Fiche société
Assistance Publique Hopitaux De Marseille
Traitements, essais et publications liés.
Traitements9programmes
Essais5liés
Publications8liées
SourceDBlocale
Traitements
9| Molécule | Indication / population | Phase | Objectif | Pays | Résultat |
|---|---|---|---|---|---|
| inhomogeneous Magnetisation Transfer (ihMT) sequenceThe development of in vivo biomarkers sensitive to myelin disruption represents a major clinical need to be able to monitor the demyelination processes as well as the effect of remyelinating therapies in multiple sclerosis. The investigators recently proposed a technique, derived from the conventional magnetisation transfer (MT): inhomogeneous Magnetisation Transfer (ihMT). In preliminary studies, this simple-to-implement and robust technique has shown great sensitivity for evaluating the demyelination processes. The goal of the project is to evaluate the ability of ihMT to measure and describe the spontaneous demyelination and remyelination processes involved in active lesions in a population of patients with MS at the the disease onset. | SEP | Non applicable | Remyélinisation | France | À vérifier |
| inhomogeneous Magnetisation Transfer (ihMT) sequence at 3TThe development of in vivo biomarkers sensitive to myelin disruption represents a major clinical need to be able to monitor the demyelination processes as well as the effect of remyelinating therapies in multiple sclerosis. The investigators recently proposed a technique, derived from the conventional magnetisation transfer (MT): inhomogeneous Magnetisation Transfer (ihMT). In preliminary studies, this simple-to-implement and robust technique has shown great sensitivity for evaluating the demyelination processes. The goal of the project is to evaluate the ability of ihMT to measure and describe the spontaneous demyelination and remyelination processes involved in active lesions in a population of patients with MS at the the disease onset. | SEP | Non applicable | Remyélinisation | France | À vérifier |
| MESO7 — Integrating Metabolism, Connectivity, and Mesoscale Imaging at Ultra-high Field to Decipher Mechanisms of Resilience and Neurodegeneration in Neurological Diseases and HealThe MESO7 study is a prospective observational research project designed to investigate the mechanisms of resilience and neurodegeneration in neurological diseases and healthy aging. It leverages advanced multiparametric brain and spinal cord imaging at high (3T) and ultra-high magnetic fields (7T) to assess structural, functional, metabolic, and mesoscale changes in the central nervous system (CNS). Particular emphasis is placed on sodium (23Na-MRI) and phosphorus (31P-MRI) imaging, along with layer-dependent brain connectivity analysis. The primary objective is to evaluate the impact of neuronal energy failure, measured via sodium concentration, on functional and structural reorganization in both healthy individuals and patients with various neurological conditions. Directed brain network models will be constructed from MRI data to quantify the connectivity strength (in- and out-degree) of cortical nodes. These connectivity metrics will be correlated with sodium concentrations to assess energy failure and its role in network reorganization. Longitudinal follow-up over two years is planned for subgroups with clinically progressive diseases. Secondary objectives include decoding metabolic, microstructural, and functional signatures of successful aging at the laminar level; characterizing disease-specific patterns of cortical and spinal microstructure associated with physical and cognitive dysfunction; describing longitudinal mesoscale and metabolic changes; and generating representative normative imaging datasets for the neuroscience community. The study plans to enroll a total of 540 patients across 9 neurological conditions:Multiple Sclerosis (MS), Neuromyelitis Optica Spectrum Disorders (NMOSD), MOG Antibody Disease (MOGAD), Alzheimer's disease, Parkinson's disease, Amyotrophic Lateral Sclerosis (ALS), temporal and non-temporal epilepsy, and mild traumatic brain injury (mTBI),in addition to 160 age- and sex-matched healthy controls, totaling 700 participants. Imaging and clinical assessments will be performed at the CEMEREM center at Timone University Hospital, AP-HM, Marseille, France. Each participant will undergo multiparametric brain and spinal cord MRI, including DTI, BOLD, MP2RAGE, SWI, quantitative sodium and phosphorus imaging, and functional assessments including neuropsychological testing, visual and motor function tests. Disease-specific assessments such as OCT, evoked potentials, and disability scores (e.g., EDSS for MS) will also be included when appropriate. The study is expected to improve understanding of CNS adaptation mechanisms and support the development of more accurate diagnostic and prognostic tools for neurodegenerative diseases | Sclérose latérale amyotrophique, SEP | À vérifier | France | À vérifier | |
