Results for 'Hemispheric asymmetry'

988 found
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  1.  26
    Hemispheric asymmetry: Verbal and spatial encoding of visual stimuli.Gina Geffen, John L. Bradshaw & Norman C. Nettleton - 1972 - Journal of Experimental Psychology 95 (1):25.
  2.  16
    A hemispheric asymmetry in somatosensory processing.Giuseppe Vallar - 2007 - Behavioral and Brain Sciences 30 (2):223-224.
    The model presented in the target article includes feature processing and higher representations. I argue, based on neuropsychological evidence, that spatial representations are also involved in perceptual awareness of somatosensory events. Second, there is an asymmetry, with a right-hemisphere–based bilateral representation of the body. Third, the specific aspect of bodily awareness concerning motor function monitoring involves a network that includes the premotor cortex.
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  3.  21
    Hemispheric Asymmetry in Attention and its Impact on Our Consciousness: A Review with Reference to Altered Conscioussness in Right Hemisphere Damaged Subjects.M. Chakrabarty, D. Badgio, J. Ptacek, A. Biswas, M. Ghosal & G. Chatterjee - 2017 - Journal of Consciousness Studies 24 (7-8):51-78.
    Attention and consciousness are two distinct neural processes which are intricately intertwined. However, there is asymmetry in the distribution of attentional abilities across the two hemispheres. The right hemisphere is asserted to be dominant for attentional abilities. Research suggests that the ventral frontoparietal cortex of the right hemisphere is dominant for exogenous attentional abilities, attention is phylogenetically more primitive than endogenous attention, and, compared to the left hemisphere, the right hemisphere is more adept at abilities and functions that are (...)
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  4.  22
    Explaining hemispheric asymmetry: New dichotomies for old?Gillian Cohen - 1981 - Behavioral and Brain Sciences 4 (1):67-67.
  5.  51
    A hemispheric asymmetry for the unconscious perception of emotion.Stephen D. Smith & M. Barbara Bulman-Fleming - 2004 - Brain and Cognition 55 (3):452-457.
  6.  22
    Hemispheric asymmetry in the influence of language on visual perception.Yanliang Sun, Yongchun Cai & Shena Lu - 2015 - Consciousness and Cognition 34:16-27.
  7.  23
    Hemispheric asymmetries for the conscious and unconscious perception of emotional words.Stephen D. Smith & M. Barbara Bulman-Fleming - 2006 - Laterality 11 (4):304-330.
  8.  31
    Hemispheric Asymmetries in Price Estimation: Do Brain Hemispheres Attribute Different Monetary Values?Felice Giuliani, Anita D’Anselmo, Luca Tommasi, Alfredo Brancucci & Davide Pietroni - 2017 - Frontiers in Psychology 8.
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  9.  12
    Cortical hemisphere asymmetry and sleep mentation.John Antrobus - 1987 - Psychological Review 94 (3):359-368.
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  10.  13
    Hemispheric Asymmetries in Cognitive Modeling: Connectionist Modeling of Unilateral Visual Neglect.Padraic Monaghan & Richard Shillcock - 2004 - Psychological Review 111 (2):283-308.
  11.  10
    Hemispheric asymmetries in the cortical evoked potential as a function of arithmetic computations.Charles T. Rasmussen, Roy Allen & Robert D. Tarte - 1977 - Bulletin of the Psychonomic Society 10 (5):419-421.
  12.  54
    Hypnosis and hemispheric asymmetry.Peter L. N. Naish - 2010 - Consciousness and Cognition 19 (1):230-234.
    Participants of low and high hypnotic susceptibility were tested on a temporal order judgement task, both with and without hypnosis. Judgements were made of the order of presentation of light flashes appearing in first one hemi-field then the other. There were differences in the inter-stimulus intervals required accurately to report the order, depending upon which hemi-field led. This asymmetry was most marked in hypnotically susceptible participants and reversed when they were hypnotised. This implies not only that brain activity changes (...)
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  13.  13
    Hemispheric asymmetry in the processing of negative and positive words: A divided field study.Thomas Holtgraves & Adam Felton - 2011 - Cognition and Emotion 25 (4):691-699.
