{"status":"ok","message-type":"work","message-version":"1.0.0","message":{"indexed":{"date-parts":[[2024,8,17]],"date-time":"2024-08-17T21:52:27Z","timestamp":1723931547543},"reference-count":51,"publisher":"Elsevier BV","license":[{"start":{"date-parts":[[2019,9,1]],"date-time":"2019-09-01T00:00:00Z","timestamp":1567296000000},"content-version":"tdm","delay-in-days":0,"URL":"https:\/\/www.elsevier.com\/tdm\/userlicense\/1.0\/"}],"funder":[{"name":"Australian National Health & Medical Research Council","award":["1042609"]},{"DOI":"10.13039\/100013102","name":"Australian Research Council Centre of Excellence for Integrative Brain Function","doi-asserted-by":"publisher","award":["CE140100007"],"id":[{"id":"10.13039\/100013102","id-type":"DOI","asserted-by":"publisher"}]}],"content-domain":{"domain":["elsevier.com","sciencedirect.com"],"crossmark-restriction":true},"short-container-title":["NeuroImage"],"published-print":{"date-parts":[[2019,9]]},"DOI":"10.1016\/j.neuroimage.2019.05.023","type":"journal-article","created":{"date-parts":[[2019,5,17]],"date-time":"2019-05-17T07:43:39Z","timestamp":1558079019000},"page":"44-52","update-policy":"http:\/\/dx.doi.org\/10.1016\/elsevier_cm_policy","source":"Crossref","is-referenced-by-count":8,"special_numbering":"C","title":["Microelectrode array electrical impedance tomography for fast functional imaging in the thalamus"],"prefix":"10.1016","volume":"198","author":[{"given":"Danyi","family":"Zhu","sequence":"first","affiliation":[]},{"given":"Alistair","family":"McEwan","sequence":"additional","affiliation":[]},{"given":"Calvin","family":"Eiber","sequence":"additional","affiliation":[]}],"member":"78","reference":[{"key":"10.1016\/j.neuroimage.2019.05.023_bib1","series-title":"EIDORS v3.8","author":"Adler","year":"2015"},{"issue":"6","key":"10.1016\/j.neuroimage.2019.05.023_bib2","doi-asserted-by":"crossref","first-page":"1095","DOI":"10.1088\/0967-3334\/35\/6\/1095","article-title":"A\u00a0method for reconstructing tomographic images of evoked neural activity with electrical impedance tomography using intracranial planar arrays","volume":"35","author":"Aristovich","year":"2014","journal-title":"Physiol. Meas."},{"key":"10.1016\/j.neuroimage.2019.05.023_bib3","doi-asserted-by":"crossref","first-page":"204","DOI":"10.1016\/j.neuroimage.2015.08.071","article-title":"Imaging fast electrical activity in the brain with electrical impedance tomography","volume":"124","author":"Aristovich","year":"2016","journal-title":"Neuroimage"},{"key":"10.1016\/j.neuroimage.2019.05.023_bib4","doi-asserted-by":"crossref","first-page":"63","DOI":"10.1146\/annurev.bioeng.8.061505.095716","article-title":"Bioimpedance tomography (electrical impedance tomography)","volume":"8","author":"Bayford","year":"2006","journal-title":"Annu. Rev. Biomed. Eng."},{"issue":"2","key":"10.1016\/j.neuroimage.2019.05.023_bib5","doi-asserted-by":"crossref","first-page":"203","DOI":"10.3171\/jns.1996.84.2.0203","article-title":"Chronic electrical stimulation of the ventralis intermedius nucleus of the thalamus as a treatment of movement disorders","volume":"84","author":"Benabid","year":"1996","journal-title":"J.\u00a0Neurosurg."},{"issue":"1","key":"10.1016\/j.neuroimage.2019.05.023_bib6","doi-asserted-by":"crossref","first-page":"14","DOI":"10.1016\/j.nurt.2007.10.067","article-title":"Mechanisms of deep brain stimulation in movement disorders as revealed by changes in stimulus frequency","volume":"5","author":"Birdno","year":"2008","journal-title":"Neurotherapeutics"},{"issue":"5","key":"10.1016\/j.neuroimage.2019.05.023_bib7","first-page":"440","article-title":"Electrical stimulation with Pt electrodes: II-estimation of maximum surface redox (theoretical non-gassing) limits","volume":"24","author":"Brummer","year":"1977","journal-title":"IEEE (Inst. Electr. Electron. Eng.) Trans. Biomed. Eng."