Efficacy of Transcranial Magnetic Stimulation Targets for Depression Is Related to Intrinsic Functional Connectivity with the Subgenual Cingulate

Biological Psychiatry - Tập 72 - Trang 595-603 - 2012
Michael D. Fox1,2,3, Randy L. Buckner3,4,5, Matthew P. White6, Michael D. Greicius7, Alvaro Pascual-Leone2,8
1Partners Neurology, Massachusetts General Hospital, Brigham and Women's Hospital, Harvard Medical School, Boston, Massachusetts
2Berenson-Allen Center for Noninvasive Brain Stimulation, Beth Israel Deaconess Medical Center and Harvard Medical School, Boston, Massachusetts
3Athinoula A. Martinos Center for Biomedical Imaging, Harvard Medical School, Boston, Massachusetts
4Department of Psychiatry, Massachusetts General Hospital, Boston, Massachusetts
5Department of Psychology, Center for Brain Science, Harvard University, Cambridge, Massachusetts
6Department of Psychiatry and Behavioral Sciences, Stanford University School of Medicine, Stanford, California
7Functional Imaging in Neuropsychiatric Disorders Lab, Department of Neurology and Neurological Sciences, Stanford University School of Medicine, Stanford, California
8Institut Guttmann, Hospital de Neurorehabilitació, Institut Universitari adscrit a la Universitat Autònoma de Barcelona, Barcelona, Spain

Tài liệu tham khảo

Wagner, 2007, Noninvasive human brain stimulation, Annu Rev Biomed Eng, 9, 527, 10.1146/annurev.bioeng.9.061206.133100 Kobayashi, 2003, Transcranial magnetic stimulation in neurology, Lancet Neurol, 2, 145, 10.1016/S1474-4422(03)00321-1 Hallett, 2007, Transcranial magnetic stimulation: A primer, Neuron, 55, 187, 10.1016/j.neuron.2007.06.026 Valero-Cabre, 2005, Impact of repetitive transcranial magnetic stimulation of the parietal cortex on metabolic brain activity: A 14C-2DG tracing study in the cat, Exp Brain Res, 163, 1, 10.1007/s00221-004-2140-6 Valero-Cabre, 2007, Opposite impact on 14C-2-deoxyglucose brain metabolism following patterns of high and low frequency repetitive transcranial magnetic stimulation in the posterior parietal cortex, Exp Brain Res, 176, 603, 10.1007/s00221-006-0639-8 Siebner, 2009, Consensus paper: Combining transcranial stimulation with neuroimaging, Brain Stimul, 2, 58, 10.1016/j.brs.2008.11.002 Ruff, 2009, Combining TMS and fMRI: From 'virtual lesions' to functional-network accounts of cognition, Cortex, 45, 1043, 10.1016/j.cortex.2008.10.012 Ferreri, 2011, Human brain connectivity during single and paired pulse transcranial magnetic stimulation, Neuroimage, 54, 90, 10.1016/j.neuroimage.2010.07.056 Lisanby, 2000, Animal models of the mechanisms of action of repetitive transcranial magnetic stimulation (RTMS): Comparisons with electroconvulsive shock (ECS), Depress Anxiety, 12, 178, 10.1002/1520-6394(2000)12:3<178::AID-DA10>3.0.CO;2-N Fox, 2012, Measuring and manipulating brain connectivity with resting state functional connectivity magnetic resonance imaging (fcMRI) and transcranial magnetic stimulation (TMS) [published online ahead of print March 19], Neuroimage, 10.1016/j.neuroimage.2012.03.035 O'Reardon, 2007, Efficacy and safety of transcranial magnetic stimulation in the acute treatment of major depression: A multisite randomized controlled trial, Biol Psychiatry, 62, 1208, 10.1016/j.biopsych.2007.01.018 Padberg, 2009, Repetitive transcranial magnetic stimulation of the prefrontal cortex in depression, Exp Neurol, 219, 2, 10.1016/j.expneurol.2009.04.020 George, 1995, Daily repetitive transcranial magnetic stimulation (rTMS) improves mood in depression, Neuroreport, 6, 1853, 10.1097/00001756-199510020-00008 Pascual-Leone, 1996, Rapid-rate transcranial magnetic