Intrathecal Hydromorphone Dosing for Adolescent Spinal Fusion: A Prospective Dose‐Escalation Study

ABSTRACT Background Intrathecal opioids are widely used for postoperative analgesia in pediatric spine surgery, but optimal dosing remains undefined. We evaluated the relationship between intrathecal hydromorphone (ITH) dose, analgesia, and adverse effects in adolescents undergoing posterior spinal fusion (PSF). Methods In this single‐center, prospective, blinded dose‐escalation study using a biased‐coin up‐down sequential allocation design, patients aged 10–17 years undergoing PSF received ITH starting at 3.5 mcg kg −1 , with dose adjustments based on analgesic response (range 2.0 to 7 mcg kg −1 with a maximum of 400 mcg). The primary outcome was maximum postoperative pain within 18 h. Secondary outcomes included pain burden (area under the curve), 24‐h systemic opioid consumption (oral morphine equivalents [OME], excluding ITH), adverse effects, supplemental diazepam use, and rescue opioid use. Associations between dose and outcomes were assessed using Spearman correlation and logistic regression. Results Twenty‐seven patients completed the study. The median ITH dose received was 5.5 mcg kg −1 (IQR, 3.5–7.0), with a median absolute dose of 370 mcg (IQR, 180–400). No significant association was observed between ITH dose and maximum pain ( r = 0.16, p = 0.41), pain burden ( r = 0.32, p = 0.10), or 24‐h OME ( r = 0.13, p = 0.52). ITH dose was not significantly associated with the time to rescue opioid (HR = 1.24; 95% CI 0.68–2.25; p = 0.485) or diazepam (HR = 1.10; 95% CI 0.72–1.71; p = 0.655). Adverse respiratory events occurred at doses > 5 mcg kg −1 without improved analgesia. Conclusions Increasing ITH dose was not associated with improved analgesia or change in supplemental opioid or diazepam use. Doses > 5 mcg kg −1 were associated with adverse respiratory effects. These findings support conservative dosing strategies and underscore the need to define the minimum effective dose in pediatric populations.

Authors

Institutions

Publication Details

Journal
Pediatric Anesthesia
Published
2026-10-07
DOI
https://doi.org/10.1002/pan.70325
Primary Topic
Anesthesia and Pain Management
Type
article
Field-Weighted Citation Impact
0.00
Controls
|||
ALL TIME
JAN
FEB
MAR
APR
MAY
JUN
JUL
AUG
SEP
OCT
article

Intrathecal Hydromorphone Dosing for Adolescent Spinal Fusion: A Prospective Dose‐Escalation Study

Anthony A. Stans, Lindsay L. Warner, A. Noelle Larson, Todd A. Milbrandt et al.
Pediatric Anesthesia
Anesthesia and Pain Management
article

Intrathecal Hydromorphone Dosing for Adolescent Spinal Fusion: A Prospective Dose‐Escalation Study

Anthony A. Stans, Lindsay L. Warner, A. Noelle Larson, Todd A. Milbrandt, Darrell R. Schroeder, David O. Warner, Emmanouil Grigoriou, Kathryn S. Handlogten
article en

Abstract

ABSTRACT Background Intrathecal opioids are widely used for postoperative analgesia in pediatric spine surgery, but optimal dosing remains undefined. We evaluated the relationship between intrathecal hydromorphone (ITH) dose, analgesia, and adverse effects in adolescents undergoing posterior spinal fusion (PSF). Methods In this single‐center, prospective, blinded dose‐escalation study using a biased‐coin up‐down sequential allocation design, patients aged 10–17 years undergoing PSF received ITH starting at 3.5 mcg kg −1 , with dose adjustments based on analgesic response (range 2.0 to 7 mcg kg −1 with a maximum of 400 mcg). The primary outcome was maximum postoperative pain within 18 h. Secondary outcomes included pain burden (area under the curve), 24‐h systemic opioid consumption (oral morphine equivalents [OME], excluding ITH), adverse effects, supplemental diazepam use, and rescue opioid use. Associations between dose and outcomes were assessed using Spearman correlation and logistic regression. Results Twenty‐seven patients completed the study. The median ITH dose received was 5.5 mcg kg −1 (IQR, 3.5–7.0), with a median absolute dose of 370 mcg (IQR, 180–400). No significant association was observed between ITH dose and maximum pain ( r = 0.16, p = 0.41), pain burden ( r = 0.32, p = 0.10), or 24‐h OME ( r = 0.13, p = 0.52). ITH dose was not significantly associated with the time to rescue opioid (HR = 1.24; 95% CI 0.68–2.25; p = 0.485) or diazepam (HR = 1.10; 95% CI 0.72–1.71; p = 0.655). Adverse respiratory events occurred at doses > 5 mcg kg −1 without improved analgesia. Conclusions Increasing ITH dose was not associated with improved analgesia or change in supplemental opioid or diazepam use. Doses > 5 mcg kg −1 were associated with adverse respiratory effects. These findings support conservative dosing strategies and underscore the need to define the minimum effective dose in pediatric populations.

Pediatric Anesthesia
Mayo Clinic (US), Mayo Clinic in Arizona (US), Mayo Clinic in Florida (US)
Openalex Percentile: Top 9%
Anesthesia and Pain Management
AI Navigator

Ask Laika to Summarize, Analyze, and Connect papers live on the map.

Summarize Papers & Methodologies

Extract key findings, datasets, and comparative methods across publications.

Benchmark Rankings & Visual Analytics

Rank top research institutions, authors, funders, topics, and journals by Field-Weighted Citation Impact (FWCI) and paper volume with instant charts.

Connect Distant Disciplines

Bridge topological clusters on the map to find hidden collaborative intersections.