Core Technological and Operational Advancements The final paper moves the concept from a theoretical outline into a practical reality through several key technical developments: * The N=2 Dyadic Scaling: The architecture has been upgraded to include Dr. Kelly's neural imaging channels alongside my own. This changes the study into a dual-operator synchronized baseline model, allowing us to track shared, non-local neural correlation waves simultaneously before an external event occurs. * Airtight Software Filtering: The central 1,000 Hz Python engine natively runs the critical Silhouette Shadow Leak Pass. This programmatic filter checks sudden light changes against radar vectors, instantly discarding environmental artifacts like cloud shadows before they can impact our neural data. * Absolute Structural Isolation: The 20 outdoor feeders are completely isolated from the building by mounting them on fixed steel poles driven directly into the ground. By separating them from the standard, untreated glass window frame, we ensure that bird landings cannot send mechanical vibrations to the indoor camera lens sensor. * Prohibition of Wireless Wearables: All consumer-grade wireless neuro-wearables are banned from the space. The environment relies entirely on tethered, shielded wet-electrode caps plugged into inline hardware optocouplers, removing variable software buffer delays and RF interference. * Total Financial Cost-Neutrality: By merging underutilized, existing hardware assets from both of our laboratory inventories, this expanded dual-operator deployment requires zero net-new institutional capital or grant outlays.
Jim Sodo Gardner (Thu,) studied this question.