer, Kaushik More, Kristl Vonck, Laura Steenbergen, Lauro C. Vianna, Lisa M. McTeague, Mareike Ludwig, Maria G. Veldhuizen, Marijke De Couck, Marina Casazza, Marius Keute, Marom Bikson, Marta Andreatta, Martina D'Agostini, Mathias Weymar, Matthew Betts, Matthias Prigge, Michael Kaess, Michael Roden, Michelle Thai, Nathaniel M. Schuster & Nico Montano - 2021 - Frontiers in Human Neuroscience 14.
    Given its non-invasive nature, there is increasing interest in the use of transcutaneous vagus nerve stimulation across basic, translational and clinical research. Contemporaneously, tVNS can be achieved by stimulating either the auricular branch or the cervical bundle of the vagus nerve, referred to as transcutaneous auricular vagus nerve stimulation and transcutaneous cervical VNS, respectively. In order to advance the field in a systematic manner, studies using these technologies need to adequately report sufficient methodological detail to enable comparison of results between (...)
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  • International Consensus Based Review and Recommendations for Minimum Reporting Standards in Research on Transcutaneous Vagus Nerve Stimulation.Adam D. Farmer, Adam Strzelczyk, Alessandra Finisguerra, Alexander V. Gourine, Alireza Gharabaghi, Alkomiet Hasan, Andreas M. Burger, Andrés M. Jaramillo, Ann Mertens, Arshad Majid, Bart Verkuil, Bashar W. Badran, Carlos Ventura-Bort, Charly Gaul, Christian Beste, Christopher M. Warren, Daniel S. Quintana, Dorothea Hämmerer, Elena Freri, Eleni Frangos, Eleonora Tobaldini, Eugenijus Kaniusas, Felix Rosenow, Fioravante Capone, Fivos Panetsos, Gareth L. Ackland, Gaurav Kaithwas, Georgia H. O'Leary, Hannah Genheimer, Heidi I. L. Jacobs, Ilse Van Diest, Jean Schoenen, Jessica Redgrave, Jiliang Fang, Jim Deuchars, Jozsef C. Széles, Julian F. Thayer, Kaushik More, Kristl Vonck, Laura Steenbergen, Lauro C. Vianna, Lisa M. McTeague, Mareike Ludwig, Maria G. Veldhuizen, Marijke De Couck, Marina Casazza, Marius Keute, Marom Bikson, Marta Andreatta, Martina D'Agostini, Mathias Weymar, Matthew Betts, Matthias Prigge, Michael Kaess, Michael Roden, Michelle Thai, Nathaniel M. Schuster & Nico Montano - 2021 - Frontiers in Human Neuroscience 14.
    Given its non-invasive nature, there is increasing interest in the use of transcutaneous vagus nerve stimulation across basic, translational and clinical research. Contemporaneously, tVNS can be achieved by stimulating either the auricular branch or the cervical bundle of the vagus nerve, referred to as transcutaneous auricular vagus nerve stimulation and transcutaneous cervical VNS, respectively. In order to advance the field in a systematic manner, studies using these technologies need to adequately report sufficient methodological detail to enable comparison of results between (...)
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  • Concrete magnitudes: From numbers to time.Christine Falter, Valdas Noreika, Julian Kiverstein & Bruno Mölder - 2009 - Behavioral and Brain Sciences 32 (3-4):335-336.
    Cohen Kadosh & Walsh (CK&W) present convincing evidence indicating the existence of notation-specific numerical representations in parietal cortex. We suggest that the same conclusions can be drawn for a particular type of numerical representation: the representation of time. Notation-dependent representations need not be limited to number but may also be extended to other magnitude-related contents processed in parietal cortex (Walsh 2003).
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  • Numerical representation in the parietal lobes: Abstract or not abstract?Roi Cohen Kadosh & Vincent Walsh - 2009 - Behavioral and Brain Sciences 32 (3-4):313-328.
    The study of neuronal specialisation in different cognitive and perceptual domains is important for our understanding of the human brain, its typical and atypical development, and the evolutionary precursors of cognition. Central to this understanding is the issue of numerical representation, and the question of whether numbers are represented in an abstract fashion. Here we discuss and challenge the claim that numerical representation is abstract. We discuss the principles of cortical organisation with special reference to number and also discuss methodological (...)
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  • The Joint Effects of Spatial Cueing and Transcranial Direct Current Stimulation on Visual Acuity.Taly Bonder, Daniel Gopher & Yaffa Yeshurun - 2018 - Frontiers in Psychology 9.
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  • Brain State-Dependent Brain Stimulation.Til O. Bergmann - 2018 - Frontiers in Psychology 9.
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  • Vicarious motor activation during action perception: beyond correlational evidence.Alessio Avenanti, Matteo Candidi & Cosimo Urgesi - 2013 - Frontiers in Human Neuroscience 7.