Mechanical Ventilation Clinical Trial
Official title:
Tidal Volume Challenge to Assess Volume Responsiveness With Dynamic Preload Indices During Surgery: A Prospective Study
The purpose of this study is to investigate the ability of changes in PPV and SVV after Tidal Volume Challenge to predict fluid responsiveness in patients undergoing general anesthesia with protective mechanical ventilation.
Status | Recruiting |
Enrollment | 50 |
Est. completion date | November 1, 2023 |
Est. primary completion date | September 19, 2023 |
Accepts healthy volunteers | No |
Gender | All |
Age group | 18 Years and older |
Eligibility | Inclusion Criteria: - Patients over 18 years of age - General surgery or Vascular surgery patients without clamping of the aorta. - Will require arterial cannulation and invasive blood pressure monitoring during surgery - The expected duration of the operation will be equal to or greater than 90 minutes Exclusion Criteria: - preoperative arrhythmia or newly emergent arrhythmia after anesthesia induction - Reduced left (EF < 40%) or right systolic function - BMI >30 - Preoperative use of beta-blockers - Chronic obstructive pulmonary disease with FEV1 <60% predicted volume |
Country | Name | City | State |
---|---|---|---|
Greece | Attikon University Hospital | Athens | Attika |
Lead Sponsor | Collaborator |
---|---|
Attikon Hospital |
Greece,
Biais M, Ehrmann S, Mari A, Conte B, Mahjoub Y, Desebbe O, Pottecher J, Lakhal K, Benzekri-Lefevre D, Molinari N, Boulain T, Lefrant JY, Muller L; AzuRea Group. Clinical relevance of pulse pressure variations for predicting fluid responsiveness in mechanically ventilated intensive care unit patients: the grey zone approach. Crit Care. 2014 Nov 4;18(6):587. doi: 10.1186/s13054-014-0587-9. — View Citation
Cecconi M, Parsons AK, Rhodes A. What is a fluid challenge? Curr Opin Crit Care. 2011 Jun;17(3):290-5. doi: 10.1097/MCC.0b013e32834699cd. — View Citation
De Backer D, Heenen S, Piagnerelli M, Koch M, Vincent JL. Pulse pressure variations to predict fluid responsiveness: influence of tidal volume. Intensive Care Med. 2005 Apr;31(4):517-23. doi: 10.1007/s00134-005-2586-4. Epub 2005 Mar 8. — View Citation
Loftus TJ, Stelton S, Efaw BW, Bloomstone J. A System-Wide Enhanced Recovery Program Focusing on Two Key Process Steps Reduces Complications and Readmissions in Patients Undergoing Bowel Surgery. J Healthc Qual. 2017 May/Jun;39(3):129-135. doi: 10.1111/jhq.12068. — View Citation
Mahjoub Y, Lejeune V, Muller L, Perbet S, Zieleskiewicz L, Bart F, Veber B, Paugam-Burtz C, Jaber S, Ayham A, Zogheib E, Lasocki S, Vieillard-Baron A, Quintard H, Joannes-Boyau O, Plantefeve G, Montravers P, Duperret S, Lakhdari M, Ammenouche N, Lorne E, Slama M, Dupont H. Evaluation of pulse pressure variation validity criteria in critically ill patients: a prospective observational multicentre point-prevalence study. Br J Anaesth. 2014 Apr;112(4):681-5. doi: 10.1093/bja/aet442. Epub 2013 Dec 29. — View Citation
Messina A, Montagnini C, Cammarota G, De Rosa S, Giuliani F, Muratore L, Della Corte F, Navalesi P, Cecconi M. Tidal volume challenge to predict fluid responsiveness in the operating room: An observational study. Eur J Anaesthesiol. 2019 Aug;36(8):583-591. doi: 10.1097/EJA.0000000000000998. — View Citation
Messina A, Montagnini C, Cammarota G, Giuliani F, Muratore L, Baggiani M, Bennett V, Della Corte F, Navalesi P, Cecconi M. Assessment of Fluid Responsiveness in Prone Neurosurgical Patients Undergoing Protective Ventilation: Role of Dynamic Indices, Tidal Volume Challenge, and End-Expiratory Occlusion Test. Anesth Analg. 2020 Mar;130(3):752-761. doi: 10.1213/ANE.0000000000004494. — View Citation
