Blood Pressure Goals in Critically Ill Patients
暂无分享,去创建一个
[1] E. Kattan,et al. Correlation Between Mean Arterial Pressure and Capillary Refill Time in Patients with Septic Shock: A Systematic Review and Meta-analysis. , 2023, Journal of intensive care medicine.
[2] A. Zarbock,et al. All intraoperative hypotension is not created equal - A call for an individualized approach. , 2023, Journal of clinical anesthesia.
[3] A. Khanna,et al. Not all Shock States Are Created Equal: A Review of the Diagnosis and Management of Septic, Hypovolemic, Cardiogenic, Obstructive, and Distributive Shock. , 2023, Anesthesiology clinics.
[4] A. Natarajan,et al. Association of systolic, diastolic, mean, and pulse pressure with morbidity and mortality in septic ICU patients: a nationwide observational study , 2023, Annals of Intensive Care.
[5] Jiayan Liu,et al. Effect of hypotension prediction index in the prevention of intraoperative hypotension during noncardiac surgery: A systematic review. , 2022, Journal of clinical anesthesia.
[6] M. McInnes,et al. Indications, Clinical Impact, and Complications of Critical Care Transesophageal Echocardiography: A Scoping Review , 2022, Journal of intensive care medicine.
[7] A. Khanna,et al. The relationship between norepinephrine equivalent dose of vasopressors within 24 hours from the onset of septic shock and in-hospital mortality. , 2022, Chest.
[8] D. Brodie,et al. Optimal Perfusion Targets in Cardiogenic Shock , 2022, JACC. Advances.
[9] A. Zarbock,et al. Ten tips to optimize vasopressors use in the critically ill patient with hypotension , 2022, Intensive Care Medicine.
[10] A. Khanna,et al. Intraoperative hypotension is associated with persistent acute kidney disease after noncardiac surgery: a multicentre cohort study. , 2022, British journal of anaesthesia.
[11] P. Panda,et al. Intraoperative Evaluation of Renal Resistive Index with Transesophageal Echocardiography for the Assessment of Acute Renal Injury in Patients Undergoing Coronary Artery Bypass Grafting Surgery: A Prospective Observational Study , 2022, Annals of cardiac anaesthesia.
[12] A. Khanna,et al. Vasopressor Choice and Timing in Vasodilatory Shock , 2022, Critical Care.
[13] V. Novack,et al. Intraoperative Hypotension and Acute Kidney Injury, Stroke, and Mortality during and outside Cardiopulmonary Bypass: A Retrospective Observational Cohort Study , 2022, Anesthesiology.
[14] C. Sprung,et al. Surviving Sepsis Campaign: International Guidelines for Management of Sepsis and Septic Shock 2021. , 2021, Critical care medicine.
[15] C. Sprung,et al. Surviving sepsis campaign: international guidelines for management of sepsis and septic shock 2021 , 2021, Intensive Care Medicine.
[16] D. Sessler,et al. Associations between intraoperative and post-anesthesia care unit hypotension and surgical ward hypotension. , 2021, Journal of clinical anesthesia.
[17] B. Saugel,et al. Postoperative blood pressure management in patients treated in the ICU after noncardiac surgery , 2021, Current opinion in critical care.
[18] A. Khanna,et al. Association of perioperative hypotension with subsequent greater healthcare resource utilization. , 2021, Journal of clinical anesthesia.
[19] Jingxiang Wu,et al. Target blood pressure management during cardiopulmonary bypass improves lactate levels after cardiac surgery: a randomized controlled trial , 2021, BMC Anesthesiology.
[20] F. de Lange,et al. High Versus Normal Blood Pressure Targets in Relation to Right Ventricular Dysfunction After Cardiac Surgery: A Randomized Controlled Trial. , 2021, Journal of cardiothoracic and vascular anesthesia.
[21] A. Khanna,et al. Postoperative Hypotension and Adverse Clinical Outcomes in Patients Without Intraoperative Hypotension, After Noncardiac Surgery , 2021, Anesthesia and analgesia.
[22] M. Bell,et al. Defining Shock and Preshock for Mortality Risk Stratification in Cardiac Intensive Care Unit Patients. , 2021, Circulation. Heart failure.
