Minimal scanning duration for producing individualized repetitive transcranial magnetic stimulation targets

Amunts, K., & Zilles, K. (2015). Architectonic mapping of the human brain beyond Brodmann. Neuron, 88, 1086–1107.

CAS  PubMed  Article  Google Scholar 

Birn, R. M., Molloy, E. K., Patriat, R., Parker, T., Meier, T. B., Kirk, G. R., Nair, V. A., Meyerand, M. E., & Prabhakaran, V. (2013). The effect of scan length on the reliability of resting-state fMRI connectivity estimates. NeuroImage, 83, 550–558.

PubMed  Article  Google Scholar 

Cash, R. F. H., Cocchi, L., Lv, J., Fitzgerald, P. B., & Zalesky, A. (2021a). Functional magnetic resonance imaging-guided personalization of transcranial magnetic stimulation treatment for depression. JAMA Psychiatry, 78, 337–339.

PubMed  Article  Google Scholar 

Cash, R. F. H., Cocchi, L., Lv, J., Wu, Y., Fitzgerald, P. B., & Zalesky, A. (2021b). Personalized connectivity-guided DLPFC-TMS for depression: Advancing computational feasibility, precision and reproducibility. Human Brain Mapping, 42(13), 4155-4172.

Cash, R. F. H., Zalesky, A., Thomson, R. H., Tian, Y., Cocchi, L., & Fitzgerald, P. B. (2019). Subgenual functional connectivity predicts antidepressant treatment response to transcranial magnetic stimulation: independent validation and evaluation of personalization. Biological Psychiatry, 86, e5–e7.

PubMed  Article  Google Scholar 

Chen, B., Xu, T., Zhou, C., Wang, L., Yang, N., Wang, Z., Dong, H. M., Yang, Z., Zang, Y. F., Zuo, X. N., & Weng, X. C. (2015). Individual variability and test-retest reliability revealed by ten repeated resting-state brain scans over one month. PLoS One1, 10, e0144963.

Article  Google Scholar 

Ciaramelli, E., Burianová, H., Vallesi, A., Cabeza, R., & Moscovitch, M. (2020). Functional interplay between posterior parietal cortex and hippocampus during detection of memory targets and non-targets. Frontiers in Neuroscience, 14, 563768.

PubMed  PubMed Central  Article  Google Scholar 

Cole, E. J., Stimpson, K. H., Bentzley, B. S., Gulser, M., Cherian, K., Tischler, C., Nejad, R., Pankow, H., Choi, E., Aaron, H., Espil, F. M., Pannu, J., Xiao, X., Duvio, D., Solvason, H. B., Hawkins, J., Guerra, A., Jo, B., Raj, K. S., … Williams, N. R. (2020). Stanford accelerated intelligent neuromodulation therapy for treatment-resistant depression. American Journal of Psychiatry, 177, 716–726.

PubMed  Article  Google Scholar 

Deng, Z. D., Lisanby, S. H., & Peterchev, A. V. (2013). Electric field depth-focality tradeoff in transcranial magnetic stimulation: Simulation comparison of 50 coil designs. Brain Stimulation, 6, 1–13.

PubMed  Article  Google Scholar 

Dickie, E. W., Ameis, S. H., Shahab, S., Calarco, N., Smith, D. E., Miranda, D., Viviano, J. D., & Voineskos, A. N. (2018). Personalized intrinsic network topography mapping and functional connectivity deficits in autism spectrum disorder. Biological Psychiatry, 84, 278–286.

PubMed  PubMed Central  Article  Google Scholar 

Elliott, M. L., Knodt, A. R., Cooke, M., Kim, M. J., Melzer, T. R., Keenan, R., Ireland, D., Ramrakha, S., Poulton, R., Caspi, A., Moffitt, T. E., & Hariri, A. R. (2019). General functional connectivity: Shared features of resting-state and task fMRI drive reliable and heritable individual differences in functional brain networks. NeuroImage, 189, 516–532.

PubMed  Article  Google Scholar 

Fitzgerald, P. B., Hoy, K., McQueen, S., Maller, J. J., Herring, S., Segrave, R., Bailey, M., Been, G., Kulkarni, J., & Daskalakis, Z. J. (2009). A randomized trial of rTMS targeted with MRI based neuro-navigation in treatment-resistant depression. Neuropsychopharmacology, 34, 1255–1262.

PubMed  Article  Google Scholar 

Fox, M. D., Buckner, R. L., White, M. P., Greicius, M. D., & Pascual-Leone, A. (2012). Efficacy of transcranial magnetic stimulation targets for depression is related to intrinsic functional connectivity with the subgenual cingulate. Biological Psychiatry, 72, 595–603.

