Automated Whole-Body Bone Lesion Detection for Multiple Myeloma on 68Ga-Pentixafor PET/CT Imaging Using Deep Learning Methods

Author:

Xu Lina12ORCID,Tetteh Giles13,Lipkova Jana13,Zhao Yu13,Li Hongwei13,Christ Patrick13,Piraud Marie13ORCID,Buck Andreas4,Shi Kuangyu2ORCID,Menze Bjoern H.13

Affiliation:

1. Department of Informatics, Technische Universität München, Munich, Germany

2. Department of Nuclear Medicine, Klinikum Rechts der Isar, TU München, Munich, Germany

3. Institute of Medical Engineering, Technische Universität München, Munich, Germany

4. Department of Nuclear Medicine, Universität Würzburg, Würzburg, Germany

Abstract

The identification of bone lesions is crucial in the diagnostic assessment of multiple myeloma (MM). 68Ga-Pentixafor PET/CT can capture the abnormal molecular expression of CXCR-4 in addition to anatomical changes. However, whole-body detection of dozens of lesions on hybrid imaging is tedious and error prone. It is even more difficult to identify lesions with a large heterogeneity. This study employed deep learning methods to automatically combine characteristics of PET and CT for whole-body MM bone lesion detection in a 3D manner. Two convolutional neural networks (CNNs), V-Net and W-Net, were adopted to segment and detect the lesions. The feasibility of deep learning for lesion detection on 68Ga-Pentixafor PET/CT was first verified on digital phantoms generated using realistic PET simulation methods. Then the proposed methods were evaluated on real 68Ga-Pentixafor PET/CT scans of MM patients. The preliminary results showed that deep learning method can leverage multimodal information for spatial feature representation, and W-Net obtained the best result for segmentation and lesion detection. It also outperformed traditional machine learning methods such as random forest classifier (RF), k-Nearest Neighbors (k-NN), and support vector machine (SVM). The proof-of-concept study encourages further development of deep learning approach for MM lesion detection in population study.

Funder

China Scholarship Council

Publisher

Hindawi Limited

Subject

Radiology, Nuclear Medicine and imaging

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