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“Association of Cannabis Use During Adolescence with Neurodevelopment.” JAMA Psychiatry 78(9) (2021): 1031–1040. doi: 10.1001/jamapsychiatry.2021.1258.

9. D. Jimenez-Blasco, A. Busquets-Garcia, et al. “Glucose Metabolism Links Astroglial Mitochondria to Cannabinoid Effects.” Nature 583(7817) (2020): 603–608. doi: 10.1038/s41586-020-2470-y.

10. E. Hebert-Chatelain, T. Desprez, R. Serrat, et al. “A Cannabinoid Link Between Mitochondria and Memory.” Nature 539(7630) (November 24, 2016): 555–559. doi: 10.1038/nature20127.

Глава 17

1. S. R. Chekroud, R. Gueorguieva, A. B. Zheutlin, M. Paulus, H. M. Krumholz, J. H. Krystal, and A. M. Chekroud. “Association Between Physical Exercise and Mental Health in 1.2 Million Individuals in the USA Between 2011 and 2015: A Cross-Sectional Study. Lancet Psychiatry 5(9) (2018): 739–746. doi: 10.1016/ S2215-0366(18)30227-X.

2. G. A. Greendale, W. Han, M. Huang, et al. “Longitudinal Assessment of Physical Activity and Cognitive Outcomes Among Women at Midlife.” JAMA Netw Open 4(3) (2021): e213227. doi: 10.1001/ jamanetworkopen.2021.3227.

3. J. Krogh, C. Hjorthøj, H. Speyer, C. Gluud, and M. Nordentoft. “Exercise for Patients with Major Depression: A Systematic Review with Meta-Analysis and Trial Sequential Analysis.” BMJ Open 7(9) (2017): e014820. doi: 10.1136/bmjopen-2016-014820.

4. World Health Organization. Motion for Your Mind: Physical Activity for Mental Health Promotion, Protection, and Care. Copenhagen: WHO Regional Office for Europe, 2019. https://www.euro.who.int/en/health-topics/disease-prevention/physical-activity/publications/2019/motion-for-your-mind-physical-activity-for-mental-health-promotion, – protection-and-care-2019.

5. K. Contrepois, S. Wu, K. J. Moneghetti, D. Hornburg, et al. “Molecular Choreography of Acute Exercise.” Cell 181(5) (2020): 1112–1130.e16. doi: 10.1016/j.cell.2020.04.043.

6. A. R. Konopka, J. L. Laurin, H. M. Schoenberg, J. J. Reid, W. M. Castor, C. A. Wolff, R. V. Musci, O. D. Safairad, M. A. Linden, L. M. Biela, S. M. Bailey, K. L. Hamilton, and B. F. Miller. “Metformin Inhibits Mitochondrial Adaptations to Aerobic Exercise Training in Older Adults.” Aging Cell 18(1) (2019): e12880.doi: 10.1111/acel.12880.

7. Kathrin Steib, Iris Schäffner, Ravi Jagasia, Birgit Ebert, and D. Chichung Lie. “Mitochondria Modify Exercise-Induced Development of Stem Cell-Derived Neurons in the Adult Brain.” J Neurosci 34(19) (2014): 6624. doi: 10.1523/JNEUROSCI.4972-13.2014.

Глава 18

1. H. T. Chugani, M. E. Behen, O. Muzik, C. Juhász, F. Nagy, and D. C. Chugani. “Local Brain Functional Activity Following Early Deprivation: A Study of Postinstitutionalized Romanian Orphans.” Neuroimage 14(6) (2001): 1290–1301. doi: 10.1006/nimg.2001.0917.

2. M. Picard, A. A. Prather, E. Puterman, A. Cuillerier, M. Coccia, K. Aschbacher, Y. Burelle, and E. S. Epel. “A Mitochondrial Health Index Sensitive to Mood and Caregiving Stress.” Biol Psychiatry 84(1) (2018): 9–17.doi: 10.1016/j.biopsych.2018.01.012.

3. Frankl, V. E. Man’s Search for Meaning: An Introduction to Logotherapy (New York: Simon & Schuster, 1984).

4. A. Alimujiang, A. Wiensch, J. Boss, et al. “Association Between Life Purpose and Mortality Among US Adults Older Than 50 Years.” JAMA Netw Open 2(5) (2019): e194270. doi: 10.1001/jamanetworkopen.2019.4270.

5. R. Cohen, C. Bavishi, and A. Rozanski. “Purpose in Life and Its Relationship to All-Cause Mortality and Cardiovascular Events: A Meta-Analysis.” Psychosom Med 78(2) (2016): 122–133. doi: 10.1097/ PSY.0000000000000274.

