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教学大纲 第1章医学影像学前沿 知识点 1.医学成像信息学及其在转化医学中的作用 2.在医疗治疗护理过程中,成像与预防,诊断和治疗间的交织性质 3.本学科过去和当前的挑战 K 1 Introduction of medical imaging informatics and its role in transforming healthcare research 2. Touching upon the interwoven nature of imaging with preventative, diagnostic, and therapeutic elements of patient 3. Illustrating both past and current challenges of the discipline 第2章解剖与生理学成像介绍 知识点 1.临床成像模态(即投影κ射线,计算机断层扫描(CT),磁共振(MR),超声)以及解剖和生 理学成像的初步综述。 2.模态包括核心物理学原理和图像形成技术 3.从投影和横切成像角度呈现解剖和生理学概述,并详细讲述一些系统。 1. Reviewing clinical imaging modalities (i.e, projectional x-ray, computed tomography (CT), magnetic resonance (MR), ultrasound) and a primer on imaging anatomy and physiology 2. Modality encompassing core physics principles and image formation techniques 3. Presenting an overview of anatomy and physiology from the perspective of projectional and crosssectional imaging A few systems are covered in detail 第3章医疗信息系统和架构 知识点 1.解决如何在分布式的、内容不同的电子医疗记录(EMR)中存储和访问病患影像和其他病患信 2.描述主要信息系统(PACS;医院信息系统HS等)以及表示和传送数据(H7, DI COM)的不同 数据标准。 3.简述临床数据库和信息处理时的分布式架构(对等,网格计算) Key points 1. Tackling the question of how we store and access imaging and other patient information as part of a distributed and heterogeneous emr 2. Providing major information systems(PACS; HIS)and different data standards(HL7 DICOM) 3. Discussing distributed architectures applid to clinical databases(peer-to-peer, grid computing) 第4章医学数据可视化 知识点 1.以支持医师认知任务的方式集成和呈现患者信息。 2.介绍与医疗数据可视化相关的工作,如列表、表格、图表、图形和树等 3.基于(任务)上下文和用户建模的定义,示例出组合可视组件的方法 ey points 1. Integrating and presenting patient information to support the physician's cognitive tasks 2. Presenting works related to the visualization of medical data including graphical metaphors (lists and tables; plots and charts; graphs and trees; and pictograms)教学大纲 第1章医学影像学前沿 知识点 1. 医学成像信息学及其在转化医学中的作用; 2. 在医疗治疗护理过程中,成像与预防,诊断和治疗间的交织性质; 3. 本学科过去和当前的挑战。 Key points 1. Introduction of medical imaging informatics and its role in transforming healthcare research. 2. Touching upon the interwoven nature of imaging with preventative, diagnostic, and therapeutic elements of patient care. 3. Illustrating both past and current challenges of the discipline. 第2章解剖与生理学成像介绍 知识点 1.临床成像模态(即投影x射线,计算机断层扫描(CT),磁共振(MR),超声)以及解剖和生 理学成像的初步综述。 2.模态包括核心物理学原理和图像形成技术。 3.从投影和横切成像角度呈现解剖和生理学概述,并详细讲述一些系统。 Key points 1. Reviewing clinical imaging modalities (i.e., projectional x-ray, computed tomography (CT), magnetic resonance (MR), ultrasound) and a primer on imaging anatomy and physiology. 2. Modality encompassing core physics principles and image formation techniques. 3. Presenting an overview of anatomy and physiology from the perspective of projectional and crosssectional imaging. A few systems are covered in detail. 第3章医疗信息系统和架构 知识点 1.解决如何在分布式的、内容不同的电子医疗记录(EMR)中存储和访问病患影像和其他病患信 息。 2.描述主要信息系统(PACS;医院信息系统HIS等)以及表示和传送数据(HL7,DICOM)的不同 数据标准。 3.简述临床数据库和信息处理时的分布式架构(对等,网格计算)。 Key points 1. Tackling the question of how we store and access imaging and other patient information as part of a distributed and heterogeneous EMR. 2. Providing major information systems (PACS; HIS) and different data standards (HL7 DICOM) . 3. Discussing distributed architectures applid to clinical databases (peer-to-peer, grid computing). 第4章医学数据可视化 知识点 1.以支持医师认知任务的方式集成和呈现患者信息。 2.介绍与医疗数据可视化相关的工作,如列表、表格、图表、图形和树等。 3.基于(任务)上下文和用户建模的定义,示例出组合可视组件的方法。 Key points 1. Integrating and presenting patient information to support the physician’s cognitive tasks. 2. Presenting works related to the visualization of medical data including graphical metaphors (lists and tables; plots and charts; graphs and trees; and pictograms)
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