View clinical trials related to Cardiac Arrest, Out-Of-Hospital.
Filter by:In a out of hospital emergency medicine study the investigators will measure hemodynamic effects of implemented treatments for patients with cardiac arrest, hypotension, and intensive care transports. The investigators will use both non-invasive and invasive measuring technology to measure this. Ballistocardiographic biosensors are introduced together with more advanced non-invasive and invasive measurements such as invasive arterial blood pressure with cardiac output calculation and saturation cerebral tissue oxygenation (SctO2). During treatment of cardiac arrest patients the investigators will use a new LUCAS 2 Active Decompression device (LUCAS 2 AD2) and measure different hemodynamic variables.
Persistent microperfusion alterations after return of spontaneous circulation (ROSC) are associated with poor survival. To our knowledge, no human studies evaluating microperfusion during cardiopulmonary resuscitation (CPR) with simple and pre-hospital available tests have been published. Capillary refill time (CRT) and skin-mottling-score (SMS) are parameters for microperfusion and evaluated in septic and cardiogenic shock. In animal studies, microperfusion was impaired during cardiac arrest, although not correlating with systemic blood pressure. The aim of this study is to investigate the correlation between impaired microcirculation (as measured with CRT and SMS) during resuscitation and ROSC resp. neurological outcome. Our clinical impression in daily routine is, that the appearance of a patient undergoing CPR is often linked to the outcome. We hypothesize, that this is due to changes in microperfusion of the skin.
The study is aimed to assess (a) the incidence of hyperoxia at the point of return of spontaneous circulation (ROSC) and (b) the role of arterial blood oxygen partial pressure to brain oxygenation during out-of-hospital cardiac arrest. 80 adult patients will be recruited in a physician staffed helicopter emergency medical services. Brain regional oxygen saturation and invasive blood pressure are monitored until hospital admission and arterial blood gases are analyzed immediately when the unit arrives to the patient and again at the time of ROSC.
Few early prognostic indicators are currently available for patients' families and clinicians following out of hospital cardiac arrest (OHCA), and blood biomarkers may be of prognostic value in these cases. Brain tissue is highly dependent upon aerobic respiration, and oxygen deprivation result in irreversible neuronal cell injury. Peptides released into the blood by injured neuronal cells can be measured to estimate degree of injury, and potentially predict long term neurological outcome.