Ghanouni P, Pauly KB, Elias WJ, Henderson J, Sheehan J, Monteith S, et al. Transcranial MRI-guided focused ultrasound: a review of the technologic and neurologic applications. 2015;205(1):150–9.
Elias WJ, Lipsman N, Ondo WG, Ghanouni P, Kim YG, Lee W, et al. A randomized trial of focused ultrasound thalamotomy for essential tremor. N Engl J Med. 2016;375(8):730–9.
Okun MS, Vitek JL. Lesion therapy for Parkinson’s disease and other movement disorders: update and controversies. J Mov Disord. 2004;19(4):375–89.
Margulies DS, Ghosh SS, Goulas A, Falkiewicz M, Huntenburg JM, Langs G, et al. Situating the default-mode network along a principal gradient of macroscale cortical organization. Proc Natl Acad Sci USA. 2016;113(44):12574–9.
Article CAS PubMed PubMed Central Google Scholar
Badre D, D’Esposito M. Is the rostro-caudal axis of the frontal lobe hierarchical? Nat Rev Neurosci. 2009;10(9):659–69.
Article CAS PubMed PubMed Central Google Scholar
Mishkin M, Ungerleider LG. Contribution of striate inputs to the visuospatial functions of parieto-preoccipital cortex in monkeys. Behav Brain Res. 1982;6(1):57–77.
Article CAS PubMed Google Scholar
Huntenburg JM, Bazin PL, Margulies DS. Large-scale gradients in human cortical organization. Trends Cogn Sci. 2018;22(1):21–31.
Hong SJ, Vos de Wael R, Bethlehem RAI, Lariviere S, Paquola C, Valk SL, et al. Atypical functional connectome hierarchy in autism. Nat Commun. 2019;10(1):1022.
Bayrak Ş, Khalil AA, Villringer K, Fiebach JB, Villringer A, Margulies DS, et al. The impact of ischemic stroke on connectivity gradients. NeuroImage Clin. 2019;24:101947.
Article PubMed PubMed Central Google Scholar
Meng Y, Yang S, Chen H, Li J, Xu Q, Zhang Q, et al. Systematically disrupted functional gradient of the cortical connectome in generalized epilepsy: initial discovery and independent sample replication. Neuroimage. 2021;230:117831.
Lambert C, Simon H, Colman J, Barrick TR. Defining thalamic nuclei and topographic connectivity gradients in vivo. Neuroimage. 2017;158:466–79.
Guell X, Schmahmann JD, Gabrieli J, Ghosh SS. Functional gradients of the cerebellum. eLife. 2018;7.
Llinás R, Ribary U, Jeanmonod D, Cancro R, Kronberg E, Schulman J, et al. Thalamocortical dysrhythmia I.: functional and imaging aspects. Thalamus & Related Systems. 2001;1(3):237–44.
Oldfield RC. The assessment and analysis of handedness: the Edinburgh inventory. Neuropsychologia. 1971;9(1):97–113.
Article CAS PubMed Google Scholar
Lin J, Kang X, Xiong Y, Zhang D, Zong R, Yu X, et al. Convergent structural network and gene signatures for MRgFUS thalamotomy in patients with Parkinson’s disease. Neuroimage. 2021;243:118550.
Wang J, Wang X, Xia M, Liao X, Evans A, He Y. GRETNA: a graph theoretical network analysis toolbox for imaging connectomics. Front Hum Neurosci. 2015;9:386.
CAS PubMed PubMed Central Google Scholar
Schaefer A, Kong R, Gordon EM, Laumann TO, Zuo XN, Holmes AJ, et al. Local-global parcellation of the human cerebral cortex from intrinsic functional connectivity MRI. Cerebral cortex (New York, NY : 1991) 2018;28(9):3095–114.
Buckner RL, Krienen FM, Castellanos A, Diaz JC, Yeo BT. The organization of the human cerebellum estimated by intrinsic functional connectivity. J Neurophysiol. 2011;106(5):2322–45.
Article PubMed PubMed Central Google Scholar
Choi EY, Yeo BT, Buckner RL. The organization of the human striatum estimated by intrinsic functional connectivity. J Neurophysiol. 2012;108(8):2242–63.
Article PubMed PubMed Central Google Scholar
Horn A, Kühn AA. Lead-DBS: a toolbox for deep brain stimulation electrode localizations and visualizations. Neuroimage. 2015;107:127–35.
Yeo BT, Krienen FM, Sepulcre J, Sabuncu MR, Lashkari D, Hollinshead M, et al. The organization of the human cerebral cortex estimated by intrinsic functional connectivity. J Neurophysiol. 2011;106(3):1125–65.
Vos de Wael R, Benkarim O, Paquola C, Lariviere S, Royer J, Tavakol S, et al. BrainSpace: a toolbox for the analysis of macroscale gradients in neuroimaging and connectomics datasets. Commun Biol. 2020;3(1):103.
Hong SJ, Xu T, Nikolaidis A, Smallwood J, Margulies DS, Bernhardt B, et al. Toward a connectivity gradient-based framework for reproducible biomarker discovery. Neuroimage. 2020;223: 117322.
