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Mark Tanner

3 papers in the library · 882 citations · publishing 2013-2017

Papers

Psilocybin for treatment-resistant depression: fMRI-measured brain mechanisms.

Sci Rep October 13, 2017 Robin L Carhart-Harris, Leor Roseman, Mark Bolstridge et al. 590 citations

In patients with treatment-resistant depression, a single dose of psilocybin combined with psychological support reduced depressive symptoms and altered brain activity and connectivity. Functional MRI scans before and after treatment showed decreased blood flow in the temporal cortex, including the amygdala, and increased resting-state functional connectivity within the default-mode network. Reduced amygdala blood flow correlated with fewer depressive symptoms. Changes in connectivity between the ventromedial prefrontal cortex and inferior lateral parietal cortex, as well as between the parahippocampus and prefrontal cortex, predicted treatment response at five weeks. These brain changes differ from the drug's acute effects and suggest a 'reset' of neural circuits.

The Effects of Acutely Administered 3,4-Methylenedioxymethamphetamine on Spontaneous Brain Function in Healthy Volunteers Measured with Arterial Spin Labeling and Blood Oxygen Level–Dependent Resting State Functional Connectivity

Biological Psychiatry January 10, 2014 Robin Carhart‐Harris, Kevin Murphy, Robert Leech et al. 182 citations

The medial temporal lobes (MTLs) are specifically involved in how MDMA works in the brain, though more research is needed to understand how the drug's characteristic subjective effects emerge from its modulation of spontaneous brain activity.

The effect of acutely administered MDMA on subjective and BOLD-fMRI responses to favourite and worst autobiographical memories

The International Journal of Neuropsychopharmacology December 17, 2013 Robin Carhart‐Harris, Matthew B. Wall, David Erritzøe et al. 110 citations

MDMA (ecstasy) makes recalling favorite autobiographical memories feel more vivid, emotionally intense, and positive, while making recall of worst memories feel less negative. In a double-blind, placebo-controlled fMRI study with 19 participants who had prior MDMA experience, 100 mg of MDMA altered brain activity during memory recall: it increased activation in the fusiform gyrus and somatosensory cortex for favorite memories and decreased activation in the left anterior temporal cortex for worst memories. These neural changes suggest MDMA creates a positive emotional bias, which may explain why it helps patients revisit traumatic memories during psychotherapy for PTSD.