Understanding the Cognitive Demands, Skills, and Assessment Approaches for Endotracheal Intubation: A Cognitive Task Analysis (Preprint)

2021 ◽  
Author(s):  
Taylor Kunkes ◽  
Basiel Makled ◽  
Jack Norfleet ◽  
Steven Schwaitzberg ◽  
Lora Cavuoto

BACKGROUND Proper airway management is an essential skill for hospital personnel and rescue services to learn as it is a priority for the care of critically ill patients. It is critical that providers be properly trained and competent in performing endotracheal intubation (ETI), a widely used technique for airway management. Several metrics have been created in order to measure competence in the ETI procedure. However, there is still a need to improve ETI training and evaluation including a focus on collaborative research across medical specialties in order to establish greater competence-based training and assessments. Training and evaluating ETI should also incorporate modern, evidence-based procedural training methodologies. OBJECTIVE Cognitive task analysis (CTA) is a framework developed to identify the cognitive demands and skills needed to proficiently perform a task, elucidate differences between novice and expert performance, and provide an understanding of the workload associated with a task. The CTA framework was applied to ETI in order to capture a broad view of task and training requirements from the perspective of multiple medical specialties. METHODS A CTA interview was developed based on previous research into the tasks and evaluation methods of ETI. Six experts from multiple medical specialties were interviewed in order to capture the cognitive skills required in order to complete this task. Interviews were coded for main themes, sub-themes in each category, and differences among specialties. These findings were compiled into a skills tree in order to identify the training needs and cognitive requirements of each task. RESULTS The CTA revealed that consistency in equipment setup and planning through talk or think-aloud methods are critical to successfully mastering ETI. These factors allow the providers to avoid errors due to patient characteristics and environmental factors. Variation among specialties derived primarily from the environment in which ETI is performed, subsequent treatment plans, and available resources. Anesthesiology typically represented the most ideal cases with a large potential for training, whereas emergency medical personnel faced the greatest number of constraints based on the environment and available equipment. CONCLUSIONS While the skills tree cannot perfectly capture the complexity and detail of all potential cases, it provided insight into the nuanced skills and training techniques used to prepare novices for the variability they may find in practice. Importantly, the CTA identified ways in which challenges faced by novices may be overcome and how this training can be applied to future cases. By making these implicit skills and points of variation explicit, they can be better translated into teachable details. These findings are consistent with previous studies looking at developing improved assessment metrics for ETI and expand upon their work by delving into methods of feedback and strategies to assist novices.

2021 ◽  
Vol 2 (1) ◽  
pp. 20-28
Author(s):  
Philippe Fauquet-Alekhine ◽  
Patrick Martinez

The aim of this pilot study was to test a method developed in the Cognitive Task Analysis paradigm for adult occupational training in the field of education. The method used was based on the Square of Percieved ACtion (SPEAC) protocol using the SPEAC model (explaining how to successfully put competencies in action). The study was conducted in two secondary education classes, with a sample of 36 students (control group and test group) for an activity in Economics & Social science. The application of this innovative SPEAC-based method resulted in a significant and homogeneous increase in student performance. Beyond showing that the protocol can be applied both for adults and the young and in both occupational and academic contexts, the study demonstrates the benefits in learning and training with this method. Cognitive processes underpinning the improvement in teaching and limitations of the method are discussed.


2020 ◽  
Vol 65 (4) ◽  
pp. 1-11
Author(s):  
Dev Minotra ◽  
Karen M. Feigh

Rotorcraft pilots face a number of unique challenges in shipboard-landing maneuvers. Even very experienced rotorcraft pilots find such maneuvers to be challenging and delicate, as they require the pilot's undivided attention. To minimize risk, these maneuvers are conducted within well-defined boundaries associated with weather and visibility. To expand the envelope of safety, technological aids that augment decision-making capabilities and reduce pilot workload are being proposed. Our paper reports a cognitive task analysis, which involved interviews with five rotorcraft pilots experienced in shipboard-landing maneuvers. Our results reveal cognitive elements in which expertise plays a critical role. We have articulated our understanding on why pilots are faced with difficulties during these critical points, which led us toward design recommendations and system requirements for technological aids and their displays. We have also identified a number of system limitations and quantities of interest, which may be useful in safety evaluations.


