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International Journal of Research and Innovation in Applied Science (IJRIAS)

A Neurocognitive Framework to Explain Apparent Extrasensory Perception & Object Identification under Blindfold Conditions

bySanjay Kaushik; Aditi Kaushik

Published January 22, 2026  •  Vol. 11, Issue 1, pp. 164–176Open Access
DOI: 10.51584/IJRIAS.2026.11010013

Abstract

Claims that blindfolded youngsters can identify items, read text, or describe images are widely promoted in educational and commercial programs, which are commonly referred to as "midbrain activation" or intuition training. Proponents of these programs frequently interpret such examples as proof of extrasensory perception (ESP), nonverbal cognition, or enhanced intuitive ability. However, these ideas are unsupported by actual evidence and contradict well-established sensory neuroscience principles. Recent research in vision science, cognitive psychology, and neuroimaging suggests that even severely degraded visual input can be sufficient for object recognition when paired with predictive coding and memory-based template matching. Peripheral vision and low-resolution retinal input, which are frequently disregarded in lay explanations, provide partial information that the brain can use for shape, contour, and color processing. Furthermore, top-down modulation from the prefrontal, orbitofrontal, and parietal cortex aids in the reconstruction of missing information, allowing for quick perceptual inference from partial sensory data. Furthermore, cognitive and social factors such as ideomotor effects, attentional bias, expectancy, and reinforcement can exaggerate perceived task accuracy, creating the appearance of exceptional ability. In this study, we investigate these assertions using a rigorous neuroscientific approach. We propose a mechanistic model that incorporates low-level visual leakage, coarse peripheral cue extraction, predictive coding, and memory-driven template matching into the ventral visual stream. We highlight the functions of V1-V4, the inferotemporal cortex, the lateral occipital cortex, and higher-order top-down networks in reconstructing object identity from degraded or incomplete sensory input. By mapping these brain and cognitive processes, we provide a holistic framework for explaining actions that are frequently misattributed to non-visual or psychic powers, highlighting the value of controlled experimental paradigms and evidence-based evaluation in educational and training settings.

Keywords: Predictive coding, Ventral visual stream, Inferotemporal cortex, Memory template matching

JournalInternational Journal of Research and Innovation in Applied Science (IJRIAS)
ISSN2454-6194
Volume / IssueVolume 11, Issue 1
Pages164–176
Publication dateJanuary 22, 2026
DOI10.51584/IJRIAS.2026.11010013
PublisherRSIS International
LicenseOpen Access

How to cite this article

Sanjay Kaushik, & Aditi Kaushik (2026). A Neurocognitive Framework to Explain Apparent Extrasensory Perception & Object Identification under Blindfold Conditions. International Journal of Research and Innovation in Applied Science (IJRIAS), 11(1), 164-176. https://doi.org/10.51584/IJRIAS.2026.11010013

BibTeX

@article{Sanjay2026,
  title   = {A Neurocognitive Framework to Explain Apparent Extrasensory Perception & Object Identification under Blindfold Conditions},
  author  = {Sanjay Kaushik and Aditi Kaushik},
  journal = {International Journal of Research and Innovation in Applied Science (IJRIAS)},
  volume  = {11},
  number  = {1},
  pages   = {164--176},
  year    = {2026},
  doi     = {10.51584/IJRIAS.2026.11010013},
  publisher = {RSIS International}
}