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Clinical Trials/NCT06123039
NCT06123039CompletedNot Applicable

Use of Heart-lung Interaction Parameters to Predict Haemodynamic Tolerance to the Open Lung Approach With Individualised PEEP During Invasive Mechanical Ventilation in the Operating Room

Hospital Universitario La Fe1 site in 1 country72 target enrollmentStarted: November 6, 2023Last updated:
Conditions

Trial Snapshot

Phase
Not Applicable
Status
Completed
Enrollment
72
Locations
1
Primary Endpoint
Tidal volume challenge as a predictor of hemodynamic response to Open Lung Approach

Study Overview

Brief Summary

This is an observational, prospective, single-centre study that will focus on patients undergoing major non-cardiac surgery requiring invasive mechanical ventilation and invasive blood pressure monitoring Hypotheses: A positive TVC (tidal volume challenge) prior to the recruitment manoeuvre (RM) predicts a decrease in CI within 5 minutes of individualised PEEP establishment of at least 10%.

  1. T0: Moment prior to the start of tidal volume challenge. Baseline values
  2. T1: After tidal volume challenge, moment priorate the start of the recruitment manoeuvre (RM). Mostcare and ventilator values. From this moment on, the parameters obtained from Mostcare will be analysed continuously (minute by minute) until 15 minutes after establishing the individualised PEEP.
  3. T2: At minute 5 of establishing individualised PEEP. All parameters derived from basic monitoring, Mostcare, and ventilator monitoring shall be monitored and recorded. Record whether any fluid bolus has been administered.

Detailed Description

This is an observational, prospective, single-centre study that will focus on patients undergoing major non-cardiac surgery requiring invasive mechanical ventilation and invasive blood pressure monitoring

Lung recruitment manoeuvres (RM) are performed to prevent collapsed lung parenchyma from compromising oxygenation. In order to open collapsed lung areas, intrathoracic pressure needs to be raised and this may have haemodynamic repercussions especially in patients with an overt or latent hypovolaemic state. Parameters such as stroke volume variation (SVV) or pulse pressure variation (PPV) reflect to some extent the heart-lung interaction and have been used as predictors of fluid responsiveness by exploiting this principle to detect preload-dependent patients. The tidal volume challenge (TVC) uses the same principle of heart-lung interaction with better results. TVC can be a predictor of haemodynamic tolerance to RM + individualised PEEP.

Hypotheses: A positive TVC prior to the recruitment manoeuvre (RM) predicts a decrease in CI within 5 minutes of individualised PEEP establishment of at least 10%.

Data will be collected in the surgical area. Demographic and clinical parameters will be collected from the patient's clinical history, respiratory parameters obtained from the respirator, haemodynamic parameters obtained from the Mostcare device, oxygenation parameters before and after a recruitment manoeuvre.

If the patient meets all inclusion criteria and none of the exclusion criteria, he/she will be included for data collection. If he/she benefits from a recruitment manoeuvre (air-test + clinical indication), which will be assessed by clinical indications, he/she will be entered into our study. All measurements will be taken under stable haemodynamic conditions (HR and MAP should be stable and with +-10% variation for 1 min prior to measurements), without administration of vasoactive drugs or influential surgical aggression at that time.

Study Design

Study Type
Observational
Observational Model
Cohort
Time Perspective
Prospective

Eligibility Criteria

Ages
18 Years to 90 Years (Adult, Older Adult)
Sex
All
Accepts Healthy Volunteers
Yes

Inclusion Criteria

  • Patients over 18 years of age; undergoing scheduled non-cardiothoracic surgery; under controlled invasive mechanical ventilation and invasive arterial monitoring; supine position; positive air test

Exclusion Criteria

  • Chronic pulmonary disease (defined as chronic obstructive pulmonary disease grade 3 or higher or any disease requiring long-term oxygen therapy); congenital cardiac malformations; severe valvular heart disease; heart failure NYHA (New York Heart Association) Grade III/IV; arrhythmias; history of reduced ventricular systolic function (FEVI <40% or TAPSE <17 cm/s); history of pulmonary hypertension; BMI >35 (due to altered lung compliance and rib cage); heart rate/respiratory rate ratio < 3.6; presence of inspiratory effort; open chest; increased intra-abdominal pressure (due to pathology or pneumoperitoneum); altered pulmonary or rib cage compliance due to surgery (trendelemburg or antitrendelemburg position); uncorrected optimal arterial waveform (resonant or damped) and presence of any contraindication to lung recruitment manoeuvres. The latter are: pulmonary emphysema, pulmonary bullae, uncontrolled haemodynamic instability, right heart failure, elevated intracranial pressure (decreased return flow through jugular veins) or lack of monitoring if necessary, bronchospasm, undrained pneumothorax.

Outcomes

Primary Outcomes

Tidal volume challenge as a predictor of hemodynamic response to Open Lung Approach

Time Frame: At minute 5 after recruitment maneuver

To describe the relationship between baseline Tidal Volume Challenge and the difference in baseline and 5-minute CI (cardiac index) after Recruitment Maneuver with individualised PEEP (Open Lung Approach). We consider a 10% decrease in CI as clinically significant.

Secondary Outcomes

  • Heart-lung interactions to predict hemodynamic response to Open Lung Approach(5 minutes after RM)
  • Heart lung interactions as predictors of hemodynamic tolerance to Open Lung Apprach assessed by Mean Arterial Pressure(For 5 minutes from the recruitment maneuver)
  • CI and MAP correlation for assessing hemodynamic impact of Open Lung Approach(For 5 minutes from the recruitment maneuver)
  • Heart-lung interactions as predictors of hemodynamic tolerance to Open Lung Approach over time(For 15 minutes from the recruitment maneuver)

Investigators

Sponsor Class
Other
Responsible Party
Principal Investigator
Principal Investigator

Oscar Diaz-Cambronero

PhD, Head of the perioperative medicine group

Hospital Universitario La Fe

Study Sites (1)

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