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Influential Publications
Published Online: 25 January 2022

Bibliography

This section contains a compilation of recent publications that have shaped the thinking in the field as well as classic works that remain important to the subject reviewed in this issue. This bibliography has been compiled by experts in the field. Articles from the bibliography that are reprinted in this issue are in bold type.

References

Badran BW, Caulfield KA, Stomberg-Firestein S, et al: Sonication of the anterior thalamus with MRI-guided transcranial focused ultrasound (tFUS) alters pain thresholds in healthy adults: a double-blind, sham-controlled study. Brain Stimul 2020; 13:1805–1812
Badran BW, Dowdle LT, Mithoefer OJ, et al: Neurophysiologic effects of transcutaneous auricular vagus nerve stimulation (taVNS) via electrical stimulation of the tragus: a concurrent taVNS/fMRI study and review. Brain Stimul 2018; 11:492–500
Badran BW, Yu AB, Adair D, et al: Laboratory administration of transcutaneous auricular vagus nerve stimulation (taVNS): technique, targeting, and considerations. J Vis Exp 2019; (143)
Baek H, Pahk KJ, Kim H: A review of low-intensity focused ultrasound for neuromodulation. Biomed Eng Lett 2017; 7:135–142
Barrett DW, Gonzalez-Lima F: Transcranial infrared laser stimulation produces beneficial cognitive and emotional effects in humans. Neuroscience 2013; 230:13–23. doi:
Bergfeld IO, Mantione M, Hoogendoorn ML, et al: Deep brain stimulation of the ventral anterior limb of the internal capsule for treatment-resistant depression: a randomized clinical trial. JAMA Psychiatry 2016; 73:456–464
Bikson M, Esmaeilpour Z, Adair D, et al: Transcranial electrical stimulation nomenclature. Brain Stimul 2019; 12:1349–1366
Blumberger DM, Vila-Rodriguez F, Thorpe KE, et al: Effectiveness of theta burst versus high-frequency repetitive transcranial magnetic stimulation in patients with depression (THREE-D): a randomised non-inferiority trial. Lancet 2018; 391:1683–1692. doi:
Boyden ES, Zhang F, Bamberg E, et al: Millisecond-timescale, genetically targeted optical control of neural activity. Nat Neurosci 2005; 8:1263–1268. doi:
Brunoni AR, Nitsche MA, Bolognini N, et al: Clinical research with transcranial direct current stimulation (tDCS): challenges and future directions. Brain Stimul 2012; 5:175–195
Brunoni AR, Sampaio-Junior B, Moffa AH, et al: Noninvasive brain stimulation in psychiatric disorders: a primer. Br J Psychiatry 2019; 41:70–81
Bystritsky A, Spivak NM, Dang BH, et al: Brain circuitry underlying the ABC model of anxiety. J Psychiatr Res 2021; 138:3–14
Carmi L, Tendler A, Bystritsky A, et al: Efficacy and safety of deep transcranial magnetic stimulation for obsessive-compulsive disorder: a prospective multicenter randomized double-blind placebo-controlled trial. Am J Psychiatry 2019; 176:931–938. doi:
Charvet LE, Shaw MT, Bikson M, et al: Supervised transcranial direct current stimulation (tDCS) at home: a guide for clinical research and practice. Brain Stimul 2020; 13:686–693
Chase HW, Boudewyn MA, Carter CS, et al: Transcranial direct current stimulation: a roadmap for research, from mechanism of action to clinical implementation. Mol Psychiatry 2020; 25:397–407
Dougherty DD, Rezai AR, Carpenter LL, et al: A randomized sham-controlled trial of deep brain stimulation of the ventral capsule/ventral striatum for chronic treatment-resistant depression. Biol Psychiatry 2015; 78:240–248. doi:
Dunner DL, Aaronson ST, Sackeim HA, et al: A multisite, naturalistic, observational study of transcranial magnetic stimulation for patients with pharmacoresistant major depressive disorder: durability of benefit over a 1-year follow-up period. J Clin Psychiatry 2014; 75:1394–1401. doi:
George MS, Sackeim HA, Rush AJ, et al: Vagus nerve stimulation: a new tool for brain research and therapy. Biol Psychiatry 2000; 47:287–295
Goldstein-Piekarski AN, Ball TM, Samara Z, et al: Mapping neural circuit biotypes to symptoms and behavioral dimensions of depression and anxiety. Biol Psychiatry 2021; S0006-3223(21)01437-2
Greenberg BD, Gabriels LA, Malone DA Jr, et al: Deep brain stimulation of the ventral internal capsule/ventral striatum for obsessive-compulsive disorder: worldwide experience. Mol Psychiatry 2010; 15:64–79. doi:
Gudbergsson JM, Jønsson K, Simonsen JB, et al: Systematic review of targeted extracellular vesicles for drug delivery—considerations on methodological and biological heterogeneity. J Control Release 2019; 306:108–120
Hadryś A, Sochanik A, McFadden G, et al: Mesenchymal stem cells as carriers for systemic delivery of oncolytic viruses. Eur J Pharmacol 2020; 874:172991
Hashmi JT, Huang YY, Osmani BZ, et al: Role of low-level laser therapy in neurorehabilitation. PM R 2010; 2(Suppl 2):S292–S305. doi:
Holtzheimer PE, Husain MM, Lisanby SH, et al: Subcallosal cingulate deep brain stimulation for treatment-resistant depression: a multisite, randomised, sham-controlled trial. Lancet Psychiatry 2017; 4:839–849. doi:
Huang L-D, Kao T-C, Sung K-B, et al: Simulation study on the optimization of photon energy delivered to the prefrontal cortex in low-level-light therapy using red to near-infrared light. IEEE J Sel Top Quantum Electron 2021; 27:1–10
Janowicz PW, Leinenga G, Götz J, et al: Ultrasound-mediated blood-brain barrier opening enhances delivery of therapeutically relevant formats of a tau-specific antibody. Sci Rep 2019; 9:9255
Kar SK, Sarkar S: Neuro-stimulation techniques for the management of anxiety disorders: an update. Clin Psychopharmacol Neurosci 2016; 14:330–337
Klapoetke NC, Murata Y, Kim SS, et al: Independent optical excitation of distinct neural populations. Nat Methods 2014; 11:338–346. doi:
Lanius RA, Bluhm R, Lanius U, et al: A review of neuroimaging studies in PTSD: heterogeneity of response to symptom provocation. J Psychiatr Res 2006; 40:709–729
Lee TY, Jung WH, Kwak YB, et al: Distinct neural networks associated with obsession and delusion: a connectome-wide association study. Psychol Med 2020; 51:1–9
Lefaucheur JP, Aleman A, Baeken C, et al: Evidence-based guidelines on the therapeutic use of repetitive transcranial magnetic stimulation (rTMS): an update (2014–2018). Clin Neurophysiol 2020; 131:474–528. doi:
Lefaucheur JP, André-Obadia N, Antal A, et al: Evidence-based guidelines on the therapeutic use of repetitive transcranial magnetic stimulation (rTMS). Clin Neurophysiol 2014; 125:2150–2206. doi:
Levkovitz Y, Isserles M, Padberg F, et al: Efficacy and safety of deep transcranial magnetic stimulation for major depression: a prospective multicenter randomized controlled trial. World Psychiatry 2015; 14:64–73. doi:
Mäger I, Meyer AH, Li J, et al: Targeting blood-brain-barrier transcytosis—perspectives for drug delivery. Neuropharmacology 2017; 120:4–7
Mallet L, Polosan M, Jaafari N, et al: STOC Study Group: Subthalamic nucleus stimulation in severe obsessive-compulsive disorder. N Engl J Med 2008; 359:2121–2134. doi:
Mayberg HS, Lozano AM, Voon V, et al: Deep brain stimulation for treatment-resistant depression. Neuron 2005; 45:651–660. doi:
McClintock SM, Reti IM, Carpenter LL, et al: National Network of Depression Centers rTMS Task Group; American Psychiatric Association Council on Research Task Force on Novel Biomarkers and Treatments: Consensus recommendations for the clinical application of repetitive transcranial magnetic stimulation (rTMS) in the treatment of depression. J Clin Psychiatry 2018; 79:16cs10905. doi:
Meng Y, Hynynen K, Lipsman N: Applications of focused ultrasound in the brain: from thermoablation to drug delivery. Nat Rev Neurol 2021; 17:7–22
Menon V: Large-scale brain networks and psychopathology: a unifying triple network model. Trends Cogn Sci 2011; 15:483–506
Min BK, Bystritsky A, Jung KI, et al: Focused ultrasound-mediated suppression of chemically-induced acute epileptic EEG activity. BMC Neurosci 2011; 12:1 –12
Nagel G, Ollig D, Fuhrmann M, et al: Channelrhodopsin-1: a light-gated proton channel in green algae. Science 2002; 296:2395–2398. doi:
Nuttin B, Cosyns P, Demeulemeester H, et al: Electrical stimulation in anterior limbs of internal capsules in patients with obsessive-compulsive disorder. Lancet 1999; 354:1526. doi:
O’Reardon JP, Solvason HB, Janicak PG, et al: Efficacy and safety of transcranial magnetic stimulation in the acute treatment of major depression: a multisite randomized controlled trial. Biol Psychiatry 2007; 62:1208–1216. doi:
Pang N, Huang X, Zhou H, et al: Transcranial ultrasound stimulation of hypothalamus in aging mice. IEEE Trans Ultrason Ferroelectr Freq Control 2021; 68:29–37