| PEPSY — Prognosis of Epilepsy With Post-traumatic Stress Disorder and SurgeryWhy is this study being conducted? For people with drug-resistant focal epilepsy, surgery, to remove the part of the brain where seizures start, is currently the most effective treatment. In many people, especially those with temporal lobe epilepsy, surgery can stop seizures completely and improve quality of life. However, doctors usually predict the chances of surgical success using brain scans and other neurological tests, while the possible influence of psychological and social factors remains less well understood. Mental health is an important part of overall health. People living with epilepsy are more likely than the general population to experience anxiety, depression, and post-traumatic stress disorder (PTSD). PTSD can develop after experiencing traumatic events and may affect emotional well-being, daily activities, relationships, and physical health. Some studies suggest that PTSD may affect brain networks involved in epilepsy. This raises an important question: could PTSD influence the success of epilepsy surgery? We hypothesize that PTSD and other psychological or social factors may affect surgical outcomes and recovery after surgery. At present, there is limited evidence available to answer this question. What is the aim of the study? The main objective of this study is to determine whether PTSD affects the success of epilepsy surgery two years after the operation. The study also aims to: * Describe the medical, psychological, and social characteristics of people undergoing epilepsy surgery and estimate how common traumatic experiences and PTSD are in this population; * Assess changes in PTSD symptoms, anxiety, depression, quality of life, social vulnerability, and patient satisfaction before and after surgery; * Identify biological, psychological, and social factors associated with successful surgical outcomes. Rather than focusing only on seizure control, this study aims to improve understanding of the factors that contribute to recovery, quality of life, and long-term well-being after epilepsy surgery. The findings may help healthcare professionals provide more personalized support before and after surgery. Who can take part? Between September 2026 and September 2028, the study will recruit 42 adults with drug-resistant focal epilepsy who are being evaluated for resective epilepsy surgery at Timone University Hospital in Marseille, France. What does participation involve? Participants will join the study approximately three months before surgery and will be followed for two years after the operation. During routine pre-operative and post-operative follow-up visits, participants will complete validated self-report questionnaires about: * Traumatic experiences and PTSD symptoms; * Anxiety and depression; * Quality of life; * Social vulnerability; * Satisfaction with surgery. Participants whose questionnaire results suggest possible PTSD will be offered a routine psychiatric assessment to confirm the diagnosis. Based on these assessments, participants will be classified into one of two groups: people with PTSD and people without PTSD. The study will also use clinical information routinely collected as part of epilepsy care, including brain imaging, electroencephalography (EEG), and neuropsychological assessments. What are the expected benefits of this research? This study may improve understanding of how psychological and social factors influence epilepsy surgery outcomes. The results may help healthcare professionals better identify patients who could benefit from additional support before and after surgery. In the future, the findings could contribute to the development of more personalized care pathways, including advanced practice nursing follow-up, improved mental health screening, and targeted support to enhance seizure outcomes, quality of life, emotional well-being, and patient satisfaction after epilepsy surgery | Épilepsie | À vérifier | Traitement symptomatique | À vérifier | |
| Pulvinar deep brain stimulationDeep brain stimulation (DBS) is one of the neuromodulation techniques that can be indicated in patients suffering from refractory epilepsies, especially when an open resection has failed or is not indicated, and vagal nerve stimulation (VNS) demonstrated no efficacy. Benefits such as reduction of seizure frequency have been shown for thalamic stimulation of the anterior thalamic nucleus (ANT), however it has limited efficacy and non-optimal neurocognitive outcome, making the search for other targets crucial in this context. We propose a novel target for DBS stimulation in drug-resistant epilepsy namely the medial pulvinar thalamic nucleus (PuM). This target has been chosen based on previous retrospective studies demonstrating that PuM is involved during focal seizures and in loss of consciousness and seizure termination. PuM stimulation also showed potential encouraging results based on the feasibility and safetu studies recently published. The main objective is to obtain a significant percentage of seizure reduction after 12 months of PuM stimulation compared to baseline period. Quality of life and the relationship with psychiatric and cognitive comorbidities will also be assessed. | Épilepsie | Non applicable | À vérifier | France | À vérifier |
