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Mechanical Modeling and Analysis of Stability Deterioration of Production Well During Marine Hydrate Depressurization Production 被引量:1
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作者 SUN Huan-zhao CHANG Yuan-jiang +4 位作者 SUN Bao-jiang WANG Kang CHEN Guo-ming LI Hao DAI Yong-guo 《China Ocean Engineering》 SCIE EI CSCD 2024年第2期338-351,共14页
Different from oil and gas production,hydrate reservoirs are shallow and unconsolidated,whose mechanical properties deteriorate with hydrate decomposition.Therefore,the formations will undergo significant subsidence d... Different from oil and gas production,hydrate reservoirs are shallow and unconsolidated,whose mechanical properties deteriorate with hydrate decomposition.Therefore,the formations will undergo significant subsidence during depressurization,which will destroy the original force state of the production well.However,existing research on the stability of oil and gas production wells assumes the formation to be stable,and lacks consideration of the force exerted on the hydrate production well by formation subsidence caused by hydrate decomposition during production.To fill this gap,this paper proposes an analytical method for the dynamic evolution of the stability of hydrate production well considering the effects of hydrate decomposition.Based on the mechanical model of the production well,the basis for stability analysis has been proposed.A multi-field coupling model of the force state of the production well considering the effect of hydrate decomposition and formation subsidence is established,and a solver is developed.The analytical approach is verified by its good agreement with the results from the numerical method.A case study found that the decomposition of hydrate will increase the pulling-down force and reduce the supporting force,which is the main reason for the stability deterioration.The higher the initial hydrate saturation,the larger the reservoir thickness,and the lower the production pressure,the worse the stability or even instability.This work can provide a theoretical reference for the stability maintaining of the production well. 展开更多
关键词 natural gas hydrate production well depressurization production formation deformation stability deterioration
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Effect and mechanism of reductive polyaniline on the stability of nitrocellulose
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作者 Wenjiang Li Binbin Wang +5 位作者 Huimin Chen Aoao Lu Chenguang Li Qiang Li Fengqiang Nan Ping Du 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第8期217-225,共9页
The search for new green and efficient stabilizers is of great importance for the stabilization of nitrocellulose(NC). This is due to the shortcomings of traditional stabilizers, such as high toxicity. In this study, ... The search for new green and efficient stabilizers is of great importance for the stabilization of nitrocellulose(NC). This is due to the shortcomings of traditional stabilizers, such as high toxicity. In this study, reduced polyaniline(r-PANI), which has a similar functional structure to diphenylamine(DPA) but is non-toxic, was prepared from PANI based on the action with N_(2)H_(4) and NH_(3)-H_(2)O, and used for the first time as a potential stabilizer for NC. XPS, FTIR, Raman, and SEM were used to characterize the reduced chemical structure and surface morphology of r-PANI. In addition, the effect of r-PANI on the stabilization of NC was characterized using DSC, VST, isothermal TG, and MMC. Thermal weight loss was reduced by 83% and 68% and gas pressure release by 75% and 49% compared to pure NC and NC&3%DPA, respectively.FTIR and XPS were used to characterize the structural changes of r-PANI before and after reaction with NO_(2). The 1535 cm^(-1) and 1341 cm^(-1) of the FTIR and the 404.98 eV and 406.05 eV of the XPS showed that the -NO_(2) was generated by the absorption of NO_(2). Furthermore, the quantum chemical calculation showed that NO_(2) was directly immobilized on r-PANI by forming -NO_(2) in the neighboring position of the benzene ring. 展开更多
关键词 NITROCELLULOSE Green stabilizer POLYANILINE Mechanism of stability
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Rainfall-triggered waste dump instability analysis based on surface 3D deformation in physical model test
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作者 LI Hanlin JIN Xiaoguang +2 位作者 HE Jie XUE Yunchuan YANG Zhongping 《Journal of Mountain Science》 SCIE CSCD 2024年第5期1549-1563,共15页
