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| 1 | Accurate and efficient pulmonary CT imaging workflow for COVID-19 patients by the combination of intelligent guided robot and automatic positioning technology显示文摘Background:The ongoing coronavirus disease 2019(COVID-19)pandemic has put radiologists at a higher risk of infection during the computer tomography(CT)examination for the patients.To help settling these problems,we adopted a remote-enabled and automated contactless imaging workflow for CT examination by the combination of intelligent guided robot and automatic positioning technology to reduce the potential exposure of radiologists to 2019 novel coronavirus(2019-nCoV)infection and to increase the examination efficiency,patient scanning accuracy and better image quality in chest CT imaging.Methods:From February 10 to April 12,2020,adult COVID-19 patients underwent chest CT examinations on a CT scanner using the same scan protocol except with the conventional imaging workflow(CW group)or an automatic contactless imaging workflow(AW group)in Wuhan Leishenshan Hospital(China)were retrospectively and prospectively enrolled in this study.The total examination time in two groups was recorded and compared.The patient compliance of breath holding,positioning accuracy,image noise and signal-to-noise ratio(SNR)were assessed by three experienced radiologists and compared between the two groups.Results:Compared with the CW group,the total positioning time of the AW group was reduced((118.0±20.0)s vs.(129.0±29.0)s,P=0.001),the proportion of scanning accuracy was higher(98%vs.93%),and the lung length had a significant difference((0.90±1.24)cm vs.(1.16±1.49)cm,P=0.009).For the lesions located in the pulmonary centrilobular and subpleural regions,the image noise in the AW group was significantly lower than that in the CW group(centrilobular region:(140.4±78.6)HU vs.(153.8±72.7)HU,P=0.028;subpleural region:(140.6±80.8)HU vs.(159.4±82.7)HU,P=0.010).For the lesions located in the peripheral,centrilobular and subpleural regions,SNR was significantly higher in the AW group than in the CW group(centrilobular region:6.6±4.3 vs.4.9±3.7,P=0.006;subpleural region:6.4±4.4 vs.4.8±4.0,P<0.001).Conclusions:The automatic contactless imaging workflow using intelligent guided robot and automatic posi-tioning technology allows for reducing the examination time and improving the patient’s compliance of breath holding,positioning accuracy and image quality in chest CT imaging. | Yadong Gang Xiongfeng Chen Hanlun Wang Jianying Li Ying Guo Bin Wen Jinxiang Hu Haibo Xu Xinghuan Wang | 2021 | Intelligent Medicine2021,1,1: | 2 |
| 2 | Ultrabroadband and multiband infrared/terahertz photodetectors with high sensitivity显示文摘Broadband response is pursued in both infrared(IR)and terahertz(THz)detection technologies,which find their applications in both terrestrial and astronomical realms.Herein,we report an ultrabroadband and multiband IR/THz detector based on blocked-impurity-band detecting principle.The detectors are prepared by implanting phosphorus into germanium(Ge:P),where photoresponses with a P impurity band,a self-interstitial defect band,and a vacancy-P(V-P)pair defect band are realized simultaneously.The response spectra of the detectors show ultrabroad and dual response bands in a range of 3-28μm(IR band)and 40-165μm(THz band),respectively.Additionally,a tiny mid-IR(MIR)band within 3-4.2μm is embedded in the IR band.The THz band arises from the P impurity band,whereas the IR and the MIR bands are ascribed to the two defect bands.At150 m V and 4.5 K,the peak detectivities of the three bands are obtained as 2.9×10^(12) Jones(at 3.9μm),6.8×10^(12) Jones(at 16.3μm),and 9.9×10^(12) Jones(at 116.5μm),respectively.The impressive coverage andsensitivity of the detectors are promising for applications in IR and THz detection technologies. | JIAQI ZHU HE ZHU MENGJUAN LIU YAO WANG HANLUN XU NASIR ALI HUIYONG DENG ZHIYONG TAN JUNCHENG CAO NING DAI HUIZHEN WU | 2021 | Photonics Research2021,9,11: | 2 |
