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Establishment of Deep Hypothermic Circulatory Arrest in Rats
Published on: December 16, 2022
Current conduct of deep hypothermic circulatory arrest in China
J G T Augoustides1, P Patel, K Ghadimi
1Cardiovascular and Thoracic Section, Department of Anesthesiology and Critical Care, Perelman School of Medicine, University of Pennsylvania, Philadelphia, Pennsylvania, USA.
Insights
Practices for deep hypothermic circulatory arrest (DHCA) in China show significant variation, particularly in temperature monitoring and cerebral perfusion. Standardizing these techniques could improve outcomes for adult aortic arch repair.
Area of Science:
- Cardiothoracic Anesthesia
- Vascular Surgery
- Critical Care Medicine
Background:
- Deep hypothermic circulatory arrest (DHCA) for adult aortic arch repair carries substantial mortality and morbidity risks.
- Significant practice variations exist in DHCA, potentially impacting patient outcomes.
- Characterizing these variations is crucial for identifying areas of improvement.
Purpose of the Study:
- To investigate the current practices and variations in deep hypothermic circulatory arrest (DHCA) for adult aortic arch repair in China.
- To identify potential therapeutic opportunities for reducing procedural risks associated with DHCA.
Main Methods:
- A questionnaire on adult deep hypothermic circulatory arrest (DHCA) practices was developed.
- The questionnaire was administered to attendees at the International Cardiothoracic and Vascular Anesthesia Congress in Beijing, 2010.
- Data from 56 respondents, primarily anesthesiologists from low-volume DHCA centers in China, were analyzed.
Main Results:
- Most participants were anesthesiologists from low-volume centers in China.
- Procedures often involved prolonged DHCA times at profound hypothermia.
- Target temperature measurement was frequently distal to the brain.
- Antegrade cerebral perfusion was common, monitored by radial artery pressure and cerebral venous oximetry.
- Steroids and propofol were preferred neuroprotective agents.
Conclusions:
- Opportunities for improving DHCA outcomes include nasal/tympanic temperature measurement and routine cerebral perfusion.
- Unilateral antegrade cerebral perfusion monitored with radial artery pressure and cerebral oximetry is preferred.
- Developing and disseminating evidence-based consensus guidelines can enhance practice improvement.
Introduction:
Deep hypothermic circulatory arrest for adult aortic arch repair is still associated with significant mortality and morbidity. Furthermore, there is still significant variation in the conduct of this complex perioperative technique. This variation in deep hypothermic circulatory arrest practice has not been adequately characterized and may offer multiple opportunities for outcome enhancement. The hypothesis of this study was that the current practice of adult deep hypothermic circulatory arrest in China has significant variations that might offer therapeutic opportunities for reduction of procedural risk.
Methods:
An adult deep hypothermic circulatory arrest questionnaire was developed and then administered at a thoracic aortic session at the International Cardiothoracic and Vascular Anesthesia Congress convened in Beijing during 2010. The data was abstracted and analyzed.
Results:
The majority of the 56 respondents were anesthesiologists based in China at low-volume deep hypothermic circulatory arrest centers. The typical aortic arch repair had a prolonged deep hypothermic circulatory arrest time at profound hypothermia. The target temperature for deep hypothermic circulatory arrest was frequently measured distal to the brain. The most common perfusion adjunct was antegrade cerebral perfusion, typically monitored with radial arterial pressure and cerebral venous oximetry. The preferred neuroprotective agents were steroids and propofol.
Conclusions:
The identified opportunities for outcome improvement in this delineated deep hypothermic circulatory arrest model include nasal/tympanic temperature measurement and routine cerebral perfusion, preferably with unilateral antegrade cerebral perfusion monitored with radial artery pressure and cerebral oximetry. Development and dissemination of an evidence-based consensus would enhance these practice-improvement opportunities.
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