A Comparative Study of Two-Compartment Exchange Models for Dynamic Contrast-Enhanced MRI in Characterizing Uterine Cervical Carcinoma

Author:

Wang Xue1,Lin Wenxiao1,Mao Yiting2,Peng Wenwen1,Song Jiao1,Lu Yi1,Zhao Yu3,Koh Tong San45ORCID,Hou Zujun6,Yan Zhihan1ORCID

Affiliation:

1. Department of Radiology, The Second Affiliated Hospital and Yuying Children’s Hospital of Wenzhou Medical University, 109 Xueyuanxi Road, 325027 Wenzhou, China

2. Wenzhou Medical University, Gaojiaoyuan District, 325027 Wenzhou, China

3. Department of Gynaecology and Obstetrics, The Second Affiliated Hospital and Yuying Children’s Hospital of Wenzhou Medical University, 109 Xueyuanxi Road, 325027 Wenzhou, China

4. Department of Oncologic Imaging, National Cancer Center 169610, Singapore

5. Duke-NUS Graduate Medical School 169547, Singapore

6. Suzhou Institute of Biomedical Engineering and Technology, Chinese Academy of Sciences, Suzhou 25163, China

Abstract

A variety of tracer kinetic methods have been employed to assess tumor angiogenesis. The Standard two-Compartment model (SC) used in cervix carcinoma was less frequent, and Adiabatic Approximation to the Tissue Homogeneity (AATH) and Distributed Parameter (DP) model are lacking. This study compares two-compartment exchange models (2CXM) (AATH, SC, and DP) for determining dynamic contrast-enhanced magnetic resonance imaging (DCE-MRI) parameters in cervical cancer, with the aim of investigating the potential of various parameters derived from 2CXM for tumor diagnosis and exploring the possible relationship between these parameters in patients with cervix cancer. Parameters (tissue blood flow, Fp; tissue blood volume, Vp; interstitial volume, Ve; and vascular permeability, PS) for regions of interest (ROI) of cervix lesions and normal cervix tissue were estimated by AATH, SC, and DP models in 36 patients with cervix cancer and 17 healthy subjects. All parameters showed significant differences between lesions and normal tissue with a P value less than 0.05, except for PS from the AATH model, Fp from the SC model, and Vp from the DP model. Parameter Ve from the AATH model had the largest AUC (r = 0.85). Parameters Fp and Vp from SC and DP models and Ve and PS from AATH and DP models were highly correlated, respectively, (r > 0.8) in cervix lesions. Cervix cancer was found to have a very unusual microcirculation pattern, with over-growth of cancer cells but without evident development of angiogenesis. Ve has the best performance in identifying cervix cancer. Most physiological parameters derived from AATH, SC, and DP models are linearly correlated in cervix cancer.

Funder

Department of Health of Zhejiang Province

Publisher

Hindawi Limited

Subject

Radiology Nuclear Medicine and imaging

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