The study investigated the effects of the Faradarmani Consciousness Field on absolute brainwave power. Trained participants (Faradarmangars) initiated the field via a moment of attention without conventional mind-body practices. The field caused a reduction of approximately 10% to 35% in absolute power across frequency bands up to high-frequency and fast waves, with a smaller reduction of 6-8% in high beta and gamma ranges during later task intervals. The greatest contrast occurred between the initial rest and the first task period.
Exposure to the Faradarmani Consciousness Field (FCF), a non-physical entity proposed by Taheri's theory, alters brain activity differently in men and women. In 30 volunteers, 89% of all voxels showing activity change exhibited reduced activity, with 97% of these decreases occurring in women's brains. Conversely, 11% of voxels showed increased activity, and 85% of these activations were in men's brains. The most prominent activated areas in both sexes involved the motor cortex, with additional involvement of memory and attention regions. These results suggest sex-specific neural responses to this non-material field.
Task fMRI reveals that during the Faradarmani Consciousness Field (FCF) connection, the frontal lobe (Brodmann areas 6, 10, and 11) is activated, while connectivity decreases between activated clusters and the posterior cingulate gyrus (BA31) and increases between deactivated clusters and the frontal lobe (BA11/BA47). These patterns validate the effect of the FCF and indicate a distinctive brain response to this non-material, non-energetic field.