  14.  5
    Hemispheric asymmetry in the processing of Stroop stimuli.Linda R. Warren & Gail R. Marsh - 1978 - Bulletin of the Psychonomic Society 12 (3):214-216.
  15.  28
    Hemisphere asymmetry: Old views in new light.Jozef Černáček - 1985 - Behavioral and Brain Sciences 8 (4):636-636.
  16.  15
    Hemispheric Asymmetries in Radial Line Bisection: Role of Retinotopic and Spatiotopic Factors.Sergio Chieffi, Giovanni Messina, Ines Villano, Antonietta Messina, Ciro Rosario Ilardi, Marcellino Monda, Monica Salerno, Francesco Sessa, Maria Pina Mollica, Gina Cavaliere, Giovanna Trinchese, Fabiano Cimmino, Paolo Murabito, Angela Catapano & Vincenzo Monda - 2018 - Frontiers in Psychology 9.
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  17.  22
    Gender and Hemispheric Asymmetries in Acquired Sociopathy.Ricardo de Oliveira-Souza, Thiago Paranhos, Jorge Moll & Jordan Grafman - 2019 - Frontiers in Psychology 10.
  18.  12
    Unilateral attention deficits and hemispheric asymmetries in the control of attention.Eric A. Roy, Patricia Reuter-Lorenz, Louise G. Roy, Sherrie Copland & Morris Moscovitch - 1987 - In M. Jeannerod (ed.), Neurophysiological and Neuropsychological Aspects of Spatial Neglect. Elsevier Science.
  19.  16
    No difference in cerebral hemispheric asymmetry of meditators as opposed to nonmeditators.Tom Dayton & David B. Boles - 1990 - Bulletin of the Psychonomic Society 28 (3):211-214.
  20.  26
    Emotional and hemispheric asymmetries in shifts of attention: An ERP study.Shruti Baijal & Narayanan Srinivasan - 2011 - Cognition and Emotion 25 (2):280-294.
  21.  11
    Individual Differences and Hemispheric Asymmetries for Language and Spatial Attention.Louise O’Regan & Deborah J. Serrien - 2018 - Frontiers in Human Neuroscience 12.
  22.  21
    Indeterminacy tolerance as a basis of hemispheric asymmetry within prefrontal cortex.Vinod Goel - 2015 - Frontiers in Human Neuroscience 9:138009.
    There is an important hemispheric distinction in the functional organization of prefrontal cortex (PFC) that has not been fully recognized and explored. Research with split-brain patients provides considerable evidence for a left hemisphere (LH) “interpreter” that abhors indeterminacy and automatically draws inferences to complete patterns (real or imaginary). It is suggested that this “interpreter” function may be a byproduct of the linguistic capabilities of the LH. This same literature initially limited the role of the right hemisphere (RH) to little (...)
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  23. The mechanisms of hemisphere asymmetry in man.M. Kinsboume - 1974 - In Marcel Kinsbourne & W. Smith (eds.), Hemispheric Disconnection and Cerebral Function. Charles C.
     
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  24.  13
    Language disorder and hemispheric asymmetries in schizophrenia.R. G. Knight - 1982 - Behavioral and Brain Sciences 5 (4):603-604.
  25.  21
    Neglect in man: Hemispheric asymmetries and hemispatial neglect.Kenneth M. Heilman, Robert T. Watson, Edward Valenstein & Dawn Bowers - 1980 - Behavioral and Brain Sciences 3 (4):505-506.
  26.  20
    fNIRS Studies on Hemispheric Asymmetry in Atypical Neural Function in Developmental Disorders.Hirokazu Doi & Kazuyuki Shinohara - 2017 - Frontiers in Human Neuroscience 11.
  27.  7
    Verbal Learning and Hemispheric Asymmetry.Vanja Kljajevic - 2022 - Frontiers in Psychology 12.
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  28.  23
    Switching between global and local levels: the level repetition effect and its hemispheric asymmetry.Luc Kéïta, Nathalie Bedoin, Jacob A. Burack & Franco Lepore - 2014 - Frontiers in Psychology 5.
