Literature DB >> 33662139

Lessons from the Glass Cockpit: Innovation in Alarm Systems to Support Cognitive Work.

Randall J Mumaw, Emilie M Roth, Emily S Patterson.   

Abstract

Nurses working in the hospital setting increasingly have become overburdened by managing alarms that, in many cases, provide low information value regarding patient health. The current trend, aided by disposable, wearable technologies, is to promote patient monitoring that does not require entering a patient's room. The development of telemetry alarms and middleware escalation devices adds to the continued growth of auditory, visual, and haptic alarms to the hospital environment but can fail to provide a more complete understanding of patient health. As we begin to innovate to both address alarm overload and improve patient management, perhaps using fundamentally different integration architectures, lessons from the aviation flight deck are worth considering. Commercial jet transport systems and their alarms have evolved slowly over many decades and have developed integration methods that account for operational context, provide multiple response protocol levels, and present a more integrated view of the airplane system state. We articulate three alarm system objectives: (1) supporting hazard management, (2) establishing context, and (3) supporting alarm prioritization. More generally, we present the case that alarm design in aviation can spur directions for innovation for telemetry monitoring systems in hospitals. © Copyright AAMI 2021. Copying, networking, and distribution prohibited.

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Year:  2021        PMID: 33662139      PMCID: PMC8641425          DOI: 10.2345/0899-8205-55.1.29

Source DB:  PubMed          Journal:  Biomed Instrum Technol        ISSN: 0899-8205


  8 in total

1.  A proposed new set of alarm sounds which satisfy standards and rationale to encode source information.

Authors:  F E Block; J D Rouse; M Hakala; C L Thompson
Journal:  J Clin Monit Comput       Date:  2000       Impact factor: 2.502

Review 2.  Alarm system management: evidence-based guidance encouraging direct measurement of informativeness to improve alarm response.

Authors:  Michael F Rayo; Susan D Moffatt-Bruce
Journal:  BMJ Qual Saf       Date:  2015-03-02       Impact factor: 7.035

3.  Improving Clinical Alarm Management: Guidance and Strategies.

Authors:  Pam Cosper; Mary Zellinger; Allen Enebo; Samantha Jacques; Lynn Razzano; Marilyn Neder Flack
Journal:  Biomed Instrum Technol       Date:  2017 Mar-Apr

4.  Daily electrode change and effect on cardiac monitor alarms: an evidence-based practice approach.

Authors:  Maria M Cvach; Madalyn Biggs; Kathleen J Rothwell; Charmaine Charles-Hudson
Journal:  J Nurs Care Qual       Date:  2013 Jul-Sep       Impact factor: 1.597

5.  Framework for Alarm Management Process Maturity.

Authors:  James Welch; Michael Rayo; Benjamin Kanter; Tandi Bagian; Katrina Jacobs; Hassan Shanawani; Rory Jaffe; Marlyn Conti; Lynn Razzano
Journal:  Biomed Instrum Technol       Date:  2016 May-Jun

Review 6.  Monitor alarm fatigue: an integrative review.

Authors:  Maria Cvach
Journal:  Biomed Instrum Technol       Date:  2012 Jul-Aug

7.  Association between clinically abnormal observations and subsequent in-hospital mortality: a prospective study.

Authors:  Michael Buist; Stephen Bernard; Tuan V Nguyen; Gaye Moore; Jeremy Anderson
Journal:  Resuscitation       Date:  2004-08       Impact factor: 5.262

8.  Faster clinical response to the onset of adverse events: A wearable metacognitive attention aid for nurse triage of clinical alarms.

Authors:  Daniel C McFarlane; Alexa K Doig; James A Agutter; Lara M Brewer; Noah D Syroid; Ranjeev Mittu
Journal:  PLoS One       Date:  2018-05-16       Impact factor: 3.240

  8 in total

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