[23] A. Driessen,et al. Machine learning methods for perioperative anesthetic management in cardiac surgery patients: a scoping review , 2021, Journal of thoracic disease.
[24] A. Khanna,et al. Postoperative hypotension in patients discharged to the intensive care unit after non-cardiac surgery is associated with adverse clinical outcomes , 2020, Critical Care.
[25] K. Karamchandani,et al. Macrocirculation and Microcirculation: The "Batman and Superman" Story of Critical Care Resuscitation. , 2020, Anesthesia and analgesia.
[26] A. Khanna,et al. Intraoperative Hypotension Is Associated With Adverse Clinical Outcomes After Noncardiac Surgery , 2020, Anesthesia and analgesia.
[27] E. Mascha,et al. Hypotension Prediction Index for Prevention of Hypotension during Moderate- to High-risk Noncardiac Surgery , 2020, Anesthesiology.
[28] M. Bell,et al. Association between mean arterial pressure during the first 24 hours and hospital mortality in patients with cardiogenic shock , 2020, Critical Care.
[29] V. Pettilä,et al. Optimum Blood Pressure in Patients With Shock After Acute Myocardial Infarction and Cardiac Arrest. , 2020, Journal of the American College of Cardiology.
[30] R. Bellomo,et al. Relative Hypotension and Adverse Kidney-related Outcomes Among Critically Ill Patients with Shock- A Multicenter Prospective Cohort Study. , 2020, American journal of respiratory and critical care medicine.
[31] H. Gershengorn,et al. Association of Pre-Morbid Blood Pressure with Vasopressor Infusion Duration in Patients with Shock. , 2020, American journal of respiratory and critical care medicine.
[32] M. P. Mulder,et al. Effect of a Machine Learning-Derived Early Warning System for Intraoperative Hypotension vs Standard Care on Depth and Duration of Intraoperative Hypotension During Elective Noncardiac Surgery: The HYPE Randomized Clinical Trial. , 2020, JAMA.
[33] J. D. Young,et al. Effect of Reduced Exposure to Vasopressors on 90-Day Mortality in Older Critically Ill Patients With Vasodilatory Hypotension: A Randomized Clinical Trial. , 2020, JAMA.
[34] T. Scheeren,et al. Ability of an Arterial Waveform Analysis–Derived Hypotension Prediction Index to Predict Future Hypotensive Events in Surgical Patients , 2020, Anesthesia and analgesia.
[35] T. Gudbjartsson,et al. 2019 EACTS/EACTA/EBCP guidelines on cardiopulmonary bypass in adult cardiac surgery. , 2019, British journal of anaesthesia.
[36] D. Sessler,et al. Association Between Perioperative Hypotension and Delirium in Postoperative Critically Ill Patients: A Retrospective Cohort Analysis , 2019, Anesthesia and analgesia.
[37] Yi-Ju Li,et al. Intraoperative renal resistive index threshold as an acute kidney injury biomarker. , 2019, Journal of clinical anesthesia.
[38] D. Bhatia,et al. Association of postoperative blood pressure and bleeding after cardiac surgery. , 2019, The Journal of thoracic and cardiovascular surgery.
[39] D. Fitzgerald,et al. 2019 EACTS/EACTA/EBCP guidelines on cardiopulmonary bypass in adult cardiac surgery. , 2019, European journal of cardio-thoracic surgery : official journal of the European Association for Cardio-thoracic Surgery.
[40] M. Ramsay,et al. New Developments in Hemodynamic Monitoring. , 2019, Journal of cardiothoracic and vascular anesthesia.
[41] J. Ornato,et al. SCAI clinical expert consensus statement on the classification of cardiogenic shock , 2019, Catheterization and cardiovascular interventions : official journal of the Society for Cardiac Angiography & Interventions.
[42] D. Sessler,et al. Association Between Mean Arterial Pressure and Acute Kidney Injury and a Composite of Myocardial Injury and Mortality in Postoperative Critically Ill Patients: A Retrospective Cohort Analysis. , 2019, Critical care medicine.
[43] N. Weiss,et al. Effects of mean arterial pressure on arousal in sedated ventilated patients with septic shock: a SEPSISPAM post hoc exploratory study , 2019, Annals of Intensive Care.
