Dojat, Michel, 19..-...., ingénieur
Dojat, Michel
Michel Dojat
VIAF ID: 5984071 (Personal)
Permalink: http://viaf.org/viaf/5984071
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- 100 1 _ ‡a Dojat, Michel (sparse)
- 100 1 _ ‡a Dojat, Michel, ‡d 19..-...., ‡c ingénieur
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4xx's: Alternate Name Forms (2)
Works
Title | Sources |
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3D compact timelapse microscope through intensity diffraction tomography coupled with deep neural networks.. | |
Activations cérébrales liées à l’intégration des indices locaux lors de la perception de la transparence investigation basée sur l’imagerie fonctionnelle cérébrale | |
Adaptive weighted fusion of multiple MR sequences for brain lesion segmentation | |
Agentification of Markov model-based segmentation: application to magnetic resonance brain scans | |
Analyses comportementales et fonctionnelles de l'intégration entre visage et voix pour la perception du genre. | |
Apprentissage profond pour l'aide au diagnostic et comparaison des mécanismes d'explicabilité avec l'attention visuelle humaine : application à la détection de la maladie de Crohn | |
Une approche située, coopérative et décentralisée pour l'interprétation d'images cérébrales par RMN | |
Artificial intelligence in medicine : 9th Conference on Artificial Intelligence in Medicine in Europe, AIME 2003, Protaras, Cyprus, October 18-22, 2003 : proceedings | |
Artificial intelligence in neuroimaging: four challenges to improve interpretation of brain images | |
Assessment | |
Automated segmentation of human brain MR images using a multi-agent approach. | |
Behavioral and functional imaging analyses of face and voice integration in gender perception | |
A BOLD signature of eyeblinks in the visual cortex | |
Un cadre unifié de représentation pour des études visuelles de groupe sur la base de cartes rétinotopiques acquises en IRMf à 3 T | |
Cadre unifié pour la détection de changements en IRM cérébrale : application au suivi longitudinal de patients atteints de sclérose en plaques | |
Caractérisation d'anomalies sur les données IRM des patients Parkinsoniens 'de novo' | |
Le cerveau en trompe-l'oeil des sciences cognitives : critique du plongement dans le fonctionnement cérébral de notions qui lui sont étrangères | |
Codage cortical de la synesthésie graphème-couleur | |
Computer-driven management of prolonged mechanical ventilation and weaning: a pilot study | |
Computerized protocols for the supervision of mechanically ventilated patients in critical care | |
A conditional random field approach for coupling local registration with robust tissue and structure segmentation | |
Construction d'atlas en IRM de diffusion : application à l'étude de la maturation cérébrale | |
Contributions of contour frequency, amplitude, and luminance to the watercolor effect estimated by conjoint measurement | |
A critical review of the neuroimaging literature on synesthesia | |
Desperately seeking grey matter volume changes in sleep apnea: A methodological review of magnetic resonance brain voxel-based morphometry studies. | |
Développement de représentations neuroanatomiques individuelles via un langage de domaine spécifique. | |
Développement et évaluation de méthodes d'IA pour l'harmonisation d'IRM multi-centrique : application aux études du cerveau pédiatrique | |
Effects of aging on low luminance contrast processing in humans | |
Extraction automatique de biomarqueurs sur examens tomodensitométriques standards | |
Feasibility and reliability of an automated controller of inspired oxygen concentration during mechanical ventilation | |
fMRI retinotopic mapping--step by step. | |
Global integration of local color differences in transparency perception: An fMRI study | |
Grid-wide neuroimaging data federation in the context of the NeuroLOG project. | |
Harmonisation multicentrique d'images IRM du cerveau avec des modèles génératifs non-supervisés | |
Impact of analytical variability on data compatibility in functional Magnetic Resonance Imaging studies | |
Inter-site harmonization of brain MR images with unsupervised generative models. | |
Knowledge-based information management in intensive care and anesthesia | |
Magnetic resonance imaging does not reveal structural alterations in the brain of synesthetes | |
Modèles d'encodage parcimonieux de l'activité cérébrale mesurée par IRM fonctionnelle | |
Modeling medical reasoning with the Event Calculus: an application to the management of mechanical ventilation | |
Moving illusory contours activate primary visual cortex: an fMRI study | |
Multi-level temporal abstraction for medical scenario construction | |
A multilayer ontology of instruments for neurological, behavioral and cognitive assessments | |
The Multimodal Brain Tumor Image Segmentation Benchmark (BRATS) | |
Multivariate pattern analysis of fMRI data for imaginary and real colours in grapheme-colour synaesthesia | |
Multivariate regression models for group comparison in diffusion tensor MRI. | |
The neural bases of grapheme-color synesthesia are not localized in real color-sensitive areas | |
Neural basis of disinhibition in neurodegenerative diseases : application to the particular case of behavioural variant frontotemporal dementia.. | |
Neural circuits for long-range color filling-in | |
NeuroLOG: sharing neuroimaging data using an ontology-based federated approach | |
Objective Evaluation of Multiple Sclerosis Lesion Segmentation using a Data Management and Processing Infrastructure | |
Parsimonious encoding models for brain activity measured by functional MRI. | |
Penser la conscience : passerelle entre médecine, biologie, neurosciences, psychologie et philosophie | |
Quantification et caractérisation de l'incertitude de segmentation d'images médicales pardes réseaux profonds | |
Quantifying and understanding uncertainty in deep-learning-based medical image segmentation. | |
Quantitative evaluation of fMRI retinotopic maps, from V1 to V4, for cognitive experiments | |
Realistic model for temporal reasoning in real-time patient monitoring | |
Representation of dynamic medical expertise : Application to intensive care. | |
Representing medical context using rule-based object-oriented programming techniques | |
Retinotopic and lateralized processing of spatial frequencies in human visual cortex during scene categorization | |
Scenario recognition for temporal reasoning in medical domains. | |
Segmentation des tissus et structures sur les IRM cérébrales : agents markoviens locaux et coopératifs et formulation bayésienne | |
Sequence of pattern onset responses in the human visual areas: an fMRI constrained VEP source analysis. | |
A situated, cooperative and decentralized approach for MR Brain scan interpretation. | |
Spatial selectivity of the watercolor effect | |
Statistical shape modeling of low level visual area borders. | |
Study of retinotopic spatial frequency processing of scenes and cerebral plasticity in normal and pathological aging.. | |
Study of the neural correlates of intra-saccadic motion perception by multimodal neuroimaging.. | |
Surface-based approach for cerebral functional MRI : cortical projection through an inverse problem. | |
Timing of interactions across the visual field in the human cortex | |
Towards an ontology for sharing medical images and regions of interest in neuroimaging | |
The trompe-l’œil brain of cognitive sciences : critique of embedding within the brain workings notions that are foreign to it. | |
Two new stable anatomical landmarks on the Central Sulcus: definition, automatic detection, and their relationship with primary motor functions of the hand | |
An unified representation frame for group visual studies based on 3T fMRI retinotopic maps. | |
Use of maximum end-tidal CO(2) values to improve end-tidal CO(2) monitoring accuracy | |
Use of Pattern-Information Analysis in Vision Science: A Pragmatic Examination | |
Variational Solution to the Joint Detection Estimation of Brain Activity in fMRI | |
Variational variable selection to assess experimental condition relevance in event-related fMRI | |
Vidéo-microscope 3D et compact, utilisant de la tomographie de diffraction optique sans mesure de phase couplé à des réseaux de neurones profonds | |
Which registration method for high resolution fMRI to explore hand movement cortical representation? |