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Cardiometry clinical trials

View clinical trials related to Cardiometry.

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NCT ID: NCT06236217 Completed - Hypotension Clinical Trials

Prediction of Spinal Anesthesia-Induced Hypotension in Cesarian Section: Carotid Artery-Corrected Flow Time Versus Cardiometry

Start date: August 1, 2021
Phase: N/A
Study type: Interventional

This research aimed to evaluate and compare the role of carotid corrected flow time (FTc) and electrical cardiometry (EC) in the prediction and prevention of post-spinal hypotension in elective cesarian section.

NCT ID: NCT04219150 Completed - ARDS Clinical Trials

Cardiometry Versus Fluid and Catheter Treatment Trial (FACTT Lite) on Fluid Management in Acute Respiratory Distress Syndrome Patients

Start date: January 10, 2020
Phase: N/A
Study type: Interventional

The aim of this study will be to compare the fluid management in acute respiratory distress syndrome ARDS guided by electrical cardiometry (EC) versus the guidance with simplified conservative fluid protocol, Fluid and Catheter Treatment Trial "FACTT Lite". Group (A) consists of 35 patients: Fluid management in this group will follow a simplified conservative fluid protocol, "FACTT Lite" The FACTT Lite provided three possible instructions determined by the CVP and urine output: furosemide administration, fluid bolus, or no intervention. Group (B) consists of 35 patients: Fluid will be allowed according to an FTc-based fluids algorithm protocol and the type of bolus fluids will be determined according to Transthoracic fluid content (TFC), vasopressors and inotropes will be given according to reading of EC reading of systemic vascular resistance (SVR) and index of contractility (I CON).

NCT ID: NCT03932617 Completed - Shock Clinical Trials

Correlation Between Changes in End-Tidal Carbon Dioxide and Stroke Volume Variation Detected by Electrical Cardiometry as A Predictor of Fluid Volume Responsiveness in Hemodynamically Unstable Patients in the Intensive Care

Start date: June 1, 2019
Phase:
Study type: Observational

This study will be conducted to assess the role of end-tidal carbon dioxide (PETCO2) monitoring to predict the fluid volume responsiveness in correlation with stroke volume variation detected by electrical cardiometry in patients with hemodynamic instability.