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Intra-Abdominal Hypertension clinical trials

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NCT ID: NCT04143776 Withdrawn - Acute Kidney Injury Clinical Trials

Renal- and Pulmonary Function in Relation to Abdominal Hypertension After Abdominal Reconstruction

REPARE
Start date: June 1, 2020
Phase:
Study type: Observational

An incisional hernia is technically challenging to operate and is the most frequent long-term complication after open surgery, resulting in impaired quality of life and reduced physical ability. Large hernias contain large amounts of abdominal volume, which similarly are missing from the abdominal cavity. Due to adaptations of the abdominal wall muscles and decreased space in the abdominal cavity, abdominal wall reconstruction lead to increased tension and thereby increased intraabdominal pressure. Reduced renal and lung function after surgery is one of the leading causes of prolonged hospitalization, increased costs and mortality. Elevated intraabdominal pressure is a known risk factor for kidney injury, but relationships between hernia surgery, increased intraabdominal pressure, renal and lung function are still unclear. Therefore, in patients undergoing surgery for incisional hernia, we will investigate the extent and consequences of elevated intraabdominal pressure, as well as its relation to renal injury and reduced lung function. We will also investigate the relationship between hernia dimensions and the development of increased intraabdominal pressure, as well as identifying patients at particular risk of developing elevated intraabdominal pressure. From April 2020 to October 2021, we will include 100 patients at Bispebjerg Hospital, Denmark, diagnosed with medium to giant incisional hernia, who will undergo scheduled surgery. Patients are followed from before to 30 days after surgery. They will be examined with CT scans before and after surgery. Blood tests, pulmonary function tests and measurement intraabdominal pressure will be performed before and until 3 days after surgery. Thirty days after surgery, lung function tests and blood tests are repeated at a final examination at the out-patient clinic. During follow-up, differences in hospital stay, complications, reoperations, and mortality will be investigated. Participation in the project is not associated with any side effects and risks. The study is expected great scientific gain, as the results can help identify particularly vulnerable patients in need of extended observation and treatment. The results obtained by the project are sought to be published in relevant scientific journals and conferences. The project is expected to extend over a 3-year period, which will include commissioning, data collection, analytical processing, dissemination of results and conduction of PhD thesis.

NCT ID: NCT03817281 Withdrawn - Sepsis Clinical Trials

Collective Accuryn Physiologic Signals and Signatures

CAPSS
Start date: March 29, 2020
Phase:
Study type: Observational [Patient Registry]

The CAPSS Study is a retrospective and prospective, multi-center, single-arm post-market data collection study with an FDA cleared device. Physiologic data measurements will be collected from enrolled subjects using electronic health records and data streams via the Accuryn Monitoring System. Analysis of these data has the potential to be able to acutely guide resuscitation and monitor trends for emerging critical conditions.

NCT ID: NCT01077895 Withdrawn - Acute Kidney Injury Clinical Trials

The Influence of Fluid Removal Using Continuous Venovenous Hemofiltration (CVVH) on Intra-abdominal Pressure and Kidney Function

Start date: February 2010
Phase: Phase 3
Study type: Interventional

Intra- abdominal hypertension (IAH) and abdominal compartment syndrome (ACS) are a cause of organ dysfunction in critically ill patients. IAH develops due to abdominal lesions (primary IAH) or extra-abdominal processes (secondary IAH). Secondary IAH arises due to decreased abdominal wall compliance and gut edema caused by capillary leak and excessive fluid resuscitation. Decreasing intra-abdominal pressure (IAP) using decompressieve laparotomy has been shown to improve organ dysfunction. However, laparotomy is generally avoided in patients with secondary IAH due to the risk of abdominal complications. Acute kidney injury (AKI) is one of the first and most pronounced organ failures associated with IAH and many patients with AKI in the ICU require renal replacement therapy (RRT). Fluid removal using continuous RRT (CRRT) has been demonstrated to decrease IAP in small series and selected patients. The aim of this study is to evaluate whether fluid removal using CVVH in patients with IAH, fluid overload and AKI is feasible and whether it has a beneficial effect on organ dysfunction (compared to CVVH without net fluid removal).