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Research ArticlePediatric Neuroimaging

Tumor Response Assessment in Diffuse Intrinsic Pontine Glioma: Comparison of Semiautomated Volumetric, Semiautomated Linear, and Manual Linear Tumor Measurement Strategies

L.A. Gilligan, M.D. DeWire-Schottmiller, M. Fouladi, P. DeBlank and J.L. Leach
American Journal of Neuroradiology April 2020, DOI: https://doi.org/10.3174/ajnr.A6555
L.A. Gilligan
aFrom the Departments of Radiology (L.A.G., J.L.L.)
cDepartment of Graduate Medical Education (L.A.G., M.D.D.-S.), Mount Carmel Health System, Columbus, Ohio
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M.D. DeWire-Schottmiller
bCancer and Blood Diseases Institute (M.D.D.-S., M.F.), Cincinnati Children’s Hospital Medical Center, Cincinnati, Ohio
cDepartment of Graduate Medical Education (L.A.G., M.D.D.-S.), Mount Carmel Health System, Columbus, Ohio
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M. Fouladi
bCancer and Blood Diseases Institute (M.D.D.-S., M.F.), Cincinnati Children’s Hospital Medical Center, Cincinnati, Ohio
dDepartments of Pediatrics (M.F., P.D.)
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P. DeBlank
dDepartments of Pediatrics (M.F., P.D.)
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J.L. Leach
aFrom the Departments of Radiology (L.A.G., J.L.L.)
eRadiology (J.L.L.), University of Cincinnati College of Medicine, Cincinnati, Ohio.
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Abstract

BACKGROUND AND PURPOSE: 2D measurements of diffuse intrinsic pontine gliomas are limited by variability, and volumetric response criteria are poorly defined. Semiautomated 2D measurements may improve consistency; however, the impact on tumor response assessments is unknown. The purpose of this study was to compare manual 2D, semiautomated 2D, and volumetric measurement strategies for diffuse intrinsic pontine gliomas.

MATERIALS AND METHODS: This study evaluated patients with diffuse intrinsic pontine gliomas through a Phase I/II trial (NCT02607124). Clinical 2D cross-product values were derived from manual linear measurements (cross-product = long axis × short axis). By means of dedicated software (mint Lesion), tumor margins were traced and maximum cross-product and tumor volume were automatically derived. Correlation and bias between methods were assessed, and response assessment per measurement strategy was reported.

RESULTS: Ten patients (median age, 7.6 years) underwent 58 MR imaging examinations. Correlation and mean bias (95% limits) of percentage change in tumor size from prior examinations were the following: clinical and semiautomated cross-product, r = 0.36, −1.5% (−59.9%, 56.8%); clinical cross-product and volume, r = 0.61, −2.1% (−52.0%, 47.8%); and semiautomated cross-product and volume, r = 0.79, 0.6% (−39.3%, 38.1%). Stable disease, progressive disease, and partial response rates per measurement strategy were the following: clinical cross-product, 82%, 18%, 0%; semiautomated cross-product, 54%, 42%, 4%; and volume, 50%, 46%, 4%, respectively.

CONCLUSIONS: Manual 2D cross-product measurements may underestimate tumor size and disease progression compared with semiautomated 2D and volumetric measurements.

ABBREVIATIONS:

CP
cross-product
DIPG
diffuse intrinsic pontine glioma
PD
progressive disease
PR
partial response
SD
stable disease
TRC
tumor response criteria

Footnotes

  • This work was supported, in part, by Novartis Pharmaceuticals, A Phase I/II Study of Ribociclib, a CDK4/6 Inhibitor, Following Radiation Therapy. ClinicalTrials.gov Identifier: NCT02607124.

  • Additional support: The Cure Starts Now Foundation, Hope for Caroline Foundation, Julian Boivin Courage for Cures Foundation, Abbie’s Army, Michael Mosier Defeat DIPG Foundation, Reflections of Grace Foundation, The Cure Starts Now Australia, Brooke Healey Foundation, Soar With Grace Foundation, Jeffrey Thomas Hayden Foundation, Cure Brain Cancer Foundation, The Jones Family Foundation, Musella Foundation, Pray, Hope, Believe Foundation, Smiles for Sophie Foundation, Benny’s World, Love Chloe Foundation, Aiden’s Avengers, A Cure from Caleb Society, The Operation Grace White Foundation, Ryan’s Hope, Wayland Villars DIPG Foundation, American Childhood Cancer Organization, Juliana Rose Donnelly Trust, Sheila Jones and Friends, The Ellie Kavalieros DIPG Research Fund, Voices Against Brain Cancer, The DIPG Collaborative.

  • Disclosures: Mariko DeWire-Schottmiller—RELATED: Grant: The DIPG Collaborative and additional funding sources in the comments, Comments: The Cure Starts Now Foundation, Hope for Caroline Foundation, Julian Boivin Courage for Cures Foundation, Abbie’s Army, Michael Mosier Defeat DIPG Foundation, Reflections of Grace Foundation, The Cure Starts Now Australia, Brooke Healey Foundation, Soar With Grace Foundation, Jeffrey Thomas Hayden Foundation, Cure Brain Cancer Foundation, The Jones Family Foundation, Musella Foundation, Pray, Hope, Believe Foundation, Smiles for Sophie Foundation, Benny’s World, Love Chloe Foundation, Aiden’s Avengers, A Cure from Caleb Society, The Operation Grace White Foundation, Ryan’s Hope, Wayland Villars DIPG Foundation, American Childhood Cancer Organization, Juliana Rose Donnelly Trust, Sheila Jones and Friends, The Ellie Kavalieros DIPG Research Fund, Voices Against Brain Cancer, and The DIPG Collaborative*; Other: Novartis Pharmaceuticals.* Maryam Fouladi—RELATED: Grant: Cincinnati Children’s Hospital Medical Center, Comments: Novartis-supported clinical trial.* *Money paid to the institution.

  • © 2020 by American Journal of Neuroradiology
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L.A. Gilligan, M.D. DeWire-Schottmiller, M. Fouladi, P. DeBlank, J.L. Leach
Tumor Response Assessment in Diffuse Intrinsic Pontine Glioma: Comparison of Semiautomated Volumetric, Semiautomated Linear, and Manual Linear Tumor Measurement Strategies
American Journal of Neuroradiology Apr 2020, DOI: 10.3174/ajnr.A6555

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Tumor Response Assessment in Diffuse Intrinsic Pontine Glioma: Comparison of Semiautomated Volumetric, Semiautomated Linear, and Manual Linear Tumor Measurement Strategies
L.A. Gilligan, M.D. DeWire-Schottmiller, M. Fouladi, P. DeBlank, J.L. Leach
American Journal of Neuroradiology Apr 2020, DOI: 10.3174/ajnr.A6555
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