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Pulmonary Embolism clinical trials

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NCT ID: NCT00187408 Completed - Pulmonary Embolism Clinical Trials

The D-KAF (Dalteparin in Knee-to-Ankle Fracture) Trial

Start date: August 2002
Phase: Phase 4
Study type: Interventional

It is known that patients who fracture their legs sometimes develop blood clots (known as deep vein thrombosis) in their legs. These clots may cause pain and swelling in the leg or they may detach and travel to the lungs producing shortness of breath, chest pain, and sometimes death. Unfortunately, it is not known how frequently these complications occur after leg fractures, or if the use of a blood thinner medication can effectively and safely prevent these clots. Doctors at hospitals across Canada are conducting a study in which patients who have surgery for leg fractures receive either a once-daily injection of a blood thinner, known as low molecular weight heparin, or a placebo injection for up to 14 days after their fractures. Neither the patients nor the doctors know which patient is on the medication and which patient is on placebo. All patients receive an ultrasound examination of their legs at 2 weeks after surgery to monitor for deep vein thrombosis. In addition, all patients are checked for symptoms of leg or lung clots and any side effects of the medication for 3 months. If the blood thinner is shown to be effective at reducing this complication and documented to be safe and cost-effective in this setting it will be recommended for use in such patients. If, on the other hand, the frequency of deep vein thrombosis is too low to justify the cost or inconvenience of taking this medication, this will also be an important finding.

NCT ID: NCT00186745 Terminated - Pulmonary Embolism Clinical Trials

Use of Low Molecular Weight Heparin (Tinzaparin) to Treat Blood Clots in Patients With Kidney Failure

Start date: March 2005
Phase: N/A
Study type: Interventional

Blood clots in the leg veins, known as deep vein thrombosis, are important because they may travel to the lung (known as pulmonary embolism) and cause death. Blood clots are treated with blood thinners, or anticoagulants. The preferred treatment is an anticoagulant known as low molecular weight heparin (LMWH). LMWH is given by an injection under the skin, which is convenient for patients because they can self-administer this medication at home, and no blood testing is required. However, LMWH is cleared from the body through the kidneys, so patients who have kidney failure are generally not treated with LMWH because they may be at a higher risk of bleeding. One type of LMWH, known as tinzaparin, may be less dependent on the kidneys for clearance and may not increase in patients with kidney failure. The investigators would like to use tinzaparin to treat patients who have deep vein thrombosis or pulmonary embolism, and who also have kidney failure. The purpose of this study is to determine whether the blood thinning effects of tinzaparin build up, or accumulate, in patients with varying degrees of kidney failure compared to patients without kidney failure. The blood thinning effects will be measured using a blood test known as an anti-Xa level. Patients will be followed over the time they receive tinzaparin and those patients who are found to have potentially high levels of tinzaparin (based on the anti-Xa level) will have their tinzaparin dose adjusted. The investigators believe that the levels of tinzaparin will not accumulate to potentially dangerous levels in a significant number of patients with kidney failure.

NCT ID: NCT00182546 Terminated - Clinical trials for Deep Venous Thrombosis

Canadian Pulmonary Embolism Diagnosis Study (CANPEDS)

Start date: August 1998
Phase: Phase 3
Study type: Interventional

The main objective of the trial is to determine whether D-dimer testing combined with assessment of Pre-Test-Probability (using a standardized clinical model) can be used to markedly simplify the diagnostic process for PE. It may be safe to omit additional diagnostic testing in selected patients with suspected pulmonary embolism who have a negative D-dimer test

NCT ID: NCT00182403 Completed - Pulmonary Embolism Clinical Trials

Fixed Dose Heparin Study

Start date: September 1998
Phase: Phase 3
Study type: Interventional

FIDO was a multicentred randomized, open-label trial that compared fixed-dose UFH with fixed-dose LMWH for initial treatment of VTE. Patients were followed for 3 months during which they received warfarin (target INR 2.0-3.0).

