Differential diagnosis between progression and radionecrosis in brain metastases after stereotactic radiosurgery using hybrid FDG-PET and MRI coregistered images
Creators
- 1. Centre Jean Perrin, Clermont-Ferrand (France)
- 2. University Hospital of Montpellier, Montpellier (France)
- 3. University Hospital of Nancy, Nancy (France)
Description
Introduction. - Dual phase 18 FDG brain PET is helpful to assess brain metastases (BM) as tracer will build up in metastases or tumor recurrences while its retention remains stable within normal tissue or inflammatory processes. This is useful when MRI can't discriminate brain tumor recurrence (TR) rom radionecrosis (RN) after stereotaxic radiosurgery (SRS) for BM. Many studies have sought to improve diagnostic performance by associating FDG-PET and MRI with interesting results but many biases, mostly within image post-processing. Coregistered MRI and dual phase FDG-PET images could alleviate these biases and be used to extract prognostic biomarkers. Materials and methods. - We retrospectively evaluated patients treated with SRS for BM which developed a contrast-enhanced MRI lesion with non-conclusive diagnosis for TR or RN. All patients underwent MRI and FDG-PET at least 3 months after their last SRS session. Dual FDG-PET consisted in an 'early' and 'delayed' acquisition, respectively 30 minutes and 4 h after injection. MRI included permeability and perfusion sequences. PET and MRI data were all coregistered on the contrast enhanced T1 MRI images. Semi-automated Volumes of Interest (VOI) of the tumor were drawn on the BM and a reference contralateral white-matter ROI (WM) was drawn for standardization; every metric was calculated inside these ROIs, in particular the tumor SUVmax and its variation in time. A 20% increase in the tumor SUVmax was in favor of TR while a modification of less than 100% was in favor of RN. Imaging metrics were then evaluated for their association with TR or RN based on histological, radiological and clinical criteria after at least 6 months follow-up. Results. - Nine patients were ruled out as TR and 6 as RN. After standardization, there was a significant difference between groups for VP (P = 0.042), Washin (P = 0.035), Peak Enhancement (P = 0.037), standardized delayed SUVmax (P = 0.008) and RI (P = 0.016). Semi-quantitative analysis found respectively for PET and MRI a Sensitivity of 100% and 87.5% and a Specificity of 100% and 85.71%. Conclusion. - Coregistered PET-MRI images accurately discriminate between TR and RN. With FDG being the most commonly used PET radiotracer, this protocol remains easily transposable and should be encouraged to obtain non-invasive prognostic and clinically relevant biomarkers. (authors)
Availability note (English)
Available from doi: http://dx.doi.org/10.1016/j.mednuc.2021.01.006Abstract (French)
Introduction. - La TEP 18FDG cerebrale biphasique (TEP) est une technique robuste pour evaluer les lesions cerebrales, le traceur s'accumulant dans les metastases ou recidives locales et restant stable dans le cortex ou les processus inflammatoires, permettant ainsi de differencier les recidives tumorales (TR) des radionecroses (RN) sur les metastases cerebrales (MC) traitees par radiotherapie stereotaxique (SRS). La coregistration des donnees d'IRM et TEP permettrait alors d'extraire des biomarqueurs diagnostiques pertinents. Objectif. - Determiner des biomarqueurs IRM et TEP associes au diagnostic de TR ou RN chez des patients traites par SRS pour MC. Methode. - Quinze patients traites par SRS pour MC ont ete retrospectivement inclus dans deux hopitaux francais. Leur IRM de fin de traitement n'a pas pu distinguer RN et TR. Chaque patient a beneficie d'une IRM et d'une TEP au minimum 3 mois apres leur traitement. Ces examens ont ete analyses en aveugle des interpretations initiales de facon semi-quantitative, ainsi qu'au travers d'une analyse de coregistration des images IRM et TEP. La TEP biphasique consistait en une acquisition 'precoce' et 'tardive' respectivement 30 minutes et 4 heures apres injection. Des volumes d'interet tumoraux (VOI) ont ete traces sur les differentes sequences TEP et IRM ainsi qu'une VOI miroir de reference controlaterale pour standardisation. Chaque metrique calcule a l'interieur de ces VOI a ete analyse quantitativement, notamment le SUVmax ainsi que sa variation dans le temps, permettant de calculer un index de retention tumoral (IR). Une augmentation de 20 % de l'IR etait retenue comme evocatrice de TR, alors qu'une variation de moins de 10 % signait une RN. Le diagnostic final etait base sur la decision de la reunion de concertation pluridisciplinaire a 6 mois de la TEP. Resultats. - Neuf patients etaient en recidive locale et 6 en radionecrose. Apres standardisation, il y avait une difference significative entre les deux groupes pour les metriques VP (p = 0,042), Washin (p = 0,035), Peak Enhancement (p = 0,037), le SUVmax tumoral standardise au temps tardif (p = 0,008) ainsi que l'IR (p = 0,016). L'analyse semi-quantitative TEP et IRM retrouvait respectivement 100 % et 87,5 % de sensibilite et 100 % et 85,71 % de specificite. Conclusion. - La TEP biphasique discrimine efficacement entre TR et RN. L'analyse conjointe des donnees TEP et IRM ameliore la precision diagnostique. (auteurs)Additional details
Additional titles
- Original title (English)
- Interet d'une evaluation hybride en TEP FDG dynamique et IRM de perfusion pour le diagnostic differentiel entre progression et radionecrose dans les lesions cerebrales traitees par radiotherapie stereotaxique
Identifiers
Publishing Information
- Journal Title
- Medecine Nucleaire. Imagerie Fonctionnelle et Metabolique
- Journal Volume
- 45
- Journal Issue
- no.3
- Journal Page Range
- p. 113-118
- ISSN
- 0928-1258
- CODEN
- MNIMEX
INIS
- Country of Publication
- France
- Country of Input or Organization
- France
- INIS RN
- 53087680
- Subject category
- S62: RADIOLOGY AND NUCLEAR MEDICINE;
- Descriptors DEI
- ANIMAL TISSUES; BIOLOGICAL MARKERS; BRAIN; DIAGNOSIS; IMAGES; INFLAMMATION; METASTASES; NEOPLASMS; NMR IMAGING; PATIENTS; POSITRON COMPUTED TOMOGRAPHY; RADIOTHERAPY; STANDARDIZATION; SURGERY; TRACER TECHNIQUES
- Descriptors DEC
- BODY; CENTRAL NERVOUS SYSTEM; COMPUTERIZED TOMOGRAPHY; DIAGNOSTIC TECHNIQUES; DISEASES; EMISSION COMPUTED TOMOGRAPHY; ISOTOPE APPLICATIONS; MEDICINE; NERVOUS SYSTEM; NUCLEAR MEDICINE; ORGANS; PATHOLOGICAL CHANGES; RADIOLOGY; SYMPTOMS; THERAPY; TOMOGRAPHY
Optional Information
- Notes
- 29 refs.