Alteration of Basal Ganglia and Right Frontoparietal Network in Early Drug-Naïve Parkinson’s Disease during Heat Pain Stimuli and Resting State
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Cheng Luo | Xingxing Zhang | Dezhong Yao | Fei Yang | Wenjuan Cui | Xiaotao Shen | Tao Liu | Jiayan Deng | Hui He | D. Yao | C. Luo | Xingxing Zhang | Hui He | Xiaotao Shen | Ying Tan | J. Tan | Jiayan Deng | Wenjuan Cui | Fei Yang | Hongjie Deng | Ruhui Xiao | Zhengkuan Huang | Rui Tan | Tao Liu | Xiaoming Wang | Ying Tan | Juan Tan | Hongjie Deng | Ruhui Xiao | Zhengkuan Huang | Rui Tan | Xiaoming Wang | Ying Tan | H. He | Hui He
[1] A. Snyder,et al. Resting state functional connectivity of the striatum in Parkinson's disease. , 2012, Brain : a journal of neurology.
[2] C. Fernández‐de‐las‐Peñas,et al. Pain in Parkinson disease: a review of the literature. , 2013, Parkinsonism & related disorders.
[3] D. Chialvo,et al. Brain resting state is disrupted in chronic back pain patients , 2010, Neuroscience Letters.
[4] U Sabatini,et al. Supplementary and primary sensory motor area activity in Parkinson's disease. Regional cerebral blood flow changes during finger movements and effects of apomorphine. , 1992, Archives of neurology.
[5] E. Tolosa,et al. Cognitive impairment and resting‐state network connectivity in Parkinson's disease , 2015, Human brain mapping.
[6] Karl J. Friston. Modalities, Modes, and Models in Functional Neuroimaging , 2009, Science.
[7] Dezhong Yao,et al. Altered resting state functional network connectivity in children absence epilepsy , 2015, Journal of the Neurological Sciences.
[8] R. Wu,et al. Biomarkers of cognitive decline in Parkinson's disease. , 2015, Parkinsonism & related disorders.
[9] E. Montgomery. Functional connectivity in the basal ganglia network differentiates PD patients from controls , 2015, Neurology.
[10] A. Tessitore,et al. Mini Review Article , 2022 .
[11] Erkki Oja,et al. Independent component analysis: algorithms and applications , 2000, Neural Networks.
[12] V. Menon,et al. A critical role for the right fronto-insular cortex in switching between central-executive and default-mode networks , 2008, Proceedings of the National Academy of Sciences.
[13] Peter Henningsen,et al. Functional network connectivity of pain-related resting state networks in somatoform pain disorder: an exploratory fMRI study. , 2013, Journal of psychiatry & neuroscience : JPN.
[14] Qin Chen,et al. Functional connectome assessed using graph theory in drug-naive Parkinson’s disease , 2015, Journal of Neurology.
[15] O. Sporns. Contributions and challenges for network models in cognitive neuroscience , 2014, Nature Neuroscience.
[16] Scott Peltier,et al. Frontiers in Systems Neuroscience Systems Neuroscience Altered Resting State Cortico-striatal Connectivity in Mild to Moderate Stage Parkinson's Disease Materials and Methods Frequency Content Analysis of the Fmri Bold Signal Comparison of Caudate versus Putamen Functional Connectivity in Controls, , 2022 .
[17] Xiaoqi Huang,et al. Resting-state fMRI study on drug-naive patients with Parkinson's disease and with depression , 2013, Journal of Neurology, Neurosurgery & Psychiatry.
[18] Karl J. Friston,et al. PHRENOLOGY : What Can Neuroimaging Tell Us About Distributed Circuitry ? , 2005 .
[19] E. Tolosa,et al. The Onset of Nonmotor Symptoms in Parkinson's disease (The ONSET PD Study) , 2015, Movement disorders : official journal of the Movement Disorder Society.
[20] Lumy Sawaki,et al. The contribution of the putamen to sensory aspects of pain: insights from structural connectivity and brain lesions. , 2011, Brain : a journal of neurology.
[21] Michael J Frank,et al. Freezing of gait in Parkinson's disease is associated with functional decoupling between the cognitive control network and the basal ganglia. , 2013, Brain : a journal of neurology.
[22] Junning Li,et al. A Framework for Group Analysis of fMRI Data using Dynamic Bayesian Networks , 2007, 2007 29th Annual International Conference of the IEEE Engineering in Medicine and Biology Society.
