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Psychology  2018 

Functional Magnetic Resonance Imaging Demonstrates That Hypnosis Is Conscious and Voluntary

DOI: 10.4236/psych.2018.97095, PP. 1571-1581

Keywords: fMRI, Consciousness, Monoideism, Brodmann Areas, Hypnotic Focused Analgesia

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Abstract:

Hypnosis is a condition of modified consciousness (monoideism) resulting from a mental representation able to produce psychological and physical effects. The general belief is that hypnosis is conscious and voluntary, but the practical demonstration of this hypothesis is far to be demonstrated. Twenty healthy highly hypnotizable volunteers were studied during through functional magnetic resonance imaging during a task. The task was necessary because functional magnetic resonance imaging gives no interesting results in neutral hypnosis. During the hypnotic task, the prefrontal dorso-lateral cortex, genual cortex, dorsal anterior cingulate cortex, and orbital portion of the inferior frontal convolution (i.e. the Broadmann areas 9, 25, 32 and 47) were activated. Such areas are associated to egoic consciousness and voluntary processes. The results show that the hypothesis that hypnosis is conscious and voluntary is correct.

References

[1]  Casiglia, E., Albertini, F., Tikhonoff, V., Gasparotti, F., Favaro, J., Finatti F., Rempelou, P., Lapenta, A. M., & Spinella, P. (2018). Experimental Approach to the Transmission of Information in Hypnosis. Psychology, 9, 1-13.
https://doi.org/10.4236/psych.2018.91001
[2]  Casiglia, E., & Mentesana, L. (2018a). Instrumental Demonstration of Hypnotic Flaccid Paralysis of Corrugator Muscles and Its Use in Esthetic Medicine. Sleep and Hypnosis, 20, 60-66.
http://www.sleepandhypnosis.org/ing/abstract.aspx?MkID=236
[3]  Casiglia, E., Rempelou, P., Tikhonoff, V., Giacomello, M., Finatti, F., Albertini, F., Favaro, J., Lapenta, A. M., & Facco, E. (2018b). Hypnotic Focused Analgesia Obtained through Body Dysmorphism Prevents Both Pain and Its Cardiovascular Effects. Sleep and Hypnosis, 19, 89-95.
http://dx.doi.org/10.5350/Sleep.Hypn.2016.18.0127
[4]  Casiglia, E., Rempelou, P., Tikhonoff, V., Guidotti, F., Pergher, V., Giordano, N., Testoni, I., & Facco, E. (2015). Hypnotic General Anesthesia vs. Focused Analgesia in Preventing Pain and Its Cardiovascular Effects. ATINER’s Conference Paper Series No. INM2015-1638.
[5]  Casiglia, E., Schiavon, L., Tikhonoff, V., Haxhi Nasto, H., Azzi, M., Rempelou, P., Giacomello, M., & Bolzon, M. (2007). Hypnosis Prevents the Cardiovascular Response to Cold Pressor Test. American Journal of Clinical Hypnosis, 49, 255-266.
https://doi.org/10.1080/00029157.2007.10524503
[6]  Casiglia, E., Tikhonoff, V., & Facco, E. (2016). The Unconscious Experimentally Demonstrated by Means of Hypnosis. Psychology, 7, 469-479.
https://doi.org/10.4236/psych.2016.74048
[7]  Casiglia, E., Tikhonoff, V., Giordano, N., Andreatta, E., Regaldo, G., Tosello, Rossi, A. M., & Bordin, D. (2012). Measured Outcomes with Hypnosis as an Experimental Tool in a Cardiovascular Physiology Laboratory. International Journal of Clinical and Experimental Hypnosis, 60, 241-261.
https://doi.org/10.1080/00207144.2012.648078
[8]  Casiglia, E., Tikhonoff, V., Giordano, N., Regaldo, G., Facco, E., Marchetti, P., Schiff, S., Tosello, M. T., Giacomello, M., Rossi, A. M., De Lazzari, F., Palatini, P., & Amodio, P. (2012a). Relaxation versus Fractionation as Hypnotic Deepening: Do They Differ in Physiological Changes? International Journal of Clinical and Experimental Hypnosis, 60, 338-355.
https://doi.org/10.1080/00207144.2012.675297
[9]  Casiglia. E. (2012). Why Is It So Easy to Hypnotize? Contemporary Hypnosis & Integrative Therapy, 29, 309-314.