},{"issue":"1","key":"10.1016\/j.neuroimage.2019.05.023_bib8","doi-asserted-by":"crossref","first-page":"7","DOI":"10.1016\/j.brs.2007.08.004","article-title":"Current steering to control the volume of tissue activated during deep brain stimulation","volume":"1","author":"Butson","year":"2008","journal-title":"Brain Stimul.: Basic Transl. Clin. Res. Neuromodul."},{"key":"10.1016\/j.neuroimage.2019.05.023_bib9","doi-asserted-by":"crossref","first-page":"407","DOI":"10.1038\/nrn3241","article-title":"The origin of extracellular fields and currents - EEG, ECoG, LFP and spikes","volume":"13","author":"Buzs\u00e1ki","year":"2012","journal-title":"Nat. Rev. Neurosci."},{"issue":"2","key":"10.1016\/j.neuroimage.2019.05.023_bib10","doi-asserted-by":"crossref","first-page":"66","DOI":"10.1002\/ima.1850020203","article-title":"NOSER: an algorithm for solving the inverse conductivity problem","volume":"2","author":"Cheney","year":"1990","journal-title":"Int. J. Imaging Syst. Technol."},{"key":"10.1016\/j.neuroimage.2019.05.023_bib11","doi-asserted-by":"crossref","first-page":"6864","DOI":"10.1523\/JNEUROSCI.5208-12.2013","article-title":"Cortical-like receptive fields in the lateral 679 geniculate nucleus of marmoset monkeys","volume":"33","author":"Cheong","year":"2013","journal-title":"J.\u00a0Neurosci."},{"key":"10.1016\/j.neuroimage.2019.05.023_bib12","doi-asserted-by":"crossref","first-page":"275","DOI":"10.1146\/annurev.bioeng.10.061807.160518","article-title":"Neural stimulation and recording electrodes","volume":"10","author":"Cogan","year":"2008","journal-title":"Annu. Rev. Biomed. Eng."},{"issue":"2","key":"10.1016\/j.neuroimage.2019.05.023_bib13","doi-asserted-by":"crossref","first-page":"353","DOI":"10.1002\/jbm.b.31223","article-title":"Sputtered iridium oxide films for neural stimulation electrodes","volume":"89","author":"Cogan","year":"2009","journal-title":"J.\u00a0Biomed. Mater. Res. B Appl. Biomater."},{"issue":"13","key":"10.1016\/j.neuroimage.2019.05.023_bib14","doi-asserted-by":"crossref","first-page":"1163","DOI":"10.1212\/WNL.0000000000000823","article-title":"Directional steering: a novel approach to deep brain stimulation","volume":"83","author":"Contarino","year":"2014","journal-title":"Neurology"},{"key":"10.1016\/j.neuroimage.2019.05.023_bib15","doi-asserted-by":"crossref","first-page":"22","DOI":"10.3389\/fncom.2016.00022","article-title":"Kilohertz frequency deep brain stimulation is ineffective at regularizing the firing of model thalamic neurons","volume":"10","author":"Couto","year":"2016","journal-title":"Front. Comput. Neurosci."},{"key":"10.1016\/j.neuroimage.2019.05.023_bib16","article-title":"fEITER\u2013a new EIT instrument for functional brain imaging","volume":"vol. 224","author":"Davidson","year":"2010"},{"issue":"1","key":"10.1016\/j.neuroimage.2019.05.023_bib17","doi-asserted-by":"crossref","DOI":"10.1088\/1741-2560\/10\/1\/011002","article-title":"Attaining higher resolution visual prosthetics: a review of the factors and limitations","volume":"10","author":"Eiber","year":"2013","journal-title":"J.\u00a0Neural Eng."},{"issue":"48","key":"10.1016\/j.neuroimage.2019.05.023_bib18","doi-asserted-by":"crossref","first-page":"10384","DOI":"10.1523\/JNEUROSCI.1679-18.2018","article-title":"Receptive field properties of koniocellular on\/off neurons in the lateral geniculate nucleus of marmoset monkeys","volume":"38","author":"Eiber","year":"2018","journal-title":"J.\u00a0Neurosci."},{"issue":"6","key":"10.1016\/j.neuroimage.2019.05.023_bib19","doi-asserted-by":"crossref","first-page":"1158","DOI":"10.1088\/1361-6579\/aa69d7","article-title":"Optimisation of current injection protocol based on a region of interest","volume":"38","author":"Faulkner","year":"2017","journal-title":"Physiol. Meas."