Literature DB >> 16244027

The feasibility of laryngoscope-guided tracheal intubation in microgravity during parabolic flight: a comparison of two techniques.

Gernot E Groemer1, Joseph Brimacombe, Thorsten Haas, Cristina de Negueruela, Alexander Soucek, Michael Thomsen, Christian Keller.   

Abstract

We determined the feasibility of laryngoscope-guided tracheal intubation (LG-TI) in microgravity obtained during parabolic flight and tested the hypothesis that LG-TI is similarly successful in the free-floating condition, with the patient's head gripped between the anesthesiologist's knees, as in the restrained condition, with the torso strapped to the surface. Three personnel with no experience in airway management or microgravity participated in the study. LG-TI of a sophisticated full-size manikin was attempted on seven occasions in each condition by each investigator after ground-based training. The parabolic flights, which took place in an Airbus 300 over the Atlantic Ocean, provided 23 s of microgravity. During this time, the investigator opened a box with airway equipment, performed LG-TI, and attached and held onto a self-inflating bag. The efficacy of ventilation was assessed during level flight by squeezing the bag and noting whether the manikin sensors indicated a tidal volume > or =300 mL. There were no differences in ventilation success (41% versus 33%) or time to successful insertion (both 18 s) between the free-floating and the restrained conditions. More than 90% of failures were caused by the inability to insert the tracheal tube within 23 s. There were no differences in performance among investigators. We conclude that LG-TI is feasible in microgravity obtained during parabolic flight, but the success rate is infrequent because of severe time restrictions. There were no differences in success rate between the free-floating condition, with the head gripped between the knees, and the restrained condition, with the torso strapped to the surface.

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Year:  2005        PMID: 16244027     DOI: 10.1213/01.ANE.0000181001.25777.53

Source DB:  PubMed          Journal:  Anesth Analg        ISSN: 0003-2999            Impact factor:   5.108


  4 in total

1.  Reduced-gravity environment hardware demonstrations of a prototype miniaturized flow cytometer and companion microfluidic mixing technology.

Authors:  William S Phipps; Zhizhong Yin; Candice Bae; Julia Z Sharpe; Andrew M Bishara; Emily S Nelson; Aaron S Weaver; Daniel Brown; Terri L McKay; DeVon Griffin; Eugene Y Chan
Journal:  J Vis Exp       Date:  2014-11-13       Impact factor: 1.355

Review 2.  Anaesthesia in austere environments: literature review and considerations for future space exploration missions.

Authors:  Matthieu Komorowski; Sarah Fleming; Mala Mawkin; Jochen Hinkelbein
Journal:  NPJ Microgravity       Date:  2018-02-23       Impact factor: 4.415

3.  Cardiopulmonary resuscitation (CPR) during spaceflight - a guideline for CPR in microgravity from the German Society of Aerospace Medicine (DGLRM) and the European Society of Aerospace Medicine Space Medicine Group (ESAM-SMG).

Authors:  Jochen Hinkelbein; Steffen Kerkhoff; Christoph Adler; Anton Ahlbäck; Stefan Braunecker; Daniel Burgard; Fabrizio Cirillo; Edoardo De Robertis; Eckard Glaser; Theresa K Haidl; Pete Hodkinson; Ivan Zefiro Iovino; Stefanie Jansen; Kolaparambil Varghese Lydia Johnson; Saskia Jünger; Matthieu Komorowski; Marion Leary; Christina Mackaill; Alexander Nagrebetsky; Christopher Neuhaus; Lucas Rehnberg; Giovanni Marco Romano; Thais Russomano; Jan Schmitz; Oliver Spelten; Clément Starck; Seamus Thierry; Rochelle Velho; Tobias Warnecke
Journal:  Scand J Trauma Resusc Emerg Med       Date:  2020-11-02       Impact factor: 2.953

4.  Using supraglottic airways by paramedics for airway management in analogue microgravity increases speed and success of ventilation.

Authors:  Jochen Hinkelbein; Anton Ahlbäck; Christine Antwerber; Lisa Dauth; James DuCanto; Elisabeth Fleischhammer; Carlos Glatz; Steffen Kerkhoff; Alexander Mathes; Thais Russomano; Jan Schmitz; Clement Starck; Seamus Thierry; Tobias Warnecke
Journal:  Sci Rep       Date:  2021-04-29       Impact factor: 4.379

  4 in total

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