[10]  De Pascalis, V., Russo, P., & Marucci, F. S. (2000). Italian Norms for the Harvard Group Scale of Hypnotic Susceptibility, Form A. International Journal of Clinical and Experimental Hypnosis, 48, 44-55.
https://doi.org/10.1080/00207140008410360
[11]  Facco, E., Casiglia, E., Masiero, S., Tikhonoff, V., Giacomello, M., & Zanette, G. (2011). Effects of Hypnotic Focused Analgesia on Dental Pain Threshold. International Journal of Clinical and Experimental Hypnosis, 59, 454-468.
https://doi.org/10.1080/00207144.2011.594749
[12]  Farrer, C., Franck, N., Georgieff, N., Frith, C. D., Decety, J., & Jeannerod, M. (2003). Modulating the Experience of Agency: A Positron Emission Tomography Study. Neurolmage, 18, 324-333.
https://doi.org/10.1016/S1053-8119(02)00041-1
[13]  Farrow, T. F., Zheng, Y., Wilkinson, I. D., Spence, S. A., Deakin, J. F., Tarrie, N., Griffiths, P. D., & Woodruff, P. W. (2001). Investigating the Functional Anatomy of Empathy and Forgiveness. Neuroreport, 12, 2433-2438.
https://doi.org/10.1097/00001756-200108080-00029
[14]  Faymonville, M. E., Laureys, S., Degueldre, C., Del Fiore, G., Luxen, A., Franck, G., Lamy, M., & Maquet, P. (2000). Neural Mechanisms of Antinociceptive Effects of Hypnosis. Anesthesiology, 92, 1257-1267.
https://doi.org/10.1097/00000542-200005000-00013
[15]  Freeman, R., Barabasz, A., Barabasz, M., & Warner, D. (2000). Hypnosis and Distraction Differ in Their Effects on Cold Pressor Pain. American Journal of Clinical Hypnosis, 43, 137-148.
https://doi.org/10.1080/00029157.2000.10404266
[16]  Fukushima, H., Goto, Y., Maeda, T., Kato, M., & Umeda, S. (2013). Neural Substrates for Judgment of Self-Agency in Ambiguous Situations. PLoS ONE, 8, e72267.
https://doi.org/10.1371/journal.pone.0072267
[17]  Giordano, N., Tikhonoff, V., Tosello, M. T., Lapenta, A. M., & Casiglia, E. (2012). An Experimental Approach to Hypnotic Age Regression: Controlled Study over 10 Healthy Participants. Contemporary Hypnosis and Integrative Therapy, 29, 271-283.
[18]  Hannawi, Y., Lindquist, M. A., Caffo, B. S., Sair, H. I., & Stevens, R. D. (2015). Resting Brain Activity in Disorders of Consciousness: A Systematic Review and Meta-Analysis. Neurology, 84, 1272-1280.
https://doi.org/10.1212/WNL.0000000000001404
[19]  Insel, T. R. (2010). Faulty Circuits. Scientific American, 302, 44-51.
https://doi.org/10.1038/scientificamerican0410-44
[20]  Kang, S. Y., Im, C. H., Shim, M., Nahab, F. B., Park, J., Kim, D. W., Kakareka, J., Miletta, N., & Hallett, M. (2015). Brain Networks Responsible for Sense of Agency: An EEG Study. PLoS ONE, 10, e0135261.
https://doi.org/10.1371/journal.pone.0135261
[21]  Kerestes, R., Ladouceur, C. D., Meda, S., Nathan, P. J., Blumberg, H. P., Maloney, K., Ruf, B., & Saricicek, A. (2012). Abnormal Prefrontal Activity Subserving Attentional Control of Emotion in Remitted Depressed Patients during a Working Memory Task with Emotional Distracters. Psychological Medicine, 42, 29-40.
https://doi.org/10.1017/S0033291711001097
[22]  Koubeissi, M. Z., Bartolomei, F., Beltagy, A., & Picard, F. (2014). Electrical Stimulation of a Small Brain Area Reversibly Disrupts Consciousness. Epilepsy & Behavior, 37, 32-35.
https://doi.org/10.1016/j.yebeh.2014.05.027
[23]  Lane, R. D., Reiman, E. M., Bradley, M. M., Lang, P. J., Ahern, G. L., Davidson, R. J., & Schwartz, G. E. (1997). Neuroanatomical Correlates of Pleasant and Unpleasant Emotion. Neuropsychologia, 35, 1437-1444.
https://doi.org/10.1016/S0028-3932(97)00070-5
[24]  Lauro, L. J., Tettamanti, M., Cappa, S. F., & Papagno, C. (2008). Idiom Comprehension: A Prefrontal Task? Cerebral Cortex, 18, 162-170.
https://doi.org/10.1093/cercor/bhm042
[25]  Locke, D. E. C. (2013). Interpreting the MMPI-2-RF. The Clinical Neuropsychologist, 27, 339-341.
https://doi.org/10.1080/13854046.2012.742291