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  29.  13
    Posture Used in fMRI-PET Elicits Reduced Cortical Activity and Altered Hemispheric Asymmetry with Respect to Sitting Position: An EEG Resting State Study.Chiara Spironelli & Alessandro Angrilli - 2017 - Frontiers in Human Neuroscience 11.
  30.  20
    Listening with a dual brain: Hemispheric asymmetry in sustained attention.Joel S. Warm, David O. Richter, Ronald L. Sprague, Phillip K. Porter & Donald A. Schumsky - 1980 - Bulletin of the Psychonomic Society 15 (4):229-232.
  31.  15
    The use of goggles for testing hemispheric asymmetry.James B. Francks, Steven M. Smith & Thomas B. Ward - 1985 - Bulletin of the Psychonomic Society 23 (6):487-488.
  32.  6
    Hemispheric functional asymmetries and sex effects in visual bistable perception.Alfredo Brancucci, Sara Ferracci, Anita D'Anselmo & Valerio Manippa - 2023 - Consciousness and Cognition 113 (C):103551.
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  33.  30
    Hemispheric laterality and dissociative tendencies: Differences in emotional processing in a dichotic listening task.P. Enriquez & E. Bernabeu - 2008 - Consciousness and Cognition 17 (1):267-275.
    The present work investigates whether the hemispheric processing of both verbal and emotional stimuli, studied by means of a dichotic listening task, differs between normal high and low dissociators as assessed by the Dissociative Experiences Scale . Development, reliability and validity of a dissociation scale. Journal of Nervous and Mental Disease, 174, 727–735). Two groups of subjects , participated in the experiment. The task consisted in identifying both verbal and emotional stimulus-targets, respectively, on successive sessions. Reaction time and response (...)
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  34.  17
    Hemispheric Processing of Chinese Scientific Metaphors: Evidence via Hemifield Presentation.Min Huang, Lexian Shen, Shuyuan Xu, Yanhong Huang, Shaojuan Huang & Xuemei Tang - 2022 - Frontiers in Psychology 13.
    The role of the two hemispheres in processing metaphoric language is controversial. In order to complement current debates, the current divided visual field study introduced scientific metaphors as novel metaphors, presenting orientation mapping from the specific and familiar domains to the abstract and unfamiliar domains, to examine hemispheric asymmetry in metaphoric processing. Twenty-four Chinese native speakers from science disciplines took part in the experiment. The participants were presented with four types of Chinese word pairs: scientific metaphors, conventional metaphors, (...)
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  35.  27
    Visual Similarity of Words Alone Can Modulate Hemispheric Lateralization in Visual Word Recognition: Evidence From Modeling Chinese Character Recognition.Janet H. Hsiao & Kit Cheung - 2016 - Cognitive Science 40 (2):351-372.
    In Chinese orthography, the most common character structure consists of a semantic radical on the left and a phonetic radical on the right ; the minority, opposite arrangement also exists. Recent studies showed that SP character processing is more left hemisphere lateralized than PS character processing. Nevertheless, it remains unclear whether this is due to phonetic radical position or character type frequency. Through computational modeling with artificial lexicons, in which we implement a theory of hemispheric asymmetry in perception (...)
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  36.  28
    Hemispheric laterality in animals and the effects of early experience.Victor H. Denenberg - 1981 - Behavioral and Brain Sciences 4 (1):1-21.
  37.  46
    Attentional asymmetries in a visual orienting task are related to temperament.Kelly G. Garner, Paul E. Dux, Joe Wagner, D. R. Tarrant, Christopher D. Chambers & A. Mark - 2012 - Cognition and Emotion 26 (8):1508-1515.
    Spatial asymmetries are an intriguing feature of directed attention. Recent observations indicate an influence of temperament upon the direction of these asymmetries. It is unknown whether this influence generalises to visual orienting behaviour. The aim of the current study was therefore to explore the relationship between temperament and measures of spatial orienting as a function of target hemifield. An exogenous cueing task was administered to 92 healthy participants. Temperament was assessed using Carver and White's (1994) Behavioural Inhibition System and Behavioural (...)
