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A Cognitive Fusion-guided Prostate Biopsy Using Multiparametric Magnetic Resonance Imaging and Transrectal Ultrasound
Published on: March 21, 2025
3 Tesla multiparametric MRI for GTV-definition of Dominant Intraprostatic Lesions in patients with Prostate
Hans Christian Rischke1, Ursula Nestle, Tobias Fechter
1Department of Radiation Oncology, University of Freiburg, Robert Koch Str. 3, 79106 Freiburg, Germany. hans.christian.rischke@uniklinik-freiburg.de
Purpose:
To evaluate the interobserver variability of gross tumor volume (GTV) - delineation of Dominant Intraprostatic Lesions (DIPL) in patients with prostate cancer using published MRI criteria for multiparametric MRI at 3 Tesla by 6 different observers.
Material And Methods:
90 GTV-datasets based on 15 multiparametric MRI sequences (T2w, diffusion weighted (DWI) and dynamic contrast enhanced (DCE)) of 5 patients with prostate cancer were generated for GTV-delineation of DIPL by 6 observers. The reference GTV-dataset was contoured by a radiologist with expertise in diagnostic imaging of prostate cancer using MRI. Subsequent GTV-delineation was performed by 5 radiation oncologists who received teaching of MRI-features of primary prostate cancer before starting contouring session. GTV-datasets were contoured using Oncentra Masterplan® and iplan® Net. For purposes of comparison GTV-datasets were imported to the Artiview® platform (Aquilab®), GTV-values and the similarity indices or Kappa indices (KI) were calculated with the postulation that a KI > 0.7 indicates excellent, a KI > 0.6 to < 0.7 substantial and KI > 0.5 to < 0.6 moderate agreement. Additionally all observers rated difficulties of contouring for each MRI-sequence using a 3 point rating scale (1 = easy to delineate, 2 = minor difficulties, 3 = major difficulties).
Results:
GTV contouring using T2w (KI-T2w = 0.61) and DCE images (KI-DCE = 0.63) resulted in substantial agreement. GTV contouring using DWI images resulted in moderate agreement (KI-DWI = 0.51). KI-T2w and KI-DCE was significantly higher than KI-DWI (p = 0.01 and p = 0.003). Degree of difficulty in contouring GTV was significantly lower using T2w and DCE compared to DWI-sequences (both p < 0.0001). Analysis of delineation differences revealed inadequate comparison of functional (DWI, DCE) to anatomical sequences (T2w) and lack of awareness of non-specific imaging findings as a source of erroneous delineation.
Conclusions:
Using T2w and DCE sequences at 3 Tesla for GTV-definition of DIPL in prostate cancer patients by radiation oncologists with knowledge of MRI features results in substantial agreement compared to an experienced MRI-radiologist, but for radiotherapy purposes higher KI are desirable, strengthen the need for expert surveillance. DWI sequence for GTV delineation was considered as difficult in application.
Insights
Multiparametric MRI for prostate cancer gross tumor volume (GTV) delineation showed substantial agreement using T2w and DCE sequences, but moderate agreement with DWI. Higher agreement is needed for radiotherapy, highlighting the need for expert oversight.
Area of Science:
- Radiology
- Oncology
- Medical Imaging
Background:
- Accurate delineation of dominant intraprostatic lesions (DIPL) in prostate cancer is crucial for effective radiotherapy planning.
- Multiparametric MRI (mpMRI) at 3 Tesla, incorporating T2-weighted (T2w), diffusion-weighted (DWI), and dynamic contrast-enhanced (DCE) sequences, is increasingly used for prostate cancer assessment.
Purpose of the Study:
- To evaluate the interobserver variability in gross tumor volume (GTV) delineation of DIPL in prostate cancer patients.
- To assess the consistency of GTV delineation using different MRI sequences (T2w, DWI, DCE) among multiple observers.
Main Methods:
- Six observers (1 radiologist, 5 radiation oncologists) delineated GTVs on 90 mpMRI datasets from 5 prostate cancer patients.
- Delineation was performed using T2w, DWI, and DCE sequences on the Oncentra Masterplan® and iplan® Net platforms.
- Interobserver agreement was quantified using Kappa indices (KI), with difficulty ratings collected for each sequence.
Main Results:
- Substantial agreement was achieved for GTV delineation using T2w (KI=0.61) and DCE (KI=0.63) sequences.
- Moderate agreement was observed when using DWI sequences (KI=0.51), with significantly lower agreement compared to T2w and DCE (p<0.01).
- Contouring difficulty was significantly lower for T2w and DCE sequences compared to DWI (p<0.0001).
Conclusions:
- T2w and DCE sequences demonstrate substantial interobserver agreement for GTV definition of DIPL in prostate cancer, but higher agreement is desirable for radiotherapy.
- DWI sequences presented significant challenges for GTV delineation, indicating a need for improved standardization and potentially expert review.
- The findings underscore the importance of observer expertise and sequence selection in achieving reliable GTV delineation for prostate cancer treatment planning.
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