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微塑料过滤器|OCEAN CLEANING
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作者 hae jeong park 《设计》 2021年第6期10-10,共1页
这是一台能够大规模收集海洋垃圾的重型机器。海洋废弃物特别是塑料废弃物,是一个全球性问题。商船丢弃的垃圾以及从陆地上垃圾场流出的废弃物聚集在很少或根本没有洋流的地方,形成了巨大的海洋垃圾堆。这些废弃物有可能破坏海洋生物,... 这是一台能够大规模收集海洋垃圾的重型机器。海洋废弃物特别是塑料废弃物,是一个全球性问题。商船丢弃的垃圾以及从陆地上垃圾场流出的废弃物聚集在很少或根本没有洋流的地方,形成了巨大的海洋垃圾堆。这些废弃物有可能破坏海洋生物,也对人类健康造成极大危害。该设备可以通过AI视觉系统有效定位海洋垃圾,然后收集、压缩和存储废物,直到将其清运到陆地,进行安全处置或回收为止。 展开更多
关键词 塑料废弃物 海洋垃圾 微塑料 安全处置 垃圾场 重型机器 全球性问题 视觉系统
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Label-free Detection for a DNA Methylation Assay Using Raman Spectroscopy
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作者 jeongho Kim hae jeong park +2 位作者 Jae Hyung Kim Boksoon Chang Hun-Kuk park 《Chinese Medical Journal》 SCIE CAS CSCD 2017年第16期1961-1967,共7页
Background: DNA methylation has been suggested as a biomarker for early cancer detection and treatment. Varieties of technologies for detecting DNA methylation have been developed, but they are not sufficiently sensi... Background: DNA methylation has been suggested as a biomarker for early cancer detection and treatment. Varieties of technologies for detecting DNA methylation have been developed, but they are not sufficiently sensitive for use in diagnostic devices. The aim of this study was to determine the suitability of Raman spectroscopy for label-free detection of methylated DNA. Methods: The methylated promoter regions of cancer-related genes cadherin 1 (CDH1) and retinoic acid receptor beta (RARB) served as target DNA sequences. Based on bisulfite conversion, oligonucleotides ofmethylated or nonmethylated probes and targets were synthesized for the DNA methylation assay. Principal component analysis with linear discriminant analysis (PCA-DA) was used to discriminate the hybridization between probes and targets (methylated probe and methylated target or nonmethylated probe and nonmethylated target) of CDH! and RARB from nonhybridization between the probe and targets (methylated probe and nonmethylated target or nonmethylated probe and methylated target). Results: This study revealed that the CDH1 and RARB oligo sets and their hybridization data could be classified using PCA-DA. The classification results for CDH1 methylated probe + CDH1 methylated target versus CDH! methylated probe + CDHI unmethylated target showed sensitivity, specificity, and error rates of 92%, 100%, and 8%, respectively. The classification results for the RARB methylated probe + RARB methylated target versus RARB methylated probe + RARB unmethylated target showed sensitivity, specificity, and error rates of 92%, 93%, and 11%, respectively. Conclusions: Label-free detection ofDNA methylation could be achieved using Raman spectroscopy with discriminant analysis. 展开更多
关键词 DNA Methylation Label-free Detection Linear Discriminant Analysis Principal Component Analysis RAMANSPECTROSCOPY
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