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A bioelectromagnetic hypothesis of chronic primary pain: from thalamocortical dysrhythmia to the consciousness-brain
Muhammad Khatib1, Dror Robinson1,2, Mustafa Yassin1,3
1Orthopedic Research Unit, Hasharon Hospital, Rabin Medical Center, Petah Tikva, Israel.
Abstract:
The World Health Organization's 2019 recognition in ICD-11 that chronic primary pain constitutes a disease in its own right demands novel conceptual frameworks. Current models focusing on peripheral and central sensitization, while valuable, may describe downstream manifestations rather than primary etiology. We hypothesize that chronic pain may arise from disruption of bioelectromagnetic coherence at the interface where consciousness and neural tissue interact-upstream of the cytokine cascades, neuroinflammation, central sensitization, and epigenetic modifications typically studied as pain mechanisms. Convergent lines of evidence support this hypothesis: (1) thalamocortical dysrhythmia documented in chronic pain patients via magnetoencephalography, with therapeutic correction producing pain relief; (2) heart rate variability abnormalities and reduced cardiac coherence consistently found in chronic pain populations; (3) photobiomodulation efficacy in randomized controlled trials suggesting electromagnetic etiology; (4) mitochondrial bioenergetic dysfunction preceding inflammatory cascades; (5) ultra-weak photon emission alterations correlating with disease states; and (6) circadian rhythm disruption patterns in chronic pain conditions. This framework positions inflammatory cascades, glial activation, and central sensitization as potential downstream consequences of bioelectromagnetic disruption rather than primary causes. The hypothesis generates falsifiable predictions and suggests novel therapeutic approaches targeting electromagnetic coherence restoration.

