Fiche société
University of Nottingham
Traitements, essais et publications liés.
Traitements14programmes
Essais7liés
Publications3liées
SourceDBlocale
Traitements
14| Molécule | Indication / population | Phase | Objectif | Pays | Résultat |
|---|---|---|---|---|---|
| LEND — Lived Experience Narratives in DementiaThe Lived Experience Narratives in Dementia (LEND) research programme involves five work packages (WP). WP1 explores how people living with dementia use narratives and how narratives can impact them. Findings will support the development of LEND theory. WP 2-3 focus on developing the digital Online LEND Intervention, assessing its usability and acceptability, and conducting a feasibility study within NHS memory assessment and community services. Activities across the first three WPs include interviews, focus groups, user-testing sessions, engagement evaluation interviews, and a two-arm randomised feasibility trial using a range of outcome measures. Findings from this stage will inform refinement of the intervention and determine the feasibility of progressing to a future randomised controlled trial (RCT) of the Online LEND Intervention. WP4 is the Online LEND Intervention two-arm RCT. WP5 involves dissemination. The protocol for WP4 and 5 have not yet been developed and rely on results from WP1-3. | Alzheimer | Non applicable | À vérifier | United Kingdom | À vérifier |
| Map HPB — In-Depth Characterisation of Biliary Strictures and Hepato-Pancreato-Biliary Focal Lesions for Development of New Technologies to Tackle Hepato-Pancreato-Biliary CancersHepato-Pancreato-Biliary (HPB) cancers originating in the liver, bile ducts, pancreas, and gall bladder represent a rising global health challenge, with incidence doubling in the UK over the past decade. Cholangiocarcinoma (CCA) and pancreatic cancer are particularly aggressive, often detected late due to non-specific symptoms and difficulties in sampling or imaging. In the UK, CCA affects around 3,000 people annually, with only 13% surviving 3 years, while pancreatic cancer has a 5-year survival of 8.3%. Diagnosis is complicated by the anatomical narrowness of the bile duct and the similarity between malignant and benign strictures. Standard imaging often cannot distinguish between inflammation and cancer, while tissue sampling is challenging, paucicellular, and limited in sensitivity, necessitating repeated biopsies. Yet, accurate characterisation is critical as NICE now recommends targeted therapies (FGFR2, NTRK, MSI-H/dMMR, IDH1 mutations) that require molecular profiling. Both CCA and PDAC display high heterogeneity, further complicating treatment. Emerging approaches such as Raman spectroscopy can map malignant tissues by detecting vibrational energy shifts, but require further validation due to weak signals. For focal or cystic HPB lesions not well visualised by conventional imaging, novel modalities like ultra-thin endoscopes with scattering/absorption imaging are being developed for improved early diagnosis. Management of biliary obstruction frequently involves stenting to restore bile flow, essential for palliation and pre-treatment optimization. However, stent failure from tumour ingrowth, displacement, or erosion remains common, and evidence for best stent use is limited. Novel approaches, including drug-eluting coatings and nanoparticle-mediated wireless treatment delivery, are being investigated. To overcome diagnostic and therapeutic barriers, flexible snake-like robotic systems with navigation, sampling, spectroscopy, and treatment capabilities are being developed. These devices, alongside ultra-thin endoscopes and integrated Raman spectroscopy, aim to characterise strictures, generate 3D imaging in ex-vivo HPB tissue, and permit targeted ablation. Parallel work will explore molecular and fluid-based biomarkers (blood, bile, cyst fluid) to support minimally invasive diagnosis and monitoring. Through integration of engineering, molecular diagnostics, and device innovation, this transdisciplinary research programme (UKRI and MRC funded) seeks to transform early detection, accurate diagnosis, and novel treatment of HPB cancers, thereby improving outcomes in CCA, pancreatic malignancy, and other clinically similar biliary disorders. Aim: To provide a detailed understanding of the characteristics (including clinical and molecular) of liver and pancreatic biliary focal lesions (inflammatory and cancerous) and create a bioresource of