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临床试验/NCT05386901
NCT05386901已完成不适用

The Effects of Individualized Lung-protective Ventilation With Lung Dynamic Compliance-guided Positive End-expiratory Pressure(PEEP) Titration on Postoperative Pulmonary Complications of Pediatric Video-assisted Thoracoscopic Surgery

Jiaxiang Chen1 个研究点 分布在 1 个国家目标入组 63 人开始时间: 2022年6月10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
发起方
入组人数
63
试验地点
1
主要终点
Postoperative pulmonary complication(PPCs) rate at 7 days

研究概览

简要总结

This study evaluates the influence of individualized lung-protective ventilation strategy(LPVS) on postoperative pulmonary complications(PPCs) through a randomized controlled trial when children undergoing thoracoscopic surgery with one-lung ventilation(OLV).The investigators evaluate the impact of using lung dynamic compliance-guided Positive End-expiratory Pressure(PEEP) versus conventional PEEP on a pressure-controlled ventilation(PCV).The researchers also analyzed perioperative vital signs and respiratory indicators of these LPVS.

详细描述

With the advancement of pediatric thoracic surgery techniques, the age group of children who can receive thoracoscopic surgery is getting younger and younger, and even neonates can accept it. In thoracic surgery, the incidence of PPCs is as high as 30%-50%, which is one of the main reasons for poor prognosis, increased mortality and prolonged hospitalization. In recent years, more and more studies have shown that the perioperative implementation of appropriate LPVS can reduce the occurrence of PPCs. How to optimize the lung protection strategy in pediatric thoracic surgery has become one of the key issues of perioperative medical attention, and there is no consensus in clinical application.

LPVS is one of the important components of lung protection strategies, including low tidal volume, PEEP and lung recruitment strategies.How to choose the most suitable PEEP is an important part in the implementation of LPVS. The optimal PEEP value should be the corresponding pressure value when the compliance between alveolar opening and over-inflation is the best. In recent years, many scholars have studied PEEP titration methods, such as lung dynamic compliance-guided PEEP, pressure-volume (P-V) curve-guided PEEP, transpulmonary pressure-guided PEEP, and electrical impedance tomography (EIT)-guided PEEP and so on.However, there are no published studies addressing the effects of lung dynamic compliance-guided PEEP on PPCs and perioperative vital signs and respiratory indicators of pediatric surgical patients when associated with OLA strategies for ventilation.

This study is a randomized controlled trial. After meeting the inclusion conditions, the researchers were assigned to any of the two groups of lung dynamic compliance-guided individualized PEEP and conventional PEEP. The clinical anesthesia and mechanical ventilation parameter settings and data statistical analysis were completed by different anesthesiologists and participants.

On the day of surgery, standard monitoring was initiated on arrival in the theatre, including electrocardiography, pulse oximetry, and noninvasive blood pressure monitoring.Both groups were given routine standard anesthesia induction: intravenous injection of midazolam at 0.05-0.1 mg/kg of predicted body weight (PBW), propofol at 2-4 mg/kg of PBW, and intravenous injection of Sufentanil at 0.3-0.5 ug/kg of PBW, rocuronium at 0.5-1mg/kg of PBW.After adequate pre-oxygenation, endotracheal intubation and bronchial occluder placement under video laryngoscope, using fiberoptic bronchoscopy and auscultation make sure the occluder is properly positioned. The investigators will adjust breathing parameters after starting double-lung ventilation,which is a pressure control mode(PCV) using an airway pressure of 20-25mmHg with tidal volume not exceeding 6ml/kg of PBW and an inspiration: expiration ratio of 1:2;a respiratory rate of 20-40 breaths per minute to keep PaCO2 < 60 mmHg as well as FiO2 of 50% and flow of 3L/min.Then, the first lung recruitment strategy was started. The manual lung recruitment method was used, and the ventilation mode was manually controlled. The APL valve was adjusted to 30cmH2O, maintained for 15-20 seconds, and then returned to the machine-controlled ventilation mode. Arterial puncture and catheterization were performed to establish an invasive arterial monitoring channel. Intraoperative maintenance medication: 2%-3% sevoflurane, dexmedetomidine (0.1-0.2ug/kg.h of PBW), sufentanil and rocuronium bromide were added in stages according to intraoperative conditions to maintain sufficient doses above sedative analgesia and muscle relaxation.

Before starting OLV, pure oxygen hyperventilation was used, FiO2 was adjusted to 100%, and the maintenance time was not less than 3 minutes to increase the oxygen concentration in both lungs and improve the tolerance of children to hypoxia and the success rate of lung collapse. After switching to OLV, a second manual recruitment strategy was performed. The PEEP settings were divided into two groups: the canventional lung protective ventilation experimental group held PEEP at 5 cmH2O, the pulmonary dynamic compliance guided PEEP group passed increasing PEEP (0-14 cmH2O), and the lung dynamic compliance = Vt/(Pplat-PEEP).The initial PEEP is set to 0cmH2O, which is increased by 2 cmH2O every 2 minutes. Observe the PEEP value corresponding to the maximum lung dynamic compliance during the process. After the incremental PEEP process is completed, setting the PEEP value for ventilation until the end of the operation.

