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Article Contents

  • Abstract
  • MATERIALS AND METHODS
  • RESULTS
  • DISCUSSION
  • CONCLUSIONS
  • ACKNOWLEDGMENTS
  • REFERENCES
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Abstract

In this study, a mechanical model was applied in order to replicate potential surgical fire conditions in an oxygen-enriched environment with and without high-volume suction typical for dental surgical applications. During 41 trials, 3 combustion events were measured: an audible pop, a visible flash of light, and full ignition. In at least 11 of 21 trials without suction, all 3 conditions were observed, sometimes with an extent of fire that required early termination of the experimental trial. By contrast, in 18 of 20 with-suction trials, ignition did not occur at all, and in the 2 cases where ignition did occur, the fire was qualitatively a much smaller, candle-like flame. Statistically comparing these 3 combustion events in the no-suction versus with-suction trials, ignition (P = .0005), audible pop (P = .0211), and flash (P = .0092) were all significantly more likely in the no-suction condition. These results suggest a possible significant and new element to be added to existing surgical fire safety protocols toward making surgical fires the “never-events” they should be.

Keywords: Surgical fires; Oxygen-enriched environments; High-volume suction.
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Article Contents

Perioperative Management of a Patient With Idiopathic Pulmonary Hypertension and a History of Syncope: A Case Report

Aiji Sato (Boku) DDS, PhD;,
 MinHye So MD, PhD;,
 Kazuma Fujikake MD, PhD;,
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 Yuji Kamimura MD, PhD;,
 Haruko Ota MD, PhD;,
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 Kenichiro Ishibashi DDS, PhD;,
 Yasuyuki Shibuya DDS, PhD;, and
 Kazuya Sobue MD, PhD

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 Yuko Shikama DDS,
 Hiroko Kobayashi DDS,
 Makoto Hirohata DDS,
 Naoko Tachi DDS, PhD, and
 Masahiro Okuda MD, PhD
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