liver, pancreas, gallbladder and biliary tract associated tissue and fluids (biopsies, brushings, resected tissues, bile and cyst fluid and blood samples) in order to develop innovative tools for accurate diagnosis and treatment. Study Configuration: Prospective Longitudinal Cohort study Setting: Secondary care centre, Nottingham University Hospitals NHS Trust. (NUH). Co-ordinated by the NIHR Nottingham Biomedical Research Centre Description of interventions: This is an observational study involving collecting tissue or body fluids (such as bile or pancreatic cyst fluid) during clinical care in addition to collection of blood samples (for DNA, serum and plasma) and data collection. Surplus tissue residual to the requirements for standard care will be stored and used. Additional tissue samples and body fluid samples collected for research at time of clinical investigations will not be increasing the risk of the clinical procedure. Blood samples will be collected from patients at the time of enrolment in the study. These may be collected before and/ or after diagnosis is secured. Duration of study: Overall duration: 60 months Outcome measures: - To report the proportion of patients where adequate tissue could be retrieved from HPB biopsy to come to definitive diagnosis using standard of care. * To report the proportion of patients where adequate tissue could be retrieved from biopsy to perform molecular characterisation of HPB samples, beyond standard cyto/histology, using advanced optical-spatial technologies currently under development. * To report the proportion of patients where definitive diagnosis of mucinous cystic neoplasm could be made in patients with pancreatic cyst using standard care * To report the proportion of patients where molecular characterisation beyond standard cyto/histology could be made in patients with pancreatic cyst using exploratory new technologies under development through ex-vivo experiments * To report the correlation between Raman Spectroscopy and standard cyto/histology for identification of cancer in HPB samples | Cancer | À vérifier | Traitement symptomatique | United Kingdom | À vérifier |
| PoEMS — Post-operative Electrical Muscle Stimulation to Stimulate Muscle Protein Synthesis in HumansSkeletal muscle accounts for approximately 45-55% of total body mass in healthy adults and plays a pivotal role in whole-body metabolic health, locomotion and physical independence. Undesirable loss of skeletal muscle mass (atrophy) is, however, a common feature of many communicable and non-communicable diseases including ageing, bed-rest/immobilisation, cancer and physical inactivity. As such, the design of optimal strategies (e.g., different types of exercise) to "offset" these detrimental losses of muscle is a focus for both researchers and clinicians. One situation where losses of muscle mass occur very quickly (i.e., within a few days) is after surgery. However, at this time, most people (especially if they have had major abdominal or lower-limb surgery) are not able to perform exercise and as such a different strategy to maintain muscle mass needs to be found. It has been shown that electrical stimulation of the leg muscles can maintain muscle mass and function in patients after surgery. It is not however yet known, what the optimal electrical stimulation regime is to preserve muscle mass during situations of disuse. This study aims to examine the impact of three different electrical stimulation protocols on muscle building processes in individuals age-matched to those most commonly presenting for major abdominal surgery. This information will then be used in a clinical trial of surgical patients to see if it can preserve their muscle mass and function in the post-operative period. | Cancer | Non applicable | À vérifier | United Kingdom | À vérifier |
| ReHIIT_CON — Exploring Resistance Exercise Training Plus High-Intensity Interval Training (ReHIIT) as Cancer PrehabilitationColorectal cancer is the fourth most common cancer in the UK. Prehabilitation, including exercise, can improve recovery from surgery. This pilot study investigates the combined effects of resistance and high-intensity interval training (ReHIIT) in healthy adults to establish baseline physiology and responses for comparison with cancer patients | Cancer | Non applicable | À vérifier | United Kingdom | À vérifier |
