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| 1 | Carbamazepine removal from water by dielectric barrier discharge : comparison of ex situ and in situ discharge on water 显示文摘 | LIU Yanan MEI Shufang SOU D I | 2012 | Chemical Engineering and Processing2012,56,: | 1 |
| 2 | 查看详情显示文摘 | Liu Yanan Mei Shufang Djakaou Iya-Sou | | 0,,: | 1 |
| 3 | Study on rapid detection of irradiated rice based on RVA profile显示文摘In order to confirm whether the rice sample was exposed to gamma radiation,the changes in starch pasting viscosity of rice irradiated by different absorbed doses with additive acid solution and distilled water were investigated.The peak viscosity of irradiated rice sample was significantly decreased with the increment of absorbed doses even for the samples stored over 360 days.Irradiation samples can be distinguished from non-irradiated samples by their RVA profile as in the acid solution(pH=2.5),the starch pasting viscosities of irradiated rice samples were apparently higher while the starch pasting viscosities of non-irradiated rice samples were lower than that in distilled water(pH=7.0).The irradiation absorbed dose can be estimated accurately by the regression equation constructed with peak viscosity and absorbed doses. | MEI Shufang FU Junjie ZHOU Xiyao XU Furong ZHAO Xiaojun | 2013 | Nuclear Science and Techniques2013,24,4: | 0 |
| 4 | Phenomic Imaging显示文摘Human phenomics is defned as the comprehensive collection of observable phenotypes and characteristics infuenced by a complex interplay among factors at multiple scales.These factors include genes,epigenetics at the microscopic level,organs,microbiome at the mesoscopic level,and diet and environmental exposures at the macroscopic level.“Phenomic imaging”utilizes various imaging techniques to visualize and measure anatomical structures,biological functions,metabolic processes,and biochemical activities across diferent scales,both in vivo and ex vivo.Unlike conventional medical imaging focused on disease diagnosis,phenomic imaging captures both normal and abnormal traits,facilitating detailed correlations between macro-and micro-phenotypes.This approach plays a crucial role in deciphering phenomes.This review provides an overview of diferent phenomic imaging modalities and their applications in human phenomics.Additionally,it explores the associations between phenomic imaging and other omics disciplines,including genomics,transcriptomics,proteomics,immunomics,and metabolomics.By integrating phenomic imaging with other omics data,such as genomics and metabolomics,a comprehensive understanding of biological systems can be achieved.This integration paves the way for the development of new therapeutic approaches and diagnostic tools. | Lizhen Lan Kai Feng Yudan Wu Wenbo Zhang Ling Wei Huiting Che Le Xue Yidan Gao Ji Tao Shufang Qian Wenzhao Cao Jun Zhang Chengyan Wang Mei Tian | 2023 | Phenomics2023,3,6: | 0 |
| 5 | Protocol for Brain Magnetic Resonance Imaging and Extraction of Imaging‑Derived Phenotypes from the China Phenobank Project显示文摘Imaging-derived phenotypes(IDPs)have been increasingly used in population-based cohort studies in recent years.As widely reported,magnetic resonance imaging(MRI)is an important imaging modality for assessing the anatomical structure and function of the brain with high resolution and excellent soft-tissue contrast.The purpose of this article was to describe the imaging protocol of the brain MRI in the China Phenobank Project(CHPP).Each participant underwent a 30-min brain MRI scan as part of a 2-h whole-body imaging protocol in CHPP.The brain imaging sequences included T1-magnetization that prepared rapid gradient echo,T2 fuid-attenuated inversion-recovery,magnetic resonance angiography,difusion MRI,and resting-state functional MRI.The detailed descriptions of image acquisition,interpretation,and post-processing were provided in this article.The measured IDPs included volumes of brain subregions,cerebral vessel geometrical parameters,microstructural tracts,and function connectivity metrics. | Chengyan Wang Zhang Shi Yan Li Xueqin Xia Xutong Kuang Shufang Qian Le Xue Lizhen Lan Yudan Wu Na Zhang Ji Tao Xumei Hu Wenzhao Cao Naying He Yike Guo Weibo Chen Jun Zhang Jingchun Luo He Wang Mei Tian | 2023 | Phenomics2023,3,6: | 0 |
| 6 | Positron Emission Tomography Molecular Imaging for Phenotyping and Management of Lymphoma显示文摘Positron emission tomography(PET)represents molecular imaging for non-invasive phenotyping of physiological and biochemical processes in various oncological diseases.PET imaging with 18F-fluorodeoxyglucose(18F-FDG)for glucose metabolism evaluation is the standard imaging modality for the clinical management of lymphoma.One of the 18F-FDG PET applications is the detection and pre-treatment staging of lymphoma,which is highly sensitive.18F-FDG PET is also applied during treatment to evaluate the individual chemo-sensitivity and accordingly guide the response-adapted therapy.At the end of the therapy regiment,a negative PET scan is indicative of a good prognosis in patients with advanced Hodgkin’s lymphoma and diffuse large B-cell lymphoma.Thus,adjuvant radiotherapy may be alleviated.Future PET studies using non-18F-FDG radiotracers,such as 68Ga-labeled pentixafor(a cyclic pentapeptide that enables sensitive and high-contrast imaging of C-X-C motif chemokine receptor 4),68Ga-labeled fibroblast activation protein inhibitor(FAPI)that reflects the tumor microenvironment,and 89Zr-labeled atezolizumab that targets the programmed cell death-ligand 1(PD-L1),may complement 18F-FDG and offer essential tools to decode lymphoma phenotypes further and identify the mechanisms of lymphoma therapy. | Xiaohui Zhang Han Jiang Shuang Wu Jing Wang Rui Zhou Xuexin He Shufang Qian Shuilin Zhao Hong Zhang Ali Cahid Civelek Mei Tian | 2022 | Phenomics2022,2,2: | 0 |