Pedersen M, Zalesky A, Omidvarnia A, et al: Multilayer network switching rate predicts brain performance. Proc Natl Acad Sci USA 2018; 115:13376–13381
Phelps EA: Emotion and cognition: insights from studies of the human amygdala. Annu Rev Psychol 2006; 57:27–53
Pittenger C, Pushkarskaya H, Gruner P: Animal models of OCD-relevant processes: an RDoC perspective. J Obsessive Compuls Relat Disord 2019; 23:100433
Poon C, Pellow C, Hynynen K: Neutrophil recruitment and leukocyte response following focused ultrasound and microbubble mediated blood-brain barrier treatments. Theranostics 2021; 11:1655–1671
Pouratian N, Baltuch G, Elias WJ, et al: American society for stereotactic and functional neurosurgery position statement on magnetic resonance-guided focused ultrasound for the management of essential tremor. Neurosurgery 2019;87:E126–E129
Rabut C, Yoo S, Hurt RC, et al: Ultrasound technologies for imaging and modulating neural activity. Neuron 2020; 108:93–110
Rojas JC, Gonzalez-Lima F: Low-level light therapy of the eye and brain. Eye Brain 2011; 3:49–67
Rossi S, Antal A, Bestmann S, et al: Safety and recommendations for TMS use in healthy subjects and patient populations, with updates on training, ethical and regulatory issues: expert guidelines. Clin Neurophysiol 2021; 132:269–306. doi:
Rossi S, Hallett M, Rossini PM, et al: Safety of TMS Consensus Group: safety, ethical considerations, and application guidelines for the use of transcranial magnetic stimulation in clinical practice and research. Clin Neurophysiol 2009; 120:2008–2039. doi:
Rush AJ, Marangell LB, Sackeim HA, et al: Vagus nerve stimulation for treatment-resistant depression: a randomized, controlled acute phase trial. Biol Psychiatry 2005; 58:347–354
Sanderson TH, Wider JM, Lee I, et al: Inhibitory modulation of cytochrome c oxidase activity with specific near-infrared light wavelengths attenuates brain ischemia/reperfusion injury. Sci Rep 2018; 8:3481. doi:
Sanguinetti JL, Hameroff S, Smith EE, et al: Transcranial focused ultrasound to the right prefrontal cortex improves mood and alters functional connectivity in humans. Front Hum Neurosci 2020; 14:52
Schlaepfer TE, Bewernick BH, Kayser S, et al: Rapid effects of deep brain stimulation for treatment-resistant major depression. Biol Psychiatry 2013; 73:1204–1212. doi:
Stern JM, Spivak NM, Becerra SA, et al: Safety of focused ultrasound neuromodulation in humans with temporal lobe epilepsy. Brain Stimul 2021; 14:1022–1031
Terstappen GC, Meyer AH, Bell RD, et al: Strategies for delivering therapeutics across the blood-brain barrier. Nat Rev Drug Discov 2021; 20:362–383
Tufail Y, Matyushov A, Baldwin N, et al: Transcranial pulsed ultrasound stimulates intact brain circuits. Neuron 2010; 66:681–694
Tyagi H, Apergis-Schoute AM, Akram H, et al: A randomized trial directly comparing ventral capsule and anteromedial subthalamic nucleus stimulation in obsessive-compulsive disorder: clinical and imaging evidence for dissociable effects. Biol Psychiatry 2019; 85:726–734. doi:
Tyler WJ, Tufail Y, Finsterwald M, et al: Remote excitation of neuronal circuits using low-intensity, low-frequency ultrasound. PLoS One 2008; 3:e3511
Vargas E, Barrett DW, Saucedo CL, et al: Beneficial neurocognitive effects of transcranial laser in older adults. Lasers Med Sci 2017; 32:1153–1162. doi:
Widge AS, Ellard KK, Paulk AC, et al: Treating refractory mental illness with closed-loop brain stimulation: Progress towards a patient-specific transdiagnostic approach. Exp Neurol 2017; 287:461–472. doi:
Wong KH, Riaz MK, Xie Y, et al: Review of current strategies for delivering Alzheimer’s disease drugs across the blood-brain barrier. Int J Mol Sci 2019; 20:381
Woods AJ, Antal A, Bikson M, et al: A technical guide to tDCS, and related non-invasive brain stimulation tools. Clin Neurophysiol 2016; 127:1031–1048
Zhang F, Gradinaru V, Adamantidis AR, et al: Optogenetic interrogation of neural circuits: technology for probing mammalian brain structures. Nat Protoc 2010; 5:439–456. doi:
Zotev V, Phillips R, Misaki M, et al: Real-time fMRI neurofeedback training of the amygdala activity with simultaneous EEG in veterans with combat-related PTSD. Neuroimage Clin 2018; 19:106–121

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Published in print: Winter 2022
Published online: 25 January 2022

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