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Hadas Nahman‐Averbuch

2 papers in the library · publishing 2018-2024

Papers

Oral Delta-9-Tetrahydrocannabinol (THC) Increases Parasympathetic Activity and Supraspinal Conditioned Pain Modulation in Chronic Neuropathic Pain Male Patients: A Crossover, Double-Blind, Placebo-Controlled Trial.

CNS Drugs May 1, 2024 Libat Weizman, Haggai Sharon, Lior Dayan et al.

In male patients with chronic radicular neuropathic pain, a single sublingual dose of THC (0.2 mg/kg) shifted autonomic balance toward increased parasympathetic tone, as shown by a reduced low/high frequency heart rate variability ratio, and improved the body's ability to inhibit pain, measured by conditioned pain modulation. These changes correlated with increased functional connectivity between brainstem and prefrontal cortex regions, suggesting THC exerts top-down regulatory effects that may normalize multiple aspects of supraspinal pain dysregulation.

Cannabis analgesia in chronic neuropathic pain is associated with altered brain connectivity

Neurology September 5, 2018 L. Weizman, L. Dayan, S. Brill et al.

THC reduces chronic neuropathic pain by decreasing functional connectivity between the anterior cingulate cortex (ACC) and the sensorimotor cortex, as well as reducing network connectivity in the dorsolateral prefrontal cortex (DLPFC). In a randomized, double-blind, placebo-controlled trial with 15 patients, THC significantly lowered pain compared to placebo. The degree of connectivity reduction predicted individual pain relief, suggesting that baseline brain connectivity may serve as a biomarker for THC analgesic response. The effect appears mediated by a functional disconnection between cognitive-emotional regulatory regions and somatosensory areas.