"Contemplating the next maneuver": functional neuroimaging reveals intraoperative decision-making strategies
File(s)ANNSURG-D-15-01288-3.pdf (1.12 MB)
Accepted version
Author(s)
Type
Journal Article
Abstract
OBJECTIVE: To investigate differences in the quality, confidence, and consistency of intraoperative surgical decision making (DM) and using functional neuroimaging expose decision systems that operators use. SUMMARY BACKGROUND DATA: Novices are hypothesized to use conscious analysis (effortful DM) leading to activation across the dorsolateral prefrontal cortex, whereas experts are expected to use unconscious automation (habitual DM) in which decisions are recognition-primed and prefrontal cortex independent. METHODS: A total of 22 subjects (10 medical student novices, 7 residents, and 5 attendings) reviewed simulated laparoscopic cholecystectomy videos, determined the next safest operative maneuver upon video termination (10 s), and reported decision confidence. Video paradigms either declared ("primed") or withheld ("unprimed") the next operative maneuver. Simultaneously, changes in cortical oxygenated hemoglobin and deoxygenated hemoglobin inferring prefrontal activation were recorded using Optical Topography. Decision confidence, consistency (primed vs unprimed), and quality (script concordance) were assessed. RESULTS: Attendings and residents were significantly more certain (P < 0.001), and decision quality was superior (script concordance: attendings = 90%, residents = 78.3%, and novices = 53.3%). Decision consistency was significantly superior in experts (P < 0.001) and residents (P < 0.05) than novices (P = 0.183). During unprimed DM, novices showed significant activation of the dorsolateral prefrontal cortex, whereas this activation pattern was not observed among residents and attendings. During primed DM, significant activation was not observed in any group. CONCLUSIONS: Expert DM is characterized by improved quality, consistency, and confidence. The findings imply attendings use a habitual decision system, whereas novices use an effortful approach under uncertainty. In the presence of operative cues (primes), novices disengage the prefrontal cortex and seem to accept the observed operative decision as correct.
Date Issued
2017-02-01
Date Acceptance
2017-02-01
Citation
Annals of Surgery, 2017, 265 (2), pp.320-330
ISSN
1528-1140
Publisher
Lippincott, Williams & Wilkins
Start Page
320
End Page
330
Journal / Book Title
Annals of Surgery
Volume
265
Issue
2
Copyright Statement
© 2016 Wolters Kluwer Health, Inc. All rights reserved.
Sponsor
The Academy of Medical Sciences
National Institute for Health Research
Engineering & Physical Science Research Council (EPSRC)
Engineering & Physical Science Research Council (EPSRC)
National Institute of Health Research
Identifier
http://www.ncbi.nlm.nih.gov/pubmed/28059960
PII: 00000658-201702000-00015
Grant Number
Dan Leff Starter Grant
NF-SI-0510-10186
EP/N027132/1
EP/J021199/1
Subjects
Science & Technology
Life Sciences & Biomedicine
Surgery
brain
decision making
functional near-infrared spectroscopy
prefrontal
simulation
surgery
training
BILE-DUCT INJURIES
LAPAROSCOPIC CHOLECYSTECTOMY
OPERATING-ROOM
SURGEONS
BRAIN
UNCERTAINTY
PERFORMANCE
ACTIVATION
CORTEX
RISK
Adult
Cholecystectomy, Laparoscopic
Decision Making
Female
Functional Neuroimaging
Humans
Intraoperative Period
Male
Middle Aged
Prefrontal Cortex
Students, Medical
Surgeons
Video Recording
Prefrontal Cortex
Humans
Cholecystectomy, Laparoscopic
Intraoperative Period
Decision Making
Students, Medical
Video Recording
Adult
Middle Aged
Female
Male
Functional Neuroimaging
Surgeons
Surgery
11 Medical and Health Sciences
Publication Status
Published
Coverage Spatial
United States