| 3 | Zircon U-Pb geochronology,geochemistry and petrogenesis of syenogranite from Angeer Yinwula area in Inner Mongolia显示文摘The study presents the results of U-Pb dating of zircons and whole-rock geochemical analyses of syenogranite in Angeer Yinwula area, China, with the aim of determining its formation time, petrogenesis and regional setting. Zircon U-Pb data obtained by LA-ICP-MS indicate that the syenogranite formed in the Early Cretaceous(136.1±0.9 Ma). Geochemically, the rock is characterized by high SiO_2(76.63%--77.58%) and Na_2O+K_2O(8.00%--8.32%), low MgO(0.02%--0.04%) and TFe_2O_3(0.51%--0.84%), and is enriched in LREEs and LILEs, depleted in HREEs and HFSEs. It belongs to high-K calc-alkaline, metaluminous-weakly peraluminous, exhibiting an affinity to I-type granite. All these characteristics implied that the syenogranite in this region derived from crust-mantle mixed source. Overall, the regional geology, geochronology and geochemical features suggest that the formation of the syenogranite was related to the subduction of the Paleo-Pacific Ocean. | LIU Hanlun WANG Keyong LI Jian CAI Wenyan TANG Wenhao WANG Changhong | 2019 | Global Geology2019,22,2: | 2 |
| 4 | Fluid inclusion and H-O isotope study of the Jiguanshan porphyry Mo deposit,Xilamulun Metallogenic Belt:implications for characteristics and evolution of ore-forming fluids显示文摘We studied the fluid inclusions of the Jiguanshan Mo deposit in China,which is a large porphyry deposit located in the southern Xilamulun Metallogenic Belt.The irregular Mo ore body with various types of hydrothermal veinlets is hosted by Late Jurassic granite porphyry.Intense hydrothermal alterations in the deposit from the core to margin are silicification-potassium feldspar alteration,pyrite-quartz-sericite-fluorite alteration,and propylitic alteration.Based on the mineral assemblages and crosscutting relationships of ore veins,the ore-forming process were divided into three stages and two substages:quartz-pyrite veins(stage I)associated with potassic alteration;quartz-molybdenite-chalcopyrite-pyrite veins(substage Ⅱ-1)and quartz-molybdenite-fluorite veins(substage Ⅱ-2)associated with phyllic alteration;and fluorite-quartz-carbonate veins(stage Ⅲ)with carbonation.Five majorfluid inclusions(FIs)types were distinguished in the quartz associated with oxide and sulfide minerals,i.e.polyphase brine(Pb-type),opaque-bearing brine(Ob-type),solid halite(S-type),two-phase aqueous(A-type),and vapor(Vtype)inclusions.The FIs of stage I were composed of liquid-rich S-,A-,and V-type FIs with homogenization temperatures and salinities of 490 to 511℃ and 8.9 to 56.0 wt%NaCl equiv.,respectively.The FIs of substage Ⅱ-1 are composed of Pb-,Ob-,S-,A-,and V-type FIs with homogenization temperatures and salinities of 352 to 460℃ and 3.7 to 46.1 wt%NaCl equiv,respectively.The FIs of substage Ⅱ-2 are Ob-,S-,A-,and V-type FIs with homogenization temperatures and salinities of 234 to309°C and 3.7 to 39.2 wt%NaCl equiv,respectively.The FIs of stage Ⅲ are A-type FIs with homogenization temperatures and salinities of 136 to 172℃ and 1.1 to 8.9 wt%NaCl equiv,respectively.Fluid boiling,which resulted in the precipitation of sulfides,occurred in stages I andⅡ.The initial ore-forming fluids of the Jiguanshan deposit had high temperature,high salinity,and belonged to an F-rich NaCl±KCl-H2O system.The fluids gradually evolved to low temperature,low salinity,and belonged to a NaCl-H2O system.Studies of the hydrogen and oxygen isotope compositions of quartz(δ^18OH2O=-7.3 to 6.3%,δDH2O=-104.3 to-83.3%)show that the ore-formingfluids gradually evolved from magmatic water to meteoric water. | Changhong Wang Keyong Wang Wenyan Cai Jian Li Hanlun Liu Yicun Wang | 2020 | Acta Geochimica2020,39,4: | 0 |
| 5 | Supramolecular cyclization induced emission enhancement in a pillar[5]arene probe for discrimination of spermine显示文摘Early diagnosis and treatment of cancer requires the development of tools that are both sensitive and selective in detecting spermine.In this study,we presented a'supramolecular cyclization-induced emission enhancement'strategy for the sensitive and selective detection of spermine.A new pillar[5]arene probe(P1)demonstrated excellent solution/solid dual-state emission properties,and the addition of certain spermine(Spm)resulted in fluorescence enhancement due to the synergy of multiple weak interactions that restricted the free motion of P1 in the P1⊃Spm complex.This mechanism was further confirmed by time-resolved spectroscopy,DFT calculations,and IGM analysis.With its low limit of detection and high selectivity,P1 is a promising tool for measuring spermine in artificial urine samples. | Yibin Zhou Hao Tang Hanlun Wu Xiaomei Jiang Lingyun Wang Derong Cao | 2024 | Chinese Chemical Letters2024,35,1: | 0 |