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| 1 | Discovery of Triassic volcanic-sedimentary strata in the basement of Songliao Basin显示文摘In the Songliao Basin, the existence of lower Mesozoic strata remains a debatable issue. Previous studies indicated the absence of Triassic to Lower and Middle Jurassic strata in northeastern China because of uplift and erosion events associated with the return of geo-synclinal folds and orogenic movement during the Late Permian-Early Jurassic. To date, geochronological studies of intrusive and metamorphic rocks in the basement of the Songliao Basin have also confirmed Carboniferous, Permian, and Late Jurassic ages for the basement formations in general [1-4]. In the International Continental Scientific Drilling Project (ICDP) in the Songliao Basin, radiometric dating has been carried out for the entire drilling core of the SK-2 east borehole. As a result, we have discovered Triassic volcanic-sedimentary strata in the basement of the Songliao Basin. | Yongkang Yin Youfeng Gao Pujun Wang Xuejiao Qu Haibo Liu | 2019 | Science Bulletin2019,64,10: | 11 |
| 2 | Pathological changes in the lungs and lymphatic organs of 12 COVID-19 autopsy cases显示文摘Systematic autopsy and comprehensive pathological analyses of COVID-19 decedents should provide insights into the disease characteristics and facilitate the development of novel therapeutics.In this study,we report the autopsy findings from the lungs and lymphatic organs of 12 COVID-19 decedents—findings that evaluated histopathological changes;immune cell signature and inflammatory factor expression in the lungs,spleen and lymph nodes.Here we show that the major pulmonary alterations included diffuse alveolar damage,interstitial fibrosis and exudative inflammation featured with extensive serous and fibrin exudates,macrophage infiltration and abundant production of inflammatory factors(IL-6,IP-10,TNFo?and IL-I f).The spleen and hilar lymph nodes contained lesions with tissue structure disruption and immune cell dysregulation,including lymphopenia and macrophage accumulation.These findings provide pathological evidence that links injuries of the lungs and lymphatic organs with the fatal systematic respiratory and immune malfunction in critically ill COVID-19 patients. | Qian Liu Yu Shi Jun Cai Yaqi Duan Rongshuai Wang Hongyan Zhang Qiurong Ruan Jiansha Li Lei Zhao Yifang Ping Rong Chen Liang Ren Xiaochun Fei Heng Zhang Rui Tang Xi Wang Tao Luo Xindong Liu Xuequan Huang Zhenhua Liu Qilin Ao Yong Ren Jing Xiong Zhicheng He Haibo Wu Wenjuan Fu Pengnan Zhao Xinwei Chen Guoqiang Qu Yunyun Wang Xi Wang Jia Liu Dongfang Xiang Sanpeng Xu Xiaowei Zhou Qingrui Li Jinghong Ma Heng Li Jie Zhang Sizhe Huang Xiaohong Yao Yiwu Zhou Chaofu Wang Dingyu Zhang Guoping Wang Liang Liu Xiu-Wu Bian | 2020 | National Science Review2020,7,12: | 6 |
| 3 | Processing of a Novel Zn Alloy Micro-Tube for Biodegradable Vascular Stent Application显示文摘In recent years, zinc based alloys as a new biodegradable metal material aroused intensive interests.However, the processing of Zn alloys micro-tubes(named slender-diameter and thin-walled tubes) is very difficult due to their HCP crystal structure and unfavorable mechanical properties. This study aimed to develop a novel technique to produce micro-tube of Zn alloy with good performance for biodegradable vascular stent application. In the present work, a processing method that combined drilling, cold rolling and optimized drawing was proposed to produce the novel Zn–5Mg–1Fe(wt%) alloy microtubes. The micro-tube with outer diameter of 2.5 mm and thickness of 130 μm was fabricated by this method and its dimension errors are within 10 μm. The micro-tube exhibits a fine and homogeneous microstructure, and the ultimate tensile strength and ductility are more than 220 MPa and 20% respectively. In addition, the micro-tube and stents of Zn alloy exhibit superior in vitro corrosion and expansion performance. It could be concluded that the novel Zn alloy micro-tube fabricated by above method might be a promising candidate material for biodegradable stent. | Chang Wang Zhentao Yu Yajun Cui Yafeng Zhang Sen Yu Gongqi Qu Haibo Gong | 2016 | Journal of Materials Science & Technology2016,32,9: | 5 |
