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Published in: BMC Emergency Medicine 1/2023

Open Access 01-12-2023 | Care | Research

Heart rate responses in critical care trainees during airway intubation: a comparison between the simulated and clinical environments

Authors: Jackson Ji, Bridget Langley, Rachel Zordan, Julian van Dijk, Heidi Helene Graham Thies, Anjalee Brahmbhatt, Clarissa Torcasio, Neil Cunningham

Published in: BMC Emergency Medicine | Issue 1/2023

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Abstract

Objective

This study aimed to compare the heart rate response to stress during airway intubations in clinical practice and a simulated environment.

Methods

Twenty-five critical care registrars participated in the study over a 3-month period. Heart rate data during intubations was recorded by a FitBit® Charge 2 worn by each participant during their clinical practice, and during a single simulated airway management scenario. The heart rate range was calculated by subtracting the baseline working heart rate (BWHR) from the maximum functional heart rate (MFHR). For each airway intubation performed participants recorded an airway diary entry. Data from intubations performed in the clinical environment was compared to data from a simulated environment. Heart rate changes were observed in two ways: percentage rise (median) across the 20-min intubation period and; percentage rise at point of intubation (median).

Results

Eighteen critical care registrars completed the study, mean age 31.8 years (SD = 2.015, 95% CI = 30.85–32.71). Throughout the 20-min peri-intubation recording period there was no significant difference in the median change in heart rates between the clinical (14.72%) and simulation (15.96%) environment (p = 0.149). At the point of intubation there was no significant difference in the median change in heart rate between the clinical (16.03%) and the simulation (25.65%) environment groups (p = 0.054).