Landslide is the second largest natural disaster after earthquake. It is of significance to study the evolution laws and failure mechanism of landslides based on its surface 3D deformation information. Based on the ra... Landslide is the second largest natural disaster after earthquake. It is of significance to study the evolution laws and failure mechanism of landslides based on its surface 3D deformation information. Based on the rainfall-triggered waste dump instability model test, we studied the failure mechanisms of the waste dump by integrating surface deformation and internal slope stress and proposed novel parameters for identifying landslide stability. We developed a noncontact measurement device, which can obtain millimeter-level 3D deformation data for surface scene in physical model test;Then we developed the similar materials and established a test model for a waste dump. Based on the failure characteristics of slope surface, internal stress of slope body and displacement contours during the whole process, we divided the slope instability process in model test into four stages: rainfall infiltration and surface erosion, shallow sliding, deep sliding, and overall instability. Based on the obtained surface deformation data, we calculated the volume change during slope instability process and compared it with the point displacement on slope surface. The results showed that the volume change can not only reflect the slow-ultra acceleration process of slope failure, but also fully reflect the above four stages and reduce the fluctuations caused by random factors. Finally, this paper proposed two stability identification parameters: the volume change rate above the slip surface and the relative velocity of volume change rate. According to the calculation of these two parameters in model test, they can be used for study the deformation and failure mechanism of slope stability. 展开更多
关键词 Waste dump stability Physical model test Surface 3D deformation stability identification
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Multifunctional interfacial molecular bridge enabled by an aggregation-induced emission strategy for enhancing efficiency and UV stability of perovskite solar cells
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作者 Shuhang Bian Yuqi Wang +13 位作者 Fancong Zeng Zhongqi Liu Bin Liu Yanjie Wu Long Shao Yongzhi Shao Huan Zhang Shuainan Liu Jin Liang Xue Bai Lin Xu Donglei Zhou Biao Dong Hongwei Song 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第8期588-595,I0013,共9页
The interface defects between the electron transport layer(ETL)and the perovskite layer,as well as the low ultraviolet(UV)light utilization rate of the perovskite absorption layer,pose significant challenges for the c... The interface defects between the electron transport layer(ETL)and the perovskite layer,as well as the low ultraviolet(UV)light utilization rate of the perovskite absorption layer,pose significant challenges for the commercialization of perovskite solar cells(PSCs).To address this issue,this paper proposes an innovative multifunctional interface modulation strategy by introducing aggregation-induced emission(AIE)molecule 5-[4-[1,2,2-tri[4-(3,5-dicarboxyphenyl)phenyl]ethylene]phenyl]benzene-1,3-dicarboxylic acid(H_(8)ETTB)at the SnO_(2)ETL/perovskite interface.Firstly,the interaction of H_(8)ETTB with the SnO_(2)surface,facilitated by its carboxyl groups,is effective in passivating surface defects caused by noncoord inated Sn and O vacancies.This interaction enhances the conductivity of the SnO_(2)film and adjusts energy levels,leading to enhanced charge carrier transport.Simultaneously,H_(8)ETTB can passivate noncoord inated Pb^(2+)ions at the perovskite interface,promoting perovskite crystallization and reducing the interface energy barrier,resulting in a perovskite film with low defects and high crystalline quality.More importantly,the H_(8)ETTB molecule,can convert UV light into light absorbable by the perovskite,thereby reducing damage caused by UV light and improving the device's utilization of UV.Consequently,the champion PSC based on SnO_(2)-H_(8)ETTB achieves an impressing efficiency of 23.32%and significantly improved photostability compared with the control device after continuous exposure to intense UV radiation.In addition,the Cs_(0.05)(FA_(0.95)MA_(0.05))_(0.95)Pb(I_(0.95)Br_(0.05))_(3)based device can achieve maximum efficiency of 24.01%,demonstrating the effectiveness and universality of this strategy.Overall,this innovative interface bridging strategy effectively tackles interface defects and low UV light utilization in PSCs,presenting a promising approach for achieving highly efficient and stable PSCs. 展开更多
关键词 Perovskite solar cells Aggregation-induced emission Defect passivation EFFICIENCY UV stability
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Research on the flow stability and noise reduction characteristics of quasi-periodic elastic support skin
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作者 Lu Chen Shao-gang Liu +5 位作者 Dan Zhao Li-qiang Dong Kai Li Shuai Tang Jin Cui Hong Guo 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第3期222-236,共15页