Myatra SN, Prabu NR, Divatia JV, Monnet X, Kulkarni AP, Teboul JL. The Changes in Pulse Pressure Variation or Stroke Volume Variation After a "Tidal Volume Challenge" Reliably Predict Fluid Responsiveness During Low Tidal Volume Ventilation. Crit Care Med. 2017 Mar;45(3):415-421. doi: 10.1097/CCM.0000000000002183. — View Citation
Navarro LH, Bloomstone JA, Auler JO Jr, Cannesson M, Rocca GD, Gan TJ, Kinsky M, Magder S, Miller TE, Mythen M, Perel A, Reuter DA, Pinsky MR, Kramer GC. Perioperative fluid therapy: a statement from the international Fluid Optimization Group. Perioper Med (Lond). 2015 Apr 10;4:3. doi: 10.1186/s13741-015-0014-z. eCollection 2015. — View Citation
Pinsky MR. Heart lung interactions during mechanical ventilation. Curr Opin Crit Care. 2012 Jun;18(3):256-60. doi: 10.1097/MCC.0b013e3283532b73. — View Citation
Thacker JK, Mountford WK, Ernst FR, Krukas MR, Mythen MM. Perioperative Fluid Utilization Variability and Association With Outcomes: Considerations for Enhanced Recovery Efforts in Sample US Surgical Populations. Ann Surg. 2016 Mar;263(3):502-10. doi: 10.1097/SLA.0000000000001402. — View Citation
* Note: There are 11 references in all — Click here to view all references
Type | Measure | Description | Time frame | Safety issue |
---|---|---|---|---|
Primary | Delta(?) PPV(T2-T1) | the difference between PPVT2 and PPVT1 | intraoperative, one hour and 3 minutes after anesthesia induction | |
Primary | Delta (?)SVV(T2-T1) | the difference between SVVT2 and SVVT1 | intraoperative, one hour and 3 minutes after anesthesia induction | |
Secondary | PPVT1 | pulse pressure variation at a tidal volume of 6 ml/kg | intraoperative, one hour after anesthesia induction | |
Secondary | PPVT2 | pulse pressure variation at a tidal volume of 8 ml/kg (tidal volume challenge) | intraoperative, one hour and 3 minutes after anesthesia induction | |
Secondary | SVVT1 | stroke volume variation at a tidal volume of 6 ml/kg | intraoperative, one hour after anesthesia induction | |
Secondary | SVVT2 | stroke volume variation at a tidal volume of 8 ml/kg (tidal volume challenge) | intraoperative, one hour and 3 minutes after anesthesia induction | |
Secondary | PPVT3 | pulse pressure variation at a tidal volume of 6 ml/kg | intraoperative, one hour and 8 minutes after anesthesia induction | |
Secondary | PPVT4 | pulse pressure variation at a tidal volume of 6 ml/kg | intraoperative, one hour and 18 minutes after anesthesia induction | |
Secondary | SVVT3 | stroke volume variation at a tidal volume of 6 ml/kg | intraoperative, one hour and 8 minutes after anesthesia induction | |
Secondary | SVVT4 | stroke volume variation at a tidal volume of 6 ml/kg | intraoperative, one hour and 18 minutes after anesthesia induction | |
Secondary | Delta (?) SVVT4-T3 | the difference between SVVT4 and SVVT3 | intraoperative, one hour and 18 minutes after anesthesia induction | |
Secondary | Delta (?) PPVT4-T3 | the difference between PPVT4 and PPVT3 | intraoperative, one hour and 18 minutes after anesthesia induction | |
Secondary | MAP | mean arterial pressure | intraoperative, 60, 63, 68 and 78 minutes after anesthesia induction | |
Secondary | SVI | stroke volume index | intraoperative, 60, 63, 68 and 78 minutes after anesthesia induction | |
Secondary | Cdyn | Dynamic compliance of the respiratory system | intraoperative, 60, 63, 68 and 78 minutes after anesthesia induction | |
Secondary | HPI | Hypotension prediction index | intraoperative, 60, 63, 68 and 78 minutes after anesthesia induction |
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