| 4 | Design of a Passive Gait‑based Ankle‑foot Exoskeleton with Self‑adaptive Capability显示文摘Propulsion during push-off is the key to realizing human locomotion.Humans have evolved a way of walking with high energy utilization,but it can be further improved.Drawing inspiration from the muscle-tendon unit,a passive spring-actuated ankle-foot exoskeleton is designed to assist with human walking and to lengthen walking duration by mechanically enhancing walking efficiency.Detection of the gait events is realized using a smart clutch,which is designed to detect the contact states between the shoe sole and the ground,and automatically switch its working state.The engagement of a suspended spring behind the human calf muscles is hence controlled and is in synchrony with gait.The device is completely passive and contains no external power source.Energy is stored and returned passively using the clutch.In our walking trials,the soleus electromyography activity is reduced by as much as 72.2%when the proposed ankle-foot exoskeleton is worn on the human body.The influence of the exoskeleton on walking habits is also studied.The results show the potential use of the exoskeleton in humans’daily life. | Xiangyang Wang Sheng Guo Bojian Qu Majun Song Haibo Qu | 2020 | Chinese Journal of Mechanical Engineering2020,33,3: | 5 |
| 5 | Theory of Degrees of Freedom for Parallel Mechanisms with Three Spherical Joints and Its Applications显示文摘The analysis of degrees of freedom(DOF) of a moving platform is the fundamental problem in kinematics of parallel mechanism. However, many problems should be considered to correctly perform the DOF calculation by using the traditional DOF criterion, and it is difficult to find a DOF criterion suitable for all kinds of mechanisms. A rule that can be used to determine the position and orientation of the moving platform is presented. Based on the proposed rule, a new form of DOF criterion is proposed, which is suitable for a class of parallel mechanisms with three spherical joints attached to the moving platform. The basic types of generalized limb structures are given based on the possible dimension of achieving the center of spherical joint attached to the moving platform, and the general steps of analyzing the DOF are presented. This proposed formula simplifies the DOF analysis of parallel mechanisms with spherical joints attached to the moving platform, and plays an important role in structural synthesis of such parallel mechanisms. | QU Haibo FANG Yuefa GUO Sheng | 2015 | Chinese Journal of Mechanical Engineering2015,28,4: | 3 |
| 6 | Graphene Oxide Assemblies for Sustainable Clean-Water Harvesting and Green-Electricity Generation显示文摘CONSPECTUS:The urgent problems of water scarcity and the energy crisis have given rise to the development of a range of sustainable technologies with the great advancement of nanotechnologies and advent of attractive nanomaterials.Graphene oxides(GO),a derivative of graphene with an atom-thin thickness and abundant oxygen-containing functional groups(such as−OH,−COOH),are water-soluble and can be assembled into a variety of structures(such as fiber,membrane,and foam)with great potential in environmental and energy-related fields.As a typical precursor of graphene,GO can be easily reduced to graphene by chemical or thermal treatments to demonstrate excellent photothermal properties as well as tunable thermal conduction,which is highly desirable for efficient solar-driven water evaporation.The intrinsic large specific area of GO nanosheets can provide enough sites for ions adsorption and its porous assemblies facilitate the transport of water.In addition,the abundant functional groups allow the spontaneous adsorption of water molecules from the ambient environment and give birth to movable ions(usually protons)under the solvation effect.Once a chemical gradient is formed on the component,a remarkable electricity is generated from the directional transport of protons.Thanks to the excellent chemical properties of GO nanosheets,a wide range of assemblies with 1D aligned fibers,2D layered membranes and 3D porous foam can be easily fabricated by wet-spinning,solution-filtration,and freezingdrying methods.The various GO assemblies are able to exhibit abundant functions with remarkable weaving capability for GO fibers,superior flexibility for GO membranes,and exceptional adsorption capacity for GO foams.In light of all the advantages,GO and its assemblies are remarkably promising in the fields of sustainable development to meet the pressing challenges of water and energy crisis.In this Account,we will discuss the progress of clean-water production and green-electricity generation technologies based on GO assemblies.The fundamental working mechanism,optimization strategies,and promising applications are explored with an emphasis on the materials development.We also discuss the functions of GO assemblies in the water and electricity generation process and present their limitations and possible solutions.Current challenges and promising directions for the development of clean-water production and green-electricity generation are also demonstrated for their realistic implementations.We anticipate that this Account would promote more efforts toward fundamental research on graphene functionalization and encourage a broad exploration on the application of graphene assemblies in clean-water production and electric power generation systems. | Yaxin Huang Chengzhi Wang Changxiang Shao Boyu Wang Nan Chen Haibo Jin Huhu Cheng Liangti Qu | 2021 | Accounts of Materials Research2021,2,2: | 2 |