| STAR-MS — Single Test to ARrive at MS Diagnosis. Using a Single MRI Brain Scan to Help Diagnose Multiple SclerosisThis is a pilot study (a small scale study testing procedures so that the investigators can apply this to a larger scale study). This study will test the accuracy of a new brain scan (Magnetic Resonance Imaging) technique in predicting the diagnosis of multiple sclerosis (MS) in patients where there is uncertainty about the diagnosis. For patients where there is a suspicion (but not definite) diagnosis of MS, an additional MRI brain scan will be offered. There will be no other research tests and the patient is followed up to see what the eventual diagnosis is. The investigators will then review the original brain scan to see if this predicted the diagnosis of MS or not. | SEP | À vérifier | À vérifier | United Kingdom | À vérifier |
| Ultrasound Vagus Nerve Stimulation (U-VNS)The Vagus nerve, one of 12 cranial nerves that connect the brain to the human body, controls specific involuntary functions such as breathing, heart rate, the digestive system and the immune system, and it is crucial to unlocking the relaxation response (parasympathetic nervous system). Vagus nerve stimulation (VNS) can be invasive or non-invasive, and both methods have been trialled in research studies. Some non-invasive VNS involves the use of a device which is placed on the skin, to send electrical impulses to the Vagus nerve. The device sends electrical impulses to some areas of the brain which changes brain activity and helps in treating certain disorders. Invasive methods utilise a surgically implanted Vagus nerve stimulator on the left Vagus nerve in the neck area. VNS is used in treatment of epilepsy and studies has shown to have a therapeutic effect on treatment resistant depression. Currently, research indicates that invasive VNS to treat anxiety yield mixed results, whilst other studies suggest that VNS with exposure-based therapies might enhance outcomes for anxiety patients. Stimulating the Vagus nerve comes with serious technical challenges. Most importantly, electric currents follow the path of least resistance. When running through biological tissues, such as skin, cartilage or bone, it is difficult to aim for the part of the body that needs to be stimulated. This means it isn't always easy to tell whether the Vagus nerve is indeed being stimulated and how much of the current is reaching the Vagus nerve. This problem can be overcome by ultrasound stimulation. Ultrasound stimulation employs high frequency sound waves to stimulate tissue. These soundwaves travel through the human body much more predictably than electric currents. As such, ultrasound stimulation of the Vagus nerve may be more effective than electrical stimulation. The ZenBud device is designed to apply ultrasound stimulation to part of the auricular branch of the Vagus nerve. Ultrasound stimulation allows for more targeted stimulation, increasing the chance of the stimulation reaching the Vagus nerve. The ZenBud device is safe for use in healthy adults and received CE marking. Before testing the therapeutic effect of the Zenbud on patients with symptoms it is important to identify physiological, cognition or emotional changes in health volunteers. Identifying these changes could lead to identifying possible future therapeutic uses for ultrasound-VNS (U-VNS). | SEP | Non applicable | Traitement symptomatique | United Kingdom | À vérifier |
| Vaccination Perception in Inflammatory Conditions - Flu, Pneumonia and COVID-19People with inflammatory diseases are often treated with medications that act to suppress the immune-system, increasing the risk of catching infections. Consequently, vaccination with the pneumonia and seasonal flu vaccines is recommended for them. They were also prioritised to receive the COVID-19 vaccines early in the national rollout. However, the uptake of the pneumonia and seasonal flu vaccines among this group is lower than ideal. There may be many reasons why they do or do not seek to be vaccinated for these infections, such as the belief it may cause their disease to flare up or lack of knowledge of vaccines effectiveness. Anecdotally there was a high uptake of COVID-19 vaccines in adults with inflammatory conditions, however, concerns about vaccine-induced disease flare-ups and reports of complications deterred some from being vaccinated. A better understanding of why people do and do not seek vaccination may result in more targeted messaging for patients to help overcome vaccine hesitancy for these infectious