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所在平台: Udemy |
课程主页: https://www.udemy.com/course/preclinical-basics-toxicity-bioimaging-literature/
课程评论:没有评论
课程名称:临床前基础:毒性学、生物成像与文献 课程概述:新药开发是一个复杂且昂贵的过程,临床前阶段是确保新治疗候选药物在进入临床试验之前安全有效的关键步骤。本课程旨在为学生提供关于文献、毒性和生物成像的基本临床前概念的全面理解。 在文献部分,学生将学习如何在海量的临床前文献中进行导航,包括使用各种数据库、搜索引擎和分析工具提取相关信息以及解读研究结果。此外,学生还将学会批判性评估临床前文献,以及识别当前知识中的空白。 在毒性部分,学生将接触临床前毒理学和安全评估的基本原则,学习不同类型的毒性模型及其数据解读方式。课程还将介绍临床前安全测试的监管要求,包括动物模型的应用。 在生物成像部分,学生将了解临床前研究中使用的各种成像技术,涉及磁共振成像(MRI)、正电子发射断层扫描(PET)和计算机断层扫描(CT)等不同成像模式,并学习如何针对不同的临床前应用选择合适的成像方式。他们还将掌握图像数据的解读方法,并将其与其他临床前数据进行整合。 课程结束时,学生将全面掌握临床前文献、毒性测试和生物成像等内容,具备在自己研究中应用这些概念所需的技能。
The development of new drugs is a complex and costly process, and the preclinical phase is a critical step in ensuring that new therapeutic candidates are safe and effective before they progress to clinical trials. This course aims to provide students with a comprehensive understanding of the essential preclinical concepts of literature, toxicity, and bioimaging.In the literature component of the course, students will learn how to navigate the vast amount of preclinical literature available to researchers and scientists. They will be introduced to various databases, search engines, and analytical tools to extract relevant information and interpret findings. They will also learn how to critically evaluate preclinical literature and identify gaps in current knowledge.The toxicity component of the course will introduce students to the fundamental principles of preclinical toxicology and safety assessments. They will learn about different types of toxicity models and how to interpret toxicity data. Students will also gain an understanding of the regulatory requirements for preclinical safety testing, including the use of animal models.In the bioimaging component of the course, students will learn about the various imaging techniques used in preclinical research. They will be introduced to different imaging modalities, such as magnetic resonance imaging (MRI), positron emission tomography (PET), and computed tomography (CT), and learn how to choose the appropriate imaging modality for different preclinical applications. They will also learn how to interpret imaging data and integrate it with other preclinical data. At the end of the course, students will have a comprehensive understanding of preclinical literature, toxicity testing, and bioimaging and be equipped with the necessary skills to apply these concepts in their own research.