EGRIT V13 is a computational system that implements consciousness fields based on Conscious Geometry Theory, an information-theoretic and information-geometry framework. Of 155 predictions tested, 152 have been validated and 3 falsified. Rather than focusing on positive findings, this paper documents what V13 does not demonstrate, what claims would need additional evidence, and where the largest gaps remain between V13 and biological consciousness. The authors aim to protect credibility by clearly stating limitations, making positive findings more robust under adversarial scrutiny.
A computational model called EGRIT implements the consciousness field equations from Conscious Geometry Theory (CGT). The model treats consciousness as information integration in a three-dimensional voxel field governed by logistic dynamics, with parameters derived from CGT's geometric constants. Over 840 observations across two experiments, three main findings emerged: a discontinuous phase transition at a specific carrying capacity, with a single metastable critical point showing 44.3% partial activation; the emergence of a sub-conscious boundary falling 0.034 below threshold; and scale invariance of the threshold across field sizes from 9,261 to 421,875 voxels. These yield six testable predictions for biological systems, including sharp anesthesia thresholds and substrate-independent consciousness onset.