View clinical trials related to Sleep Apnea, Obstructive.
Filter by:The exact prevalence of sleep-disordered breathing in pregnant women is not known. The results of a analysis of a small cohort of 105 pregnant women adjusted to body mass index estimate a prevalence of 8.4% in first quarter and 19.7% in the third quarter. In this context, this study proposes to assess the prevalence of sleep-disordered breathing in pregnant women of the Private Hospital of the Loire and to identify the risks associated with these disorders by systematically proposing a polysomnography.
Combined treatment with MAD and OE for adult patients with obstructive sleep apnea can significantly (i) improve muscle strength and endurance; (ii) reduce the severity of sleep apnea.
The SFAR (French society of anesthesiology and ICU) proposed a method to detect OSA (Obstructive Sleep Apnea) patients via videoconference. The aim of this study is to compare the result of this method with the results of polysomnography (PSG) which remains the gold standard in the detection of OSA patients.
This Study aims to develop machine learning models with the ability to predict patients' BMI and complications after Bariatric Surgery (CABS-Score). This Study also aims to develop machine learning models with the ability to predict diabetic (DM II)patients' remission rate after Bariatric Surgery. The service mentioned above will be publicly available as a web-based application
OSA (Obstructive Sleep Apnea) represents a major risk of postoperative complications. Predictive scores have been developed as the STOP-Bang score and the DES-OSA score. These scores take into account morphological parameters such as weight, height, and neck circumference. These data can be contained from the patients (self-reported) or by the measurements performed by a physician. The aim of this study is to compare the accuracy of both measurements (self-reported by the patient or measured by the physicians).
The goal of this study is to determine whether a randomized controlled trial using oropharyngeal exercises to treat sleep apnea is feasible. Continuous positive airway pressure (CPAP) is the standard therapy for Obstructive sleep apnea (OSA), but it is poorly tolerated by many patients. Oropharyngeal exercises (OPEs) which are commonly used by speech-language pathologists to improve oro-motor strength, may serve as a promising alternative approach. The main questions this study aims to answer are: - Is it feasible to use an oropharyngeal exercise protocol in patients with sleep apnea? - Will oropharyngeal exercises improve sleep apnea severity, daytime sleepiness, sleep quality, mood, workplace performance, and quality of life Participants will be randomized into a supervised OPE intervention arm vs. unsupervised OPE intervention arm vs. sham treatment for a 10-week/5-day per week/two 20-minute session exercise protocol. The exercises will be administered via an app and the investigators will assess feasibility, as well as several sleep-related and oro-motor physiological outcomes before treatment, immediately post-treatment, and 4 weeks post-treatment. The investigators will use the results of this feasibility trial to inform the sample size needed for a larger clinical trial that will determine the efficacy of using oropharyngeal exercises to treat OSA.
This project evaluates the morphological predictive factors for prescribing a mandibular advancement device in the therapeutic approach of Obstructive sleep apnea (OSA). The investigators will carry out the project with patients who travel to CUF Tejo Hospital to solve their sleep disturbance, namely cases of obstructive sleep apnea. The investigators designed three groups of 22 individuals each. The investigators will only include individuals after signing the informed consent. In the 1st appointment, the principal investigator will conduct a complete anamnesis and a clinical examination, where several items will be documented: Age, gender, body mass index, mallampati index, neck, and waist circumference. The clinical interview will assess the patient's daytime sleepiness, nighttime snoring, and quality of life through the respective questionnaires: the Epworth Sleepiness Scale (ESS), the snoring severity scale (SSS), and the Sleep Apnea Quality of Life Index (SAQLI). Still, in the 1st consultation, a level III Polysomnography (PSG) will be prescribed to assess the possibility of OSA, and a pharyngeal computed tomography (CT) with cephalometric analysis and recording in maximum comfortable protrusion to evaluate the Upper Airway (UA) and the prognosis of mandibular advancement in case of UA collapse. The other group will perform Drug-Induced Sleep Endoscopy (DISE) and CT with registration in maximum comfortable protrusion. Then, the investigators will make personalized and titled mandibular advancement devices (MAD). The measurements and PSG III questionnaires will be carried out after 1 and 6 months to evaluate the results.
Evaluation of upper airway with Magnetic Resonance and polysomnographic at the pre and post operative of 23 women having undergone bariatric surgery (with the Y-Roux technique) for treatment of obesity.
The clinical hypothesis of this study is that a currently marketed mouthguard may also be able to reduce the symptoms of sleep-disordered breathing in children.
Background: Periodic fever, aphthous stomatitis, pharyngitis, and cervical adenitis (PFAPA) is the most common periodic fever syndrome of childhood. Symptoms can include swelling of the glands in the throat, mouth ulcers, and tonsillitis. Removal of the tonsils can stop the periodic flareups. But researchers do not know how PFAPA develops. In this natural history study, researchers will collect specimens and data from people with PFAPA to see what they might have in common. Objective: To collect blood and other specimens from people with PFAPA to learn more about the illness. Eligibility: People aged 1 month or older with symptoms of PFAPA or another tonsil disorder. Design: Participants will be screened. Their medical records will be reviewed. Researchers will ask about a family history of PFAPA. The following specimens may be collected: Blood. Blood will be drawn either from a needle inserted into a vein or from a prick in the finger or heel. Mucus and cells. A stick with soft padding on the tip may be rubbed inside the nostrils or mouth. Stool. Saliva. Tissue samples may be taken if participants are having surgery to remove the tonsils or adenoids. Participants having surgery may also have a nasopharyngeal wash; salt water will be squirted into the back of the throat and then sucked back out with a syringe. Most participants will provide specimens only once. They can do this in person at the clinic; they can also have their local health providers send specimens to the researchers. Some participants may have optional follow-up visits over 10 years.