Namaste š. Daylight is vibrationally electrical codes of appreciation, application and ascension initiation. These spectrumās of light activation enhancements are primordial in essence, just as rainbows are accessible ethereally. Through reconnecting dormant cellular access within memories, these stranded in the liquified channels needed for spiritually knowing/knowledge. For an implosive charge according with Dan Winterās research papers { http://www.fractalfield.com/conjugategravity/ }ā¦
Frightening as the prospect for trusting self mindsetās voice guidance. Our āSir_ācircumference for and of our protective or to include plateaued acquiesce of deflective avoidance. http://www.breakthru-technologies.com/technologies/e-cat-technology
While painstakingly advancing accordingly, one continues forward with knowledge acceptance beyond the written process of precise equations that indubitably needs vetting. So before seeing/sea_ing energetic points of jewels š that seemingly binds our atmospheric construct of plasmic fractals. Witnessing these āāgemsā that seem to encase our structured reality notwithstanding how many of us can also āsea-seeā these sparkling node dancing in front of our veiled visual spectral shades, yet accessible juxtaposed with the ā Mantis shrimp.ā
Almost lost this chain of observation::***::
Multisensory Parietal Cortex contributes to Visual Enhancement of Touch in Humans: A Single-Pulse TMS Study
Christina S. Konen and Patrick Haggard
Institute of Cognitive Neuroscience, University College London, London WC1N 3AR, UK
Address correspondence to: Christina S. Konen, Institute of Cognitive Neuroscience, University College London, 17 Queen Square London, WC1N 3AR, United Kingdom. Email: christina.konen@ucl.ac.uk
We used transcranial magnetic stimulation (TMS) to investigate how the visual context provided by viewing oneās own body inļ¬uĀences somatosensory processing. In the visual enhancement of touch (VET) effect, viewing the body enhances tactile acuity relative to viewing a nonbody object. Single-pulse TMS was delivered over anterior intraparietal sulcus (aIPS), which is crucial for integrating visual and somatosensory information related to the body, during the interval between a brief glimpse of the arm, or an object, and tactile stimulation. TMS to aIPS just after visual stimulation abolĀished VET, while TMS at the time of touch itself did not. Disrupting nearby areas just anterior or posterior to aIPS left the VET effect intact. Viewing the arm may activate multisensory areas in aIPS, which may then rapidly modulate somatosensory circuits. We suggest that this enhancement of touch by vision involves feedback signals from aIPS to unimodal somatosensory cortex. Our study proĀvides causal evidence of a speciļ¬c multisensory mechanism that modulates tactile processing in the human brain.
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