| MESO7 — Integrating Metabolism, Connectivity, and Mesoscale Imaging at Ultra-high Field to Decipher Mechanisms of Resilience and Neurodegeneration in Neurological Diseases and HealThe MESO7 study is a prospective observational research project designed to investigate the mechanisms of resilience and neurodegeneration in neurological diseases and healthy aging. It leverages advanced multiparametric brain and spinal cord imaging at high (3T) and ultra-high magnetic fields (7T) to assess structural, functional, metabolic, and mesoscale changes in the central nervous system (CNS). Particular emphasis is placed on sodium (23Na-MRI) and phosphorus (31P-MRI) imaging, along with layer-dependent brain connectivity analysis. The primary objective is to evaluate the impact of neuronal energy failure, measured via sodium concentration, on functional and structural reorganization in both healthy individuals and patients with various neurological conditions. Directed brain network models will be constructed from MRI data to quantify the connectivity strength (in- and out-degree) of cortical nodes. These connectivity metrics will be correlated with sodium concentrations to assess energy failure and its role in network reorganization. Longitudinal follow-up over two years is planned for subgroups with clinically progressive diseases. Secondary objectives include decoding metabolic, microstructural, and functional signatures of successful aging at the laminar level; characterizing disease-specific patterns of cortical and spinal microstructure associated with physical and cognitive dysfunction; describing longitudinal mesoscale and metabolic changes; and generating representative normative imaging datasets for the neuroscience community. The study plans to enroll a total of 540 patients across 9 neurological conditions:Multiple Sclerosis (MS), Neuromyelitis Optica Spectrum Disorders (NMOSD), MOG Antibody Disease (MOGAD), Alzheimer's disease, Parkinson's disease, Amyotrophic Lateral Sclerosis (ALS), temporal and non-temporal epilepsy, and mild traumatic brain injury (mTBI),in addition to 160 age- and sex-matched healthy controls, totaling 700 participants. Imaging and clinical assessments will be performed at the CEMEREM center at Timone University Hospital, AP-HM, Marseille, France. Each participant will undergo multiparametric brain and spinal cord MRI, including DTI, BOLD, MP2RAGE, SWI, quantitative sodium and phosphorus imaging, and functional assessments including neuropsychological testing, visual and motor function tests. Disease-specific assessments such as OCT, evoked potentials, and disability scores (e.g., EDSS for MS) will also be included when appropriate. The study is expected to improve understanding of CNS adaptation mechanisms and support the development of more accurate diagnostic and prognostic tools for neurodegenerative diseases | SEP | À vérifier | France | À vérifier | |
| inhomogeneous Magnetisation Transfer (ihMT) sequenceThe development of in vivo biomarkers sensitive to myelin disruption represents a major clinical need to be able to monitor the demyelination processes as well as the effect of remyelinating therapies in multiple sclerosis. The investigators recently proposed a technique, derived from the conventional magnetisation transfer (MT): inhomogeneous Magnetisation Transfer (ihMT). In preliminary studies, this simple-to-implement and robust technique has shown great sensitivity for evaluating the demyelination processes. The goal of the project is to evaluate the ability of ihMT to measure and describe the spontaneous demyelination and remyelination processes involved in active lesions in a population of patients with MS at the the disease onset. | SEP | Non applicable | Remyélinisation | France | À vérifier |
| Pulvinar deep brain stimulationDeep brain stimulation (DBS) is one of the neuromodulation techniques that can be indicated in patients suffering from refractory epilepsies, especially when an open resection has failed or is not indicated, and vagal nerve stimulation (VNS) demonstrated no efficacy. Benefits such as reduction of seizure frequency have been shown for thalamic stimulation of the anterior thalamic nucleus (ANT), however it has limited efficacy and non-optimal neurocognitive outcome, making the search for other targets crucial in this context. We propose a novel target for DBS stimulation in drug-resistant epilepsy namely the medial pulvinar thalamic nucleus (PuM). This target has been chosen based on previous retrospective studies demonstrating that PuM is involved during focal seizures and in loss of consciousness and seizure termination. PuM stimulation also showed potential encouraging results based on the feasibility and safetu studies recently published. The main objective is to obtain a significant percentage of seizure reduction after 12 months of PuM stimulation compared to baseline period. Quality of life and the relationship with psychiatric and cognitive comorbidities will also be assessed. | Épilepsie | Non applicable | À vérifier | France | À vérifier |
| PEPSY — Prognosis of Epilepsy With Post-traumatic Stress Disorder and SurgeryWhy is this study being conducted? For people with drug-resistant focal epilepsy, surgery, to remove the part of the brain where seizures start, is currently the most effective treatment. In many people, especially those with temporal lobe epilepsy, surgery can stop seizures completely and improve quality of life. However, doctors usually predict the chances of surgical success using brain scans and other neurological tests, while the possible influence of psychological and social factors remains less well understood. Mental health is an important part of overall health. People living with epilepsy are more likely than the general population to experience anxiety, depression, and post-traumatic stress disorder (PTSD). PTSD can develop after experiencing traumatic events and may affect emotional well-being, daily activities, relationships, and physical health. Some studies suggest that PTSD may affect brain networks involved in epilepsy. This raises an important question: could PTSD influence the success of epilepsy surgery? We hypothesize that PTSD and other psychological or social factors may affect surgical outcomes and recovery after surgery. At present, there is limited evidence available to answer this question. What