[23] Oury Monchi,et al. Effect of mild cognitive impairment on the patterns of neural activity in early Parkinson's disease , 2014, Neurobiology of Aging.
[24] Kuncheng Li,et al. Changes of functional connectivity of the motor network in the resting state in Parkinson's disease , 2009, Neuroscience Letters.
[25] J. O'Callaghan,et al. Biomarkers of Parkinson's disease: present and future. , 2015, Metabolism: clinical and experimental.
[26] J. Pekar,et al. A method for making group inferences from functional MRI data using independent component analysis , 2001, Human brain mapping.
[27] D. Yao,et al. Altered Brain Activation in Early Drug-Naive Parkinson's Disease during Heat Pain Stimuli: An fMRI Study , 2015, Parkinson's disease.
[28] R. Barker,et al. The spectrum of nonmotor symptoms in early Parkinson disease , 2013, Neurology.
[29] Nicola Filippini,et al. Functional connectivity in the basal ganglia network differentiates PD patients from controls , 2014, Neurology.
[30] Krish D. Singh,et al. fMRI of Thermal Pain: Effects of Stimulus Laterality and Attention , 2002, NeuroImage.
[31] E. Broussolle,et al. Contributions of PET and SPECT to the understanding of the pathophysiology of Parkinson’s disease , 2001, Neurophysiologie Clinique/Clinical Neurophysiology.
[32] A. Schapira. Recent developments in biomarkers in Parkinson disease , 2013, Current opinion in neurology.
[33] Stephen M Smith,et al. Correspondence of the brain's functional architecture during activation and rest , 2009, Proceedings of the National Academy of Sciences.
[34] Q. Gong,et al. Resting state basal ganglia network in idiopathic generalized epilepsy , 2012, Human brain mapping.
[35] G. Glover,et al. Causal interactions between fronto-parietal central executive and default-mode networks in humans , 2013, Proceedings of the National Academy of Sciences.
[36] Q. Gong,et al. Altered functional connectivity in default mode network in absence epilepsy: A resting‐state fMRI study , 2011, Human brain mapping.
[37] M. Ebadi,et al. Biomarkers in Parkinson’s disease (recent update) , 2013, Neurochemistry International.
[38] Cheng Luo,et al. Altered intrinsic functional connectivity of the salience network in childhood absence epilepsy , 2014, Journal of the Neurological Sciences.
[39] V. Calhoun,et al. Functional network connectivity during rest and task conditions: A comparative study , 2013, Human brain mapping.
[40] C. Junqué,et al. Alterations of the salience network in obesity: A resting‐state fMRI study , 2013, Human brain mapping.
[41] B. Rosen,et al. Functional connectivity of the frontoparietal network predicts cognitive modulation of pain , 2013, PAIN®.
[42] David J. Brooks,et al. Imaging biomarkers in Parkinson's disease , 2011, Progress in Neurobiology.
[43] Terrence J. Sejnowski,et al. An Information-Maximization Approach to Blind Separation and Blind Deconvolution , 1995, Neural Computation.
[44] Vince D. Calhoun,et al. A method for functional network connectivity among spatially independent resting-state components in schizophrenia , 2008, NeuroImage.
[45] G. Deuschl,et al. Pains in Parkinson disease—many syndromes under one umbrella , 2012, Nature Reviews Neurology.
[46] M. Mikl,et al. Functional Imaging of the Cerebellum and Basal Ganglia During Predictive Motor Timing in Early Parkinson's Disease , 2014, Journal of neuroimaging : official journal of the American Society of Neuroimaging.
[47] John C. Rothwell,et al. Pathophysiology of somatosensory abnormalities in Parkinson disease , 2013, Nature Reviews Neurology.
[48] M. Graeber. Biomarkers for Parkinson's disease , 2009, Experimental Neurology.
[49] Y. Jeong,et al. Neural Substrates of Motor and Non-Motor Symptoms in Parkinson’s Disease: A Resting fMRI Study , 2015, PloS one.
[50] J. Hughes,et al. Accuracy of clinical diagnosis of idiopathic Parkinson's disease: a clinico-pathological study of 100 cases. , 1992, Journal of neurology, neurosurgery, and psychiatry.
[51] Cheng Luo,et al. Disrupted Functional Brain Connectivity in Partial Epilepsy: A Resting-State fMRI Study , 2012, PloS one.