研究设计

研究类型
Interventional
分配方式
Randomized
干预模型
Parallel
主要目的
Treatment
盲法
Single (Participant)

盲法说明

This experiment adopts a single-blind scheme. Only the researcher understands the grouping situation, and the research subjects do not know whether they are the experimental group or the control group. The researcher can better observe and understand the research subjects, and can timely and appropriately deal with possible occurrences of the research subjects when necessary. Unexpected problems, so that the safety of the research object is guaranteed.

入排标准

年龄范围
1 Month 至 5 Years(Child)
性别
All
接受健康志愿者

入选标准

  • Children undergoing elective thoracoscopic pulmonary surgery.
  • Written informed consent.
  • Children under 5 years old (including 5 years old)
  • ASA classification 1-2
  • Respiratory Risk Assessment in Catalan Surgical Patients (ARISCAT) Criteria Low or Moderate Risk

排除标准

  • Symptoms of upper respiratory tract infection or pulmonary infection in the past 4 weeks, chest X-ray suggests pneumonia
  • Severe circulatory disease
  • Children with bullae
  • Intraoperative arterial blood pressure monitoring cannot be performed
  • Respiratory Risk Assessment in Catalan Surgical Patients (ARISCAT) Criteria Rated High Risk

研究组 & 干预措施

Conventional positive end-expiratory pressure(PEEP)

Experimental

Once the patient is intubated and after initiating ventilation in a pressure control mode(PCV) using an airway pressure of 20-25mmHg with tidal volume not exceeding 6ml/kg of predicted body weight (PBW) and an inspiration: expiration ratio of 1:2;a respiratory rate of 20-30 breaths per minute to maintain the etCO2 at 35-40 mmHg.The investigators will set the PEEP value to 5 cmH2O until the end of the operation.

干预措施: Conventional positive end-expiratory pressure(PEEP) (Procedure)

Lung dynamic compliance guided positive end-expiratory pressure(PEEP)

Experimental

Once the patient is intubated and after initiating ventilation in a pressure control mode(PCV) using an airway pressure of 20-25mmHg with tidal volume not exceeding 6ml/kg of predicted body weight (PBW) and an inspiration: expiration ratio of 1:2;a respiratory rate of 20-30 breaths per minute to maintain the etCO2 at 35-40 mmHg.The investigators will set initial PEEP to 0cmH2O,and the PEEP is increased by 2 cmH2O every 2 minutes.Observing the PEEP value corresponding to the maximum lung dynamic compliance during the process that lung dynamic compliance=Vt/(Pplat-PEEP).After the incremental PEEP process is completed, setting the PEEP value for ventilation until the end of the operation.

干预措施: Lung dynamic compliance guided positive end-expiratory pressure(PEEP) (Procedure)

结局指标

主要结局

Postoperative pulmonary complication(PPCs) rate at 7 days

时间窗: 7 days after surgery

PPCs are classified into 5 grades according to Postoperative pulmonary complications score fo JAMA. Grade 1:Cough, dry.Microatelectasis.Dyspnea, not due to other documented cause Grade 2:Cough, productive, not due to other documented cause.Bronchospasm.Hypoxemia (SpO2 ≤ 90%) at room air.Atelectasis.Hypercarbia (PaCO2 \> 50 mmHg), requiring treatment Grade 3:Pleural effusion, resulting in thoracentesis.Pneumonia.Pneumothorax.Noninvasive ventilation, strictly applied to those with all of the following: a) oxygen saturation(SpO2)lower than 92% under supplemental oxygen; b) need of supplemental oxygen \>5 L/min; and RR ≥ 30 bpm .Re-intubation postoperative or intubation, period of ventilator dependence (non-invasive or invasive ventilation) ≤ 48 hours Grade 4:Ventilatory failure: postoperative ventilator dependence exceeding 48 hours, or reintubation with subsequent period of ventilator dependence exceeding 48 hours Grade 5:Death before hospital discharge

次要结局

  • Modified lung ultrasound score(Postoperative 1 hour)
  • Oxygenation Index(5 minutes after tracheal intubation (T1), 5 minutes after OLV (T2), 1 hour after OLV (T3-1), 2 hours after OLV (T3-2), 3 hours after OLV (T3-3), 4 hours after one-lung ventilation (T3-4), 5 minutes after the end of surgery (T4))
  • Driving pressure(5 minutes after tracheal intubation (T1), 5 minutes after OLV (T2), 1 hour after OLV (T3-1), 2 hours after OLV (T3-2), 3 hours after OLV (T3-3), 4 hours after one-lung ventilation (T3-4), 5 minutes after the end of surgery (T4))
  • Lung dynamic compliance(5 minutes after tracheal intubation (T1), 5 minutes after OLV (T2), 1 hour after OLV (T3-1), 2 hours after OLV (T3-2), 3 hours after OLV (T3-3), 4 hours after one-lung ventilation (T3-4),5 minutes after the end of surgery (T4))

研究者

发起方
Jiaxiang Chen
申办方类型
Other
责任方
Sponsor Investigator
主要研究者

Jiaxiang Chen

Postgraduate Student

Shantou University Medical College

研究点 (1)

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