is the aim of the study? The main objective of this study is to determine whether PTSD affects the success of epilepsy surgery two years after the operation. The study also aims to: * Describe the medical, psychological, and social characteristics of people undergoing epilepsy surgery and estimate how common traumatic experiences and PTSD are in this population; * Assess changes in PTSD symptoms, anxiety, depression, quality of life, social vulnerability, and patient satisfaction before and after surgery; * Identify biological, psychological, and social factors associated with successful surgical outcomes. Rather than focusing only on seizure control, this study aims to improve understanding of the factors that contribute to recovery, quality of life, and long-term well-being after epilepsy surgery. The findings may help healthcare professionals provide more personalized support before and after surgery. Who can take part? Between September 2026 and September 2028, the study will recruit 42 adults with drug-resistant focal epilepsy who are being evaluated for resective epilepsy surgery at Timone University Hospital in Marseille, France. What does participation involve? Participants will join the study approximately three months before surgery and will be followed for two years after the operation. During routine pre-operative and post-operative follow-up visits, participants will complete validated self-report questionnaires about: * Traumatic experiences and PTSD symptoms; * Anxiety and depression; * Quality of life; * Social vulnerability; * Satisfaction with surgery. Participants whose questionnaire results suggest possible PTSD will be offered a routine psychiatric assessment to confirm the diagnosis. Based on these assessments, participants will be classified into one of two groups: people with PTSD and people without PTSD. The study will also use clinical information routinely collected as part of epilepsy care, including brain imaging, electroencephalography (EEG), and neuropsychological assessments. What are the expected benefits of this research? This study may improve understanding of how psychological and social factors influence epilepsy surgery outcomes. The results may help healthcare professionals better identify patients who could benefit from additional support before and after surgery. In the future, the findings could contribute to the development of more personalized care pathways, including advanced practice nursing follow-up, improved mental health screening, and targeted support to enhance seizure outcomes, quality of life, emotional well-being, and patient satisfaction after epilepsy surgery | Épilepsie | À vérifier | Traitement symptomatique | À vérifier |
Essais cliniques
5| Molécule | Indication / population | Phase | NCT | Titre | Statut |
|---|---|---|---|---|---|
| PEPSY — Prognosis of Epilepsy With Post-traumatic Stress Disorder and Surgery | Épilepsie | À vérifier | NCT07718542 | PEPSY — Prognosis of Epilepsy With Post-traumatic Stress Disorder and Surgery | NOT_YET_RECRUITING |
| Pulvinar deep brain stimulation | Épilepsie | Non applicable | NCT04692701 | PULSE — Pulvinar Stimulation in Epilepsy: a Pilot Study | COMPLETED |
| inhomogeneous Magnetisation Transfer (ihMT) sequence | SEP | Non applicable | NCT03600779 | ihMTMS — Application of ihMT MRI in Multiple Sclerosis | RECRUITING |
| MRI scanning | Épilepsie | NA | NCT02603640 | VIBRATIONS — " Virtual Brain "-Based Interpretation of Electrophysiological Signals in Epilepsy | COMPLETED |
| MESO7 — Integrating Metabolism, Connectivity, and Mesoscale Imaging at Ultra-high Field to Decipher Mechanisms of Resilience and Neurodegeneration in Neurological Diseases and Heal | SEP | À vérifier | NCT07202494 | MESO7 — Integrating Metabolism, Connectivity, and Mesoscale Imaging at Ultra-high Field to Decipher Mechanisms of Resilience and Neurodegeneration in Neurological Diseases and Healthy Aging | RECRUITING |
Publications
8| Molécule | Indication / population | Titre | Journal | Date |
|---|---|---|---|---|
| Pulvinar deep brain stimulation | A comprehensive review of deep brain stimulation for drug-resistant epilepsy. | Frontiers in neurology | ||
| Pulvinar deep brain stimulation | Thalamic neuromodulation for pediatric drug-resistant epilepsy: a case series evaluating deep brain stimulation and responsive neurostimulation. | Journal of neurosurgery. Pediatrics | ||
| Pulvinar deep brain stimulation | Pulvinar and anterior nucleus of the thalamus dual-network neuromodulation for complex epilepsies. | Epilepsia | ||
| inhomogeneous Magnetisation Transfer (ihMT) sequence | Structural Characterization of Cardiac Free-Running Purkinje Fibers Using Inhomogeneous Magnetization Transfer (ihMT): A Proof of Concept MRI-Histology Approach. | NMR in biomedicine | ||
| inhomogeneous Magnetisation Transfer (ihMT) sequence at 3T | Three-dimensional inhomogeneous magnetization transfer with rapid gradient-echo (3D ihMTRAGE) imaging. | Magnetic resonance in medicine | ||
| inhomogeneous Magnetisation Transfer (ihMT) sequence at 3T | Combining inhomogeneous magnetization transfer and multipoint Dixon acquisition: Potential utility and evaluation. | Magnetic resonance in medicine | ||
| inhomogeneous Magnetisation Transfer (ihMT) sequence | SNR-Efficient Inhomogeneous Magnetization Transfer (ihMT) for Clinical Applications at 7 T. | Magnetic resonance in medicine | ||
| inhomogeneous Magnetisation Transfer (ihMT) sequence | Dipolar Order Mapping Based on Spin-Lock Magnetic Resonance Imaging. | NMR in biomedicine |