PubMed  PubMed Central  Article  Google Scholar 

Fox, M. D., Liu, H., & Pascual-Leone, A. (2013). Identification of reproducible individualized targets for treatment of depression with TMS based on intrinsic connectivity. NeuroImage, 66, 151–160.

PubMed  Article  Google Scholar 

Freedberg, M., Reeves, J. A., Toader, A. C., Hermiller, M. S., Voss, J. L., & Wassermann, E. M. (2019). Persistent enhancement of hippocampal network connectivity by parietal rTMS is reproducible. eNeuro, 6. https://doi.org/10.1523/ENEURO.0129-19.2019

Fregni, F., Marcolin, M. A., Myczkowski, M., Amiaz, R., Hasey, G., Rumi, D. O., Rosa, M., Rigonatti, S. P., Camprodon, J., Walpoth, M., Heaslip, J., Grunhaus, L., Hausmann, A., & Pascual-Leone, A. (2006). Predictors of antidepressant response in clinical trials of transcranial magnetic stimulation. International Journal of Neuropsychopharmacology, 9, 641–654.

CAS  PubMed  Article  Google Scholar 

Friedrich, M. J. (2017). Depression is the leading cause of disability around the world. JAMA, 317, 1517.

PubMed  Google Scholar 

Frost, M. A., & Goebel, R. (2012). Measuring structural-functional correspondence: Spatial variability of specialised brain regions after macro-anatomical alignment. NeuroImage, 59, 1369–1381.

PubMed  Article  Google Scholar 

Gao, X., Hua, Q., Du, R., Sun, J., Hu, T., Yang, J., Qiu, B., Ji, G. J., & Wang, K. (2021). Associative memory improvement after 5 days of magnetic stimulation: A replication experiment with active controls. Brain Research, 1765, 147510.

CAS  PubMed  Article  Google Scholar 

George, M. S., Lisanby, S. H., Avery, D., McDonald, W. M., Durkalski, V., Pavlicova, M., Anderson, B., Nahas, Z., Bulow, P., Zarkowski, P., Holtzheimer, P. E., 3rd, Schwartz, T., & Sackeim, H. A. (2010). Daily left prefrontal transcranial magnetic stimulation therapy for major depressive disorder: A sham-controlled randomized trial. Archives of General Psychiatry, 67, 507–516.

PubMed  Article  Google Scholar 

Gordon, E. M., Laumann, T. O., Gilmore, A. W., Newbold, D. J., Greene, D. J., Berg, J. J., Ortega, M., Hoyt-Drazen, C., Gratton, C., Sun, H., Hampton, J. M., Coalson, R. S., Nguyen, A. L., McDermott, K. B., Shimony, J. S., Snyder, A. Z., Schlaggar, B. L., Petersen, S. E., Nelson, S. M., & Dosenbach, N. U. F. (2017). Precision functional mapping of individual human brains. Neuron, 95, 791-807.e797.

CAS  PubMed  PubMed Central  Article  Google Scholar 

Gratton, C., Kraus, B. T., Greene, D. J., Gordon, E. M., Laumann, T. O., Nelson, S. M., Dosenbach, N. U. F., & Petersen, S. E. (2020). Defining individual-specific functional neuroanatomy for precision psychiatry. Biological Psychiatry, 88, 28–39.

PubMed  Article  Google Scholar 

Hendrikse, J., Coxon, J. P., Thompson, S., Suo, C., Fornito, A., Yücel, M., & Rogasch, N. C. (2020). Multi-day rTMS exerts site-specific effects on functional connectivity but does not influence associative memory performance. Cortex, 132, 423–440.

PubMed  Article  Google Scholar 

Herbsman, T., Avery, D., Ramsey, D., Holtzheimer, P., Wadjik, C., Hardaway, F., Haynor, D., George, M. S., & Nahas, Z. (2009). More lateral and anterior prefrontal coil location is associated with better repetitive transcranial magnetic stimulation antidepressant response. Biological Psychiatry, 66, 509–515.

PubMed  Article  Google Scholar 

Herwig, U., Schönfeldt-Lecuona, C., Wunderlich, A. P., von Tiesenhausen, C., Thielscher, A., Walter, H., & Spitzer, M. (2001). The navigation of transcranial magnetic stimulation. Psychiatry Research, 108, 123–131.