| 7 | The solution and room temperature aging behavior of Mg–9Li–xAl( x =3, 6) alloys显示文摘 | Zhikun Qu Ruizhi Wu Haibo Zhan Milin Zhang | 2012 | Journal of Alloys and Compounds2012,,: | 1 |
| 8 | Type Synthesis of 4-DOF Nonoverconstrained Parallel Mechanisms Based on Screw Theory显示文摘 | Guo Sheng Fang Yuefa Qu Haibo | 2012 | Robotica2012,30,1: | 1 |
| 9 | Design and Analysis of a Novel Shoulder Exoskeleton Based on a Parallel Mechanism显示文摘Power-assisted upper-limb exoskeletons are primarily used to improve the handling efficiency and load capacity.However,kinematic mismatch between the kinematics and biological joints is a major problem in most existing exoskeletons,because it reduces the boosting effect and causes pain and long-term joint damage in humans.In this study,a shoulder augmentation exoskeleton was designed based on a parallel mechanism that solves the shoulder dislocation problem using the upper arm as a passive limb.Consequently,the human–machine synergy and wearability of the exoskeleton system were improved without increasing the volume and weight of the system.A parallel mechanism was used as the structural body of the shoulder joint exoskeleton,and its workspace,dexterity,and stiffness were analyzed.Additionally,an ergonomic model was developed using the principle of virtual work,and a case analysis was performed considering the lifting of heavy objects.The results show that the upper arm reduces the driving force requirement in coordinated motion,enhances the load capacity of the system,and achieves excellent assistance. | Lianzheng Niu Sheng Guo Majun Song Yifan Wu Haibo Qu | 2023 | Chinese Journal of Mechanical Engineering2023,36,2: | 1 |
| 10 | Effects of disinfectant and biofilm on the corrosion of cast iron pipes in a reclaimed water distribution system显示文摘 | Haibo Wang Chun Hu Xuexiang Hu Min Yang Jiuhui Qu | 2011 | Water Research2011,,4: | 1 |
| 11 | Interplanting Patterns of Cash Crops under Forest显示文摘At the same time of tending forests,it is necessary to explore the under-forest economic development mode,bring into play production function of economic plants,establish cultivation mode of edible fungus,wild vegetables and medicinal plants under forest,to obtain certain economic benefit in short period. This paper made a preliminary study on significance and existing problems of the under-forest economy,and came up with several interplanting patterns,in the hope of providing a comprehensive operation and cultivation approach for developing the under-forest economy. | Renjie DU Yuejun QU Hu JIN Haibo JIANG Yunchang DU Dongyue ZHOU Jing FU Ping SHI | 2014 | Asian Agricultural Research2014,6,11: | 1 |
| 12 | Type synthesis of 4-DOF nonoverconstrained parallel mechanisms based on screw theory显示文摘 | GUO Sheng FANG Yuefa QU Haibo | 2012 | Robotica2012,30,1: | 1 |
| 13 | In-situ neutron-transmutation for substitutional doping in 2D layered indium selenide based phototransistor显示文摘Neutron-transmutation doping(NTD)has been demonstrated for the first time in this work for substitutional introduction of tin(Sn)shallow donors into two-dimensional(2D)layered indium selenide(InSe)to manipulate electron transfer and charge carrier dynamics.Multidisciplinary study including density functional theory,transient optical absorption,and FET devices have been carried out to reveal that the field effect electron mobility of the fabricated phototransistor is increased 100-fold due to the smaller electron effective mass and longer electron life time in the Sn-doped InSe.The responsivity of the Sn-doped InSe based phototransistor is accordingly enhanced by about 50 times,being as high as 397 A/W.The results show that NTD is a highly effective and controllable doping method,possessing good compatibility with the semiconductor manufacturing process,even after device fabrication,and can be carried out without introducing any contamination,which is radically different from traditional doping methods. | Zhinan Guo Yonghong Zeng Fanxu Meng Hengze Qu Shengli Zhang Shipeng Hu Sidi Fan Haibo Zeng Rui Cao Paras N.Prasad Dianyuan Fan Han Zhang | 2022 | eLight2022,2,1: | 1 |
