Todd A Glenski1, Laura Levine1. 1. Department of Anesthesiology, Children's Mercy Hospital, University of Missouri, Kansas City, MO, USA.
Abstract
INTRODUCTION: Anesthesia machines have evolved over the years to excel in delivering low-flow anesthesia (<1 L fresh gas flow) in a closed-circuit system, with the obvious benefits being decreased costs and reduced emissions of greenhouse gases. At a pediatric hospital that provides over 25 000 anesthetics a year, a quality improvement project was initiated with the aim of decreasing the amount of sevoflurane used per anesthetic by 20% over the course of a year. METHODS: Three Plan-Do-Study-Act cycles involving gathering comparative data, departmental education, improvement updates on our huddle board, and intraoperative confirmation rounds were completed. The bottles of sevoflurane used and the total number of anesthetics performed were collected each month. To account for the fluctuation of anesthetic cases per month, a metric of "Anesthetics Performed per Bottle of Sevoflurane Used" was created. RESULTS: Compared to a prior twelve-month period, the Anesthetics Performed per Bottle of Sevoflurane Used were higher with a mean increase of 25%. The bottles of sevoflurane used per month was lower with a mean decrease of 20%. The carbon footprint of our sevoflurane use was also decreased and extrapolated over a year, and the decrease was equivalent to 70 000 miles driven, over 3,200 gallons of gasoline consumed, or over 31000 pounds of coal burned. CONCLUSION: A QI initiative aimed at changing the practice of delivering at least 2L fresh gas flow to delivering a low-flow anesthetic has been a successful value-added enhancement to our pediatric anesthesia practice.
INTRODUCTION: Anesthesia machines have evolved over the years to excel in delivering low-flow anesthesia (<1 L fresh gas flow) in a closed-circuit system, with the obvious benefits being decreased costs and reduced emissions of greenhouse gases. At a pediatric hospital that provides over 25 000 anesthetics a year, a quality improvement project was initiated with the aim of decreasing the amount of sevoflurane used per anesthetic by 20% over the course of a year. METHODS: Three Plan-Do-Study-Act cycles involving gathering comparative data, departmental education, improvement updates on our huddle board, and intraoperative confirmation rounds were completed. The bottles of sevoflurane used and the total number of anesthetics performed were collected each month. To account for the fluctuation of anesthetic cases per month, a metric of "Anesthetics Performed per Bottle of Sevoflurane Used" was created. RESULTS: Compared to a prior twelve-month period, the Anesthetics Performed per Bottle of Sevoflurane Used were higher with a mean increase of 25%. The bottles of sevoflurane used per month was lower with a mean decrease of 20%. The carbon footprint of our sevoflurane use was also decreased and extrapolated over a year, and the decrease was equivalent to 70 000 miles driven, over 3,200 gallons of gasoline consumed, or over 31000 pounds of coal burned. CONCLUSION: A QI initiative aimed at changing the practice of delivering at least 2L fresh gas flow to delivering a low-flow anesthetic has been a successful value-added enhancement to our pediatric anesthesia practice.
Authors: Hülya Kaşıkara; Ayça T Dumanlı Özcan; Cemile K Biçer; Almila Şenat; Abdüssamet Yalçın; Cemile Altın; Şemsi Mustafa Aksoy; Abdülkadir But Journal: Saudi Med J Date: 2022-03 Impact factor: 1.422
Authors: Rennie X Qin; Lotta Velin; Elizabeth F Yates; Omnia El Omrani; Elizabeth McLeod; Jemesa Tudravu; Lubna Samad; Alistair Woodward; Craig D McClain Journal: Lancet Reg Health West Pac Date: 2022-02-23