[26]  Longe, O., Maratos, F. A., Gilbert, P., Evans, G., Volker, F., Rockliff, H., & Rippon, G. (2010). Having a Word with Yourself: Neural Correlates of Self-Criticism and Self-Reassurance. Neurolmage, 49, 1849-1856.
https://doi.org/10.1016/j.neuroimage.2009.09.019
[27]  Mazza, M., Di Michele, V., Pollice, R., Casacchia, M., & Roncone, R. (2008). Pragmatic Language and Theory of Mind Deficits in People with Schizophrenia and Their Relatives. Psychopathology, 41, 254-263.
https://doi.org/10.1159/000128324
[28]  Mazzoni, G., Venneri, A., McGeown, W. J., & Kirsch, I. (2013). Neuroimaging Resolution of the Altered State Hypothesis. Cortex, 49, 400-410.
https://doi.org/10.1016/j.cortex.2012.08.005
[29]  McGeown, W., Mazzoni, G., Venneri, A., & Kirsch, I. (2009). Hypnotic Induction Decreases Anterior Default Mode Activity. Consciousness and Cognition, 18, 848-855.
https://doi.org/10.1016/j.concog.2009.09.001
[30]  Nahab, F. B., Kundu, P., Gallea, C., Kakareka, J., Pursley, R., Pohida, T., Miletta, N., Friedman, J., & Hallett, M. (2011). The Neural Processes Underlying Self-Agency. Cerebral Cortex, 21, 48-55.
https://doi.org/10.1093/cercor/bhq059
[31]  Nahab, F. B., Kundu, P., Maurer, C., Shen, Q., & Hallett, M. (2017). Impaired Sense of Agency in Functional Movement Disorders: An fMRI Study. PLoS ONE, 12, e0172502.
https://doi.org/10.1371/journal.pone.0172502
[32]  Peckerman, A., Hurwitz, B. E., Saab, P. G., Llabre, M. M., MacCabe, P. M., & Schneiderman, N. (1994). Stimulus Dimensions of the Cold Pressor Test and the Associated Patterns of Cardiovascular Response. Psychophysiology, 31, 282-290.
https://doi.org/10.1111/j.1469-8986.1994.tb02217.x
[33]  Peckerman, A., Saab, P. G., McCabe, P. M., Skyler, J. S., Winters, R. W., Llabre, M. M., & Schneiderman, N. (1991). Blood Pressure Reactivity and Perception of Pain during the Forhead Cold Pressor Test. Psychophysiology, 28, 485-495.
https://doi.org/10.1111/j.1469-8986.1991.tb01985.x
[34]  Sevre, K., & Rostrup, M. (1999). Blood Pressure and Heart Rate Responses to Cold Pressor Test in Patients Admitted to Hospital Due to Chest Pain. Blood Pressure, 8, 110-113.
https://doi.org/10.1080/080370599438284
[35]  Solms, M. (2017). What Is “the Unconscious,” and Where Is It Located in the Brain? A Neuropsychoanalytic Perspective. Annals of the New York Academy of Sciences, 1406, 90-97.
https://doi.org/10.1111/nyas.13437
[36]  Stolarz, K., Staessen, J. A., Kawecka-Jaszcz, K., Brand, E., Bianchi, G., Kuznetsova, T., Tikhonoff, T., Thijs, L., Reineke, T., Babeanu, S., Casiglia, E., Fagard, R., Filipovsky, J., Peleska, J., Nikitin, Y., Struijker-Boudier, H., Grodzicki, T. (2004). Genetic Variation in CYP11B2 and AT1R Influences Heart Rate Variability Conditional on Sodium Excretion. Hypertension, 44, 156-162.
https://doi.org/10.1161/01.HYP.0000135846.91124.a5
[37]  Tikhonoff, V., Kuznetsova, T., Stolarz, L., Bianchi, G., Casiglia, E., Kawecka-Jaszcz, K., Nikitin, Y., Tizzone, L., Wang, J. G., & Staessen, J.A. (2003). β-Adducin Polymorphism, Blood Pressure, and Sodium Excretion in Three European Populations. American Journal of Hypertension, 16, 840-846.
https://doi.org/10.1016/S0895-7061(03)00975-0
[38]  Tikhonoff, V., Senzolo, M., Lapenta, A M., Palatini, P., & Casiglia, E. (2018). Hypnotic Hallucination of Body Heating Modifies Splanchnic Circulation: Haemodynamic and Ultrasonographic Pilot Study in Normal Volunteers. Sleep and Hypnosis, 20, 31-39.
http://dx.doi.org/10.5350/Sleep.Hypn.2017.19.0132
[39]  Wood, G. J., Bughi, S., Morrison, J., Tanavoli, S., Tanavoli, S., & Zadeh, H. H. (2003). Hypnosis, Differential Expression of Cytokines by T-Cell Subsets, and the Hypotha-lamo-Pituitary-Adrenal Axis. American Journal of Clinical Hypnosis, 45, 179-196.
https://doi.org/10.1080/00029157.2003.10403525

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