| 14 | The effect of fluoride contents in fluoridated hydroxyapatite on osteoblast behavior显示文摘 | Haibo Qu Mei Wei | 2005 | Acta Biomaterialia2005,,1: | 1 |
| 15 | Kinematics Analysis and Singularity Avoidance of a Parallel Mechanism with Kinematic Redundancy显示文摘The kinematic redundancy is considered as a way to improve the performance of the parallel mechanism.In this paper,the kinematics performance of a three degree-of-freedom parallel mechanism with kinematic redundancy(3-DOF PM-KR)and the influence of redundant parts on the PM-KR are analyzed.Firstly,the kinematics model of the PM-KR is established.The inverse solutions,the Jacobian matrix,and the workspace of the PM-KR are solved.Secondly,the influence of redundancy on the PM-KR is analyzed.Since there exists kinematic redundancy,the PM-KR possesses fault-tolerant performance.By locking one actuating joint or two actuating joints simultaneously,the fault-tolerant workspace is obtained.When the position of the redundant part is changed,the workspace and singularity will be changed.The results show that kinematic redundancy can be used to avoid singularity.Finally,the simulations are performed to prove the theoretical analysis. | Chaoyu Shen Haibo Qu Sheng Guo Xiao Li | 2022 | Chinese Journal of Mechanical Engineering2022,35,5: | 0 |
| 16 | Design method and verification of a hybrid prosthetic mechanism with energy-damper clutchable device for transfemoral amputees显示文摘Transfemoral amputees(TAs)have difficulty in mobility during walking,such as restricted movement of lower extremity and body instability,yet few transfemoral prostheses have explored human-like multiple motion characteristics by simple structures to fit the kinesiology,biomechanics,and stability of human lower extremity.In this work,the configurations of transfemoral prosthetic mechanism are synthesized in terms of human lower-extremity kinesiology.A hybrid transfemoral prosthetic(HTP)mechanism with multigait functions is proposed to recover the gait functions of TAs.The kinematic and mechanical performances of the designed parallel mechanism are analyzed to verify their feasibility in transfemoral prosthetic mechanism.Inspired by motion-energy coupling relationship of the knee,a wearable energy-damper clutched device that can provide energy in knee stance flexion to facilitate the leg off from the ground and can impede the leg’s swing velocity for the next stance phase is proposed.Its co-operation with the springs in the prismatic pairs enables the prosthetic mechanism to have the energy recycling ability under the gait rhythm of the knee joint.Results demonstrate that the designed HTP mechanism can replace the motion functions of the knee and ankle to realize its multimode gait and effectively decrease the peak power of actuators from 94.74 to 137.05 W while maintaining a good mechanical adaptive stability. | Majun SONG Sheng GUO Anderson S.OLIVEIRA Xiangyang WANG Haibo QU | 2021 | Frontiers of Mechanical Engineering2021,16,4: | 0 |
| 17 | Electronic band structures and optical properties of atomically thin AuSe: first-principle calculations显示文摘As a large family of 2D materials, transition metal dichalcogenides(TMDs) have stimulated numerous works owing to their attractive properties. The replacement of constituent elements could promote the discovery and fabrication of new nanofilm in this family. Using precious metals, such as platinum and palladium, to serve as transition metals combined with chalcogen is a new approach to explore novel TMDs. Also, the proportion between transition metal and chalcogen atoms is found not only to exist in conventional form of 1 : 2. Herein, we reported a comprehensive study of a new 2D precious metal selenide, namely AuSe monolayer. Based on density functional theory, our result indicated that AuSe monolayer is a semiconductor with indirect band-gap of 2.0 eV, which possesses superior dynamic stability and thermodynamic stability with cohesive energy up to–7.87 eV/atom. Moreover, it has been confirmed that ionic bonding predominates in Au–Se bonds and absorption peaks in all directions distribute in the deep ultraviolet region. In addition, both vibration modes dominating marked Raman peaks are parallel to the 2D plane. | Pengxiang Bai Shiying Guo Shengli Zhang Hengze Qu Wenhan Zhou Haibo Zeng | 2019 | Journal of Semiconductors2019,40,6: | 0 |
