Division of Radiation Protection and Safety Control, Cyclotron and Radioisotope Center, Graduate School of Biomedical Engineering, Tohoku University, Aoba-6-3 Aramaki, Aoba-ku, Sendai-shi, Miyagi-ken, 980-0845, Japan; Bangladesh Atomic Energy Commission, E-12/A, Shahid Shahabuddin Shorok, Dhaka 1207, Bangladesh.
Division of Radiation Protection and Safety Control, Cyclotron and Radioisotope Center, Graduate School of Biomedical Engineering, Tohoku University, Aoba-6-3 Aramaki, Aoba-ku, Sendai-shi, Miyagi-ken, 980-0845, Japan.
Comput Biol Med. 2018 May 1;96:233-240. doi: 10.1016/j.compbiomed.2018.04.001. Epub 2018 Apr 4.
Molecular imaging serves as an important tool for researchers and clinicians to visualize and investigate complex biochemical phenomena using specialized instruments; these instruments are either used individually or in combination with targeted imaging agents to obtain images related to specific diseases with high sensitivity, specificity, and signal-to-noise ratios. However, molecular imaging, which is a multidisciplinary research field, faces several challenges, including the integration of imaging informatics with bioinformatics and medical informatics, requirement of reliable and robust image analysis algorithms, effective quality control of imaging facilities, and those related to individualized disease mapping, data sharing, software architecture, and knowledge management. As a cost-effective and open-source approach to address these challenges related to molecular imaging, we develop a flexible, transparent, and secure infrastructure, named MIRA, which stands for Molecular Imaging Repository and Analysis, primarily using the Python programming language, and a MySQL relational database system deployed on a Linux server. MIRA is designed with a centralized image archiving infrastructure and information database so that a multicenter collaborative informatics platform can be built. The capability of dealing with metadata, image file format normalization, and storing and viewing different types of documents and multimedia files make MIRA considerably flexible. With features like logging, auditing, commenting, sharing, and searching, MIRA is useful as an Electronic Laboratory Notebook for effective knowledge management. In addition, the centralized approach for MIRA facilitates on-the-fly access to all its features remotely through any web browser. Furthermore, the open-source approach provides the opportunity for sustainable continued development. MIRA offers an infrastructure that can be used as cross-boundary collaborative MI research platform for the rapid achievement in cancer diagnosis and therapeutics.
分子成像作为一种重要的工具,供研究人员和临床医生使用特殊的仪器来可视化和研究复杂的生化现象; 这些仪器单独使用或与靶向成像剂结合使用,以获得与特定疾病相关的高灵敏度、特异性和信噪比图像。然而,作为一个多学科的研究领域,分子成像面临着几个挑战,包括成像信息学与生物信息学和医学信息学的整合、需要可靠和稳健的图像分析算法、有效的成像设备质量控制,以及与个体化疾病图谱、数据共享、软件架构和知识管理相关的挑战。作为解决分子成像相关挑战的一种具有成本效益和开源的方法,我们开发了一种灵活、透明和安全的基础设施,名为 MIRA,代表分子成像存储库和分析,主要使用 Python 编程语言和部署在 Linux 服务器上的 MySQL 关系数据库系统。MIRA 设计了一个集中式的图像归档基础设施和信息数据库,以便构建一个多中心协作信息学平台。MIRA 具有处理元数据、图像文件格式规范化以及存储和查看不同类型的文档和多媒体文件的能力,因此具有相当的灵活性。MIRA 具有日志记录、审核、注释、共享和搜索等功能,作为电子实验室笔记本,非常有助于有效的知识管理。此外,MIRA 的集中式方法通过任何网络浏览器远程提供对其所有功能的即时访问。此外,开源方法为可持续的持续发展提供了机会。MIRA 提供了一个基础设施,可以用作跨边界协作 MI 研究平台,用于快速实现癌症诊断和治疗。