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Effect of an Individualized Lung Protective Ventilation on Lung Strain and Stress in Children Undergoing Laparoscopy:
Cecilia M Acosta1, Sergio Poliotto2, Diego Abrego2
1Department of Anesthesiology, Hospital Privado de Comunidad, Mar del Plata, Argentina.
Insights
Capnoperitoneum during laparoscopic surgery in children increased lung strain. Lung recruitment and optimized positive end-expiratory pressure (PEEP) reduced strain but slightly increased lung stress, which remained within safe limits.
Area of Science:
- Anesthesiology
- Pediatric Surgery
- Respiratory Physiology
Background:
- Anesthetized children undergoing surgery face risks of lung strain and stress.
- Capnoperitoneum, used in laparoscopic procedures, may exacerbate these risks, potentially leading to lung damage.
Purpose of the Study:
- To investigate the impact of capnoperitoneum on lung strain and stress in anesthetized children.
- To evaluate the effectiveness of individualized protective ventilation, including lung recruitment and optimized positive end-expiratory pressure (PEEP), in mitigating these effects during laparoscopic surgery.
Main Methods:
- An observational cohort study involving healthy children aged 3-7 years undergoing laparoscopic surgery.
- Standard protective ventilation with PEEP was used, with measurements taken before, during, and after capnoperitoneum.
- Lung collapse was assessed using lung ultrasound and the Air-Test; lung strain and stress were calculated using capnodynamics and transpulmonary pressure measurements.
Main Results:
- Capnoperitoneum significantly increased lung strain (0.29 vs. 0.20) and lung collapse was present in 18 of 20 children.
- Lung recruitment and optimized PEEP (mean 8.3 cm H2O) during capnoperitoneum reduced lung strain to baseline levels.
- However, lung stress slightly increased during capnoperitoneum with optimized PEEP (7.29 cm H2O) and remained elevated post-procedure (7.25 cm H2O).
Conclusions:
- Capnoperitoneum increases lung strain in pediatric laparoscopic surgery.
- Individualized protective ventilation strategies, including lung recruitment and optimized PEEP, can reduce lung strain.
- While lung stress may slightly increase, it remains within safe, lung-protective limits.
Background:
Exaggerated lung strain and stress could damage lungs in anesthetized children. The authors hypothesized that the association of capnoperitoneum and lung collapse in anesthetized children increases lung strain-stress. Their primary aim was to describe the impact of capnoperitoneum on lung strain-stress and the effects of an individualized protective ventilation during laparoscopic surgery in children.
Methods:
The authors performed an observational cohort study in healthy children aged 3 to 7 yr scheduled for laparoscopic surgery in a community hospital. All received standard protective ventilation with 5 cm H2O of positive end-expiratory pressure (PEEP). Children were evaluated before capnoperitoneum, during capnoperitoneum before and after lung recruitment and optimized PEEP (PEEP adjusted to get end-expiratory transpulmonary pressure of 0), and after capnoperitoneum with optimized PEEP. The presence of lung collapse was evaluated by lung ultrasound, positive Air-Test (oxygen saturation measured by pulse oximetry 96% or less breathing 21% O2 for 5 min), and negative end-expiratory transpulmonary pressure. Lung strain was calculated as tidal volume/end-expiratory lung volume measured by capnodynamics, and lung stress as the end-inspiratory transpulmonary pressure.
Results:
The authors studied 20 children. Before capnoperitoneum, mean lung strain was 0.20 ± 0.07 (95% CI, 0.17 to 0.23), and stress was 5.68 ± 2.83 (95% CI, 4.44 to 6.92) cm H2O. During capnoperitoneum, 18 patients presented lung collapse and strain (0.29 ± 0.13; 95% CI, 0.23 to 0.35; P < 0.001) and stress (5.92 ± 3.18; 95% CI, 4.53 to 7.31 cm H2O; P = 0.374) increased compared to before capnoperitoneum. During capnoperitoneum and optimized PEEP, children presenting lung collapse were recruited and optimized PEEP was 8.3 ± 2.2 (95% CI, 7.3 to 9.3) cm H2O. Strain returned to values before capnoperitoneum (0.20 ± 0.07; 95% CI, 0.17 to 0.22; P = 0.318), but lung stress increased (7.29 ± 2.67; 95% CI, 6.12 to 8.46 cm H2O; P = 0.020). After capnoperitoneum, strain decreased (0.18 ± 0.04; 95% CI, 0.16 to 0.20; P = 0.090), but stress remained higher (7.25 ± 3.01; 95% CI, 5.92 to 8.57 cm H2O; P = 0.024) compared to before capnoperitoneum.
Conclusions:
Capnoperitoneum increased lung strain in healthy children undergoing laparoscopy. Lung recruitment and optimized PEEP during capnoperitoneum decreased lung strain but slightly increased lung stress. This little rise in pulmonary stress was maintained within safe, lung-protective, and clinically acceptable limits.
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