[44] D. Sessler,et al. Incidence, Severity, and Detection of Blood Pressure Perturbations after Abdominal Surgery: A Prospective Blinded Observational Study , 2019, Anesthesiology.
[45] J. Bakker,et al. Effect of a Resuscitation Strategy Targeting Peripheral Perfusion Status vs Serum Lactate Levels on 28-Day Mortality Among Patients With Septic Shock: The ANDROMEDA-SHOCK Randomized Clinical Trial , 2019, JAMA.
[46] J. Rinehart,et al. Machine-learning Algorithm to Predict Hypotension Based on High-fidelity Arterial Pressure Waveform Analysis , 2018, Anesthesiology.
[47] A. Gelb,et al. Blood Pressure Targets in Perioperative Care. , 2018, Hypertension.
[48] D. Sessler,et al. The association of hypotension during non‐cardiac surgery, before and after skin incision, with postoperative acute kidney injury: a retrospective cohort analysis , 2018, Anaesthesia.
[49] P. Asfar,et al. MAP of 65: target of the past? , 2018, Intensive Care Medicine.
[50] D. Sessler,et al. Perioperative myocardial injury and the contribution of hypotension , 2018, Intensive Care Medicine.
[51] D. Sessler,et al. The relationship between ICU hypotension and in-hospital mortality and morbidity in septic patients , 2018, Intensive Care Medicine.
[52] R. Panwar. Untreated Relative Hypotension Measured as Perfusion Pressure Deficit During Management of Shock and New-Onset Acute Kidney Injury-A Literature Review. , 2017, Shock.
[53] Dongsheng Yang,et al. Relationship between Intraoperative Hypotension, Defined by Either Reduction from Baseline or Absolute Thresholds, and Acute Kidney and Myocardial Injury after Noncardiac Surgery: A Retrospective Cohort Analysis , 2017, Anesthesiology.
[54] S. Myatra,et al. Use of ‘tidal volume challenge’ to improve the reliability of pulse pressure variation , 2017, Critical Care.
[55] J. Divatia,et al. The Changes in Pulse Pressure Variation or Stroke Volume Variation After a “Tidal Volume Challenge” Reliably Predict Fluid Responsiveness During Low Tidal Volume Ventilation* , 2017, Critical care medicine.
[56] D. Fine,et al. Defining oliguria during cardiopulmonary bypass and its relationship with cardiac surgery-associated acute kidney injury. , 2016, British journal of anaesthesia.
[57] J. Coresh,et al. 60 A comparison of HFrEF vs HFpEF’s clinical workload and cost in the first year following hospitalisation and enrollment in a disease management program , 2016, Journal of the American College of Cardiology.
[58] S. Koenig,et al. Critical Care Transesophageal Echocardiography. , 2015, Chest.
[59] D. Wong,et al. Pleth Variability Index Predicts Fluid Responsiveness in Mechanically Ventilated Adults During General Anesthesia for Noncardiac Surgery , 2014 .
[60] Xiaobo Yang,et al. Does pulse pressure variation predict fluid responsiveness in critically ill patients? A systematic review and meta-analysis , 2014, Critical Care.
[61] Claude Guerin,et al. High versus low blood-pressure target in patients with septic shock. , 2014, The New England journal of medicine.
[62] A. Garg,et al. Relationship between Intraoperative Mean Arterial Pressure and Clinical Outcomes after Noncardiac Surgery: Toward an Empirical Definition of Hypotension , 2013, Anesthesiology.
[63] Baolong Lu,et al. Accuracy of stroke volume variation in predicting fluid responsiveness: a systematic review and meta-analysis , 2011, Journal of Anesthesia.
[64] M. Labbe,et al. Utility of transesophageal echocardiography during severe hypotension in non-cardiac surgery. , 2010, Revista brasileira de anestesiologia.
[65] Fernande Lois,et al. Goal-Directed Fluid Management Based on the Pulse Oximeter–Derived Pleth Variability Index Reduces Lactate Levels and Improves Fluid Management , 2010, Anesthesia and analgesia.
[66] C. Slager,et al. Effect of arterial blood pressure and ventilation gases on cardiac depression induced by coronary air embolism. , 1994, Journal of applied physiology.
[67] C. Hogue,et al. Mechanisms of cerebral injury from cardiac surgery. , 2008, Critical care clinics.