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THE SEQUENCE OF INJURY DETERMINES THE DEGREE OF LUNG DAMAGE IN BOTH INHALATION AND THERMAL INJURIES

Naoaki Matsumoto, Hiroshi Noda, Hiroaki Nakazawa, Lillian D. Traber, David Newcomb Herndon, Daniel Lee Traber

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Abstract

The lung damage resulting from smoke inhalation is an important determinant of morbidity and mortality in thermally injured patients. We hypothesized that the degree of pulmonary microvascular damage seen with smoke inhalation could be affected by whether the smoke insult preceded or followed thermal injury. Fifteen chronically instrumented sheep were divided into two groups: seven were given a 40% 3rd-degree flame burn and then insufflated with smoke (smoke after burn group); eight were insufflated with smoke and then given thermal injury (smoke before burn group). Lung lymph flow and wet/dry weight ratio were significantly higher in smoke before burn group animals. We conclude that lung damage is minimized when thermal injury precedes smoke inhalation injury.

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What this paper is about

The lung damage resulting from smoke inhalation is an important determinant of morbidity and mortality in thermally injured patients. We hypothesized that the degree of pulmonary microvascular damage seen with smoke inhalation could be affected by whether the smoke insult preceded or followed thermal injury. Fifteen chronically instrumented sheep were divided into two groups: seven were given a 40% 3rd-degree flame burn and then insufflated with smoke (smoke after burn group); eight were insufflated with smoke and then given thermal injury (smoke before burn group). Lung lymph flow and wet/dry weight ratio were significantly higher in smoke before burn group animals. We conclude that lung damage is minimized when thermal injury precedes smoke inhalation injury.

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OpenAlex reports 17 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

The lung damage resulting from smoke inhalation is an important determinant of morbidity and mortality in thermally injured patients. We hypothesized that the degree of pulmonary microvascular damage seen with smoke inhalation could be affected by whether the smoke insult preceded or followed thermal injury. Fifteen chronically instrumented sheep were divided into two groups: seven were given a 40% 3rd-degree flame burn and then insufflated with smoke (smoke after burn group); eight were insufflated with smoke and then given thermal injury (smoke before burn group). Lung lymph flow and wet/dry weight ratio were significantly higher in smoke before burn group animals. We conclude that lung damage is minimized when thermal injury precedes smoke inhalation injury.

Key concepts: Smoke inhalation, Smoke Inhalation Injury, Smoke, Inhalation, Medicine, Lung, Thermal burn, Anesthesia

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