Conclusion

In this small population of critical care trainees, a simulation scenario induced a comparable heart rate response to the clinical environment during intubation. This provides evidence that simulation scenarios are able to induce a comparable physiological stress response to the clinical environment and thus facilitates effective teaching of a high-risk procedure in a safe manner.
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Literature
1.
go back to reference Quilici AP, Pogetti RS, Fontes B, Zantut LF, Chaves ET, Birolini D. Is the Advanced Trauma Life Support simulation exam more stressful for the surgeon than emergency department trauma care? Clinics. 2005;60(4):287–92.CrossRefPubMed Quilici AP, Pogetti RS, Fontes B, Zantut LF, Chaves ET, Birolini D. Is the Advanced Trauma Life Support simulation exam more stressful for the surgeon than emergency department trauma care? Clinics. 2005;60(4):287–92.CrossRefPubMed
2.
go back to reference Selye H. The evolution of the stress concept. Am Sci. 1973;61(6):692–9.PubMed Selye H. The evolution of the stress concept. Am Sci. 1973;61(6):692–9.PubMed
3.
go back to reference Harvey A, Bandiera G, Nathens AB, LeBlanc VR. Impact of stress on resident performance in simulated trauma scenarios. J Trauma Acute Care Surg. 2012;72(2):497–503.CrossRefPubMed Harvey A, Bandiera G, Nathens AB, LeBlanc VR. Impact of stress on resident performance in simulated trauma scenarios. J Trauma Acute Care Surg. 2012;72(2):497–503.CrossRefPubMed
4.
5.
go back to reference Diamond DM, Campbell AM, Park CR, Halonen J, Zoladz PR. The Temporal Dynamics Model of Emotional Memory Processing: A Synthesis on the Neurobiological Basis of Stress-Induced Amnesia, Flashbulb and Traumatic Memories, and the Yerkes-Dodson Law. Neural Plast. 2007;2007:60803.CrossRefPubMedPubMedCentral Diamond DM, Campbell AM, Park CR, Halonen J, Zoladz PR. The Temporal Dynamics Model of Emotional Memory Processing: A Synthesis on the Neurobiological Basis of Stress-Induced Amnesia, Flashbulb and Traumatic Memories, and the Yerkes-Dodson Law. Neural Plast. 2007;2007:60803.CrossRefPubMedPubMedCentral
6.
go back to reference Wetzel CM, Black SA, Hanna GB, Athanasiou T, Kneebone RL, Nestel D, et al. The effects of stress and coping on surgical performance during simulations. Ann Surg. 2010;251(1):171–6.CrossRefPubMed Wetzel CM, Black SA, Hanna GB, Athanasiou T, Kneebone RL, Nestel D, et al. The effects of stress and coping on surgical performance during simulations. Ann Surg. 2010;251(1):171–6.CrossRefPubMed
7.
go back to reference Shaw J, Brown R, Heinrich P, Dunn S. Doctors’ experience of stress during simulated bad news consultations. Patient Educ Couns. 2013;93(2):203–8.CrossRefPubMed Shaw J, Brown R, Heinrich P, Dunn S. Doctors’ experience of stress during simulated bad news consultations. Patient Educ Couns. 2013;93(2):203–8.CrossRefPubMed
8.
go back to reference Dias RD, Neto AS. Stress levels during emergency care: A comparison between reality and simulated scenarios. J Crit Care. 2016;33:8–13.CrossRef Dias RD, Neto AS. Stress levels during emergency care: A comparison between reality and simulated scenarios. J Crit Care. 2016;33:8–13.CrossRef
9.
go back to reference Clarke S, Horeczko T, Cotton D, Bair A. Heart rate, anxiety and performance of residents during a simulated critical clinical encounter: a pilot study. BMC Med Educ. 2014;14:8.CrossRef Clarke S, Horeczko T, Cotton D, Bair A. Heart rate, anxiety and performance of residents during a simulated critical clinical encounter: a pilot study. BMC Med Educ. 2014;14:8.CrossRef
10.
go back to reference Bong CL, Lightdale JR, Fredette ME, Weinstock P. Effects of simulation versus traditional tutorial-based training on physiologic stress levels among clinicians: a pilot study. Simulation in Healthcare. 2010;5(5):272–8.CrossRefPubMed Bong CL, Lightdale JR, Fredette ME, Weinstock P. Effects of simulation versus traditional tutorial-based training on physiologic stress levels among clinicians: a pilot study. Simulation in Healthcare. 2010;5(5):272–8.CrossRefPubMed
11.
go back to reference Piquette D, Tarshis J, Sinuff T, Fowler RA, Pinto R, Leblanc VR. Impact of acute stress on resident performance during simulated resuscitation episodes: a prospective randomized cross-over study. Teach Learn Med. 2014;26(1):9–16.CrossRefPubMed Piquette D, Tarshis J, Sinuff T, Fowler RA, Pinto R, Leblanc VR. Impact of acute stress on resident performance during simulated resuscitation episodes: a prospective randomized cross-over study. Teach Learn Med. 2014;26(1):9–16.CrossRefPubMed
12.
go back to reference Ziv A, Wolpe PR, Small SD, Glick S. Simulation-based medical education: an ethical imperative. Simulation in Healthcare. 2006;1(4):252–6.CrossRefPubMed Ziv A, Wolpe PR, Small SD, Glick S. Simulation-based medical education: an ethical imperative. Simulation in Healthcare. 2006;1(4):252–6.CrossRefPubMed
13.
go back to reference Langhan TS. Simulation training for emergency medicine residents: time to move forward. CJEM Care. 2008;10(5):467–9 70–3.CrossRef Langhan TS. Simulation training for emergency medicine residents: time to move forward. CJEM Care. 2008;10(5):467–9 70–3.CrossRef
14.
go back to reference Baker BG, Bhalla A, Doleman B, Yarnold E, Simons S, Lund JN, et al. Simulation fails to replicate stress in trainees performing a technical procedure in the clinical environment. Med Teach. 2017;39(1):53–7.CrossRefPubMed Baker BG, Bhalla A, Doleman B, Yarnold E, Simons S, Lund JN, et al. Simulation fails to replicate stress in trainees performing a technical procedure in the clinical environment. Med Teach. 2017;39(1):53–7.CrossRefPubMed
