Related Experiment Video
Updated: Dec 20, 2025

Guidelines for Elective Pediatric Fiberoptic Intubation
Published on: January 17, 2011
Efficient Postoperative Disposition Selection in Pediatric Otolaryngology Patients: A Novel Approach
Jennifer M Lavin1,2, Amod Sawardekar3,4, Lisa Sohn3,4
1Division of Pediatric Otolaryngology - Head and Neck Surgery, Ann & Robert H. Lurie Children's Hospital of Chicago, Chicago, Illinois, U.S.A.
Insights
Implementing a Grey Zone model for intermediate-risk pediatric surgical patients reduced intensive care unit (ICU) admissions and cancellations. This quality improvement initiative enhanced ICU resource utilization without compromising patient safety.
Area of Science:
- Pediatric Surgery
- Healthcare Quality Improvement
- Intensive Care Unit Management
Background:
- Pediatric aerodigestive tract surgery patients require unpredictable postoperative airway support.
- Inefficient prediction of postoperative resource needs leads to care inefficiencies, impacting safety, access, and finances.
- Previous quality improvement initiatives at our hospital did not adequately address inefficient pediatric intensive care unit (PICU) resource utilization.
Purpose of the Study:
- To test the hypothesis that operative scheduling errors and unpredictable intermediate-risk patients drive inefficient PICU utilization.
- To implement iterative improvement cycles to enhance the efficiency of pediatric intensive care unit care.
- To provide a framework for similar efforts at other hospitals.
Main Methods:
- A quality improvement initiative utilizing Plan, Do, Study, Act (PDSA) methodology in two cycles.
- PDSA Cycle 1: Addressed scheduling errors via order placement restrictions and standardized PICU admission criteria.
- PDSA Cycle 2: Implemented the 'Grey Zone' model for intermediate-risk patients, involving 2-5 hours of post-anesthesia care unit observation before determining the appropriate level of care.
Main Results:
- PDSA Cycle 1 showed no decrease in unanticipated intensive care unit admissions but increased ICU bed cancellations (36.1% to 45.6%).
- PDSA Cycle 2 significantly decreased average monthly unanticipated ICU admissions (1.3% to 0.42%) and cancelled ICU bed requests (45.6% to 33.8%).
- The Grey Zone model successfully directed 93.5% of observed patients to extended observation, avoiding ICU admission and demonstrating financial benefits.
Conclusions:
- The Grey Zone model effectively improved PICU resource utilization by reducing unanticipated admissions and cancellations for intermediate-risk patients.
- This model enhanced efficiency without compromising patient safety and proved financially sound across different reimbursement models.
- The Grey Zone model offers a potential framework for improving efficiency at other high-volume pediatric surgical centers.
Objective:
Pediatric patients undergoing surgery on the aerodigestive tract require a wide range of postoperative airway support that may be difficult predict in the preoperative period. Inaccurate prediction of postoperative resource needs leads to care inefficiencies in the form of unanticipated intensive care unit (ICU) admissions, ICU bed request cancellations, and overutilization of ICU resources. At our hospital, inefficient utilization of pediatric intensive care unit (PICU) resources was negatively impacting safety, access, throughput, and finances. We hypothesized that actionable key drivers of inefficient ICU utilization at our hospital were operative scheduling errors and the lack of predictability of intermediate-risk patients and that improvement methodology could be used in iterative cycles to enhance efficiency of care. Through testing this hypothesis, we aimed to provide a framework for similar efforts at other hospitals.
Study Design:
Quality improvement initiative.
Methods:
Plan, Do, Study, Act methodology (PDSA) was utilized to implement two cycles of change aimed at improving level-of-care efficiency at an academic pediatric hospital. In PDSA cycle 1, we aimed to address scheduling errors with surgical order placement restriction, creation of a standardized list of surgeries requiring PICU admission, and implementation of a hard stop for postoperative location in the electronic medical record surgical order. In the PDSA cycle 2, a new model of care, called the Grey Zone model, was designed and implemented where patients at intermediate risk of airway compromise were observed for 2-5 hours in the post-anesthesia care unit. After this observation period, patients were then transferred to the level of care dictated by their current status. Measures assessed in PDSA cycle 1 were unanticipated ICU admissions and ICU bed request cancellations. In addition to continued analysis of these measures, PDSA cycle 2 measures were ICU beds avoided, safety events, and secondary transfers from extended observation to ICU.
Results:
In PDSA cycle 1, no significant decrease in unanticipated ICU admissions was observed; however, there was an increase in average monthly ICU bed cancellations from 36.1% to 45.6%. In PDSA cycle 2, average monthly unanticipated ICU admissions and cancelled ICU bed requests decreased from 1.3% to 0.42% and 45.6% to 33.8%, respectively. In patients observed in the Grey Zone, 229/245 (93.5%) were transferred to extended observation, avoiding admission to the ICU. Financial analysis demonstrated a charge differential to payers of $1.1 million over the study period with a charge differential opportunity to the hospital of $51,720 for each additional hospital transfer accepted due to increased PICU bed availability.
Conclusions:
Implementation of the Grey Zone model of care improved efficiency of ICU resource utilization through reducing unanticipated ICU admissions and ICU bed cancellations while simultaneously avoiding overutilization of ICU resources for intermediate-risk patients. This was achieved without compromising safety of patient care, and was financially sound in both fee-for-service and value-based reimbursement models. While such a model may not be applicable in all healthcare settings, it may improve efficiency at other pediatric hospitals with high surgical volume and acuity.
Level Of Evidence:
N/A Laryngoscope, 131:S1-S10, 2021.
Related Concept Videos
Cardiomyopathy VII: Pre and Post Operative Nursing Management
Endoscopic Procedures IV: Sigmoidoscopy and Laproscopy
Sigmoidoscopy
Sigmoidoscopy is a diagnostic procedure that uses a flexible sigmoidoscope equipped with a light source and camera to examine the rectum and sigmoid colon. The procedure involves inserting the tube through the anus...
Suctioning the Nasopharyngeal Airway
Equipment Required
Suctioning the Oropharyngeal Airway
After assembling the equipment, the nurse should practice hand hygiene and don appropriate PPE according to infection control guidelines to avoid the...
Cardiopulmonary Resuscitation II: ACLS Airway Management