Article CAS PubMed Google Scholar
Langs G, Golland P, Ghosh SS. Predicting activation across individuals with resting-state functional connectivity based multi-atlas label fusion. Cham: Springer International Publishing; 2015;313–20.
Sepulcre J, Sabuncu MR, Yeo TB, Liu H, Johnson KA. Stepwise connectivity of the modal cortex reveals the multimodal organization of the human brain. J Neurosci. 2012;32(31):10649–61.
Article CAS PubMed Google Scholar
Sepulcre J. Functional streams and cortical integration in the human brain. The Neuroscientist : a review journal bringing neurobiology, neurology and psychiatry. 2014;20(5):499–508.
Markello RD, Arnatkeviciute A, Poline JB, Fulcher BD, Fornito A, Misic B. Standardizing workflows in imaging transcriptomics with the abagen toolbox. Elife. 2021;10.
Liao Y, Wang J, Jaehnig EJ, Shi Z, Zhang B. WebGestalt 2019: gene set analysis toolkit with revamped UIs and APIs. Nucleic Acids Res. 2019;47(W1):W199–205.
Article CAS PubMed PubMed Central Google Scholar
van Wijk BC, Stam CJ, Daffertshofer A. Comparing brain networks of different size and connectivity density using graph theory. PLoS ONE. 2010;5(10):e13701.
Article PubMed PubMed Central Google Scholar
Murphy K, Fox MD. Towards a consensus regarding global signal regression for resting state functional connectivity MRI. Neuroimage. 2017;154:169–73.
van den Heuvel MP, de Lange SC, Zalesky A, Seguin C, Yeo BTT, Schmidt R. Proportional thresholding in resting-state fMRI functional connectivity networks and consequences for patient-control connectome studies: issues and recommendations. Neuroimage. 2017;152:437–49.
Zeng Q, Guan X, Guo T,Law Yan Lun JC, Zhou C, Luo X, et al. The ventral Intermediate nucleus differently modulates subtype-related networks in Parkinson’s disease. 2019;13:202.
Schweighofer N, Doya K, Kuroda SJBRR. Cerebellar aminergic neuromodulation: towards a functional understanding. 2004;44(2–3):103–16.
Ruppert MC, Greuel A, Freigang J, Tahmasian M, Maier F, Hammes J, et al. The default mode network and cognition in Parkinson’s disease: a multimodal resting-state network approach. Hum Brain Mapp. 2021;42(8):2623–41.
Article PubMed PubMed Central Google Scholar
Bejr-Kasem H, Pagonabarraga J, Martínez-Horta S, Sampedro F, Marín-Lahoz J, Horta-Barba A, et al. Disruption of the default mode network and its intrinsic functional connectivity underlies minor hallucinations in Parkinson’s disease. J Mov Disord. 2019;34(1):78–86.
Buckner RL, Andrews-Hanna JR, Schacter DL. The brain’s default network: anatomy, function, and relevance to disease. Ann N Y Acad Sci. 2008;1124:1–38.
Rodriguez-Sabate C, Morales I, Sanchez A, Rodriguez M. The functional interaction of the brain default network with motor networks is modified by aging. Behav Brain Res. 2019;372:112048.
Yang J, Lei D, Peng J, Suo X, Pinaya WHL, Li W, et al. Disrupted brain gray matter networks in drug-naïve participants with essential tremor. Neuroradiology. 2021;63(9):1501–10.
Benito-León J, Louis ED, Romero JP, Hernández-Tamames JA, Manzanedo E, Álvarez-Linera J, et al. Altered functional connectivity in essential tremor: a resting-state fMRI study. Medicine. 2015;94(49):e1936.
Article PubMed PubMed Central Google Scholar
Fang W, Chen H, Wang H, Zhang H, Liu M, Puneet M, et al. Multiple resting-state networks are associated with tremors and cognitive features in essential tremor. J Mov Disord. 2015;30(14):1926–36.
Peng J, Yang J, Li J, Lei D, Li N, Suo X, et al. Disrupted brain functional network topology in essential tremor patients with poor sleep quality. Front Neurosci. 2022;16:814745.
Article PubMed PubMed Central Google Scholar
Li JY, Suo XL, Li NN, Lei D, Peng JX, Yang J, et al. Disrupted brain network topology in drug-naïve essential tremor patients with and without depression : a resting state functional magnetic resonance imaging study. Clin Neuroradiol. 2021;31(4):981–92.
Tian Q, Wintermark M, Jeffrey Elias W, Ghanouni P, Halpern CH, Henderson JM, et al. Diffusion MRI tractography for improved transcranial MRI-guided focused ultrasound thalamotomy targeting for essential tremor. NeuroImage Clin. 2018;19:572–80.
Xiong Y, Han D, He J, Zong R, Bian X, Duan C, et al. Correlation of visual area with tremor improvement after MRgFUS thalamotomy in Parkinson’s disease. J Neurosurg. 2022;136(3):681–8.
Jang C, Park H-J, Chang WS, Pae C, Chang JW. Immediate and longitudinal alterations of functional networks after thalamotomy in essential tremor. Front Neurol. 2016;7:184.
Article PubMed PubMed Central Google Scholar
Stanziano M, Golfrè Andreasi N, Messina
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