期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
Em-cfDNA与超声造影对肝泡型包虫病的诊断价值
1
作者 王凯强 王玉乐 +6 位作者 张灵强 何少帅 高颖 王海久 樊海宁 吕明德 阳丹才让 《中华肝脏外科手术学电子杂志》 CAS 2022年第6期634-638,共5页
目的探讨血浆多房棘球蚴源性循环游离DNA(Em-cfDNA)水平及超声造影(CEUS)对肝泡型包虫病(HAE)的诊断价值。方法本研究对象为2019年6月至2020年12月在青海大学附属医院诊治的40例HAE患者。患者均签署知情同意书,符合医学伦理学规定。其中... 目的探讨血浆多房棘球蚴源性循环游离DNA(Em-cfDNA)水平及超声造影(CEUS)对肝泡型包虫病(HAE)的诊断价值。方法本研究对象为2019年6月至2020年12月在青海大学附属医院诊治的40例HAE患者。患者均签署知情同意书,符合医学伦理学规定。其中男16例,女24例;年龄8~65岁,中位年龄34岁。病灶直径2.1~17.4 cm,中位直径8.5 cm;单发病灶26例,多发病灶14例;早期病变8例,中期病变28例,晚期病变4例。所有患者均采用二代测序方法检测血浆Em-cfDNA水平并进行CEUS检查。以术后组织病理学检查结果为诊断金标准,评估二者对HAE的诊断价值。两种检查方法的诊断准确率比较采用χ2检验。病灶直径与血浆Em-cfDNA水平的关系分析采用Mann-Whitney U非参数检验。结果本组患者血浆Em-cfDNA阳性率为95%(38/40)。HAE病灶直径≥5 cm的患者血浆Em-cfDNA水平为276(677)reads,明显高于病灶直径<5 cm患者的40(72)reads(Z=-2.502,P<0.05)。CEUS对HAE的诊断准确率为90%(36/40),明显高于普通超声的70%(28/40)(χ2=5.000,P<0.05),而与血浆Em-cfDNA的95%(38/40)差异无统计学意义(χ2=0.180,P>0.05)。结论CEUS和血浆Em-cfDNA均为HAE的有效诊断方法。 展开更多
关键词 棘球蚴病 循环游离DNA 超声检查 介入性 诊断
原文传递
An ultra thin,bright,and sensitive interactive tactile display based on organic mechanoluminescence for dual-mode handwriting identification
2
作者 Tingting Hou Wenlang Li +13 位作者 Haoyu Wang Yuantian Zheng Chaojie Chen Haoran Zhang Kai Chen Huilin Xie Xin Li shaoshuai he Siwei Zhang Dengfeng Peng Cheng Yang Jacky W.Y.Lam Ben Zhong Tang Yunlong Zi 《InfoMat》 SCIE 2024年第6期76-87,共12页
Visible light-based human–machine interactive media is capable of transmitting electrical readouts to machines and providing intuitive feedback to users simultaneously.Currently,many inorganic mechanoluminescent(ML)m... Visible light-based human–machine interactive media is capable of transmitting electrical readouts to machines and providing intuitive feedback to users simultaneously.Currently,many inorganic mechanoluminescent(ML)materials-based interactive media,typically ZnS-loaded phosphors(ZLPs),have been successfully demonstrated.However,organic ML materials-based solutions were rarely exploited despite their huge merits of strong structural modification,abundant luminescence property,low cost,easy preparation,and so on.Here,we propose a novel interactive tactile display(ITD)based on organic ML materials(Cz-A6-dye)and triboelectric nanogenerator,with ultra-brightness(130%enhancement)and ultra-low threshold pressure(57%reduction)as compared to ZLPs.The proposed ITD achieves the conversion of weak mechanical stimuli into visible light and electrical signals simultaneously,without extra power supplies.Furthermore,the relationship between the luminous performance of organic ML materials and mechanical force is quantified,benefiting from the uniform ML layer prepared.Enabled by convolutional neural networks,the high-accuracy recognition(97.1%)for handwriting and identity of users is realized at the same time.Thus,the ITD has great potential for intelligent wearable electronics and classified military applications. 展开更多
关键词 interactive media organic mechanoluminescence triboelectric nanogenerators
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部