15.
go back to reference Bruce RA, Lovejoy FW, Pearson R, Yu PNG, Brothers GB, Velasquez T. Normal Respiratory and Circulatory Pathways of Adaption in Exercise. J Clin Investig. 1949;28(6 Pt 2):1423–30.CrossRefPubMedPubMedCentral Bruce RA, Lovejoy FW, Pearson R, Yu PNG, Brothers GB, Velasquez T. Normal Respiratory and Circulatory Pathways of Adaption in Exercise. J Clin Investig. 1949;28(6 Pt 2):1423–30.CrossRefPubMedPubMedCentral
16.
go back to reference Lovibond SH, Lovibond PF. Manual for the Depression Anxiety Stress Scales. 2nd ed. Sydney: Psychology Foundation; 1995. Lovibond SH, Lovibond PF. Manual for the Depression Anxiety Stress Scales. 2nd ed. Sydney: Psychology Foundation; 1995.
17.
go back to reference LeBlanc VR, MacDonald RD, McArthur B, King K, Lepine T. Paramedic performance in calculating drug dosages following stressful scenarios in a human patient simulator. Prehospital emergency care : official journal of the National Association of EMS Physicians and the National Association of State EMS Directors. 2005;9(4):439–44.CrossRef LeBlanc VR, MacDonald RD, McArthur B, King K, Lepine T. Paramedic performance in calculating drug dosages following stressful scenarios in a human patient simulator. Prehospital emergency care : official journal of the National Association of EMS Physicians and the National Association of State EMS Directors. 2005;9(4):439–44.CrossRef
18.
go back to reference Fox SM 3rd, Naughton JP, Haskell WL. Physical activity and the prevention of coronary heart disease. Ann Clin Res. 1971;3(6):404–32.PubMed Fox SM 3rd, Naughton JP, Haskell WL. Physical activity and the prevention of coronary heart disease. Ann Clin Res. 1971;3(6):404–32.PubMed
19.
go back to reference Green PJ, Suls J. The effects of caffeine on ambulatory blood pressure, heart rate, and mood in coffee drinkers. J Behav Med. 1996;19(2):111–28.CrossRefPubMed Green PJ, Suls J. The effects of caffeine on ambulatory blood pressure, heart rate, and mood in coffee drinkers. J Behav Med. 1996;19(2):111–28.CrossRefPubMed
20.
go back to reference Crawford JR, Henry JD. The Depression Anxiety Stress Scales (DASS): Normative data and latent structure in a large non-clinical sample. Br J Clin Psychol. 2003;42(2):111–31.CrossRefPubMed Crawford JR, Henry JD. The Depression Anxiety Stress Scales (DASS): Normative data and latent structure in a large non-clinical sample. Br J Clin Psychol. 2003;42(2):111–31.CrossRefPubMed
21.
go back to reference van Dulmen S, Tromp F, Grosfeld F, ten Cate O, Bensing J. The impact of assessing simulated bad news consultations on medical students’ stress response and communication performance. Psychoneuroendocrinology. 2007;32(8–10):943–50.CrossRefPubMed van Dulmen S, Tromp F, Grosfeld F, ten Cate O, Bensing J. The impact of assessing simulated bad news consultations on medical students’ stress response and communication performance. Psychoneuroendocrinology. 2007;32(8–10):943–50.CrossRefPubMed
22.
go back to reference Kharasch M, Aitchison P, Pettineo C, Pettineo L, Wang EE. Physiological stress responses of emergency medicine residents during an immersive medical simulation scenario. Dis Mon. 2011;57(11):700–5.CrossRefPubMed Kharasch M, Aitchison P, Pettineo C, Pettineo L, Wang EE. Physiological stress responses of emergency medicine residents during an immersive medical simulation scenario. Dis Mon. 2011;57(11):700–5.CrossRefPubMed
23.
go back to reference Demaria S Jr, Bryson EO, Mooney TJ, Silverstein JH, Reich DL, Bodian C, et al. Adding emotional stressors to training in simulated cardiopulmonary arrest enhances participant performance. Med Educ. 2010;44(10):1006–15.CrossRefPubMed Demaria S Jr, Bryson EO, Mooney TJ, Silverstein JH, Reich DL, Bodian C, et al. Adding emotional stressors to training in simulated cardiopulmonary arrest enhances participant performance. Med Educ. 2010;44(10):1006–15.CrossRefPubMed
24.
go back to reference Brown R, Dunn S, Byrnes K, Morris R, Heinrich P, Shaw J. Doctors’ stress responses and poor communication performance in simulated bad-news consultations. Acad Med. 2009;84(11):1595–602.CrossRefPubMed Brown R, Dunn S, Byrnes K, Morris R, Heinrich P, Shaw J. Doctors’ stress responses and poor communication performance in simulated bad-news consultations. Acad Med. 2009;84(11):1595–602.CrossRefPubMed
25.
go back to reference Keitel A, Ringleb M, Schwartges I, Weik U, Picker O, Stockhorst U, et al. Endocrine and psychological stress responses in a simulated emergency situation. Psychoneuroendocrinology. 2011;36(1):98–108.CrossRefPubMed Keitel A, Ringleb M, Schwartges I, Weik U, Picker O, Stockhorst U, et al. Endocrine and psychological stress responses in a simulated emergency situation. Psychoneuroendocrinology. 2011;36(1):98–108.CrossRefPubMed
26.
go back to reference Benedetto S, Caldato C, Bazzan E, Greenwood DC, Pensabene V, Actis P. Assessment of the Fitbit Charge 2 for monitoring heart rate. PloS one. 2018;13(2):e0192691-e.CrossRef Benedetto S, Caldato C, Bazzan E, Greenwood DC, Pensabene V, Actis P. Assessment of the Fitbit Charge 2 for monitoring heart rate. PloS one. 2018;13(2):e0192691-e.CrossRef
Metadata
Title
Heart rate responses in critical care trainees during airway intubation: a comparison between the simulated and clinical environments
Authors
Jackson Ji
Bridget Langley
Rachel Zordan
Julian van Dijk
Heidi Helene Graham Thies
Anjalee Brahmbhatt
Clarissa Torcasio
Neil Cunningham
Publication date
01-12-2023
Publisher
BioMed Central
Keyword
Care
Published in
BMC Emergency Medicine / Issue 1/2023
Electronic ISSN: 1471-227X
DOI
https://doi.org/10.1186/s12873-023-00832-8

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