View clinical trials related to Pulmonary Embolism.
Filter by:To investigate the efficacy and safety of once daily enoxaparin as a "bridge" to warfarin for the outpatient treatment of acute deep venous thrombosis or pulmonary embolism.
To evaluate physician response to human alerts that inform the clinician that his/her patient may be eligible for thromboprophylaxis. Medical records are reviewed to evaluate prescribing decision and to evaluate rates of venous thromboembolism.
we evaluate the presence of OSA in patients that have a computed tomography (CT) of the chest to rule out pulmonary embolism (PE) to determine if OSA constitutes an independent risk factor for PE.
In this research study, the investigators are trying to find a better way to set the dose of a common blood-thinning medication. Patients with blood clots or a risk of blood clots (or stroke) sometimes have to take an approved medication called warfarin. Warfarin is a commonly prescribed, approved blood thinning medicine taken by mouth. There is a certain level of warfarin that is best for each patient at a particular time. It is hard for a doctor to choose and maintain the right dose of warfarin for each patient. Too much or too little warfarin in the blood can cause serious health problems. A "nomogram" is a tool that helps doctors decide on the right dose of warfarin. The usual way for finding the right dose of warfarin is for doctors to take an educated guess and use a "trial and error" approach. Patients have frequent blood tests to help doctors keep track of how well the dose level is working. Up until now, if a patient had good blood test results over half of the time, that was as well as doctors could do. The purpose of this study is to see whether the investigators can create a reliable new warfarin nomogram that will allow them to dose a patient correctly more often, perhaps about 3 times out of 4. The nomogram the investigators are studying uses information about a patient's health and genes to decide on the best dose of warfarin. The investigators don't yet have a reliable, safe way to choose the correct dose. In this study, the investigators will use a genetic blood test to try to find a better way. Genes are the parts of each living cell that allow characteristics to be passed on from parents to children. The investigators know that people with certain genes seem to respond to warfarin in a certain way. From a blood sample, the investigators can look at patients' genes and try to predict the response to the blood-thinning medication. There will be about 500 subjects taking part in this study. They will come from participating Partners' Hospitals, including Brigham and Women's Hospital, Massachusetts General Hospital, Faulkner Hospital, Newton-Wellesley Hospital, Spaulding Rehabilitation Hospital, and North Shore Medical Center. The U.S. Food and Drug Administration (FDA) has approved warfarin for use as a blood thinner.
Background. Management of patients with suspected Pulmonary Embolism (PE) is problematic if diagnostic imaging is not available. Pretest Clinical Probability (PCP) and D-dimer (D-d) assessment were shown to be useful to identify those high risk patients for whom empirical, protective anticoagulation is indicated. To evaluate whether PCP and D-d assessment, together with the use of low molecular weight heparins (LMWHs), allow objective appraisal of PE to be deferred for up to 72 hours, we planned to prospectively evaluate consecutive patients with suspected PE. Methods. In case of deferment of diagnostic imaging for PE, patients identified at high-risk (those with high PCP or moderate PCP and positive D-d), receive a protective full-dose treatment of LMWH; the remaining patients will be discharged without anticoagulant. All patients will be scheduled to undergo objective tests for PE within 72 hours. Standard antithrombotic therapy will be then administered when diagnostic tests confirmed Venous ThromboEmbolism (VTE).
To assess the safety and efficacy of outpatient treatment using fondaparinux and oral Vit K antagonist, warfarin (Coumadin) in patients with stable acute pulmonary embolus (APE)when initial therapy is administered in the hospital. Prospectively validate risk stratification criteria for predicting patient suitability for outpatient treatment of acute pulmonary embolism.
This study compares two blood thinners which are both accepted standard cares, fondaparinux and unfractionated heparin (UFH). These drugs are used to prevent the growth of existing blood clots and formation of additional blood clots in patients with pulmonary embolism (a blood clot in the lung) as they are beginning to take warfarin (another standard care blood thinner). Patients will be invited to participate because they have been diagnosed with a pulmonary embolism, require anticoagulation therapy (treatment with a blood thinner), and are currently hospitalized. The purpose of this study is to determine if patients treated with fondaparinux will have shorter hospital stays and lower costs of treatment while in the hospital than similar patients receiving a different standard care with UFH. Fondaparinux is already approved by the FDA for use in patients with pulmonary embolism, for both inpatient and outpatient care, as long as treatment is begun with warfarin while they are hospitalized. It is therefore not an experimental treatment. The study is being conducted to determine which FDA approved treatment is the best practice for hospital treatment of pulmonary embolism. The study will also examine the safety and effectiveness of fondaparinux in local use.
The purpose of this study is to learn if apixaban can prevent blood clots in the leg (deep vein Thrombosis [DVT]) and lung (pulmonary embolism [PE]) that sometimes occur after knee replacement surgery and to learn how apixaban compares to enoxaparin (Lovenox®) for preventing these clots. The safety of apixaban will also be studied.
A pulmonary embolism (PE) is a blockage in one of the arteries of the lungs, and is usually caused by a traveling blood clot. The D-dimer blood test is currently used to diagnose PEs, but it is not always accurate for individuals who have recently undergone surgery or who have inflammatory-provoking diseases. The purpose of this study is to evaluate the effectiveness of the Carboximeter, a new PE diagnostic device that measures carbon dioxide (CO2) and oxygen (O2) output, in individuals at risk for developing PEs.
To determine whether 3 months' anticoagulation is as good as or better than 6 months' for the treatment of DVT/PE