| 18 | First-principle study of puckered arsenene MOSFET显示文摘Two-dimensional material has been regarded as a competitive silicon-alternative with a gate length approaching sub-10 nm,due to its unique atomic thickness and outstanding electronic properties.Herein,we provide a comprehensively study on the electronic and ballistic transport properties of the puckered arsenene by the density functional theory coupled with nonequilibrium Green’s function formalism.The puckered arsenene exhibits an anisotropic characteristic,as effective mass for the electron/hole in the armchair and zigzag directions is 0.35/0.16 m0 and 1.26/0.32 m0.And it also holds a high electron mobility,as the highest value can reach 20045 cm2V–1s–1.Moreover,the puckered arsenene FETs with a 10-nm channel length possess high on/off ratio above 105 and a steep subthreshold swing below 75 mV/dec,which have the potential to design high-performance electronic devices.Interestingly,the channel length limit for arsenene FETs can reach 7-nm.Furthermore,the benchmarking of the intrinsic arsenene FETs and the 32-bit arithmetic logic unit circuits also shows that the devices possess high switching speed and low energy dissipation,which can be comparable to the CMOS technologies and other CMOS alternatives.Therefore,the puckered arsenene is an attractive channel material in next-generation electronics. | Hengze Qu Ziwei Lin Ruijuan Guo Xiyu Ming Wenhan Zhou Shiying Guo Xiufeng Song Shengli Zhang Haibo Zeng | 2020 | Journal of Semiconductors2020,41,8: | 0 |
| 19 | Adjunct rasagiline to treat Parkinson’s disease with motor fluctuations:a randomized,double-blind study in China显示文摘Background:The use of adjunct rasagiline in levodopa-treated patients with Parkinson’s disease and motor fluctuations is supported by findings from large-scale clinical studies.This study is to investigate the efficacy and safety of adjunct rasagiline in Chinese patients with Parkinson’s disease,as a product registration study.Methods:This 16-week,randomized,double-blind,parallel-group,multicenter,placebo-controlled study of rasagiline 1 mg/day included levodopa-treated patients with Parkinson’s disease and motor fluctuations.The primary efficacy endpoint was mean change from baseline in total daily OFF time over 16 weeks.Secondary endpoints were Clinical Global Impressions–Improvement(CGI-I),and change in Unified Parkinson’s Disease Rating Scale(UPDRS)Activities of daily living(ADL)and Motor scores.Patient well-being(EQ-5D),and the frequency of adverse events were also assessed.Results:In total,324 levodopa-treated patients were randomized to rasagiline 1 mg/day(n=165)or placebo(n=159).Over 16 weeks,rasagiline statistically significantly reduced the mean[95% confidence interval]total daily OFF time versus placebo(−0.5 h[−0.92,−0.07];p=0.023).There were also statistically significant improvements versus placebo in CGI-I(−0.4 points[−0.61,−0.22];p<0.001),UPDRS-ADL OFF(−1.0 points[−1.75,−0.27];p=0.008),and UPDRS-Motor ON(−1.6 points[−3.05,−0.14];p=0.032)scores,as well as the EQ-5D utility index(p<0.05).Rasagiline was safe and well tolerated.Conclusions:In levodopa-treated Chinese patients with Parkinson’s disease and motor fluctuations,adjunct rasagiline 1 mg/day statistically significantly reduced OFF time,and improved daily function and overall well-being,versus placebo.Consistent with findings in other countries,adjunct rasagiline was proven efficacious and well tolerated in Chinese patients. | Zhenxin Zhang Ming Shao Shengdi Chen Chunfeng Liu Rong Peng Yansheng Li Jian Wang Suiqiang Zhu Qiumin Qu Xiaoying Zhang Haibo Chen Xiangru Sun Yanping Wang Shenggang Sun Baorong Zhang Jimei Li Xiaoping Pan Gang Zhao | 2018 | Translational Neurodegeneration2018,7,1: | 0 |
| 20 | An improved strategy for out-of-step oscillation separation devices based on apparent impedance angle applied to a series compensated line显示文摘Out-of-step oscillation separation devices based on apparent impedance angle trajectory are widely used in the power grid in China,and their reliability is of great importance.In this paper,the influence mechanism of series compensation on apparent impedance angle trajectory is analyzed.It reveals that series compensation capacitors reduce the equivalent impedance angle and consequently the apparent impedance angle cannot pass through all four zones,resulting in the risk of failure for the separation devices.A revised method of apparent impedance angle based on compensation principle is discussed,and then an improved out-of-step oscillation detection criterion is proposed.In view of the fact that the apparent impedance angle at the moment of maximum current is equal to the equivalent impedance angle during an oscillation process,a practical algorithm based on the compensated apparent impedance angle is proposed.RTDS tests are conducted to verify the effectiveness of the new criterion,considering transmission lines with a high series compensation level. | Haibo Xu Yupeng Cai Xiaolei Qu Zhiwei Dong | 2022 | Protection and Control of Modern Power Systems2022,7,1: | 0 |