diseases. This study aims to explore the drivers and barriers to being vaccinated among adults with common inflammatory conditions and on immune-suppressing medication. They will be invited to participate in a single, semi-structured interview. Interviews will be face-to-face, by telephone or video-call, last up to one hour, and digitally audio-recorded. They will explore participants' understanding of pneumonia, seasonal flu and COVID-19 and the risk they pose to their health, their understanding of vaccinations, beliefs of the benefits and risks of vaccinations for these infections, and reasons for seeking or not seeking vaccination. Findings will inform messaging about being vaccinated for these infections in patient education leaflets, such as those by patient charities regularly provided at speciality clinics. They will also be disseminated to healthcare professionals to help them better understand the drivers and barriers to vaccination. | Lupus | À vérifier | Immunomodulation | United Kingdom | À vérifier |
| Vaccination Perception in Inflammatory Conditions - Flu, Pneumonia and COVID-19People with inflammatory diseases are often treated with medications that act to suppress the immune-system, increasing the risk of catching infections. Consequently, vaccination with the pneumonia and seasonal flu vaccines is recommended for them. They were also prioritised to receive the COVID-19 vaccines early in the national rollout. However, the uptake of the pneumonia and seasonal flu vaccines among this group is lower than ideal. There may be many reasons why they do or do not seek to be vaccinated for these infections, such as the belief it may cause their disease to flare up or lack of knowledge of vaccines effectiveness. Anecdotally there was a high uptake of COVID-19 vaccines in adults with inflammatory conditions, however, concerns about vaccine-induced disease flare-ups and reports of complications deterred some from being vaccinated. A better understanding of why people do and do not seek vaccination may result in more targeted messaging for patients to help overcome vaccine hesitancy for these infectious diseases. This study aims to explore the drivers and barriers to being vaccinated among adults with common inflammatory conditions and on immune-suppressing medication. They will be invited to participate in a single, semi-structured interview. Interviews will be face-to-face, by telephone or video-call, last up to one hour, and digitally audio-recorded. They will explore participants' understanding of pneumonia, seasonal flu and COVID-19 and the risk they pose to their health, their understanding of vaccinations, beliefs of the benefits and risks of vaccinations for these infections, and reasons for seeking or not seeking vaccination. Findings will inform messaging about being vaccinated for these infections in patient education leaflets, such as those by patient charities regularly provided at speciality clinics. They will also be disseminated to healthcare professionals to help them better understand the drivers and barriers to vaccination. | Lupus | À vérifier | Immunomodulation | United Kingdom | À vérifier |
| STAR-MS — Single Test to ARrive at MS Diagnosis. Using a Single MRI Brain Scan to Help Diagnose Multiple SclerosisThis is a pilot study (a small scale study testing procedures so that the investigators can apply this to a larger scale study). This study will test the accuracy of a new brain scan (Magnetic Resonance Imaging) technique in predicting the diagnosis of multiple sclerosis (MS) in patients where there is uncertainty about the diagnosis. For patients where there is a suspicion (but not definite) diagnosis of MS, an additional MRI brain scan will be offered. There will be no other research tests and the patient is followed up to see what the eventual diagnosis is. The investigators will then review the original brain scan to see if this predicted the diagnosis of MS or not. | SEP | À vérifier | À vérifier | United Kingdom | À vérifier |
