View clinical trials related to Neuromuscular Diseases.
Filter by:A retrospective study with the patients having a positioning consultation at hospital, between 2009 and 2014. In every neuromuscular disorder, the investigators describe the population seen in consultation, the aim of consultation, the postural problem observed in wheelchair, pain when sitting in wheelchair, and pressure ulcer.
The investigators want to demonstrate that there is an optimal expiratory pressure when using mecanical in-exsufflation for each patient in neuromuscular disease. This compromise is between the need to generate a high pressure difference between alveoli and the mouth and the need to avoide and superior airways collapsus.
Our aim is to establish multi-center national Egyptian database of information for inherited and acquired neuromuscular diseases in infants and children from 0 to 18 years of age.
Neuromuscular diseases are frequently associated with respiratory failure, which requires Non Invasive Ventilation (NIV). Currently, the NIV installation is done during an hospitalization of several days. This hospitalization is problematic because of availability of beds, logistical difficulties for the patient and estrangement from the usual environment. For this reasons, the NIV installation at home could be an interesting alternative for both the patient and the medical staff. The aim of this pilot study is to test the feasibility of NIV installation at home, using telemedicine as a remote monitoring tool, and to assess its impact on the ventilation compliance.
The main objective is prospectively study the upper airways function in an adult population of neuromuscular patients. The main measurement will be the evolution of tongue strength recorded each year during annual clinical evaluation on a 5 years period.
The primary objective of this study is to obtain long term safety data of ataluren in male participants with nonsense mutation dystrophinopathy (who participated and completed a previous Phase 3 study of ataluren [PTC124-GD-020-DMD {NCT01826487}]) to augment the overall safety database. Screening and baseline procedures are structured to avoid a gap in treatment between the double-blind study (PTC124-GD-020-DMD) and this extension study. This study may be further extended by amendment until either ataluren becomes commercially available or the clinical development of ataluren in duchenne muscular dystrophy (DMD) is discontinued.
Respiratory failure is the main death cause in neuromuscular diseases. Non-invasive and volitional measures of inspiratory muscles strength include the nasal pressure with an occluded nostril (Psnip) and the maximal inspiratory pressure (PImax). Unfortunately, volitional maneuvers depend of patient effort. The aim of this research is to validate a non-invasive and non-volitional technique to evaluate diaphragm strength at neuromuscular diseases patients. The methodology consists to add to PImax and Psnip measures 5 phrenic nerves magnetical stimulation maneuvers (Pstim).Stimulations will be realize at 3 inspiratory pression levels (0, -1 cm H2O and -5 cm H2O).
The purpose of this study is to compare the measure of the CO2 obtained on the end-tidal expiratory gas (ETCO2) with the value of CO2 obtained by transcutaneous measure (PTCO2), in home-ventilated neuromuscular patients.
This clinical trial aims to test a new physio-therapeutic approach tailored to type 2 and 3 Spinal Muscular Atrophy patients, based on physical training in swimming-pool. This specific exercise should promote motor skills of trained patients, as we have observed in different mouse models. Patient's motor skills will be assessed using different scales including MFM and Hammersmith. This clinical trial attempts to develop a new non-invasive motor scale with sophisticated instruments. This scale will be useful in future clinical trials on SMA, given the lack of sensitivity of currently available scales. In addition, the study attempts to validate a questionnaire on post-exercise physical well-being.
Critically ill patients frequently develop muscle weakness due to critical illness-related acute neuropathy and/or myopathy. This disorder is associated with difficulties in weaning from mechanical ventilation, prolonged intensive care unit and hospital stay, and increased mortality rates. In addition, many patients continue to suffer from decreased exercise capacity and quality of life for months to years after the acute event. Besides controlling risk factors, no specific prevention or treatment exists. Recommendations advice to start early with active and passive exercise in critically ill patients (1). Having critically ill patients alert and engaged in progressive rehabilitation leading to mobilization, despite the use of life support therapies may reduce muscle atrophy and lead to improved strength and physical function (2). This randomized controlled trial was designed to investigate whether a daily training session using a tilt table, started early in stable critically ill patients with an expected prolonged ICU stay, could induce a beneficial effect on exercise performance, quadriceps force and functional autonomy at ICU and hospital discharge compared to a standard physiotherapy program.