stimulation of left dorsolateral prefrontal cortex in drug-resistant depression, Lancet, 348, 233, 10.1016/S0140-6736(96)01219-6 Mayberg, 2007, Defining the neural circuitry of depression: Toward a new nosology with therapeutic implications, Biol Psychiatry, 61, 729, 10.1016/j.biopsych.2007.01.013 Drevets, 2008, The subgenual anterior cingulate cortex in mood disorders, CNS Spectr, 13, 663, 10.1017/S1092852900013754 Mayberg, 2005, Deep brain stimulation for treatment-resistant depression, Neuron, 45, 651, 10.1016/j.neuron.2005.02.014 Mayberg, 2009, Targeted electrode-based modulation of neural circuits for depression, J Clin Invest, 119, 717, 10.1172/JCI38454 George, 1997, Mood improvement following daily left prefrontal repetitive transcranial magnetic stimulation in patients with depression: A placebo-controlled crossover trial, Am J Psychiatry, 154, 1752, 10.1176/ajp.154.12.1752 George, 1999, Prefrontal repetitive transcranial magnetic stimulation (rTMS) changes relative perfusion locally and remotely, Hum Psychopharmacol, 14, 161, 10.1002/(SICI)1099-1077(199904)14:3<161::AID-HUP73>3.0.CO;2-2 Kimbrell, 2002, Left prefrontal-repetitive transcranial magnetic stimulation (rTMS) and regional cerebral glucose metabolism in normal volunteers, Psychiatry Res, 115, 101, 10.1016/S0925-4927(02)00041-0 Narushima, 2010, Subgenual cingulate theta activity predicts treatment response of repetitive transcranial magnetic stimulation in participants with vascular depression, J Neuropsychiatry Clin Neurosci, 22, 75, 10.1176/jnp.2010.22.1.75 Kito, 2008, Regional cerebral blood flow changes after low-frequency transcranial magnetic stimulation of the right dorsolateral prefrontal cortex in treatment-resistant depression, Neuropsychobiology, 58, 29, 10.1159/000154477 Kito, 2011, Neuroanatomical correlates of therapeutic efficacy of low-frequency right prefrontal transcranial magnetic stimulation in treatment-resistant depression, Psychiatry Clin Neurosci, 65, 175, 10.1111/j.1440-1819.2010.02183.x Paus, 2001, Cortico-cortical connectivity of the human mid-dorsolateral frontal cortex and its modulation by repetitive transcranial magnetic stimulation, Eur J Neurosci, 14, 1405, 10.1046/j.0953-816x.2001.01757.x Li, 2004, Acute left prefrontal transcranial magnetic stimulation in depressed patients is associated with immediately increased activity in prefrontal cortical as well as subcortical regions, Biol Psychiatry, 55, 882, 10.1016/j.biopsych.2004.01.017 Teneback, 1999, Changes in prefrontal cortex and paralimbic activity in depression following two weeks of daily left prefrontal TMS, J Neuropsychiatry Clin Neurosci, 11, 426 Nahas, 2001, Unilateral left prefrontal transcranial magnetic stimulation (TMS) produces intensity-dependent bilateral effects as measured by interleaved BOLD fMRI, Biol Psychiatry, 50, 712, 10.1016/S0006-3223(01)01199-4 Speer, 2000, Opposite effects of high and low frequency rTMS on regional brain activity in depressed patients, Biol Psychiatry, 48, 1133, 10.1016/S0006-3223(00)01065-9 Mottaghy, 2002, Correlation of cerebral blood flow and treatment effects of repetitive transcranial magnetic stimulation in depressed patients, Psychiatry Res, 115, 1, 10.1016/S0925-4927(02)00032-X Eisenegger, 2008, Time-course of “off-line” prefrontal rTMS effects–a PET study, Neuroimage, 42, 379, 10.1016/j.neuroimage.2008.04.172 Knoch, 2006, Lateralized and frequency-dependent effects of prefrontal rTMS on regional cerebral blood flow, Neuroimage, 31, 641, 10.1016/j.neuroimage.2005.12.025 Speer, 2003, Intensity-dependent regional cerebral blood flow during 1-Hz repetitive transcranial magnetic