To enhance flow stability and reduce hydrodynamic noise caused by fluctuating pressure,a quasiperiodic elastic support skin composed of flexible walls and elastic support elements is proposed for fluid noise reduction... To enhance flow stability and reduce hydrodynamic noise caused by fluctuating pressure,a quasiperiodic elastic support skin composed of flexible walls and elastic support elements is proposed for fluid noise reduction.The arrangement of the elastic support element is determined by the equivalent periodic distance and quasi-periodic coefficient.In this paper,a dynamic model of skin in a fluid environment is established.The influence of equivalent periodic distance and quasi-periodic coefficient on flow stability is investigated.The results suggest that arranging the elastic support elements in accordance with the quasi-periodic law can effectively enhance flow stability.Meanwhile,the hydrodynamic noise calculation results demonstrate that the skin exhibits excellent noise reduction performance,with reductions of 10 dB in the streamwise direction,11 dB in the spanwise direction,and 10 dB in the normal direction.The results also demonstrate that the stability analysis method can serve as a diagnostic tool for flow fields and guide the design of noise reduction structures. 展开更多
关键词 Flow stability Quasi-period Flexible wall Elastic support element Hydrodynamic noise
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Rational design of vitamin C/defective carbon van der Waals heterostructure for enhanced activity,durability and storage stability toward oxygen reduction reaction
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作者 Ruiqi Cheng Kaiqi Li +5 位作者 Huanxin Li Tianshuo Zhao Yibo Wang Qingyue Xue Jiao Zhang Chaopeng Fu 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第1期103-111,I0003,共10页
Metal-free defective carbon materials with abundant active sites have been widely studied as low-cost and efficient oxygen reduction reaction(ORR)electrocatalysts in metal-air batteries.However,the active sites in def... Metal-free defective carbon materials with abundant active sites have been widely studied as low-cost and efficient oxygen reduction reaction(ORR)electrocatalysts in metal-air batteries.However,the active sites in defective carbon are easily subjected to serious oxidation or hydroxylation during ORR or storage,leading to rapid degradation of activity.Herein,we design a van der Waals heterostructure comprised of vitamin C(VC)and defective carbon(DC)to not only boost the activity but also enhance the durability and storage stability of the DC-VC electrocatalyst.The formation of VC van der Waals between DC and VC is demonstrated to be an effective strategy to protect the defect active sites from oxidation and hydroxylation degradation,thus significantly enhancing the electrochemical durability and storage anti-aging performance.Moreover,the DC-VC van der Waals can reduce the reaction energy barrier to facilitate the ORR.These findings are also confirmed by operando Fourier transform infrared spectroscopy and density functional theory calculations.It is necessary to mention that the preparation of this DC-VC electrocatalyst can be scaled up,and the ORR performance of the largely produced electrocatalyst is demonstrated to be very consistent.Furthermore,the DC-VC-based aluminum-air batteries display very competitive power density with good performance maintenance. 展开更多
关键词 Van der Waals heterostructure Oxygen reduction reaction stability Scalable production Aluminum-air battery
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Enhancing the crystallinity and stability of perovskite solar cells with 4-tert-butylpyridine induction for efficiency exceeding 24%
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作者 You Liu Lishuang Zheng +15 位作者 Kuanxiang Zhang Kun Xu Weicheng Xie Jue Zhang Yulu Tian Tianyuan Liu Hanzhong Xu Ruoming Ma Wei Huang Jiahui Chen Jusheng Bao Chen Chen Yongsheng Zhou Xuchun Wang Junming Chen Jungan Wang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第6期1-7,I0001,共8页
Perovskite solar cells(PSCs)have emerged as a promising photovoltaic technology because of their high light absorption coefficient,long carrier diffusion distance,and tunable bandgap.However,PSCs face challenges such ... Perovskite solar cells(PSCs)have emerged as a promising photovoltaic technology because of their high light absorption coefficient,long carrier diffusion distance,and tunable bandgap.However,PSCs face challenges such as hysteresis effects and stability issues.In this study,we introduced a novel approach to improve film crystallization by leveraging 4-tert-butylpyridine(TBP)molecules,thereby enhancing the performance and stability of PSCs.Our findings demonstrate the effective removal of PbI_(2)from the perovskite surface through strong coordination with TBP molecules.Additionally,by carefully adjusting the concentration of the TBP solution,we achieved enhanced film crystallinity without disrupting the perovskite structure.The TBP-treated perovskite films exhibit a low defect density,improved crystallinity,and improved carrier lifetime.As a result,the PSCs manufactured with TBP treatment achieve power conversion efficiency(PCE)exceeding 24%.Moreover,we obtained the PCE of 21.39%for the 12.25 cm^(2)module. 展开更多