},{"key":"10.1016\/j.neuroimage.2019.05.023_bib20","doi-asserted-by":"crossref","first-page":"1","DOI":"10.1016\/j.neuroimage.2018.05.022","article-title":"Feasibility of imaging evoked activity throughout the rat brain using electrical impedance tomography","volume":"178","author":"Faulkner","year":"2018","journal-title":"Neuroimage"},{"issue":"3","key":"10.1016\/j.neuroimage.2019.05.023_bib21","doi-asserted-by":"crossref","DOI":"10.1088\/1361-6579\/aab01f","article-title":"Characterising the frequency response of impedance changes during evoked physiological activity in the rat brain","volume":"39","author":"Faulkner","year":"2018","journal-title":"Physiol. Meas."},{"issue":"16","key":"10.1016\/j.neuroimage.2019.05.023_bib22","doi-asserted-by":"crossref","first-page":"4863","DOI":"10.1088\/0031-9155\/54\/16\/002","article-title":"Electrical conductivity of tissue at frequencies below 1 MHz","volume":"54","author":"Gabriel","year":"2009","journal-title":"Phys. Med. Biol."},{"issue":"8","key":"10.1016\/j.neuroimage.2019.05.023_bib23","article-title":"PEDOT-CNT composite microelectrodes for recording and electrostimulation applications: fabrication, morphology, and electrical properties","volume":"5","author":"Gerwig","year":"2012","journal-title":"Front. Neuroeng."},{"issue":"3","key":"10.1016\/j.neuroimage.2019.05.023_bib24","doi-asserted-by":"crossref","first-page":"254","DOI":"10.1017\/S1092852915000577","article-title":"Deep brain stimulation for bipolar disorder\u2013review and outlook","volume":"22","author":"Gippert","year":"2017","journal-title":"CNS Spectr."},{"issue":"1","key":"10.1016\/j.neuroimage.2019.05.023_bib25","doi-asserted-by":"crossref","first-page":"25","DOI":"10.1186\/1743-0003-5-25","article-title":"Review on solving the inverse problem in EEG source analysis","volume":"5","author":"Grech","year":"2008","journal-title":"J.\u00a0NeuroEng. Rehabil."},{"issue":"2","key":"10.1016\/j.neuroimage.2019.05.023_bib26","doi-asserted-by":"crossref","first-page":"189","DOI":"10.1007\/s11075-007-9136-9","article-title":"Regularization tools version 4.0 for Matlab 7.3","volume":"46","author":"Hansen","year":"2007","journal-title":"Numer. Algorithm."},{"issue":"4","key":"10.1016\/j.neuroimage.2019.05.023_bib27","doi-asserted-by":"crossref","first-page":"508","DOI":"10.1016\/j.neuron.2009.07.016","article-title":"Direct activation of sparse, distributed populations of cortical neurons by electrical microstimulation","volume":"63","author":"Histed","year":"2009","journal-title":"Neuron"},{"issue":"6","key":"10.1016\/j.neuroimage.2019.05.023_bib28","doi-asserted-by":"crossref","first-page":"879","DOI":"10.1088\/0967-3334\/37\/6\/879","article-title":"Are patient specific meshes required for EIT head imaging?","volume":"37","author":"Jehl","year":"2016","journal-title":"Physiol. Meas."},{"issue":"7","key":"10.1016\/j.neuroimage.2019.05.023_bib29","first-page":"1938","article-title":"Focused current density imaging using internal electrode in magnetic resonance electrical impedance tomography (MREIT)","volume":"61","author":"Jeong","year":"2014","journal-title":"IEEE (Inst. Electr. Electron. Eng.) Trans. Biomed. Eng."},{"issue":"5","key":"10.1016\/j.neuroimage.2019.05.023_bib30","doi-asserted-by":"crossref","first-page":"847","DOI":"10.1016\/j.neuron.2011.09.029","article-title":"How local is the local field potential?","volume":"72","author":"Kajikawa","year":"2011","journal-title":"Neuron"},{"issue":"5","key":"10.1016\/j.neuroimage.2019.05.023_bib31","doi-asserted-by":"crossref","first-page":"425","DOI":"10.1007\/s11517-012-0901-0","article-title":"A\u00a0cable theory based biophysical model of resistance change in crab peripheral nerve and human cerebral cortex during neuronal depolarisation: implications for electrical impedance tomography of fast neural activity in the brain","volume":"50","author":"Liston","year":"2012","journal-title":"Med. Biol. Eng. Comput."},{"issue":"2","key":"10.1016\/j.neuroimage.2019.05.023_bib32","doi-asserted-by":"crossref","first-page":"268","DOI":"10.1007\/BF01955874","article-title":"Relationship between tetrahedron shape measures","volume":"34","author":"Liu","year":"1994","journal-title":"BIT Numer. Math."