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Perioperative medical management of patients with COPD
Marc Licker1, Alexandre Schweizer, Christoph Ellenberger
1Service d'Anesthésiologie, Hôpitaux Universitaires de Genève, Genève, Switzerland. marc-joseph.licker@hcuge.ch
Insights
Optimizing surgical patients with chronic obstructive pulmonary disease (COPD) and heart disease requires understanding their conditions and surgical risks. Strategies include regional anesthesia, minimally invasive procedures, and enhanced recovery protocols to minimize complications.
Area of Science:
- Anesthesiology
- Cardiology
- Pulmonology
- Surgical Critical Care
Background:
- Chronic obstructive pulmonary disease (COPD) and heart diseases are independent risk factors for mortality and cardiopulmonary complications post-surgery.
- These conditions share risk factors and frequently coexist in surgical candidates, necessitating careful perioperative management.
- Understanding patient cardiopulmonary status and surgical/anesthetic respiratory consequences is crucial for high-risk individuals.
Purpose of the Study:
- To review perioperative optimization strategies for surgical candidates with coexisting COPD and heart disease.
- To highlight the dominant role of surgical factors over comorbidities in predicting postoperative pulmonary complications.
- To discuss anesthetic and surgical techniques that mitigate respiratory risks and enhance recovery.
Main Methods:
- Review of current literature on perioperative management of patients with COPD and heart disease.
- Analysis of risk factors for postoperative pulmonary complications, emphasizing surgical vs. comorbidity influence.
- Discussion of anesthetic techniques, intraoperative monitoring, and postoperative care strategies.
Main Results:
- Surgical factors (e.g., procedure type, duration, nasogastric tube) are major predictors of pulmonary complications, more so than cardiac disease extent.
- Regional anesthesia, laryngeal masks, and non-invasive ventilation can reduce risks associated with tracheal intubation in COPD patients.
- Minimally invasive surgery, multimodal analgesia, and specific anesthetic/ventilatory adjustments can minimize stress and prevent adverse respiratory events.
Conclusions:
- Perioperative optimization for high-risk surgical patients with COPD and heart disease requires a comprehensive approach.
- Minimizing surgical stress and employing protective ventilation strategies are key to preventing pulmonary complications.
- Enhanced recovery pathways, including patient education and early mobilization, facilitate postoperative lung function recovery.
Abstract:
Chronic obstructive pulmonary disease (COPD) and heart diseases are considered independent risk factors for mortality and major cardiopulmonary complications after surgery. Coronary artery disease, heart failure and COPD share common risk factors and are often encountered,--isolated or combined--, in many surgical candidates. Perioperative optimization of these high-risk patients deserves a thorough understanding of the patient cardiopulmonary diseases as well as the respiratory consequences of surgery and anesthesia. In contrast with cardiac risk stratification where the extent of heart disease largely influences postoperative cardiac outcome, surgical-related factors (ie, upper abdominal and intra-thoracic procedures, duration of anesthesia, presence of a nasogastric tube) largely dominate patient's comorbidities as risk factors for postoperative pulmonary complications. Although most COPD patients tolerate tracheal intubation under "smooth" anesthetic induction without serious adverse effects, regional anesthetic blockade and application of laryngeal masks or non-invasive positive pressure ventilation should be considered whenever possible, in order to provide optimal pain control and to prevent upper airway injuries as well as lung baro-volotrauma. Minimally-invasive procedures and modern multimodal analgesic regimen are helpful to minimize the surgical stress response, to speed up the physiological recovery process and to shorten the hospital stay. Reflex-induced bronchoconstriction and hyperdynamic inflation during mechanical ventilation could be prevented by using bronchodilating volatile anesthetics and adjusting the ventilatory settings with long expiration times. Intraoperatively, the depth of anesthesia, the circulatory volume and neuromuscular blockade should be assessed with modem physiological monitoring tools to titrate the administration of anesthetic agents, fluids and myorelaxant drugs. The recovery of postoperative lung volume can be facilitated by patient's education and empowerment, lung recruitment maneuvers, non-invasive pressure support ventilation and early ambulation.
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