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  38.  51
    The nature of hemispheric specialization in man.J. L. Bradshaw & N. C. Nettleton - 1981 - Behavioral and Brain Sciences 4 (1):51-63.
    The traditional verbal/nonverbal dichotomy is inadequate for completely describing cerebral lateralization. Musical functions are not necessarily mediated by the right hemisphere; evidence for a specialist left-hemisphere mechanism dedicated to the encoded speech signal is weakening, and the right hemisphere possesses considerable comprehensional powers. Right-hemisphere processing is often said to be characterized by holistic or gestalt apprehension, and face recognition may be mediated by this hemisphere partly because of these powers, partly because of the right hemisphere's involvement in emotional affect, and (...)
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  39.  82
    The Modulation of Visual and Task Characteristics of a Writing System on Hemispheric Lateralization in Visual Word Recognition—A Computational Exploration.Janet H. Hsiao & Sze Man Lam - 2013 - Cognitive Science 37 (5):861-890.
    Through computational modeling, here we examine whether visual and task characteristics of writing systems alone can account for lateralization differences in visual word recognition between different languages without assuming influence from left hemisphere (LH) lateralized language processes. We apply a hemispheric processing model of face recognition to visual word recognition; the model implements a theory of hemispheric asymmetry in perception that posits low spatial frequency biases in the right hemisphere and high spatial frequency (HSF) biases in the (...)
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  40.  92
    Sex differences in human brain asymmetry: a critical survey.Jeannette McGlone - 1980 - Behavioral and Brain Sciences 3 (2):215-227.
    Dual functional brain asymmetry refers to the notion that in most individuals the left cerebral hemisphere is specialized for language functions, whereas the right cerebral hemisphere is more important than the left for the perception, construction, and recall of stimuli that are difficult to verbalize. In the last twenty years there have been scattered reports of sex differences in degree of hemispheric specialization. This review provides a critical framework within which two related topics are discussed: Do meaningful sex (...)
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  41.  19
    Hemispheric dominance has its origins in the control of the midline organs of speech.Norman D. Cook - 2003 - Behavioral and Brain Sciences 26 (2):216-217.
    Unlike all other lateral specializations, the necessity for unilateral dominance is clear only for the case of the motor control of the speech organs lying on the midline of the body and innervated from both hemispheres. All functional asymmetries are likely to be a consequence of this asymmetry of executive control.
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  42.  25
    Are there right hemisphere contributions to visually-guided movement? Manipulating left hand reaction time advantages in dextrals.David P. Carey, E. Grace Otto-de Haart, Gavin Buckingham, H. Chris Dijkerman, Eric L. Hargreaves & Melvyn A. Goodale - 2015 - Frontiers in Psychology 6:132445.
    Many studies have argued for distinct but complementary contributions from each hemisphere in the control of movements to visual targets. Investigators have attempted to extend observations from patients with unilateral left- and right-hemisphere damage, to those using neurologically-intact participants, by assuming that each hand has privileged access to the contralateral hemisphere. Previous attempts to illustrate right hemispheric contributions to the control of aiming have focussed on increasing the spatial demands of an aiming task, to attenuate the typical right hand (...)
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  43.  54
    The cerebral torque and directional asymmetry for hand use are correlates of the capacity for language in homo sapiens.Timothy J. Crow - 2005 - Behavioral and Brain Sciences 28 (4):595-596.
    The claim of consistent hemispheric specialisations across classes of chordates is undermined by the absence of population-based directional asymmetry of paw/hand use in rodents and primates. No homologue of the cerebral torque from right frontal to left occipital has been established in a nonhuman species. The null hypothesis that the torque is the sapiens-specific neural basis of language has not been disproved.
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  44. Cerebral asymmetries as manifested in split-brain man.Jerre Levy - 1974 - In Marcel Kinsbourne & W. Smith (eds.), Hemispheric Disconnection and Cerebral Function. Charles C.