| Ultrasound Vagus Nerve Stimulation (U-VNS)The Vagus nerve, one of 12 cranial nerves that connect the brain to the human body, controls specific involuntary functions such as breathing, heart rate, the digestive system and the immune system, and it is crucial to unlocking the relaxation response (parasympathetic nervous system). Vagus nerve stimulation (VNS) can be invasive or non-invasive, and both methods have been trialled in research studies. Some non-invasive VNS involves the use of a device which is placed on the skin, to send electrical impulses to the Vagus nerve. The device sends electrical impulses to some areas of the brain which changes brain activity and helps in treating certain disorders. Invasive methods utilise a surgically implanted Vagus nerve stimulator on the left Vagus nerve in the neck area. VNS is used in treatment of epilepsy and studies has shown to have a therapeutic effect on treatment resistant depression. Currently, research indicates that invasive VNS to treat anxiety yield mixed results, whilst other studies suggest that VNS with exposure-based therapies might enhance outcomes for anxiety patients. Stimulating the Vagus nerve comes with serious technical challenges. Most importantly, electric currents follow the path of least resistance. When running through biological tissues, such as skin, cartilage or bone, it is difficult to aim for the part of the body that needs to be stimulated. This means it isn't always easy to tell whether the Vagus nerve is indeed being stimulated and how much of the current is reaching the Vagus nerve. This problem can be overcome by ultrasound stimulation. Ultrasound stimulation employs high frequency sound waves to stimulate tissue. These soundwaves travel through the human body much more predictably than electric currents. As such, ultrasound stimulation of the Vagus nerve may be more effective than electrical stimulation. The ZenBud device is designed to apply ultrasound stimulation to part of the auricular branch of the Vagus nerve. Ultrasound stimulation allows for more targeted stimulation, increasing the chance of the stimulation reaching the Vagus nerve. The ZenBud device is safe for use in healthy adults and received CE marking. Before testing the therapeutic effect of the Zenbud on patients with symptoms it is important to identify physiological, cognition or emotional changes in health volunteers. Identifying these changes could lead to identifying possible future therapeutic uses for ultrasound-VNS (U-VNS). | SEP | Non applicable | Traitement symptomatique | United Kingdom | À vérifier |
| LEND — Lived Experience Narratives in DementiaThe Lived Experience Narratives in Dementia (LEND) research programme involves five work packages (WP). WP1 explores how people living with dementia use narratives and how narratives can impact them. Findings will support the development of LEND theory. WP 2-3 focus on developing the digital Online LEND Intervention, assessing its usability and acceptability, and conducting a feasibility study within NHS memory assessment and community services. Activities across the first three WPs include interviews, focus groups, user-testing sessions, engagement evaluation interviews, and a two-arm randomised feasibility trial using a range of outcome measures. Findings from this stage will inform refinement of the intervention and determine the feasibility of progressing to a future randomised controlled trial (RCT) of the Online LEND Intervention. WP4 is the Online LEND Intervention two-arm RCT. WP5 involves dissemination. The protocol for WP4 and 5 have not yet been developed and rely on results from WP1-3. | Alzheimer | Non applicable | À vérifier | United Kingdom | À vérifier |
| Map HPB — In-Depth Characterisation of Biliary Strictures and Hepato-Pancreato-Biliary Focal Lesions for Development of New Technologies to Tackle Hepato-Pancreato-Biliary CancersHepato-Pancreato-Biliary (HPB) cancers originating in the liver, bile ducts, pancreas, and gall bladder represent a rising global health challenge, with incidence doubling in the UK over the past decade. Cholangiocarcinoma (CCA) and pancreatic cancer are particularly aggressive, often detected late due to non-specific symptoms and difficulties in sampling or imaging. In the UK, CCA affects around 3,000 people annually, with only 13% surviving 3 years, while pancreatic cancer has a 5-year survival of 8.3%. Diagnosis is complicated by the anatomical narrowness of the bile duct and the similarity between malignant and benign strictures. Standard imaging often cannot distinguish between inflammation and cancer, while tissue sampling is challenging, paucicellular, and limited in sensitivity, necessitating repeated biopsies. Yet, accurate characterisation is critical as NICE now recommends targeted therapies (FGFR2, NTRK, MSI-H/dMMR, IDH1 mutations) that require molecular profiling. Both CCA and PDAC display