{"title":"Design and Development of an Artificial Intelligence Chip for Nano-drug Delivery System in Treating Lung Cancer","authors":"Manjunathan Alagarsamy, Nirmala Devi Krishnasamy, Karthik Anbalagan, Natchiammai Palaniaapan, Ranjith Subramanian, Dinesh Paramathi Mani","doi":"10.17756/nwj.2023-s3-064","DOIUrl":null,"url":null,"abstract":"Cancer has become one of the world’s deadly diseases all around the globe. In this manuscript, it has been described with the methodology of generating the cancer signals virtually by designing and formulating a model mathematically and the way of processing the tumor signals deeply through radiotherapy, chemotherapy, bio-immunotherapy, and target therapy by the enhancements of artificial intelligent (AI) algorithms and the strategy of designing and developing AI chip nano-drug delivery technological model for the diagnosis of lung cancer. The main purpose of this manuscript is to modify the rules and regulations which has been adapted in the strait-forward manner in prevailing the guidelines of the treatment regarding the single fitting of doses and drugs into a dignified personalized and precise treatments of cancer with an enhanced AI technology. It is believed that based on this proposed idea as well as the strategy that has been induced by the state of art techniques taken for this study, it could be prolonged and improvise the life of cancer patients with good health and live without the fear of such dangerous disease. It is also determined on predicting the cancer cells with maximum precision and diagnosis and treatment will be carried out on a timely basis immediately after clear estimation of the disease. In future, based on the AI chip system developed in terms of nano-drug technology, cancers could be treated as chronic disorders and ready diagnosis with treatment will be most common in all medical centers.","PeriodicalId":36802,"journal":{"name":"NanoWorld Journal","volume":"2 1","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2023-10-12","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"NanoWorld Journal","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.17756/nwj.2023-s3-064","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q4","JCRName":"Materials Science","Score":null,"Total":0}
引用次数: 0
Abstract
Cancer has become one of the world’s deadly diseases all around the globe. In this manuscript, it has been described with the methodology of generating the cancer signals virtually by designing and formulating a model mathematically and the way of processing the tumor signals deeply through radiotherapy, chemotherapy, bio-immunotherapy, and target therapy by the enhancements of artificial intelligent (AI) algorithms and the strategy of designing and developing AI chip nano-drug delivery technological model for the diagnosis of lung cancer. The main purpose of this manuscript is to modify the rules and regulations which has been adapted in the strait-forward manner in prevailing the guidelines of the treatment regarding the single fitting of doses and drugs into a dignified personalized and precise treatments of cancer with an enhanced AI technology. It is believed that based on this proposed idea as well as the strategy that has been induced by the state of art techniques taken for this study, it could be prolonged and improvise the life of cancer patients with good health and live without the fear of such dangerous disease. It is also determined on predicting the cancer cells with maximum precision and diagnosis and treatment will be carried out on a timely basis immediately after clear estimation of the disease. In future, based on the AI chip system developed in terms of nano-drug technology, cancers could be treated as chronic disorders and ready diagnosis with treatment will be most common in all medical centers.
癌症已成为全球致命疾病之一。本手稿介绍了通过设计和建立数学模型虚拟生成癌症信号的方法,通过人工智能(AI)算法增强放疗、化疗、生物免疫疗法和靶向疗法深度处理肿瘤信号的方法,以及设计和开发用于肺癌诊断的 AI 芯片纳米给药技术模型的策略。本手稿的主要目的是通过增强的人工智能技术,将目前普遍采用的单一剂量和药物的治疗指南中的规则和条例修改为一种有尊严的个性化和精确的癌症治疗方法。我们相信,基于这一建议的想法以及本研究中采用的先进技术所诱导的策略,可以延长和改善癌症患者的健康生活,让他们不再惧怕这种危险的疾病。它还能最大限度地精确预测癌细胞,在明确病情后立即进行及时诊断和治疗。未来,基于纳米药物技术开发的人工智能芯片系统,癌症可以作为慢性疾病来治疗,随时诊断和治疗将在所有医疗中心最常见。