  45.  47
    The ontogeny and asymmetry of the highest brain skills and the pathogenesis of schizophrenia.Vadim S. Rotenberg - 2004 - Behavioral and Brain Sciences 27 (6):864-865.
    The most developed and the latest-to-mature mental skills represented in the creation of mono- versus polysemantic contexts are related respectively to the left and right frontal lobe. A polysemantic way of thinking is responsible for the subject's successful integration in the polydimensional world. The functional insufficiency of this right-hemispheric way of thinking displays a predisposition toward the development of mental disorders, including schizophrenia.
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  46.  20
    Exploring manual asymmetries during grasping: a dynamic causal modeling approach.Chiara Begliomini, Luisa Sartori, Diego Miotto, Roberto Stramare, Raffaella Motta & Umberto Castiello - 2015 - Frontiers in Psychology 6.
    Recording of neural activity during grasping actions in macaques showed that grasp-related sensorimotor transformations are accomplished in a circuit constituted by the anterior part of the intraparietal sulcus (AIP), the ventral (F5) and the dorsal (F2) region of the premotor area. In humans, neuroimaging studies have revealed the existence of a similar circuit, involving the putative homolog of macaque areas AIP, F5, and F2. These studies have mainly considered grasping movements performed with the right dominant hand and only a few (...)
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  47.  17
    Subthalamic Deep Brain Stimulation Lead Asymmetry Impacts the Parkinsonian Gait Disorder.Frederik P. Schott, Alessandro Gulberti, Hans O. Pinnschmidt, Christian Gerloff, Christian K. E. Moll, Miriam Schaper, Johannes A. Koeppen, Wolfgang Hamel & Monika Pötter-Nerger - 2022 - Frontiers in Human Neuroscience 16.
    BackgroundThe preferable position of Deep Brain Stimulation electrodes is proposed to be located in the dorsolateral subthalamic nucleus to improve general motor performance. The optimal DBS electrode localization for the post-operative improvement of balance and gait is unknown.MethodsIn this single-center, retrospective analyses, 66 Parkinson’s disease patients were assessed pre- and post-operatively by using MDS-UPDRS, freezing of gait score, Giladi’s gait and falls questionnaire and Berg balance scale. The clinical outcome was related to the DBS electrode coordinates in x, y, z (...)
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  48. Psychobiological implications of bilateral asymmetry.Jerre Levy - 1974 - In S. J. Dimond & J. Graham Beaumont (eds.), Hemisphere Function in the Human Brain. Elek. pp. 121--183.
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  49.  27
    Brain Functional Asymmetry of Chimpanzees : the Example of Auditory Laterality.Julia Sikorska, Maciej Kapusta, Katarzyna Wejchert, Anna Jakucińska, Maciej Trojan & Justyna Szymańska - 2017 - Polish Psychological Bulletin 48 (1):87-92.
    The aim of this study was to verify whether chimpanzees demonstrate an auditory laterality during the orientation reaction, and which hemisphere is responsible for processing the emotional stimuli and which for the species-specific vocalizations. The study involved nine chimpanzees from the Warsaw Municipal Zoological Garden. They were tested individually in their bedrooms. Chimpanzees approached a tube filled with food, located in the centre of the cage. Randomly selected sounds were played from the speakers when the subject was focused on getting (...)
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  50.  6
    Interdisciplinary Educational Technology based on the Concept of Human Brain Functional Asymmetry.Alexander Voznyuk, Sergey Gorobets, Serhii Kubitskyi, Victoriia Domina, Natalia Gutareva, Maxim Roganov & Ihor Bloshchynskyi - 2021 - Postmodern Openings 12 (2).
    The main aspects of interdisciplinary ICT technology of educational process based on the concept of functional asymmetry of the cerebral hemispheres, which reflect space-time asymmetry of the Universe and constitute a certain psychophysiological focus of human organism, are presented in the article. Its urgency stems from the tendencies of contemporary world, evolving towards the information society and influencing the development of modern education, becoming increasingly multimedia-rich and psychologised. The authors consider the major peculiarities of cognitive strategies of brain’s (...)
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