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临床试验/NCT06316063
NCT06316063已完成不适用

Hemodynamic Effects of Apnoeic Oxygenation With High-flow Nasal Oxygen in Adults Undergoing Laryngeal Surgery - a Randomised Study

Region Stockholm1 个研究点 分布在 1 个国家目标入组 20 人开始时间: 2024年3月25日最近更新:
适应症
干预措施

试验速览

阶段
不适用
状态
已完成
入组人数
20
试验地点
1
主要终点
Significant haemodynamic effects during apnoeic oxygenation with HFNO

研究概览

简要总结

During apnoeic oxygenation there is a continuous raise in carbon dioxide with subsequent respiratory acidosis. The hypercapnia and respiratory acidosis have several dose-related effects on both the systemic and the pulmonary circulation and the heart that ultimately, if unrecognised, can result in cardiovascular collapse and fatal arrhythmias. In our knowledge, no studies have investigated the haemodynamic effects of apnoeic oxygenation with HFNO.

The general purpose of this project is to investigate haemodynamic alternations during apnoeic oxygenation with HFNO compared to mechanical ventilation in relatively healthy patients under general anaesthesia during laryngeal surgery.

详细描述

This study aims to investigate and observe the circulatory effects in a patient undergoing apnoeic oxygenation with HFNO during shorter elective laryngeal surgery over time and compared to mechanical ventilation. 20 patients scheduled for elective laryngeal surgery, eligible for apnoeic oxygenation at the Karolinska University Hospital, will be recruited. If eligible, the patient will receive oral and written study information by one of the investigators well in advance of the planned surgery. After a signed consent, the subject will be enrolled and randomised to either apnoeic oxygenation with HFNO or mechanical ventilation.

Patient characteristics such as age, sex, weight, height, ASA classification, other comorbidities and airway-related parameters will be documented. A preoperative transthoracic echocardiographic examination and routine perioperative monitoring, will be performed together with a 12-lead ECG. Preoperatively, an arterial catheter will be inserted in the radial artery and an arterial blood gas, measuring PaCO2, PaO2, pH, HCO3 and blood samples of stress markers including catecholamines and other cardiac biomarkers will be collected. The FloTrac system will be connected to the arterial catheter and baseline values will be registered. A peripheral venous catheter is placed prior to anaesthesia and the patient is placed supine.

In the apnoeic oxygenation group the HFNO nasal prongs (Optiflow, Fisher & Paykel Healthcare, Auckland, New Zealand) is placed in the nostrils and used for pre-oxygenation, 100 % O2, 40 L/min during 3 min. Thereafter, anaesthesia is induced by intravenous Propofol and Remifentanil administration. Rocuronium for full neuromuscular blockade is administered and a jaw thrust is used to keep an open airway. The start of apnoea is noted, defined as 1 minute after Rocuronium administration. The airway will be kept patent throughout the procedure using a suspension laryngoscope, placed by the ENT surgeon.

During apnoea the flow of oxygen is increased to 70 L/min, 100% O2. Apnoea will be discontinued if any of the criteria SpO2 < 90%, PaCO2 >11 kPa, pH <7.15 or arrhythmias with haemodynamic effects occur. In the mechanical ventilation group pre-oxygenation is performed by a tight-fitting facemask, 100 % O2, for three minutes. After anaesthesia induction using intravenous Propofol and Remifentanil and Rocuronium for full neuromuscular blockade, tracheal intubation is performed and mechanical ventilation is started. The start of apnoea is noted. The ventilator is set to PEEP 5 cmH2O, tidal volume (TV) 7 ml/kg ideal body weight, FiO2 0.4, and the respiratory frequency adjusted to reach a PaCO2 of 5,0 -5,3 kPa. Standard perioperative monitoring will be registered (peripheral oxygen saturation, heart rate and MAP). Arterial blood gases will be collected and ECG performed repeatedly. Data from the FloTrac system will be monitored throughout the procedure. Transthoracic echocardiography will be performed regularly. Blood samples to analyse stress markers including catecholamines and cardiac biomarkers will be collected at specific timepoints.

At the end of the procedure, any neuromuscular blockade is reversed by Sugammadex. The end of apnoea is defined as reoccurrence of spontaneous breathing or start of mask ventilation. In the mechanically ventilated group, subjects are extubated when awake and responsive.

研究设计

研究类型
Interventional
分配方式
Randomized
干预模型
Parallel
主要目的
Basic Science
盲法
None

入排标准

年龄范围
18 Years 至 110 Years(Adult, Older Adult)
性别
All
接受健康志愿者

入选标准

  • Adult, ≥18 years old
  • BMI < 30
  • Planned for elective laryngeal surgery

排除标准

  • NYHA-class >1
  • Pregnancy
  • Severe gastric reflux
  • Neuromuscular disease
  • Any pulmonary disease
  • Smokers or former smoker, last finished 6 months before inclusion
  • Not capable of understanding study information and signing a written consent

研究组 & 干预措施

Apnoeic oxygenation with High-flow nasal oxygen

Experimental

In the apnoeic oxygenation group the HFNO is used for pre-oxygenation,100 % O2, 40 L/min during 3 min. Thereafter, anaesthesia is induced by intravenous Propofol and Remifentanil. Rocuronium for full neuromuscular blockade is administered and a jaw thrust is used to keep an open airway. The airway will be kept patent throughout the procedure using a suspension laryngoscope, placed by the ENT surgeon. During apnoea oxygen will be increased to 70 L/min, 100% O2. Apnoea will be discontinued if any of the criteria SpO2 < 90%, PaCO2 >11 kPa, pH <7.15 or arrhythmias with haemodynamic effects occur.

干预措施: Apnoeic oxygenation with high-flow nasal oxygen (Device)

Mechanical ventilation

Active Comparator

In the mechanical ventilation group pre-oxygenation is performed by a tight-fitting facemask, 100 % O2, for three minutes. After anaesthesia induction and full neuromuscular blockade, tracheal intubation is performed and mechanical ventilation is started.

干预措施: Mechanical ventilation (Other)

结局指标

主要结局

Significant haemodynamic effects during apnoeic oxygenation with HFNO

时间窗: 3 hours

Significant haemodynamic effects such as significant increase in mPAP and/or new echocardiographic signs of right ventricular strain or failure compared to baseline, during and up to 2 hours after apnoeic oxygenation with HFNO or mechanical ventilation.

次要结局

  • Alterations in FloTrac derived central haemodynamic parameters(3 hours)
  • Alterations in Electrocardiogram(3 hours)
  • Alterations in arterial carbon dioxide, oxygen and pH(3 hours)
  • Alterations in blood catecholamines and cardiac biomarkers(3 hours)

研究者

申办方类型
Other Gov
责任方
Sponsor

研究点 (1)

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