You may also be interested in learning more about the ClearSight system. Does central venous pressure predict fluid responsiveness? An updated meta-analysis and a plea for some common sense. Crit Care Med Le Manach et al.
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Goal directed haemodynamic therapy during elective total hip arthroplasty under regional anaesthesia. Crit Care. Intraoperative intravascular volume optimization and length of hospital stay after repair of proximal femoral fracture: randomised controlled trial.
Goal-directed intraoperative fluid administration reduces length of hospital stay after major surgery. Randomized controlled trial to investigate influence of the fluid challenge on duration of hospital stay and perioperative morbidity in patients with hip fractures.
Br J Anaesth. Randomised controlled trial investigating the influence of intravenous fluid titration using oesophageal Doppler monitoring during bowel surgery. Randomised controlled trial assessing the impact of a nurse delivered, flow monitored protocol for optimisation of circulatory status after cardiac surgery.
Intraoperative oesophageal Doppler-guided fluid management shortens postoperative hospital stay after major bowel surgery. Randomized clinical trial assessing the effect of Doppler-optimized fluid management on outcome after elective colorectal resection. Esophageal Doppler-guided fluid management decreases blood lactate levels in multiple-trauma patients: a randomized controlled trial.
Intraoperative fluid optimization using stroke volume variation in high risk surgical patients: results of prospective randomized study. Goal-directed intraoperative therapy reduces morbidity and length of hospital stay in high-risk surgical patients.
Grocott et al. Perioperative increase in global blood flow to explicit defined goals and outcomes after surgery: a Cochrane systematic review. Goal-directed haemodynamic therapy and gastrointestinal complications in major surgery: a meta-analysis of randomized controlled trials. Haemodynamic goal-directed therapy and postoperative infections: earlier is better.
A systematic review and meta-analysis. Crit Care ; R Corcoran T et al. A systematic review and meta-analysis on the use of preemptive hemodynamic intervention to improve postoperative outcomes in moderate and high risk surgical patients. Anesthesia — Analgesia ; — Bellamy, MC. Wet, dry or something else? B J Anaestha. Continuous central venous and pulmonary artery oxygen saturation monitoring in the critically ill. Intensive Care Med. Rivers EP, et al. Central venous oxygen saturation monitoring in the critically ill patient.
Curr Opin Crit Care. Ingelmo P, et al. Importance of monitoring in high risk surgical patients. Minerva Anestesiol. Scalea, TM, et al. Central venous oxygen saturation: a useful clinical tool in trauma patients. J Trauma ;30 12 Ander, DS, et al. Undetected cardiogenic shock in patients with congestive heart failure presenting to the emergency department.
Am J Cardiol ;82 7 Rady, MY, et al. Resuscitation of the critically ill in the ED: responses of blood pressure, heart rate, shock index, central venous oxygen saturation, and lactate. Am J Emerg Med ;14 2 Nakazawa, K, et al.
Usefulness of central venous oxygen saturation monitoring during cardiopulmonary resuscitation. A comparative case study with end-tidal carbon dioxide monitoring. Intensive Care Med ;20 6 Rivers, EP, et al. The clinical implications of continuous central venous oxygen saturation during human CPR. Ann Emerg Med ;21 9 Loren D. Continuous venous oximetry in surgical patients. Ann Surg. Donati A, et al. Goal-directed intraoperative therapy reduces morbidity and length of hospital stay in high-risk patients.
Noguiera P, et al. J Intensive Care Med. Vallet B, et al. Venous oxygen saturation as a physiologic transfusion trigger. Edwards, Vigileo Operators Manual: A Pearse, R, et al. Changes in central venous saturation after major surgery, and association with outcome. Crit Care ;9 6 :R CL Gurudatt. Perioperative fluid therapy: How much is not too much?
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