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Sleep Disturbance clinical trials

View clinical trials related to Sleep Disturbance.

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NCT ID: NCT05771558 Recruiting - Parkinson Disease Clinical Trials

The Effect of a Lighting Intervention on Sleep in Parkinson Disease

Start date: November 14, 2022
Phase: N/A
Study type: Interventional

50 participants with Parkinson's disease will be recruited to complete actigraphy studies to assess sleep disturbances. For this, participants will wear an Actigraph for seven days. Thirty of these participants with sleep disturbance will go on to receive a tailored lighting intervention (TLI) to assess the effect on sleep, fatigue, and circadian entrainment via urinary melatonin levels.

NCT ID: NCT05762783 Completed - Sleep Disturbance Clinical Trials

The Importance of Sleep for Diabetes Associated Tasks and Outcomes

Sleep1child
Start date: March 27, 2023
Phase:
Study type: Observational

Adolescents with type 1 diabetes (T1D) experience more disturbed sleep compared to their healthy peers, especially because they tend to spend less time in deep sleep, the most restoring part of sleep, potentially impacting diabetes management. Disturbed sleep may adversely affect diabetes management which requires day-to-day decision-making, emotional and behavioural regulation, attention, and planning. Despite a massive increase in new technology, more than 50% of adolescents do not reach their glycaemic target. Lack of sleep impairing diabetes management including blood glucose monitoring may play an important role in reaching the goal. For approximately 4000 children and adolescents in Denmark living with T1D, sleep disturbances may therefore account for short and long-term diabetes complications. Our overall aims are to investigate: (1) If and how glycaemic variability (GV) influences sleep quality and sleep stages and (2) if and how poor sleep quality influences time-in-range (TIR), time-above-range (TAR) and time-below-range (TBR) the following day.

NCT ID: NCT05757414 Recruiting - Parkinson Disease Clinical Trials

Lighting Intervention to Improve Sleep

Start date: November 16, 2021
Phase: N/A
Study type: Interventional

50 participants with Parkinson's disease will be recruited to complete actigraphy studies to assess sleep disturbances. For this, participants will wear an Actigraph for seven days. Thirty of these participants with sleep disturbance, will go on to receive a tailored lighting intervention (TLI) to assess the effect on sleep, fatigue, and circadian entrainment via urinary melatonin levels.

NCT ID: NCT05757401 Completed - Sleep Disturbance Clinical Trials

Sleep Quality After Cesarean Delivery

Start date: March 14, 2023
Phase:
Study type: Observational

Surgery causes poor sleep quality for several reasons eg. increasing stress hormonal production, pain, starvation, and environmental procedure namely noise, light, and nursing procedures. Poor sleep quality also brings numerous side effects including delirium, delayed recovery, and affect breastfeeding. We, therefore, aim to elucidate the incidence of poor sleep quality in parturients undergoing cesarean delivery in the early postoperative period and investigate the factors involving poor sleep conditions.

NCT ID: NCT05748574 Not yet recruiting - Sleep Disturbance Clinical Trials

Sleep Well Observation Study

Start date: March 14, 2023
Phase: N/A
Study type: Interventional

Insomnia is characterized by the recurring difficulty to fall or remain asleep despite motivation and means to do so. People with insomnia also experience excessive daytime sleepiness and other cognitive impairments while they are awake. Facing the situation mentioned and realizing that especially early preventive measures are needed to fight the increasing costs for treatment of sleep related diseases, effective nutrients might be a good and safe option to improve sleep quality.This single-arm, open-label, prospective, observational exploratory pilot study aims at collecting first data on efficacy and safety of "Sleep Well".

NCT ID: NCT05743114 Completed - Sleep Clinical Trials

Sounds Locked to ElectroEncephalogram Phase For the Acceleration of Sleep Onset Time

SLEEPFAST
Start date: February 2, 2020
Phase: N/A
Study type: Interventional

This study seeks to test whether auditory stimulation delivered at specific phases of the alpha oscillation (as measured by electroencephalogram) can accelerate sleep onset.

NCT ID: NCT05710991 Not yet recruiting - Sleep Disturbance Clinical Trials

Brief Cognitive Behavioural Therapy for Insomnia Versus Sleep Hygiene for Sleep Difficulties in Early Pregnancy

Start date: February 2023
Phase: N/A
Study type: Interventional

Pregnant and postpartum individuals often have difficulty sleeping and these sleep problems can negatively impact both the parent and infant. Research suggests that pregnant individuals prefer non-medication-based treatment for their sleep difficulties but there is a lack of research on the success of sleep treatment during pregnancy. Currently, there are two main non-medical treatments for sleep difficulties available. The first, cognitive behavioural therapy (CBT), is the first treatment recommended for insomnia and has been found to successfully treat insomnia during pregnancy and the postpartum period. In addition, shortened sessions of CBT for insomnia have also been found to successfully reduce sleep difficulties. The second option is sleep hygiene education which is the most commonly offered treatment for sleep difficulties and has been found to improve sleep problems. The present study will compare the effectiveness of a CBT for insomnia group workshop to a Sleep Hygiene group workshop.