},{"issue":"3","key":"10.1016\/j.neuroimage.2019.05.023_bib33","doi-asserted-by":"crossref","first-page":"445","DOI":"10.1007\/s10827-009-0206-y","article-title":"Disentanglement of local field potential sources by independent component analysis","volume":"29","author":"Makarov","year":"2010","journal-title":"J.\u00a0Comput. Neurosci."},{"key":"10.1016\/j.neuroimage.2019.05.023_bib34","doi-asserted-by":"crossref","first-page":"66","DOI":"10.3389\/fnsys.2014.00066","article-title":"Can pathway-specific LFPs be obtained in cytoarchitectonically complex structures?","volume":"8","author":"Makarova","year":"2014","journal-title":"Front. Syst. Neurosci."},{"issue":"6","key":"10.1016\/j.neuroimage.2019.05.023_bib35","doi-asserted-by":"crossref","DOI":"10.1088\/0967-3334\/35\/6\/1051","article-title":"Stroke type differentiation using spectrally constrained multifrequency eit: evaluation of feasibility in a realistic head model","volume":"35","author":"Malone","year":"2014","journal-title":"Physiol. Meas."},{"issue":"5","key":"10.1016\/j.neuroimage.2019.05.023_bib36","doi-asserted-by":"crossref","first-page":"651","DOI":"10.1016\/j.neuron.2005.02.014","article-title":"Deep brain stimulation for treatment-resistant depression","volume":"45","author":"Mayberg","year":"2005","journal-title":"Neuron"},{"issue":"10","key":"10.1016\/j.neuroimage.2019.05.023_bib37","doi-asserted-by":"crossref","first-page":"996","DOI":"10.1109\/10.102812","article-title":"Charge density and charge per phase as cofactors in neural injury induced by electrical stimulation","volume":"37","author":"McCreery","year":"1990","journal-title":"IEEE Trans. Biomed. Eng."},{"issue":"2","key":"10.1016\/j.neuroimage.2019.05.023_bib38","doi-asserted-by":"crossref","first-page":"163","DOI":"10.1001\/2013.jamaneurol.45","article-title":"History, applications, and mechanisms of deep brain stimulation","volume":"70","author":"Miocinovic","year":"2013","journal-title":"JAMA Neurology"},{"issue":"5","key":"10.1016\/j.neuroimage.2019.05.023_bib39","doi-asserted-by":"crossref","first-page":"593","DOI":"10.1007\/s11517-011-0761-z","article-title":"A\u00a0novel method for recording neuronal depolarization with recording at 125\u2013825 Hz: implications for imaging fast neural activity in the brain with electrical impedance tomography","volume":"49","author":"Oh","year":"2011","journal-title":"Med. Biol. Eng. Comput."},{"key":"10.1016\/j.neuroimage.2019.05.023_bib40","series-title":"The Marmoset Brain in Stereotaxic Coordinates","author":"Paxinos","year":"2012"},{"issue":"6","key":"10.1016\/j.neuroimage.2019.05.023_bib41","doi-asserted-by":"crossref","first-page":"1421","DOI":"10.1152\/jn.00077.2014","article-title":"Temporal response properties of koniocellular (blue-on and blue-off) cells in marmoset lateral geniculate nucleus","volume":"112","author":"Pietersen","year":"2014","journal-title":"J.\u00a0Neurophysiol."},{"issue":"3","key":"10.1016\/j.neuroimage.2019.05.023_bib42","doi-asserted-by":"crossref","first-page":"341","DOI":"10.1097\/00004032-200209000-00004","article-title":"Neuroelectric mechanisms applied to low frequency electric and magnetic field exposure guidelines part I: sinusoidal waveforms","volume":"83","author":"Reilly","year":"2002","journal-title":"Health Phys."},{"issue":"11","key":"10.1016\/j.neuroimage.2019.05.023_bib43","first-page":"1118","article-title":"Electrical stimulation with Pt electrodes. VIII. Electrochemically safe charge injection limits with 0.2 ms pulses (neuronal application)","volume":"37","author":"Rose","year":"1990","journal-title":"IEEE (Inst. Electr. Electron. Eng.) Trans. Biomed. Eng."},{"issue":"3","key":"10.1016\/j.neuroimage.2019.05.023_bib44","doi-asserted-by":"crossref","first-page":"227","DOI":"10.1088\/1741-2560\/4\/3\/008","article-title":"Non-rectangular waveforms for neural stimulation with practical electrodes","volume":"4","author":"Sahin","year":"2007","journal-title":"J.\u00a0Neural Eng."