CAS  PubMed  Article  Google Scholar 

Johnson, K. A., Baig, M., Ramsey, D., Lisanby, S. H., Avery, D., McDonald, W. M., Li, X., Bernhardt, E. R., Haynor, D. R., Holtzheimer, P. E., 3rd, Sackeim, H. A., George, M. S., & Nahas, Z. (2013). Prefrontal rTMS for treating depression: Location and intensity results from the OPT-TMS multi-site clinical trial. Brain Stimulation, 6, 108–117.

PubMed  Article  Google Scholar 

Lefaucheur, J. P., André-Obadia, N., Antal, A., Ayache, S. S., Baeken, C., Benninger, D. H., Cantello, R. M., Cincotta, M., de Carvalho, M., De Ridder, D., Devanne, H., Di Lazzaro, V., Filipović, S. R., Hummel, F. C., Jääskeläinen, S. K., Kimiskidis, V. K., Koch, G., Langguth, B., Nyffeler, T., … Garcia-Larrea, L. (2014). Evidence-based guidelines on the therapeutic use of repetitive transcranial magnetic stimulation (rTMS). Clinical Neurophysiology, 125, 2150–2206.

PubMed  Article  Google Scholar 

Li, C. T., Cheng, C. M., Chen, M. H., Juan, C. H., Tu, P. C., Bai, Y. M., Jeng, J. S., Lin, W. C., Tsai, S. J., & Su, T. P. (2020). Antidepressant efficacy of prolonged intermittent theta burst stimulation monotherapy for recurrent depression and comparison of methods for coil positioning: a randomized, double-blind, sham-controlled study. Biological Psychiatry, 87, 443–450.

CAS  PubMed  Article  Google Scholar 

Lisanby, S. H., Husain, M. M., Rosenquist, P. B., Maixner, D., Gutierrez, R., Krystal, A., Gilmer, W., Marangell, L. B., Aaronson, S., Daskalakis, Z. J., Canterbury, R., Richelson, E., Sackeim, H. A., & George, M. S. (2009). Daily left prefrontal repetitive transcranial magnetic stimulation in the acute treatment of major depression: Clinical predictors of outcome in a multisite, randomized controlled clinical trial. Neuropsychopharmacology, 34, 522–534.

PubMed  Article  Google Scholar 

Liston, C., Chen, A. C., Zebley, B. D., Drysdale, A. T., Gordon, R., Leuchter, B., Voss, H. U., Casey, B. J., Etkin, A., & Dubin, M. J. (2014). Default mode network mechanisms of transcranial magnetic stimulation in depression. Biological Psychiatry, 76, 517–526.

PubMed  PubMed Central  Article  Google Scholar 

Malhi, G. S., & Mann, J. J. (2018). Depression. Lancet, 392, 2299–2312.

PubMed  Article  Google Scholar 

Mueller, S., Wang, D., Fox, M. D., Yeo, B. T., Sepulcre, J., Sabuncu, M. R., Shafee, R., Lu, J., & Liu, H. (2013). Individual variability in functional connectivity architecture of the human brain. Neuron, 77, 586–595.

CAS  PubMed  PubMed Central  Article  Google Scholar 

Nettekoven, C., Volz, L. J., Kutscha, M., Pool, E. M., Rehme, A. K., Eickhoff, S. B., Fink, G. R., & Grefkes, C. (2014). Dose-dependent effects of theta burst rTMS on cortical excitability and resting-state connectivity of the human motor system. Journal of Neuroscience, 34, 6849–6859.

CAS  PubMed  Article  Google Scholar 

Nilakantan, A. S., Mesulam, M. M., Weintraub, S., Karp, E. L., VanHaerents, S., & Voss, J. L. (2019). Network-targeted stimulation engages neurobehavioral hallmarks of age-related memory decline. Neurology, 92, e2349–e2354.

PubMed  PubMed Central  Article  Google Scholar 

Ning, L., Makris, N., Camprodon, J. A., & Rathi, Y. (2019). Limits and reproducibility of resting-state functional MRI definition of DLPFC targets for neuromodulation. Brain Stimulation, 12, 129–138.

PubMed  Article  Google Scholar 

Paz-Alonso, P. M., Gallego, P., & Ghetti, S. (2013). Age differences in hippocampus-cortex connectivity during true and false memory retrieval. Journal of the International Neuropsychological Society, 19, 1031–1041.

PubMed  Article  Google Scholar 

Petrides, M., & Pandya, D. N. (1999). Dorsolateral prefrontal cortex: Comparative cytoarchitectonic analysis in the human and the macaque brain and corticocortical connection patterns. European Journal of Neuroscience, 11, 1011–1036.

CAS  PubMed 

留言 (0)

沒有登入
gif