关键词 4-tert-butylpyridine Film crystallization Perovskite solar cells Power conversion efficiency stability improvement
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Incorporation of Ionic Conductive Polymers into Sulfide Electrolyte-Based Solid-State Batteries to Enhance Electrochemical Stability and Cycle Life
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作者 Juhyoung Kim Woonghee Choi +1 位作者 Seong-Ju Hwang Dong Wook Kim 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2024年第6期4-12,共9页
Sulfide-based inorganic solid electrolytes are promising materials for high-performance safe solid-state batteries.The high ion conductivity,mechanical characteristics,and good processability of sulfide-based inorgani... Sulfide-based inorganic solid electrolytes are promising materials for high-performance safe solid-state batteries.The high ion conductivity,mechanical characteristics,and good processability of sulfide-based inorganic solid electrolytes are desirable properties for realizing high-performance safe solid-state batteries by replacing conventional liquid electrolytes.However,the low chemical and electrochemical stability of sulfide-based inorganic solid electrolytes hinder the commercialization of sulfide-based safe solid-state batteries.Particularly,the instability of sulfide-based inorganic solid electrolytes is intensified in the cathode,comprising various materials.In this study,carbonate-based ionic conductive polymers are introduced to the cathode to protect cathode materials and suppress the reactivity of sulfide electrolytes.Several instruments,including electrochemical spectroscopy,X-ray photoelectron spectroscopy,and scanning electron microscopy,confirm the chemical and electrochemical stability of the polymer electrolytes in contact with sulfide-based inorganic solid electrolytes.Sulfide-based solid-state cells show stable electrochemical performance over 100 cycles when the ionic conductive polymers were applied to the cathode. 展开更多
关键词 composite cathode electrochemical stability ionic conductive polymer solid-state battery sulfide solid electrolyte
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Three-dimensional stability calculation method for high and large composite slopes formed by mining stope and inner dump in adjacent open pits
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作者 Zuchao Liang Dong Wang +4 位作者 Guanghe Li Guangyu Sun Mingyu Yu Dong Xia Chunjian Ding 《International Journal of Mining Science and Technology》 SCIE EI CAS CSCD 2024年第4期507-520,共14页
The 2D limit equilibrium method is widely used for slope stability analysis.However,with the advancement of dump engineering,composite slopes often exhibit significant 3D mechanical effects.Consequently,it is of signi... The 2D limit equilibrium method is widely used for slope stability analysis.However,with the advancement of dump engineering,composite slopes often exhibit significant 3D mechanical effects.Consequently,it is of significant importance to develop an effective 3D stability calculation method for composite slopes to enhance the design and stability control of open-pit slope engineering.Using the composite slope formed by the mining stope and inner dump in Baiyinhua No.1 and No.2 open-pit coal mine as a case study,this research investigates the failure mode of composite slopes and establishes spatial shape equations for the sliding mass.By integrating the shear resistance and sliding force of each row of microstrip columns onto the bottom surface of the strip corresponding to the main sliding surface,a novel 2D equivalent physical and mechanical parameters analysis method for the strips on the main sliding surface of 3D sliding masses is proposed.Subsequently,a comprehensive 3D stability calculation method for composite slopes is developed,and the quantitative relationship between the coordinated development distance and its 3D stability coefficients is examined.The analysis reveals that the failure mode of the composite slope is characterized by cutting-bedding sliding,with the arc serving as the side interface and the weak layer as the bottom interface,while the destabilization mechanism primarily involves shear failure.The spatial form equation of the sliding mass comprises an ellipsoid and weak plane equation.The analysis revealed that when the coordinated development distance is 1500 m,the error rate between the 3D stability calculation result and the 2D stability calculation result of the composite slope is less than 8%,thereby verifying the proposed analytical method of equivalent physical and mechanical parameters and the 3D stability calculation method for composite slopes.Furthermore,the3D stability coefficient of the composite slope exhibits an exponential correlation with the coordinated development distance,with the coefficient gradually decreasing as the coordinated development distance increases.These findings provide a theoretical guideline for designing similar slope shape parameters and conducting stability analysis. 展开更多
