{"title":"Artificial intelligence applications in disease diagnosis and treatment: recent progress and outlook","authors":"Meenakshi Goswami, Pranjal Sachan, Kavita Goswami","doi":"10.25081/rip.2023.v13.8632","DOIUrl":null,"url":null,"abstract":"The use of computers and other technologies to replicate human-like intelligent behaviour and critical thinking is known as artificial intelligence (AI).The development of AI-assisted applications and big data research has accelerated as a result of the rapid advancements in computing power, sensor technology, and platform accessibility that have accompanied advances in artificial intelligence. AI models and algorithms for planning and diagnosing endodontic procedures. The search engine evaluated information on artificial intelligence (AI) and its function in the field of endodontics, and it also incorporated databases like Google Scholar, PubMed, and Science Direct with the search criterion of original research articles published in English. Online appointment scheduling, online check-in at medical facilities, digitization of medical records, reminder calls for follow-up appointments and immunisation dates for children and pregnant women, as well as drug dosage algorithms and adverse effect warnings when prescribing multidrug combinations, are just a few of the tasks that already use artificial intelligence. Data from the review supported the conclusion that AI can play a significant role in endodontics, including the identification of apical lesions, classification and numbering of teeth, detection of dental caries, periodontitis, and periapical disease, diagnosis of various dental problems, aiding dentists in making referrals, and helping them develop more precise treatment plans for dental disorders. Although artificial intelligence (AI) has the potential to drastically alter how medicine is practised in ways that were previously unthinkable, many of its practical applications are still in their infancy and need additional research and development. Over the past ten years, artificial intelligence in ophthalmology has grown significantly and will continue to do so as imaging techniques and data processing algorithms improve.","PeriodicalId":510436,"journal":{"name":"Research in Pharmacy","volume":"167 ","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2023-12-14","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Research in Pharmacy","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.25081/rip.2023.v13.8632","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
The use of computers and other technologies to replicate human-like intelligent behaviour and critical thinking is known as artificial intelligence (AI).The development of AI-assisted applications and big data research has accelerated as a result of the rapid advancements in computing power, sensor technology, and platform accessibility that have accompanied advances in artificial intelligence. AI models and algorithms for planning and diagnosing endodontic procedures. The search engine evaluated information on artificial intelligence (AI) and its function in the field of endodontics, and it also incorporated databases like Google Scholar, PubMed, and Science Direct with the search criterion of original research articles published in English. Online appointment scheduling, online check-in at medical facilities, digitization of medical records, reminder calls for follow-up appointments and immunisation dates for children and pregnant women, as well as drug dosage algorithms and adverse effect warnings when prescribing multidrug combinations, are just a few of the tasks that already use artificial intelligence. Data from the review supported the conclusion that AI can play a significant role in endodontics, including the identification of apical lesions, classification and numbering of teeth, detection of dental caries, periodontitis, and periapical disease, diagnosis of various dental problems, aiding dentists in making referrals, and helping them develop more precise treatment plans for dental disorders. Although artificial intelligence (AI) has the potential to drastically alter how medicine is practised in ways that were previously unthinkable, many of its practical applications are still in their infancy and need additional research and development. Over the past ten years, artificial intelligence in ophthalmology has grown significantly and will continue to do so as imaging techniques and data processing algorithms improve.
利用计算机和其他技术来复制类似人类的智能行为和批判性思维被称为人工智能(AI)。伴随着人工智能的进步,计算能力、传感器技术和平台可访问性也在快速发展,因此人工智能辅助应用和大数据研究的发展也在加速。用于规划和诊断牙髓治疗程序的人工智能模型和算法。该搜索引擎评估了有关人工智能(AI)及其在牙髓病学领域的功能的信息,还纳入了谷歌学术、PubMed 和 Science Direct 等数据库,搜索标准是以英文发表的原创研究文章。在线预约安排、医疗机构在线签到、医疗记录数字化、儿童和孕妇复诊和免疫接种日期提醒电话,以及开具多药联合处方时的药物剂量算法和不良反应警告,这些只是已经使用人工智能的任务中的一小部分。审查数据支持这样的结论,即人工智能可以在牙髓病学中发挥重要作用,包括根尖病变的识别、牙齿的分类和编号、龋齿、牙周炎和根尖周病的检测、各种牙科问题的诊断、帮助牙医进行转诊,以及帮助他们制定更精确的牙科疾病治疗计划。尽管人工智能(AI)有可能以以前无法想象的方式彻底改变医学的实践方式,但其许多实际应用仍处于起步阶段,需要更多的研究和开发。在过去十年中,眼科领域的人工智能得到了长足发展,随着成像技术和数据处理算法的改进,人工智能还将继续发展。