Contribution of NIRS to the study of prefrontal cortex for verbal fluency in aging
暂无分享,去创建一个
Frédéric Lesage | Bernadette Ska | Karima Kahlaoui | Yves Joanette | Y. Joanette | B. Ska | F. Lesage | K. Kahlaoui | G. Sante | Joannie Barbeau | Manon Maheux | Manon Maheux | Gabriele Di Sante | Joannie Barbeau
[1] Masaki Kameyama,et al. Frontal lobe function in bipolar disorder: A multichannel near-infrared spectroscopy study , 2006, NeuroImage.
[2] E. Gratton,et al. Investigation of human brain hemodynamics by simultaneous near-infrared spectroscopy and functional magnetic resonance imaging. , 2001, Medical physics.
[3] Frithjof Kruggel,et al. Age dependency of the hemodynamic response as measured by functional near-infrared spectroscopy , 2003, NeuroImage.
[4] W. Strik,et al. Loss of functional hemispheric asymmetry in Alzheimer's dementia assessed with near-infrared spectroscopy. , 1997 .
[5] M. Duyme,et al. Sex and performance level effects on brain activation during a verbal fluency task: A functional magnetic resonance imaging study , 2009, Cortex.
[6] Marco Ferrari,et al. Prefrontal cortex dysfunction during cognitive tests evidenced by functional near-infrared spectroscopy , 2009, Psychiatry Research: Neuroimaging.
[7] R. C. Oldfield. The assessment and analysis of handedness: the Edinburgh inventory. , 1971, Neuropsychologia.
[8] Paige E. Scalf,et al. Training-induced plasticity in older adults: Effects of training on hemispheric asymmetry , 2007, Neurobiology of Aging.
[9] Alessandro Torricelli,et al. Bilateral prefrontal cortex oxygenation responses to a verbal fluency task: a multichannel time-resolved near-infrared topography study. , 2005, Journal of biomedical optics.
[10] R. Cabeza. Hemispheric asymmetry reduction in older adults: the HAROLD model. , 2002, Psychology and aging.
[11] Kaoru Sakatani,et al. Effects of aging on activity of the prefrontal cortex and autonomic nervous system during mental stress task. , 2010, Advances in experimental medicine and biology.
[12] Roberto Cabeza,et al. Aging Gracefully: Compensatory Brain Activity in High-Performing Older Adults , 2002, NeuroImage.
[13] Ann-Christine Ehlis,et al. Functional near-infrared spectroscopy: A long-term reliable tool for measuring brain activity during verbal fluency , 2008, NeuroImage.
[14] T. Salthouse. When does age-related cognitive decline begin? , 2009, Neurobiology of Aging.
[15] M. Farah,et al. A neural basis for category and modality specificity of semantic knowledge , 1999, Neuropsychologia.
[16] L. Petitto,et al. Exploring Cognitive Functions in Babies, Children & Adults with Near Infrared Spectroscopy. , 2009, Journal of visualized experiments : JoVE.
[17] Martin Wolf,et al. Progress of near-infrared spectroscopy and topography for brain and muscle clinical applications. , 2007, Journal of biomedical optics.
[18] M. Herrmann,et al. Frontal activation during a verbal-fluency task as measured by near-infrared spectroscopy , 2003, Brain Research Bulletin.
[19] K P George,et al. Cortical language activation in stroke patients recovering from aphasia with functional MRI. , 1999, Stroke.
[20] G Marchal,et al. Regional cerebral oxygen consumption, blood flow, and blood volume in healthy human aging. , 1992, Archives of neurology.
[21] M. D’Esposito,et al. Alterations in the BOLD fMRI signal with ageing and disease: a challenge for neuroimaging , 2003, Nature Reviews Neuroscience.
[22] M. Herrmann,et al. Cerebral oxygenation changes in the prefrontal cortex: Effects of age and gender , 2006, Neurobiology of Aging.
[23] Reinhard Grebe,et al. NIRS‐measured oxy‐ and deoxyhemoglobin changes associated with EEG spike‐and‐wave discharges in children , 2008, Epilepsia.
[24] K. Warner Schaie,et al. “When does age-related cognitive decline begin?” Salthouse again reifies the “cross-sectional fallacy” , 2009, Neurobiology of Aging.
[25] Y. Stern. What is cognitive reserve? Theory and research application of the reserve concept , 2002, Journal of the International Neuropsychological Society.
[26] Martin Wolf,et al. Age-correlated changes in cerebral hemodynamics assessed by near-infrared spectroscopy. , 2004, Archives of gerontology and geriatrics.
[27] Yaakov Stern,et al. Cognitive Reserve: Implications for Assessment and Intervention , 2013, Folia Phoniatrica et Logopaedica.