1989 ◽  
Vol 33 (19) ◽  
pp. 1348-1352 ◽  
Author(s):  
Richard E. Redding

This study presents a critical analysis of the state of current technologies, methods, and tools used in cognitive task-analysis. Methods for cognitive task-analysis, derived from methods used in cognitive science, are relatively new and have not been systematized. Current methodologies demand considerable time and expertise to conduct properly and often yield data which is difficult to readily translate into practical application. This paper examines these problems and proposes some directions for future research and training program development.


2016 ◽  
Vol 10 (4) ◽  
pp. 391-410 ◽  
Author(s):  
David Johnston ◽  
Ben W. Morrison

Within the sport of rugby league, there exists a perceived shortage of talent in playmaking positions. In Australia, an academy dedicated to the development of playmaking skills has recently been established. Although the precise skills targeted by the academy for development are yet to be determined, decision making is presumed to be integral. The current research used the naturalistic decision-making paradigm to inform training initiatives by investigating the decision processes engaged by rugby league playmakers. The research explored whether players of varying ability could be differentiated in relation to a key decision process, cue use. Rugby league playmakers were interviewed using a novel variation of cognitive task analysis, which used both retrospective (i.e., recalled game) and prospective (i.e., unfamiliar rugby league scenario) means. The sample comprised 10 participants: six professional and four semiprofessional rugby league players. From a content analysis, a concept map, cognitive demands tables, and a critical cue inventory were produced. Results indicated that professional players demonstrated greater cue discrimination, assigned different meaning to the cues, and processed cues in a different manner compared with their semiprofessional counterparts. The results offer insights for future training applications in the domain and raise important questions regarding the utility of critical cue inventories in training.


Author(s):  
Alexander Scott ◽  
Ian Cooke ◽  
Katarzyna Sliwinska ◽  
Novia Wong ◽  
David Schuster

With an increasing frequency of data breaches suffered by organizations, computer network defense (CND) is becoming an increasingly important concern. With understanding of how cybersecurity professionals engage in the cognitive aspects of their work, human factors researchers and practitioners can improve tools and training. By optimizing the tools and training network defenders rely on to detect and respond to novel network threats, the cybersecurity workforce will be strengthened. While cognitive task analysis (CTA) is well-positioned to represent the cognitive work of CND, we identify challenges practitioners are likely to encounter in the field. Through a review of published CTAs in CND and other domains, we provide guidance for future CTA efforts in CND. Finally, we present an argument for the use of Elicitation by Critiquing (EBC) and demonstrate its efficacy in mitigating the challenges of applying CTA in CND.


Author(s):  
Anita D'Amico ◽  
Kirsten Whitley ◽  
Daniel Tesone ◽  
Brianne O'Brien ◽  
Emilie Roth

A Cognitive Task Analysis (CTA) was performed to investigate the workflow, decision processes, and cognitive demands of information assurance (IA) analysts responsible for defending against attacks on critical computer networks. We interviewed and observed 41 IA analysts responsible for various aspects of cyber defense in seven organizations within the US Department of Defense (DOD) and industry. Results are presented as workflows of the analytical process and as attribute tables including analyst goals, decisions, required knowledge, and obstacles to successful performance. We discuss how IA analysts progress through three stages of situational awareness and how visual representations are likely to facilitate cyber defense situational awareness.


Author(s):  
Laura G. Militello ◽  
Robert J. B. Hutton ◽  
Rebecca M. Pliske ◽  
Betsy J. Knight ◽  
Gary Klein ◽  
...  

2001 ◽  
Author(s):  
Richard P. Fahey ◽  
Anna L. Rowe ◽  
Kendra L. Dunlap ◽  
Dan O. deBoom

2000 ◽  
Author(s):  
J. M. C. Schraagen ◽  
◽  
N. Graff ◽  
J. Annett ◽  
M. H. Strub ◽  
...  

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