high heterogeneity, further complicating treatment. Emerging approaches such as Raman spectroscopy can map malignant tissues by detecting vibrational energy shifts, but require further validation due to weak signals. For focal or cystic HPB lesions not well visualised by conventional imaging, novel modalities like ultra-thin endoscopes with scattering/absorption imaging are being developed for improved early diagnosis. Management of biliary obstruction frequently involves stenting to restore bile flow, essential for palliation and pre-treatment optimization. However, stent failure from tumour ingrowth, displacement, or erosion remains common, and evidence for best stent use is limited. Novel approaches, including drug-eluting coatings and nanoparticle-mediated wireless treatment delivery, are being investigated. To overcome diagnostic and therapeutic barriers, flexible snake-like robotic systems with navigation, sampling, spectroscopy, and treatment capabilities are being developed. These devices, alongside ultra-thin endoscopes and integrated Raman spectroscopy, aim to characterise strictures, generate 3D imaging in ex-vivo HPB tissue, and permit targeted ablation. Parallel work will explore molecular and fluid-based biomarkers (blood, bile, cyst fluid) to support minimally invasive diagnosis and monitoring. Through integration of engineering, molecular diagnostics, and device innovation, this transdisciplinary research programme (UKRI and MRC funded) seeks to transform early detection, accurate diagnosis, and novel treatment of HPB cancers, thereby improving outcomes in CCA, pancreatic malignancy, and other clinically similar biliary disorders. Aim: To provide a detailed understanding of the characteristics (including clinical and molecular) of liver and pancreatic biliary focal lesions (inflammatory and cancerous) and create a bioresource of liver, pancreas, gallbladder and biliary tract associated tissue and fluids (biopsies, brushings, resected tissues, bile and cyst fluid and blood samples) in order to develop innovative tools for accurate diagnosis and treatment. Study Configuration: Prospective Longitudinal Cohort study Setting: Secondary care centre, Nottingham University Hospitals NHS Trust. (NUH). Co-ordinated by the NIHR Nottingham Biomedical Research Centre Description of interventions: This is an observational study involving collecting tissue or body fluids (such as bile or pancreatic cyst fluid) during clinical care in addition to collection of blood samples (for DNA, serum and plasma) and data collection. Surplus tissue residual to the requirements for standard care will be stored and used. Additional tissue samples and body fluid samples collected for research at time of clinical investigations will not be increasing the risk of the clinical procedure. Blood samples will be collected from patients at the time of enrolment in the study. These may be collected before and/ or after diagnosis is secured. Duration of study: Overall duration: 60 months Outcome measures: - To report the proportion of patients where adequate tissue could be retrieved from HPB biopsy to come to definitive diagnosis using standard of care. * To report the proportion of patients where adequate tissue could be retrieved from biopsy to perform molecular characterisation of HPB samples, beyond standard cyto/histology, using advanced optical-spatial technologies currently under development. * To report the proportion of patients where definitive diagnosis of mucinous cystic neoplasm could be made in patients with pancreatic cyst using standard care * To report the proportion of patients where molecular characterisation beyond standard cyto/histology could be made in patients with pancreatic cyst using exploratory new technologies under development through ex-vivo experiments * To report the correlation between Raman Spectroscopy and standard cyto/histology for identification of cancer in HPB samples | Cancer | À vérifier | Traitement symptomatique | United Kingdom | À vérifier |
