Skip to content

Brain Bases of Natural Scenes's Visual Perception of Natural Scenes

Brain Bases of Visual Perceptionnatural Scenes of Natural Scenes.

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT02840305
Acronym
SCENES
Enrollment
141
Registered
2016-07-21
Start date
2012-04-30
Completion date
2016-08-31
Last updated
2017-01-18

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Healthy Volunteer

Keywords

Natural scenes, Brain bases, Visual perception, MRI

Brief summary

Using the available data from psychophysics, cellular electrophysiology and functionnal neuroanatomy of visual pathway, current models of visual recognition suppose that the perception of scenes start with a parallel extraction of differents elementary visual characteristics to different spatial frequencies according to a default processing principle named : 'coarse-to-fine'. According to this principle, the visual scene's analysis would be decomposed in two steps. Fisrt, the fast analysis of the global information borne by low frequency of the scene will provide an overview of the scene's structure and would enable a first perceptive categorisation which would be then refined, approved or denied by the latest analysis of the most local, detailed and precise information, carried by the very high spatial frequency of the scene. The research carried out since several years is preparing a biologically plausible model and to find brain bases by different imaging techniques among healthy subjects but also patients with a brain lesion and patients with a peripheral lesion. The main goal of this Magnetic Resonance Imaging study is to find brain bases of natural scenes's visual perception of the natural scenes. Three studies in Magnetic Resonance Imaging will be conducted, during which subjects will have to categorize pictures of natural scenes filtered in spatial frequencies. The outcome of this study will allow to refine models of visual recognition, most of them based on analysis of spatial frequencies.

Interventions

OTHEREvaluation of visual function
OTHERMagnetic Resonance Imaging

Sponsors

University Hospital, Grenoble
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
4 Years to No maximum
Healthy volunteers
Yes

Inclusion criteria

for young adults : * Subjet over 18 years and less than 30 years * Affiliation to a social security * Free signed consent * Medical exam done before participation to the study * Normal or corrected visual acuity

Exclusion criteria

four young adults : * Counter-argument to MRI * Pregnant, breast-feeding or parturient women * Adults non protected or unable to express their consent * Adults protected * Important earing or visual disorder * Neuropsychiatric disorder current or past passée ou présente (exept benign epilepsy) * Severe affection on a general level (cardiac, respiratory, hematologic, renal, hépatic, cancerous) * Drug treatment in progress (exept anti-epileptic drug) likely to de modulate brain activity Inclusion Criteria for old adults : * Subjet over 50 years * Affiliation to a social security * Free signed consent * Medical exam done before participation to the study * Normal or corrected visual acuity

Design outcomes

Primary

MeasureTime frameDescription
Identify brain bases of natural scenes's visual perception of the natural scenesAbout 80 minutesEvaluation 1 = Visual tasks Experience 1 : Brain bases of spatial frequencies treatment Experience 2 : Brain bases of Computer to Film (CtF) natural scenes analysis MRI exam Experience 3 : Part of parahippocampal gyrus in Computer to Film (CtF) natural scenes analysis MRI exam About 30 minutes Evaluation 2 = Retinotopy : only adults that have shown activations inside occipital cortex during evaluation 1 MRI exam about 50 minutes

Countries

France

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026