NCT ID: NCT00182247 Terminated - Pulmonary Embolism Clinical Trials

D-Dimer and IPG for Recurrent Thrombosis (DIRECT)

Start date: December 1998
Phase: Phase 3
Study type: Interventional

To simplify and improve the diagnostic approach to patients with clinically suspected recurrent DVT by determining whether the results of the combination of IPG and d-dimer testing, using a whole blood agglutination assay, can be used in the management of such patients.

NCT ID: NCT00182221 Completed - Clinical trials for Venous Thromboembolism

Safety of a Diagnostic Strategy With D-Dimer Testing for PE

Start date: August 2003
Phase: Phase 3
Study type: Interventional

To determine whether D-Dimer testing, using the MDA D-Dimer assay, can be used to simplify the diagnostic process for pulmonary embolism (PE). This will be assessed by performing a cohort study in 1000 patients with suspected PE. To ascertain if an MDA D-Dimer result of less than 0.75 ug/mL FEU obviates the need for further testing and therapy in patients with suspected PE.

NCT ID: NCT00162435 Recruiting - Atrial Fibrillation Clinical Trials

Genetic Determinants of Warfarin Anticoagulation Effect

Start date: August 2002
Phase: N/A
Study type: Interventional

The response to warfarin varies greatly among individuals. Some of this variability can be ascribed to genetic polymorphisms in the gene encoding for CYP2C9, the enzyme mediating the metabolism of S warfarin. In addition genetic polymorphism in other genes (i.e. VKORC1, factor VII) have been shown to account for some of the variability in the response to warfarin irrespective of CYP2C9.The present study has several segments: 1. Evaluation of the relationship between genetic polymorphisms in the genes encoding for CYP2C9, VKORC1 and factor VII and warfarin maintenance dose at steady state. This study is a confirmation of previous data in our own population. 2. Evaluation of relationship between genetic polymorphisms in the genes encoding for CYP2C9, VKORC1 and factor VII and warfarin loading dose during the induction period. 3. Testing the hypothesis that warfarin loading based on the individual's combined CYP2C9, VKORC1 and factor VII genotype may be more efficient and associated with reduced adverse drug effects.

NCT ID: NCT00117169 Completed - Pulmonary Embolism Clinical Trials

Multi-Detector Spiral Computed Tomography Alone Versus Combined Strategy With Lower Limb Compression Ultrasonography in Outpatients Suspected of Pulmonary Embolism

Start date: January 2005
Phase: N/A
Study type: Interventional

The main hypothesis for this study is that the diagnostic approach of pulmonary embolism (PE) by evaluation of clinical probability, D-dimer test dosage and multi-detector helical computed tomography (hCT) is as safe as the classical "approach" using clinical probability, D-dimer test, lower limb compression ultrasonography and multi-detector helical computed tomography. The second hypothesis involves evaluating the role of searching distal, i.e. infrapopliteal, deep venous thromboses (DVTs) in the diagnostic approach of pulmonary embolism.

NCT ID: NCT00114608 Completed - Pulmonary Embolism Clinical Trials

Venous Blood Flow Velocity: Electrical Foot Stimulation Compared to Intermittent Pneumatic Compression of the Foot

Start date: June 2005
Phase: Phase 1
Study type: Interventional

Electrical stimulation of the foot can increase blood flow out of the leg. This increased blood flow can prevent blood clots from forming in the leg veins. Blood clots in the leg veins can break off and form life-threatening blood clots in the lungs. Intermittent external pneumatic (air) compression of the foot is already used to increase blood flow in at risk patients. Hypothesis: Electrical stimulation of the foot increases blood flow out of the legs to the same degree as intermittent external pneumatic (air) compression of the foot.

NCT ID: NCT00097357 Completed - Pulmonary Embolism Clinical Trials

BMS-562247 in Subjects Undergoing Elective Total Knee Replacement Surgery

Start date: October 2004
Phase: Phase 2/Phase 3
Study type: Interventional

The purpose of this study is to learn if BMS-562247 can prevent blood clots in the legs and lungs in men and women following unilateral total knee replacement surgery. The safety of this treatment will also be studied.