Changes in music-evoked emotion and ventral striatal functional connectivity after psilocybin therapy for depression

灵霉素 无血性 心理学 功能磁共振成像 音乐疗法 默认模式网络 愉快 听力学 可视模拟标度 致幻剂 神经科学 心理治疗师 精神科 医学 麻醉
作者
Melissa Shukuroglou,Leor Roseman,Matthew B. Wall,David Nutt,Mendel Kaelen,Robin Carhart‐Harris
出处
期刊:Journal of Psychopharmacology [SAGE Publishing]
卷期号:37 (1): 70-79 被引量:19
标识
DOI:10.1177/02698811221125354
摘要

Background: Music listening is a staple and valued component of psychedelic therapy, and previous work has shown that psychedelics can acutely enhance music-evoked emotion. Aims: The present study sought to examine subjective responses to music before and after psilocybin therapy for treatment-resistant depression, while functional magnetic resonance imaging (fMRI) data was acquired. Methods: Nineteen patients with treatment-resistant depression received a low oral dose (10 mg) of psilocybin, and a high dose (25 mg) 1 week later. fMRI was performed 1 week prior to the first dosing session and 1 day after the second. Two scans were conducted on each day: one with music and one without. Visual analogue scale ratings of music-evoked ‘pleasure’ plus ratings of other evoked emotions (21-item Geneva Emotional Music Scale) were completed after each scan. Given its role in musical reward, the nucleus accumbens (NAc) was chosen as region of interest for functional connectivity (FC) analyses. Effects of drug (vs placebo) and music (vs no music) on subjective and FC outcomes were assessed. Anhedonia symptoms were assessed pre- and post-treatment (Snaith–Hamilton Pleasure Scale). Results: Results revealed a significant increase in music-evoked emotion following treatment with psilocybin that correlated with post-treatment reductions in anhedonia. A post-treatment reduction in NAc FC with areas resembling the default mode network was observed during music listening (vs no music). Conclusion: These results are consistent with current thinking on the role of psychedelics in enhancing music-evoked pleasure and provide some new insight into correlative brain mechanisms.
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