Department of Biomedical Sciences, City University of Hong Kong, Hong Kong SAR, China.
Department of Computer Science and Engineering, Institute of Technical Education and Research, Siksha 'O' Anusandhan University, Bhubaneswar, Orissa, India.
Curr Pharm Des. 2020;26(29):3569-3578. doi: 10.2174/1381612826666200515131245.
BACKGROUND: Artificial intelligence (AI) is the way to model human intelligence to accomplish certain tasks without much intervention of human beings. The term AI was first used in 1956 with The Logic Theorist program, which was designed to simulate problem-solving ability of human beings. There have been a significant amount of research works using AI in order to determine the advantages and disadvantages of its applicabication and, future perspectives that impact different areas of society. Even the remarkable impact of AI can be transferred to the field of healthcare with its use in pharmaceutical and biomedical studies crucial for the socioeconomic development of the population in general within different studies, we can highlight those that have been conducted with the objective of treating diseases, such as cancer, neurodegenerative diseases, among others. In parallel, the long process of drug development also requires the application of AI to accelerate research in medical care. METHODS: This review is based on research material obtained from PubMed up to Jan 2020. The search terms include "artificial intelligence", "machine learning" in the context of research on pharmaceutical and biomedical applications. RESULTS: This study aimed to highlight the importance of AI in the biomedical research and also recent studies that support the use of AI to generate tools using patient data to improve outcomes. Other studies have demonstrated the use of AI to create prediction models to determine response to cancer treatment. CONCLUSION: The application of AI in the field of pharmaceutical and biomedical studies has been extensive, including cancer research, for diagnosis as well as prognosis of the disease state. It has become a tool for researchers in the management of complex data, ranging from obtaining complementary results to conventional statistical analyses. AI increases the precision in the estimation of treatment effect in cancer patients and determines prediction outcomes.
背景:人工智能(AI)是一种模拟人类智能以完成某些任务的方法,而无需人类进行过多干预。该术语于 1956 年首次与“逻辑理论家”程序一起使用,该程序旨在模拟人类的解决问题的能力。为了确定其应用的优缺点以及对社会不同领域的未来影响,已经进行了大量使用 AI 的研究工作。即使 AI 的显著影响也可以转移到医疗保健领域,其在药物和生物医学研究中的应用对于一般人群的社会经济发展至关重要,在不同的研究中,我们可以突出那些旨在治疗疾病的研究,例如癌症、神经退行性疾病等。同时,药物开发的漫长过程也需要应用 AI 来加速医疗保健研究。
方法:本综述基于截至 2020 年 1 月从 PubMed 获得的研究资料。搜索词包括“人工智能”、“机器学习”,用于药物和生物医学应用的研究。
结果:本研究旨在强调 AI 在生物医学研究中的重要性,以及最近支持使用 AI 生成使用患者数据的工具以改善结果的研究。其他研究表明,AI 可用于创建预测模型以确定对癌症治疗的反应。
结论:AI 在药物和生物医学研究领域的应用非常广泛,包括癌症研究,用于诊断和预测疾病状态。它已成为研究人员处理复杂数据的工具,从获得补充结果到常规统计分析。AI 提高了癌症患者治疗效果估计的准确性,并确定了预测结果。
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