View clinical trials related to Pulmonary Embolism.
Filter by:Venous thromboembolism (VTE) encompasses deep venous thrombosis and pulmonary embolus, and is the proximate cause of death in over 100,000 hospitalized patients per year. This project will critically examine the pharmacokinetics of prophylactic doses of enoxaparin in surgical patients, and will evaluate how alteration of enoxaparin dose magnitude and frequency affects peak and trough aFXa levels as well as risk for re-operative hematoma. If subtherapeutic aFXa levels are observed, the study will design, implement and test a clinical protocol to optimize post-operative aFXa levels. Although not an explicit Aim, this study will also provide important preliminary data on VTE rates in surgical patients with in range and out of range aFXa levels.
Evaluate the safety and effectiveness of the FlowTriever System for use in the removal of emboli from the pulmonary arteries in the treatment of acute pulmonary embolism.
Blood clots that form in the extremities (deep venous thrombosis) and lungs (pulmonary embolus) are feared complications of reconstructive surgery. One in ten patients with symptomatic pulmonary embolus will be dead in 60 minutes. Patients with deep venous thrombosis can develop the post-thrombotic syndrome, known to be a major driver of poor quality of life. These phenomena, broadly known as venous thromboembolism (VTE), have substantial downstream ramifications, and the US Surgeon General and the American Society of Plastic Surgeons (ASPS), among others, have underscored the importance of VTE prevention in surgical patients. Reconstructive surgery, most commonly performed to fix traumatic injuries or defects after cancer excision, often involves borrowing tissue from adjacent or distant areas on the body; reconstructive surgery patients can routinely have surgical injury involving 20% or more of their total body surface area. Injury and resultant inflammation are known to increase metabolism of certain drugs, including those used to prevent VTE after surgery. Enoxaparin is a blood-thinning medication that decreases likelihood of blood clot formation. Previous research has shown that reconstructive surgery patients who are given enoxaparin after surgery are less likely to develop VTE. However, despite receiving of a standard dose of enoxaparin, many patients still develop this life-threatening complication. The investigators believe that patients metabolize enoxaparin differently based on the degree of surgical injury created during reconstruction, and seek to critically examine enoxaparin metabolism in reconstructive surgery patients. The proposed research will evaluate how enoxaparin affects the blood based on standard, ASPS-recommended dosing after reconstructive surgeries; the investigators will also examine whether the extent of surgical injury alters metabolism as well. Enoxaparin effectiveness will be tracked using anti-Factor Xa (aFXa) levels. If subtherapeutic aFXa levels are observed, the study will also design, implement and test a clinical enoxaparin dose-adjustment protocol to achieve appropriate post-operative aFXa levels. Further research based on these data will examine reduction in VTE risk when aFXa-driven enoxaparin dosing is used.
In a randomised design the study aims to investigate whether an intervention of 8 weeks home-based exercise in addition to usual care can positively influence the physical capacity, quality of life, sick leave and use of psychoactive drugs in patients medically treated for pulmonary embolism.
To establish the clinical safety and efficacy of the VenaTech® Retrievable Vena Cava Filter
The LDS may contain information of significant diagnostic and physiological value regarding the pulmonary parenchyma and vasculature, as well as the cardio- vascular system in general. In pilot clinical studies of patients with acute decompensated heart failure (ADHF) as well as patients with Pulmonary Hypertension, LDS signals patterns unique to these conditions were identified. We believe that these newly discovered ultrasound signals might provide a non-invasive radiation-free means to diagnose and monitor patients with Pulmonary Embolism. The purpose of this study is to assess the utility of noninvasive assessment of lung Doppler signals performed via transthoracic parametric Doppler. The objective of the study is to evaluate the lung Doppler signals (LDS) in patients diagnosed with acute PE, in order to determine the potential assessment value of this non-invasive method in this potentially life threatening condition.
To investigate the incidence of pre- and early postoperative deep venous thrombosis in patients undergoing hepatobiliopancreatic surgery, as well as potential corresponding risk factors with special attention to circulating tumor cells.
To evaluate whether there is a difference in symptomatic thromboembolism events in the subset of patients with a history of, or risk factors for thromboembolic disease for topically applied tranexamic acid in total joint arthroplasty.
The purpose of this study is to determine whether systematically performing computed tomography (CT) venography (i.e a CT acquisition of the pelvis and of the lower limbs, during the venous phase of opacification) in addition to thoracic CT angiography in women with suspected postpartum pulmonary embolism (PE) results in a gain in venous thromboembolism detection rate.
Computed tomographic pulmonary angiography (CTPA) is considered the gold standard for the diagnosis of pulmonary embolism (PE). PE is a potentially fatal disease in which a thrombus is lodged into a pulmonary artery blocking blood flow and potentially leading to respiratory distress, acute right cardiac failure or death. Therefore early and correct diagnosis is crucial. The diagnostic and clinical value of CTPA has already been firmly substantiated. Unfortunately up to 7.3% of PE scans are still deemed to be non-diagnostic, for example due to insufficient contrast enhancement in the target arteries. Therefore future research should focus on two important aspects of CT imaging. On the one hand optimal enhancement for the individual patient, on the other hand preventing additional risk of CT imaging - namely contrast induced nephropathy (CIN) and radiation risk. Thus the purpose of our study will be to optimize radiation dose settings (e.g. tube voltage, tube current) and CM application for the individual patient in CTPA.