光子晶体传感技术在肿瘤检测中的应用

Sunil Sharma, L. Tharani
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引用次数: 2

摘要

肿瘤会给人类带来严重的问题。有时它会导致死亡。早些时候,由于缺乏治疗和技术缺陷,无法检测肿瘤细胞,甚至无法为这些疾病提供适当的治疗。本研究的目的是利用光子晶体(PhC),由于其丰富的结构选择和轻便性,以适应各个领域的影响,二十多年来一直在使用,在不久的将来也有非常巨大的前景。它们在成像、传感、制造工业、自动化、医疗、机电一体化、电子、机械变色、水声探测、制药工业和纳米印迹等领域都有广泛的应用。如果我们讨论的是PhC当前和即将到来的应用,那么它包括对不统一疾病、匿名病毒和一系列肿瘤的智能传感和检测。人工智能(AI)在分析和创造相当于人类行为变化的实体方面也发挥着不可思议的重要作用。人工智能工具和技术被用来创造智能实体,通过它可以完成无数的壮举。PhC与人工智能一起应用于光神经网络(ONN)、人工神经网络(ANN)、细胞计算、等离子体技术、并行处理、图像处理等。本研究将指定光子晶体用于人体感染细胞的检测。有时这些被感染的细胞无法被正常的病理检查所追踪,慢慢地形成肿瘤的形状。但是多亏了光子晶体传感器,他们不仅实现了检测,而且我们可以说是实现了对人体肿瘤的早期检测。这些早期发现和适当的调查是可能的,因为人工智能对光子晶体的影响。本研究的重点是对生物分子的选择性、灵敏度、反射率和浓度的检测和观察。通过波长的变化,即1.5 μm到4 μm,可以测量肿瘤细胞的折射率(RI),测量灵敏度在11258 nm/RIU到32358 nm/RIU之间。肿瘤的折射率在1.3342到1.4251之间。观察到肉瘤的水平与肿瘤的RI成正比。支持向量机(SVM)的准确率为96%,K近邻(KNN)的准确率为70%,逻辑回归(LR)的准确率为88%,随机森林(RF)的准确率为90%,模糊逻辑(FL)和人工神经网络(ANN)的准确率分别为93%和95%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Use of AI Techniques on Photonic Crystal Sensing for the Detection of Tumor
Tumors can cause severe problem to human beings. Sometime it can be a cause of death. Earlier there were lack of treatment and technological deficiency, due to which it was unable to detect tumor cells and even unable to offer proper treatment for these diseases.   This study aims to use Photonic crystal (PhC) due to their ample choice of structures and litheness to endure with every sphere of influence has been utilized them twenty decade back to now a day and have extremely huge prospects in imminent future also. They have revealed their incidence in the field of imaging, sensing, fabricating industries, automation, medical, mechatronics, computronics, mechanochromic, underwater acoustic detection, pharma industries and nanoimprinting etc. If we are discussing about current and impending applications of PhC then it comprises smart sensing and detection of disunite diseases, anonymous viruses and a range of tumors. Artificial intelligence (AI) is also playing incredibly essential role in analyzing and creating entities equivalent to the change in human behavior. AI tools and techniques are utilizing to create intelligent entities through which it is accomplishing countless feats. The PhC along with the artificial intelligence are utilizing as Optical Neural Network (ONN), Artificial Neural Network (ANN), Cellular Computing, Plasma Technology, Parallel Processing, Image Processing etc. Here in this study designated photonic crystal has been used for the detection of infected cell in human body. Sometimes these infected cells are unable to trace by normal pathological investigations and slowly they take a shape of Tumors. But thanks to Photonics crystal sensors that they have made it true not only for detection but we can say for early detection of such tumors in human body. These early detection and proper investigation is possible only because of AI impacts on photonics crystal. This study focuses on detection and observation of bio molecules for selectivity, sensitivity, reflectivity and concentration. By change in wavelength i.e. from 1.5 μm to 4 μm the refractive index (RI) of tumor cell can be measured which is observed by measuring sensitivity between 11258 nm/RIU to 32358 nm/RIU. Tumors have refractive indices varies between 1.3342 to 1.4251. It is observed that sarcoma level is directly proportional to the RI of tumor. Various AI algorithms like support vector machine (SVM) obtained accuracy as 96%, K- nearest neighbor (KNN) shows as 70%, logistic regression (LR) shows as 88%, random forest (RF) show it as 90%, fuzzy logic (FL) and artificial neural network (ANN) observed accuracy as 93% and 95% respectively.
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