Subramanian Subha, Renau Travis Rick, Perry Demetrius, Chacko Ravi, Laumann Timothy O, Flavin Karin, Horan Christine, Schweiger Julie, Metcalf Nicholas, Lenze Eric J, Snyder Abraham Z, Dosenbach Nico U F, Nicol Ginger, Siegel Joshua S
Department of Psychiatry, Beth Israel Deaconess Medical Center and Harvard Medical School, Boston, MA, 02215, USA.
Department of Psychiatry, Washington University School of Medicine in St. Louis, St. Louis, MO, USA.
Sci Data. 2025 Jun 5;12(1):941. doi: 10.1038/s41597-025-05189-0.
Psilocybin (PSIL) is a psychedelic drug and a promising experimental therapeutic for many psychiatric conditions. Precision functional mapping (PFM) combines densely repeated resting state fMRI sampling and individual-specific network mapping to improve signal-to-noise ratio (SNR) and effect size in brain imaging research. We present a randomized cross-over study in which PFM was used to characterize acute and persistent effects of psilocybin or methylphenidate (MTP) on brain networks. Seven healthy volunteers (mean age 34.1 years, SD = 9.8; n = 3 females, n = 6 Caucasians) underwent (1) extensive baseline imaging, (2) imaging beginning 60-90 minutes after drug exposure, and (3) longitudinal imaging for up to two weeks after drug exposure. Four individuals also participated in an open-label PSIL replication protocol over 6 months later. This dataset includes resting state (using advanced high-resolution multi-echo fMRI), task fMRI, structural, and diffusion basis spectral imaging as well as assessments of subjective experience. We are releasing this unique dataset as a resource for neuroscientists to study the acute and persistent effects of PSIL and MTP on brain networks.
裸盖菇素(PSIL)是一种致幻药物,也是治疗多种精神疾病的一种很有前景的实验性疗法。精准功能图谱(PFM)结合了密集重复的静息态功能磁共振成像采样和个体特异性网络图谱,以提高脑成像研究中的信噪比(SNR)和效应大小。我们开展了一项随机交叉研究,其中使用PFM来表征裸盖菇素或哌醋甲酯(MTP)对脑网络的急性和持续性影响。七名健康志愿者(平均年龄34.1岁,标准差=9.8;3名女性,6名高加索人)接受了(1)广泛的基线成像,(2)在药物暴露后60 - 90分钟开始成像,以及(3)药物暴露后长达两周的纵向成像。四个个体在6个月后还参与了一项开放标签的PSIL重复方案。该数据集包括静息态(使用先进的高分辨率多回波功能磁共振成像)、任务功能磁共振成像、结构和扩散基础光谱成像以及主观体验评估。我们发布这个独特的数据集,作为神经科学家研究PSIL和MTP对脑网络的急性和持续性影响的资源。