stimulation (rTMS) in healthy volunteers studied with H215O positron emission tomography: II, Biol Psychiatry, 54, 826, 10.1016/S0006-3223(03)00324-X Ferrarelli, 2004, A [17F]-fluoromethane PET/TMS study of effective connectivity, Brain Res Bull, 64, 103, 10.1016/j.brainresbull.2004.04.020 Fitzgerald, 2009, A randomized trial of rTMS targeted with MRI based neuro-navigation in treatment-resistant depression, Neuropsychopharmacology, 34, 1255, 10.1038/npp.2008.233 Herbsman, 2009, More lateral and anterior prefrontal coil location is associated with better repetitive transcranial magnetic stimulation antidepressant response, Biol Psychiatry, 66, 509, 10.1016/j.biopsych.2009.04.034 Herwig, 2001, Transcranial magnetic stimulation in therapy studies: Examination of the reliability of “standard” coil positioning by neuronavigation, Biol Psychiatry, 50, 58, 10.1016/S0006-3223(01)01153-2 Ahdab, 2010, Comparison of “standard” and “navigated” procedures of TMS coil positioning over motor, premotor and prefrontal targets in patients with chronic pain and depression, Neurophysiol Clin, 40, 27, 10.1016/j.neucli.2010.01.001 George, 1996, Changes in mood and hormone levels after rapid-rate transcranial magnetic stimulation (rTMS) of the prefrontal cortex, J Neuropsychiatry Clin Neurosci, 8, 172, 10.1176/jnp.8.2.172 Herwig, 2003, Using the international 10-20 EEG system for positioning of transcranial magnetic stimulation, Brain Topogr, 16, 95, 10.1023/B:BRAT.0000006333.93597.9d Rusjan, 2010, Optimal transcranial magnetic stimulation coil placement for targeting the dorsolateral prefrontal cortex using novel magnetic resonance image-guided neuronavigation, Hum Brain Mapp, 31, 1643 Paillère Martinot, 2010, Influence of prefrontal target region on the efficacy of repetitive transcranial magnetic stimulation in patients with medication-resistant depression: A [(18)F]-fluorodeoxyglucose PET and MRI study, Int J Neuropsychopharmacol, 13, 45, 10.1017/S146114570900008X Herwig, 2003, Add-on rTMS for treatment of depression: A pilot study using stereotaxic coil-navigation according to PET data, J Psychiatr Res, 37, 267, 10.1016/S0022-3956(03)00042-6 Garcia-Toro, 2006, High (20-Hz) and low (1-Hz) frequency transcranial magnetic stimulation as adjuvant treatment in medication-resistant depression, Psychiatry Res, 146, 53, 10.1016/j.pscychresns.2004.08.005 Biswal, 1995, Functional connectivity in the motor cortex of resting human brain using echo-planar MRI, Magn Reson Med, 34, 537, 10.1002/mrm.1910340409 Fox, 2007, Spontaneous fluctuations in brain activity observed with functional magnetic resonance imaging, Nat Rev Neurosci, 8, 700, 10.1038/nrn2201 Van Dijk, 2010, Intrinsic functional connectivity as a tool for human connectomics: Theory, properties, and optimization, J Neurophysiol, 103, 297, 10.1152/jn.00783.2009 Fox, 2005, The human brain is intrinsically organized into dynamic, anticorrelated functional networks, Proc Natl Acad Sci U S A, 102, 9673, 10.1073/pnas.0504136102 Wu, 1999, Prediction of antidepressant effects of sleep deprivation by metabolic rates in the ventral anterior cingulate and medial prefrontal cortex, Am J Psychiatry, 156, 1149, 10.1176/ajp.156.8.1149 Mayberg, 2000, Regional metabolic effects of fluoxetine in major depression: Serial changes and relationship to clinical response, Biol Psychiatry, 48, 830, 10.1016/S0006-3223(00)01036-2 Drevets, 2002, Functional anatomical correlates of antidepressant drug treatment assessed using PET measures of regional glucose metabolism, Eur Neuropsychopharmacol, 12, 527, 10.1016/S0924-977X(02)00102-5 Nahas, 2007, Serial vagus nerve stimulation