Detecting Early Ocular Choroidal Melanoma Using Ultrasound Localization Microscopy

Author:

Quan Biao1,Liu Xiangdong1,Zhao Shuang2ORCID,Chen Xiang2,Zhang Xuan3,Chen Zeyu1

Affiliation:

1. The College of Mechanical and Electrical Engineering, Central South University, Changsha 410083, China

2. The Department of Dermatology, Xiangya Hospital, Central South University, Changsha 410008, China

3. The Department of Ophthalmology, Xiangya Hospital, Central South University, Changsha 410008, China

Abstract

Ocular choroidal melanoma (OCM) is the most common ocular primary malignant tumor in adults, and there is an increasing emphasis on its early detection and treatment worldwide. The main obstacle in early detection of OCM is its overlapping clinical features with benign choroidal nevus. Thus, we propose ultrasound localization microscopy (ULM) based on the image deconvolution algorithm to assist the diagnosis of small OCM in early stages. Furthermore, we develop ultrasound (US) plane wave imaging based on three-frame difference algorithm to guide the placement of the probe on the field of view. A high-frequency Verasonics Vantage system and an L22-14v linear array transducer were used to perform experiments on both custom-made modules in vitro and a SD rat with ocular choroidal melanoma in vivo. The results demonstrate that our proposed deconvolution method implement more robust microbubble (MB) localization, reconstruction of microvasculature network in a finer grid and more precise flow velocity estimation. The excellent performance of US plane wave imaging was successfully validated on the flow phantom and in an in vivo OCM model. In the future, the super-resolution ULM, a critical complementary imaging modality, can provide doctors with conclusive suggestions for early diagnosis of OCM, which is significant for the treatment and prognosis of patients.

Funder

the Department of Science and Technology of Hunan Province, High-tech Industry Science and Technology Innovation Leading Program

Management Science and Technology Project of Hunan Province

Central South University, Innovation Driven Program Team Project

Science Fund for Distinguished Young Scholars of Hunan Province

Fundamental Research Funds for the Central Universities of Central South University

Publisher

MDPI AG

Subject

Bioengineering

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