| PoEMS — Post-operative Electrical Muscle Stimulation to Stimulate Muscle Protein Synthesis in HumansSkeletal muscle accounts for approximately 45-55% of total body mass in healthy adults and plays a pivotal role in whole-body metabolic health, locomotion and physical independence. Undesirable loss of skeletal muscle mass (atrophy) is, however, a common feature of many communicable and non-communicable diseases including ageing, bed-rest/immobilisation, cancer and physical inactivity. As such, the design of optimal strategies (e.g., different types of exercise) to "offset" these detrimental losses of muscle is a focus for both researchers and clinicians. One situation where losses of muscle mass occur very quickly (i.e., within a few days) is after surgery. However, at this time, most people (especially if they have had major abdominal or lower-limb surgery) are not able to perform exercise and as such a different strategy to maintain muscle mass needs to be found. It has been shown that electrical stimulation of the leg muscles can maintain muscle mass and function in patients after surgery. It is not however yet known, what the optimal electrical stimulation regime is to preserve muscle mass during situations of disuse. This study aims to examine the impact of three different electrical stimulation protocols on muscle building processes in individuals age-matched to those most commonly presenting for major abdominal surgery. This information will then be used in a clinical trial of surgical patients to see if it can preserve their muscle mass and function in the post-operative period. | Cancer | Non applicable | À vérifier | United Kingdom | À vérifier |
| ReHIIT_CON — Exploring Resistance Exercise Training Plus High-Intensity Interval Training (ReHIIT) as Cancer PrehabilitationColorectal cancer is the fourth most common cancer in the UK. Prehabilitation, including exercise, can improve recovery from surgery. This pilot study investigates the combined effects of resistance and high-intensity interval training (ReHIIT) in healthy adults to establish baseline physiology and responses for comparison with cancer patients | Cancer | Non applicable | À vérifier | United Kingdom | À vérifier |
Essais cliniques
7| Molécule | Indication / population | Phase | NCT | Titre | Statut |
|---|---|---|---|---|---|
| ReHIIT_CON — Exploring Resistance Exercise Training Plus High-Intensity Interval Training (ReHIIT) as Cancer Prehabilitation | Cancer | Non applicable | NCT07313332 | ReHIIT_CON — Exploring Resistance Exercise Training Plus High-Intensity Interval Training (ReHIIT) as Cancer Prehabilitation | RECRUITING |
| PoEMS — Post-operative Electrical Muscle Stimulation to Stimulate Muscle Protein Synthesis in Humans | Cancer | Non applicable | NCT05997095 | PoEMS — Post-operative Electrical Muscle Stimulation to Stimulate Muscle Protein Synthesis in Humans | ACTIVE_NOT_RECRUITING |
| Map HPB — In-Depth Characterisation of Biliary Strictures and Hepato-Pancreato-Biliary Focal Lesions for Development of New Technologies to Tackle Hepato-Pancreato-Biliary Cancers | Cancer | À vérifier | NCT07206355 | Map HPB — In-Depth Characterisation of Biliary Strictures and Hepato-Pancreato-Biliary Focal Lesions for Development of New Technologies to Tackle Hepato-Pancreato-Biliary Cancers | RECRUITING |
| LEND — Lived Experience Narratives in Dementia | Alzheimer | Non applicable | NCT07757178 | LEND — Lived Experience Narratives in Dementia | RECRUITING |
| Ultrasound Vagus Nerve Stimulation (U-VNS) | SEP | Non applicable | NCT07283913 | Non-invasive Ultrasonic Auricular Vagus Nerve Stimulation | RECRUITING |
| STAR-MS — Single Test to ARrive at MS Diagnosis. Using a Single MRI Brain Scan to Help Diagnose Multiple Sclerosis | SEP | À vérifier | NCT02485223 | STAR-MS — Single Test to ARrive at MS Diagnosis. Using a Single MRI Brain Scan to Help Diagnose Multiple Sclerosis | UNKNOWN |
| Vaccination Perception in Inflammatory Conditions - Flu, Pneumonia and COVID-19 | Lupus | À vérifier | NCT05115370 | Vaccination Perception in Inflammatory Conditions - Flu, Pneumonia and COVID-19 | COMPLETED |
Publications
3| Molécule | Indication / population | Titre | Journal | Date |
|---|---|---|---|---|
| Ultrasound Vagus Nerve Stimulation (U-VNS) | Auricular Ultrasonic Vagus Nerve Stimulation: Effectiveness of Blinding and Occurrence of Adverse Effects in Healthy Volunteers. | Brain sciences | ||
| Ultrasound Vagus Nerve Stimulation (U-VNS) | Auricular Ultrasonic Vagus Nerve Stimulation: Effectiveness of Blinding and the Occurrence of Adverse Effects in People with Tinnitus. | Brain sciences | ||
| Vaccination Perception in Inflammatory Conditions - Flu, Pneumonia and COVID-19 | Influenza vaccine uptake in juvenile idiopathic arthritis during the COVID-19 pandemic: a multi-centre cross-sectional study by PRES vaccination working party. | Pediatric rheumatology online journal |