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Updated: Jul 17, 2026

A Teleoperated Robotic System-Assisted Percutaneous Transiliac-Transsacral Screw Fixation Technique
Published on: January 6, 2023
Adapting to a new system of surgical technologies and perioperative processes among clinicians
James E Stahl1, Julian M Goldman, David W Rattner
1MGH-Institute for Technology Assessment, Department of Medicine, Massachusetts General Hospital, Boston, Massachusetts 02114, USA. James@mgh-ita.org
Purpose:
To understand learning and adaptation to a new system of surgical technologies and perioperative processes.
Methods:
Patient wait time, flow time, and surgery procedure time were recorded in the experimental ("Operating room of the future" or ORF) and control ORs over the first year of the ORF's operation. Regression methods were used to examine factors hypothesized to influence performance.
Results:
Flow time, wait time, and surgery procedure time for each case decreased significantly in the ORF. The ORF performance demonstrated an initial overshoot followed by oscillation with 30-40 d period around the group mean. Similar behavior was observed for surgeons if they had >or=2-week hiatus from operating and had an average caseload more than 2.1 cases/week. Regression models using hypothesized learning factors predicted flow time (R(2)=0.33) and wait time (R(2)=0.36); adding procedure type to these models raised R(2) to 0.7 and 0.57, respectively.
Conclusions:
Objective observation of system performance in which a new technology is introduced can provide insights into adaptation and may have significant implications for OR scheduling, training, and cost-effectiveness evaluations.
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