},{"issue":"4","key":"10.1016\/j.neuroimage.2019.05.023_bib45","doi-asserted-by":"crossref","first-page":"293","DOI":"10.1016\/j.jchemneu.2003.09.003","article-title":"The nucleus accumbens: a target for deep brain stimulation in obsessive\u2013compulsive-and anxiety-disorders","volume":"26","author":"Sturm","year":"2003","journal-title":"J.\u00a0Chem. Neuroanat."},{"issue":"8","key":"10.1016\/j.neuroimage.2019.05.023_bib46","first-page":"1","article-title":"Receptive field asymmetries produce color-dependent direction selectivity in primate lateral geniculate nucleus","volume":"10","author":"Tailby","year":"2010","journal-title":"J.\u00a0Vis."},{"issue":"2","key":"10.1016\/j.neuroimage.2019.05.023_bib47","doi-asserted-by":"crossref","first-page":"s109","DOI":"10.1007\/s100720200093","article-title":"Anatomo-clinical correlation of intraoperative stimulation-induced side-effects during HF-DBS of the subthalamic nucleus","volume":"23","author":"Tamma","year":"2002","journal-title":"Neurol. Sci."},{"issue":"2","key":"10.1016\/j.neuroimage.2019.05.023_bib48","doi-asserted-by":"crossref","DOI":"10.1016\/j.biopsych.2012.07.032","article-title":"High-frequency stimulation of the substantia nigra induces serotonin-dependent depression-like behavior in animal models","volume":"73","author":"Tan","year":"2013","journal-title":"Biol. Psychiatry"},{"issue":"4","key":"10.1016\/j.neuroimage.2019.05.023_bib49","doi-asserted-by":"crossref","first-page":"2063","DOI":"10.1152\/jn.1998.80.4.2063","article-title":"Segregation of receptive field properties in the lateral geniculate nucleus of a new-world monkey, the marmoset callithrix jacchus","volume":"80","author":"White","year":"1998","journal-title":"J.\u00a0Neurophysiol."},{"key":"10.1016\/j.neuroimage.2019.05.023_bib50","doi-asserted-by":"crossref","first-page":"311","DOI":"10.1016\/j.neuroimage.2018.02.056","article-title":"Feasibility of imaging epileptic seizure onset with EIT and depth electrodes","volume":"173","author":"Witkowska-Wrobel","year":"2018","journal-title":"Neuroimage"},{"issue":"7","key":"10.1016\/j.neuroimage.2019.05.023_bib51","doi-asserted-by":"crossref","DOI":"10.1371\/journal.pcbi.1003137","article-title":"Frequency dependence of signal power and spatial reach of the local field potential","volume":"9","author":"\u0141eski","year":"2013","journal-title":"PLoS Comput. Biol."}],"container-title":["NeuroImage"],"original-title":[],"language":"en","link":[{"URL":"https:\/\/api.elsevier.com\/content\/article\/PII:S1053811919304070?httpAccept=text\/xml","content-type":"text\/xml","content-version":"vor","intended-application":"text-mining"},{"URL":"https:\/\/api.elsevier.com\/content\/article\/PII:S1053811919304070?httpAccept=text\/plain","content-type":"text\/plain","content-version":"vor","intended-application":"text-mining"}],"deposited":{"date-parts":[[2019,9,22]],"date-time":"2019-09-22T05:45:09Z","timestamp":1569131109000},"score":1,"resource":{"primary":{"URL":"https:\/\/linkinghub.elsevier.com\/retrieve\/pii\/S1053811919304070"}},"subtitle":[],"short-title":[],"issued":{"date-parts":[[2019,9]]},"references-count":51,"alternative-id":["S1053811919304070"],"URL":"https:\/\/doi.org\/10.1016\/j.neuroimage.2019.05.023","relation":{},"ISSN":["1053-8119"],"issn-type":[{"value":"1053-8119","type":"print"}],"subject":[],"published":{"date-parts":[[2019,9]]},"assertion":[{"value":"Elsevier","name":"publisher","label":"This article is maintained by"},{"value":"Microelectrode array electrical impedance tomography for fast functional imaging in the thalamus","name":"articletitle","label":"Article Title"},{"value":"NeuroImage","name":"journaltitle","label":"Journal Title"},{"value":"https:\/\/doi.org\/10.1016\/j.neuroimage.2019.05.023","name":"articlelink","label":"CrossRef DOI link to publisher maintained version"},{"value":"article","name":"content_type","label":"Content Type"},{"value":"\u00a9 2019 Elsevier Inc. All rights reserved.","name":"copyright","label":"Copyright"}]}}