NCT ID: NCT05708963 Completed - Clinical trials for Cardiovascular Diseases

The U.K. Embryologist Fatigue Study

FUSE-UK
Start date: January 16, 2023
Phase:
Study type: Observational

The purpose of the study is to determine physical and mental health issues of U.K. embryologists related to their occupational characteristics, and how workplace fatigue and burnout may affect their quality of life, cynicism, interactions with patients, attention to detail, and lead to human error, the cause of the most severe IVF incidents that often make headlines and result in costly litigation. It will also correlate how the current manual workflows contribute to these health issues, and what measures can be taken to improve both working conditions and embryologists' health, and, therefore, improve patient care.

NCT ID: NCT05699837 Recruiting - Pain, Chronic Clinical Trials

Alpha Entrainment for Pain and Sleep (Extension)

Start date: September 19, 2022
Phase: N/A
Study type: Interventional

Long-term pain affects one-third of the United Kingdom population and can be very disabling. People experiencing long-term pain often suffer from disturbed sleep because of their pain symptoms, and disturbed sleep can then make their pain symptoms worse. Managing long-term pain is also very costly to the National Health Service. The most common treatment is prescribed medicines, but these do not always work and can have serious side-effects for some patients. The investigators have been developing an alternative approach for treating long-term pain. This approach uses simple non-invasive tools to promote some kinds of brain activity over others. It involves patients using headphones to listen to some specific sounds, or a headset with lights flashing at particular frequencies. The studies undertaken so far seem to show that doing this can change how the brain responds to pain. It potentially offers an inexpensive yet effective way of reducing pain and improving sleep for patients with long-term pain. There are a few small studies that support this approach and more work is needed. In a recent study the investigators found that these tools can be reliably used in home settings and there were some indications that they improved symptoms. However, sleep was only measured with sleep diary and movement detection, there was no direct measurement of whether the stimulation frequencies were resulting in the desired brainwave changes. Finally, the benefit to symptoms may have been the result of other factors, such as the passage of time or placebo effect. Therefore this study extends the experiment, adding more accurate sleep monitoring which includes monitoring electrical activity in the brain (EEG), as well as providing rhythmic and non-rhythmic stimulation in a randomised order. The aim is to further test the effect of these home-based tools with individuals with long-term pain, in a more rigorous way. Up to 30 participants with long-term pain and pain-related sleep disturbance will use the tools for 30 minutes at bed time every day for 4 weeks (2 weeks with one type of stimulation, 2 weeks with another type). The changes in participants' pain, sleep, brainwave frequencies, fatigue and mood will be measured. These findings will inform the planning and design of a future much larger study to test this technology, if this is justified by the results.

NCT ID: NCT05694052 Recruiting - Sleep Disturbance Clinical Trials

Impact of a Multifaceted Intervention of Environment Control in the ICU to Optimize Quantity and Quality of Sleep

Start date: May 2, 2023
Phase: N/A
Study type: Interventional

In critically ill patients, sleep and circadian rhythms are markedly disturbed, including sleep deprivation and disruption, as well as altered sleep architecture, and loss of normal oscillations of Melatonin and Cortisol. These alterations have been associated with delirium, fatigue, and higher mortality. In addition, sleep disturbances may remain after hospital discharge, and they have been associated with psychological comorbidities, which may contribute to the low quality of life observed in ICU survivors. Patient factors for sleep deprivation in ICU are the type/severity of underlying illness, the pathophysiology of the acute illness, pain, and stress/anxiety. Factors associated with the ICU, such as exposure to inadequate levels of light and noise, or inflexible schedules of daily care activities, have also been reported to have a major role in sleep disturbance. A limited number of studies have evaluated interventions targeting sleep optimization in the ICU, using strategies like eye masks and/or earplugs to isolate patients from their environment, the application of a dynamic light system that ensures light at night and higher levels of light at daytime to restore circadian rhythm, or auditory masking, to avoid intense cortical stimuli secondary to annoying noises. These strategies have been reported to have some positive impacts on sleep in ICU but this has only been assessed by qualitative instruments. In addition, they have been tested as isolated interventions, and not as part of a more comprehensive approach. The goal of this project is to determine the impact of a multifaceted intervention of environmental control in the ICU, based on dynamic light therapy, auditory masking, and rationalization of ICU nocturnal patient care activities, on quantity and quality of sleep, assessed by polysomnography and other semi-quantitative methods, compared to standard care. In addition, the effect of both strategies on delirium, circadian rhythm biomarkers, and long-term neuropsychological outcomes will be compared. This is a prospective, parallel-group, randomized trial in 56 critically ill patients once they are starting to recover from their acute illness. After obtaining informed consent, patients will be randomized to receive a multifaceted intervention of environmental control or standard care. And this protocol will be applied from enrollment until ICU discharge, with a follow-up before hospital discharge and at 6 months.