functional MRI in treatment-resistant depression, Neuropsychopharmacology, 32, 1649, 10.1038/sj.npp.1301288 Cho, 2009, rTMS of the left dorsolateral prefrontal cortex modulates dopamine release in the ipsilateral anterior cingulate cortex and orbitofrontal cortex, PloS One, 4, e6725, 10.1371/journal.pone.0006725 Rajkowska, 1995, Cytoarchitectonic definition of prefrontal areas in the normal human cortex: II, Cereb Cortex, 5, 323, 10.1093/cercor/5.4.323 Schutter, 2009, Partial clinical response to 2 weeks of 2 Hz repetitive transcranial magnetic stimulation to the right parietal cortex in depression, Int J Neuropsychopharmacol, 12, 643, 10.1017/S1461145708009553 Schutter, 2005, A framework for targeting alternative brain regions with repetitive transcranial magnetic stimulation in the treatment of depression, J Psychiatry Neurosci, 30, 91 Greicius, 2007, Resting-state functional connectivity in major depression: Abnormally increased contributions from subgenual cingulate cortex and thalamus, Biol Psychiatry, 62, 429, 10.1016/j.biopsych.2006.09.020 Koenigs, 2009, The functional neuroanatomy of depression: Distinct roles for ventromedial and dorsolateral prefrontal cortex, Behav Brain Res, 201, 239, 10.1016/j.bbr.2009.03.004 Fitzgerald, 2006, An analysis of functional neuroimaging studies of dorsolateral prefrontal cortical activity in depression, Psychiatry Res, 148, 33, 10.1016/j.pscychresns.2006.04.006 Steele, 2007, Prefrontal cortical functional abnormality in major depressive disorder: A stereotactic meta-analysis, J Affect Disord, 101, 1, 10.1016/j.jad.2006.11.009 Fitzgerald, 2008, A meta-analytic study of changes in brain activation in depression, Hum Brain Mapp, 29, 683, 10.1002/hbm.20426 Koenigs, 2008, Distinct regions of prefrontal cortex mediate resistance and vulnerability to depression, J Neurosci, 28, 12341, 10.1523/JNEUROSCI.2324-08.2008 Paus, 2004, Transcranial magnetic stimulation (TMS) of the human frontal cortex: Implications for repetitive TMS treatment of depression, J Psychiatry Neurosci, 29, 268 Murphy, 2009, The impact of global signal regression on resting state correlations: Are anti-correlated networks introduced?, Neuroimage, 44, 893, 10.1016/j.neuroimage.2008.09.036 Fox, 2009, The global signal and observed anticorrelated resting state brain networks, J Neurophysiol, 101, 3270, 10.1152/jn.90777.2008 Anderson, 2011, Network anticorrelations, global regression, and phase-shifted soft tissue correction, Hum Brain Mapp, 32, 919, 10.1002/hbm.21079 Chai, 2012, Anticorrelations in resting state networks without global signal regression, Neuroimage, 59, 1420, 10.1016/j.neuroimage.2011.08.048 Petrides, 1999, Dorsolateral prefrontal cortex: Comparative cytoarchitectonic analysis in the human and the macaque brain and corticocortical connection patterns, Eur J Neurosci, 11, 1011, 10.1046/j.1460-9568.1999.00518.x Vogt, 1987, Cingulate cortex of the rhesus monkey: II, J Comp Neurol, 262, 271, 10.1002/cne.902620208 Sridharan, 2008, A critical role for the right fronto-insular cortex in switching between central-executive and default-mode networks, Proc Natl Acad Sci U S A, 105, 12569, 10.1073/pnas.0800005105 Groenewegen, 1999, Integration and segregation of limbic cortico-striatal loops at the thalamic level: An experimental tracing study in rats, J Chem Neuroanat, 16, 167, 10.1016/S0891-0618(99)00009-5 Van Essen, 2007, Surface-based and probabilistic atlases of primate cerebral cortex, Neuron, 56, 209, 10.1016/j.neuron.2007.10.015 Hamani, 2010, Deep brain stimulation in clinical practice and in animal models, Clin Pharmacol Ther, 88, 559, 10.1038/clpt.2010.133