6. L. Miller, R. Bansal, P. Wickramaratne, et al. “Neuroanatomical Correlates of Religiosity and Spirituality: A Study in Adults at High and Low Familial Risk for Depression.” JAMA Psychiatry 71(2) (2014): 128–135.doi: 10.1001/jamapsychiatry.2013.3067.

7. T. J. VanderWeele, S. Li, A. C. Tsai, and I. Kawachi. “Association Between Religious Service Attendance and Lower Suicide Rates Among US Women.” JAMA Psychiatry 73(8) (2016): 845–851. doi: 10.1001/ jamapsychiatry.2016.1243.

8. H. G. Koenig. “Religion, Spirituality, and Health: The Research and Clinical Implications.” ISRN Psychiatry 2012 (2012): 278730. doi: 10.5402/2012/278730

9. C. Timmermann, H. Kettner, C. Letheby, et al. “Psychedelics Alter Metaphysical Beliefs.” Sci Rep 11(1) (2021): 22166. doi: 10.1038/s41598-021-01209-2.

10. J. A. Dusek, H. H. Otu, A. L. Wohlhueter, M. Bhasin, L. F. Zerbini, M. G. Joseph, H. Benson, and T. A. Libermann. “Genomic Counter-Stress Changes Induced by the Relaxation Response.” PLoS One 3(7) (2008): e2576. doi: 10.1371/journal.pone.0002576.

11. M. K. Bhasin, J. A. Dusek, B. H. Chang, M. G. Joseph, J. W. Denninger, G. L. Fricchione, H. Benson, and T. A. Libermann. “Relaxation Response Induces Temporal Transcriptome Changes in Energy Metabolism, Insulin Secretion and Inflammatory Pathways.” PLoS One 8(5) (2013): e62817. doi: 10.1371/journal.pone.0062817.

Глава 19

1. M. Búrigo, C. A. Roza, C. Bassani, D. A. Fagundes, G. T. Rezin, G. Feier, F. Dal-Pizzol, J. Quevedo, and E. L. Streck. “Effect of Electroconvulsive Shock on Mitochondrial Respiratory Chain in Rat Brain.” Neurochem Res 31(11) (2006): 1375–1379. doi: 10.1007/s11064-006-9185-9.

2. F. Chen, J. Danladi, G. Wegener, T. M. Madsen, and J. R. Nyengaard. “Sustained Ultrastructural Changes in Rat Hippocampal Formation After Repeated Electroconvulsive Seizures.” Int J Neuropsychopharmacol 23(7) (2020): 446–458. doi: 10.1093/ijnp/pyaa021.

3. F. J. Medina and I. Túnez. “Mechanisms and Pathways Underlying the Therapeutic Effect of Transcranial Magnetic Stimulation.” Rev Neurosci 24(5) (2013): 507–525. doi: 10.1515/revneuro-2013-0024.

4. H. L. Feng, L. Yan, and L. Y. Cui. “Effects of Repetitive Transcranial Magnetic Stimulation on Adenosine Triphosphate Content and Microtubule Associated Protein-2 Expression After Cerebral IschemiaReperfusion Injury in Rat Brain.” Chin Med J (Engl) 121(14) (2008): 1307–1312. PMID: 18713553.

5. X. Zong, Y. Dong, Y. Li, L. Yang, Y. Li, B. Yang, L. Tucker, N. Zhao, D. W. Brann, X. Yan, S. Hu, and Q. Zhang. “Beneficial Effects of Theta-Burst Transcranial Magnetic Stimulation on Stroke Injury via Improving Neuronal Microenvironment and Mitochondrial Integrity.” Transl Stroke Res 11(3) (2020): 450–467. doi: 10.1007/s12975-019-00731-w.

6. C. L. Cimpianu, W. Strube, P. Falkai, U. Palm, and A. Hasan. “Vagus Nerve Stimulation in Psychiatry: A Systematic Review of the Available Evidence.” J Neural Transm (Vienna) 124(1) (2017): 145–158. doi: 10.1007/s00702-016-1642-2.

Об авторе

Кристофер М. Палмер, доктор медицины, является психиатром и исследователем из Гарварда, работающим на стыке обмена веществ и психического здоровья. Он является директором департамента последипломного и непрерывного образования в больнице McLean и доцентом психиатрии в Гарвардской медицинской школе. Более двух десятилетий он занимал руководящие должности в сфере психиатрического образования в Гарварде, больнице McLean и на национальном уровне. Более 15 лет проводил нейронаучные исследования в области

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