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Rapid,artifact-reduced,image reconstruction for super-resolution structured illumination microscopy
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作者 Zhaojun Wang Tianyu Zhao +9 位作者 Yanan Cai Jingxiang Zhang huiwen hao Yansheng Liang Shaowei Wang Yujie Sun Tongsheng Chen Piero R.Bianco Kwangsung Oh Ming Lei 《The Innovation》 EI 2023年第3期63-69,共7页
Super-resolution structured ilumination microscopy(SR-SIM)is finding increasing application in biomedical research due to its superior ability to visualize subcellular dynamics in living cells.However,during image rec... Super-resolution structured ilumination microscopy(SR-SIM)is finding increasing application in biomedical research due to its superior ability to visualize subcellular dynamics in living cells.However,during image reconstruction artifacts can be introduced and when coupled with time-consuming postprocessing procedures,limits this technique from becoming a routine imaging tool for biologists.To address these issues,an accelerated,artifact-reduced reconstruction algorithm termed joint space frequency reconstruction-based artifact reduction algorithm(JSFR-AR-SIM)was developed by integrating a high-speed reconstruc tion framework with a high-fidelity optimization approach designed to suppress the sidelobe artifact.Consequently,JSFR-AR-SIM produces high-quality,super-resolution images with minimal artifacts,and the reconstruction speed is increased.We anticipate this algorithm to facilitate SR-SIM becoming a routine tool in biomedical laboratories. 展开更多
关键词 image resolution ROUTINE
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流感嗜血杆菌快速检测胶体金试纸的研制 被引量:11
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作者 陶冶 郝惠文 +4 位作者 李杰 王猛 王毅 张改平 胡征 《生物工程学报》 CAS CSCD 北大核心 2019年第5期901-909,共9页
以流感嗜血杆菌外膜蛋白P 6为检测标志物,利用胶体金免疫层析技术建立一种快速、灵敏、准确检测流感嗜血杆菌的方法。对P6蛋白(GenBank登录号:AGH02799)进行生物信息学分析,获取其胞外结构域中抗原表位最丰富的肽段,预测其中的线性抗原... 以流感嗜血杆菌外膜蛋白P 6为检测标志物,利用胶体金免疫层析技术建立一种快速、灵敏、准确检测流感嗜血杆菌的方法。对P6蛋白(GenBank登录号:AGH02799)进行生物信息学分析,获取其胞外结构域中抗原表位最丰富的肽段,预测其中的线性抗原表位P6Line (62–75 aa),化学合成后经免疫、抗体纯化得到线性表位抗体,同时利用重组P6蛋白制备多克隆抗体,建立基于双抗体夹心免疫层析技术的流感嗜血杆菌快速检测方法,并对该方法的特异性、灵敏性、重复性和稳定性作出评价,同时对该方法进行临床模拟试验,平板培养法验证其准确性。建立的检测方法可在15 min内完成对样本的检测,检测敏感度高(1×10~5 CFU/mL)、特异性强,与其他诸如肺炎链球菌、卡他莫拉菌、肺炎支原体、嗜肺军团菌等常见9种的呼吸道病原菌无交叉反应;试纸条在25℃保存具有良好的重复性和稳定性;200份临床样品检测结果与平板培养法的阳性符合率为90.5%。P6蛋白具有高度的表面暴露性和较强的抗原性,可作为流感嗜血杆菌检测标的物,胶体金免疫层析法具有快速、简便、灵敏的特点,适用于呼吸道感染的临床快速检测。 展开更多
关键词 流感嗜血杆菌 线性抗原表位 胶体金免疫层析法 P6蛋白
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High-speed image reconstruction for optically sectioned,super-resolution structured illumination microscopy 被引量:10
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作者 Zhaojun Wang Tianyu Zhao +9 位作者 huiwen hao Yanan Cai Kun Feng Xue Yun Yansheng Liang Shaowei Wang Yujie Sun Piero RBianco Kwangsung Oh Ming Lei 《Advanced Photonics》 SCIE EI CSCD 2022年第2期78-90,共13页
Super-resolution structured illumination microscopy(SR-SIM)is an outstanding method for visualizing the subcellular dynamics in living cells.To date,by using elaborately designed systems and algorithms,SR-SIM can achi... Super-resolution structured illumination microscopy(SR-SIM)is an outstanding method for visualizing the subcellular dynamics in living cells.To date,by using elaborately designed systems and algorithms,SR-SIM can achieve rapid,optically sectioned,SR observation with hundreds to thousands of time points.However,real-time observation is still out of reach for most SIM setups as conventional algorithms for image reconstruction involve a heavy computing burden.To address this limitation,an accelerated reconstruction algorithm was developed by implementing a simplified workflow for SR-SIM,termed joint space and frequency reconstruction.This algorithm results in an 80-fold improvement in reconstruction speed relative to the widely used Wiener-SIM.Critically,the increased processing speed does not come at the expense of spatial resolution or sectioning capability,as demonstrated by live imaging of microtubule dynamics and mitochondrial tubulation. 展开更多
关键词 real-time structured illumination microscopy high-speed image reconstruction live-cell imaging microtubule dynamics mitochondrial tubulation
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