View clinical trials related to Hypertension.
Filter by:To investigate the health effects of a new mobile application (app) for prevention and personalized treatment in people with chronic cardiovascular pathologies associated with body composition.
The investigators are investigating the effects of traffic-related air pollution (TRAP) on the cardiovascular and pulmonary response to exercise in patients with hypertension using a real world randomized, crossover study design. Participants will be exposed to 2 conditions: a low TRAP environment and a high TRAP environment. Each exposure will consist of 30 min of moderate-intensity exercise. Cardiovascular and pulmonary health outcomes will be measured before, during, and up to 24 hours following exposures. A minimum washout period of 1 week will be used to minimize carryover effects.
The impact of hypoxia at 2500m of high altitude on sleep in patients with precapillary pulmonary hypertension
Previous studies have shown that elevated nighttime blood pressure (BP) was more closely associated with cardiovascular mortality and morbidity than daytime and clinic BPs. With increasingly advanced technology, not only 24-hour ambulatory but also home BP monitors can be used to evaluate nighttime BP. The validation study of the Omron HEM 9601T showed that the wrist-type home BP monitor could be a suitable and reliable tool for the diagnosis and management of nocturnal hypertension. However, up to now, there is no data on home nighttime BP in Chinese patients and it is unclear if different dosing time would reduce ambulatory and home nighttime BPs differently. The investigators therefore designed a multicenter randomized clinical trial to compare between morning dosing and bedtime dosing of antihypertensive medications in the difference in nighttime, daytime and the 24-h BP reductions evaluated by both ambulatory and home BP monitoring, and in target organ protections.
1. Evaluation of the efficacy of aspirin in preventing preeclampsia and its serious complications during pregnancy and postpartum. 2. To establish a risk prediction model for severe pregnancy complications in pregnant women with hypertensive disorders of pregnancy.
This is a GWAS study that aims to identify possible candidate genes associate to arterial hypertension by exploring single nucleotide polymorphism (SNP) in a group of arterial hypertension, in the Kazakh population. The investigators hypothesize that the careful phenotyping of the subject sand matching with increase the power to find SNP significantly associate with arterial hypertension
This is a multicenter, prospective observational cohort study. It will compare effectiveness and safety of various add-on treatment options in regard to arterial blood pressure control in adult patients with treatment resistant hypertension: an aldosterone receptor blocker (e.g. spironolactone), a loop diuretic, a thiazide in large daily dose, an alpha 1 selective blocker or a beta 1 selective blocker. The add-on therapy will be prescribed to the patients within the scope of their routine medical care, independently from the study investigators. The patients will be followed up for 6 months, with monthly visits and continuous home blood pressure diary kept by the patients themselves.
The COVID-19 pandemic is the biggest medical challenge in decades. Individuals with pre-existing cardiovascular diseases have a higher risk of severe disease and death from COVID-19. The SARS-CoV-2 virus causes infection by targeting a molecule on the walls of the cells lining the lungs and the blood vessels leading to injury. There are concerns that after recovery from COVID-19, the damage sustained by these cells may have long-term consequences including high blood pressure, stroke and heart attacks. The burden of high blood pressure as a result of the pandemic is unknown and a greater understanding of COVID-19 impact on blood pressure and its underlying mechanisms is urgently needed. LOCHINVAR is based on our pilot study "COVID-19 blood pressure endothelium interaction study" (OBELIX,NCT04409847, IRAS 284453), which found that patients with normal blood pressure at the time of hospital admission with COVID-19 showed a nine-point higher blood pressure ≥12 weeks after recovery, compared to a group without COVID-19. LOCHINVAR will extend the OBELIX study aiming to establish if COVID-19 increases the risk of developing high blood pressure and investigating underlying mechanisms through detailed measurements of blood pressure, blood vessel function, hormones and chemicals in the blood, urine and stool. The investigators will invite 150 adults without pre-existing high blood pressure who were discharged from hospital after an admission: half with COVID-19 and half without. Baseline visit will be ≥12 weeks after discharge for measurements of blood pressure, tests of heart and blood vessel health, blood, urine and stool samples along with questionnaires on mood and quality of life. Two further study visits follow, at 12 and 18 months. This study will generate crucial evidence on the long-term impact of COVID-19 on blood pressure along with information on potential mechanisms of this effect with immediate, transferable impact on clinical practice and inform risk mitigation measures.
This study aims to observe changes in various indicators of renal function, such as proteinuria at different time points: short-term (Week 8), 6 months (Week 26), and a year (Week 52), in patients with DKD and hypertension, who are given antihypertensives containing fimasartan, in an actual clinical environment where a variety of patient characteristics are reflected.
This washout protocol is structured as a sub-study for patients willing to participate after finishing the double blind randomised phase of the clinical trial, NCT02837445. Devices will be turned off for a week approximately. Patients will have their PHC programmed to automatically turn off 24 hr after a medical and technical visit and remain in regular pacing. Ambulatory recording of the BP will start at the end of the visit, and continue for 24 hr after the turn off time (48 hr recording). Conversely, patients will return at the end of the first week, when a second 48 hr recording will be initiated, this time, the PHC will be programmed to turn on 24 hr later. The recordings therefore will provide data of the ON to OFF transition for the evaluation of the residual effect of PHC after 24 h and after week.