[28] W. Perlstein,et al. Age-related changes in word retrieval: Role of bilateral frontal and subcortical networks , 2008, Neurobiology of Aging.
[29] Edward E. Smith,et al. Age Differences in the Frontal Lateralization of Verbal and Spatial Working Memory Revealed by PET , 2000, Journal of Cognitive Neuroscience.
[30] Burkhard Pleger,et al. How does the brain accommodate to increased task difficulty in word finding? A functional MRI study , 2004, NeuroImage.
[31] R. Cabeza,et al. Que PASA? The posterior-anterior shift in aging. , 2008, Cerebral cortex.
[32] W. Hoffman,et al. Age effects on brain oxygenation during hypercapnia. , 2007, Journal of biomedical optics.
[33] A. Sanjuán,et al. Comparison of two fMRI tasks for the evaluation of the expressive language function , 2010, Neuroradiology.
[34] P. Skudlarski,et al. An event-related functional MRI study of the stroop color word interference task. , 2000, Cerebral cortex.
[35] J. Lewin,et al. Brain Activation During Silent Word Generation Evaluated with Functional MRI , 1998, Brain and Language.
[36] W. Hoefnagels,et al. Simultaneous measurements of cerebral oxygenation changes during brain activation by near‐infrared spectroscopy and functional magnetic resonance imaging in healthy young and elderly subjects , 2002, Human brain mapping.
[37] K. Sakatani,et al. Effects of aging on language-activated cerebral blood oxygenation changes of the left prefrontal cortex: Near infrared spectroscopy study. , 1999, Journal of stroke and cerebrovascular diseases : the official journal of National Stroke Association.
[38] Nobumasa Kato,et al. Prefrontal hemodynamic response to verbal-fluency task and hyperventilation in bipolar disorder measured by multi-channel near-infrared spectroscopy. , 2004, Journal of affective disorders.
[39] Nobumasa Kato,et al. Cerebrovascular response to cognitive tasks and hyperventilation measured by multi-channel near-infrared spectroscopy. , 2003, The Journal of neuropsychiatry and clinical neurosciences.
[40] Mitsuhiro Okada,et al. Effects of aging on hemispheric asymmetry in inferior frontal cortex activity during belief–bias syllogistic reasoning: A near-infrared spectroscopy study , 2010, Behavioural Brain Research.
[41] C. Grady. Cognitive Neuroscience of Aging , 2008, Annals of the New York Academy of Sciences.
[42] Ann-Christine Ehlis,et al. Optical topography during a Go–NoGo task assessed with multi-channel near-infrared spectroscopy , 2005, Behavioural Brain Research.
[43] B. Dräger,et al. When Finding Words Becomes Difficult: Is There Activation of the Subdominant Hemisphere? , 2002, NeuroImage.
[44] Ulrich Dirnagl,et al. Age Dependency of Changes in Cerebral Hemoglobin Oxygenation during Brain Activation: A Near-Infrared Spectroscopy Study , 1995, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.
[45] Shozo Kojima,et al. Cerebral laterality for phonemic and prosodic cue decoding in children with autism , 2009, Neuroreport.
[46] J. Gabrieli,et al. Insights into the ageing mind: a view from cognitive neuroscience , 2004, Nature Reviews Neuroscience.
[47] H. Jasper,et al. The ten-twenty electrode system of the International Federation. The International Federation of Clinical Neurophysiology. , 1999, Electroencephalography and clinical neurophysiology. Supplement.
[48] Koichi Mori,et al. Neural Attunement Processes in Infants during the Acquisition of a Language-Specific Phonemic Contrast , 2007, The Journal of Neuroscience.
[49] 亀山 正樹,et al. Frontal lobe function in bipolar disorder : a multichannel near-infrared spectroscopy study , 2005 .
[50] S. Folstein,et al. "Mini-mental state". A practical method for grading the cognitive state of patients for the clinician. , 1975, Journal of psychiatric research.
[51] Ann-Christine Ehlis,et al. Cortical activation during two verbal fluency tasks in schizophrenic patients and healthy controls as assessed by multi-channel near-infrared spectroscopy , 2007, Psychiatry Research: Neuroimaging.
[52] N. Raz. Aging of the brain and its impact on cognitive performance: Integration of structural and functional findings. , 2000 .
[53] P. Verhaeghen. Aging and vocabulary scores: a meta-analysis. , 2003, Psychology and aging.
[54] Masaki Kameyama,et al. Sex and age dependencies of cerebral blood volume changes during cognitive activation: a multichannel near-infrared spectroscopy study , 2004, NeuroImage.
[55] Ann-Christine Ehlis,et al. Reduced prefrontal oxygenation in Alzheimer disease during verbal fluency tasks. , 2008, The American journal of geriatric psychiatry : official journal of the American Association for Geriatric Psychiatry.