关键词 Composite slope Destabilization mechanism 3D mechanical effect Three-dimensional stability Coordinated development distance
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Flow-Slip Stability Behavior of Calcareous Sand Treated by Microbially Induced Carbonate Precipitation Technology
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作者 KOU Hailei HE Xiang +4 位作者 HOU Wangxiang LI Zhendong ZHANG Xixin AN Zhaotun LU Jiaqing 《Journal of Ocean University of China》 SCIE CAS CSCD 2024年第5期1381-1389,共9页
Flow-slip damage commonly destabilizes coastal slopes.Finding a slope stabilization method for calcareous sands in the South China Sea is crucial.Microbially induced calcite precipitation is a promising,eco-friendly m... Flow-slip damage commonly destabilizes coastal slopes.Finding a slope stabilization method for calcareous sands in the South China Sea is crucial.Microbially induced calcite precipitation is a promising,eco-friendly method for soil stabilization.This study investigates the effect of microbial treatments,initial relative density,initial cell pressure,and initial stress ratio on the flow-slip stability of calcareous sand specimens by using constant shear drained tests.These tests lay the foundation to study the mechanical instability of sand slopes.Results show that the microbial-treated specimens maintain stable stresses longer,take longer to reach the instability,and withstand larger volumetric strains.Microbial treatment effectively enhances sand stability under constant shear drainage,with improvements amplified by higher initial relative density and initial cell pressure.In addition,a smaller initial stress ratio reduces shear effects on the specimen and increases resistance to flow slides.Microanalysis reveals that the flow-slip stability of calcareous sand slopes is enhanced by contact cementation,particle coating,void filling,and mutual embedment of calcium carbonate crystals. 展开更多
关键词 clcareous sand microbially induced carbonate precipitation constant shear drained tests flow-slip stability
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Transient Damping of Virtual Synchronous Generator for Enhancing Synchronization Stability during Voltage Dips
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作者 Shitao Sun Yu Lei +4 位作者 Guowen Hao Yi Lu Jindong Liu Zhaoxin Song Jie Zhang 《CES Transactions on Electrical Machines and Systems》 EI CSCD 2024年第2期143-151,共9页
Virtual synchronous generators(VSGs)are widely introduced to the renewable power generation,the variablespeed pumped storage units,and so on,as a promising gridforming solution.It is noted that VSGs can provide virtua... Virtual synchronous generators(VSGs)are widely introduced to the renewable power generation,the variablespeed pumped storage units,and so on,as a promising gridforming solution.It is noted that VSGs can provide virtual inertia for frequency support,but the larger inertia would worsen the synchronization stability,referring to keeping synchronization with the grid during voltage dips.Thus,this paper presents a transient damping method of VSGs for enhancing the synchronization stability during voltage dips.It is revealed that the loss of synchronization(LOS)of VSGs always accompanies with the positive frequency deviation and the damping is the key factor to remove LOS when the equilibrium point exists.In order to enhance synchronization stability during voltage dips,the transient damping is proposed,which is generated by the frequency deviation in active power loop.Additionally,the proposed method can realize seamless switching between normal state and grid fault.Moreover,detailed control design for transient damping gain is given to ensure the synchronization stability under different inertia requirements during voltage dips.Finally,the experimental results are presented to validate the analysis and the effectiveness of the improved transient damping method. 展开更多
关键词 Virtual synchronous generator(VSG) Transient damping Synchronization stability Voltage dips
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Identifying the stability of housekeeping genes to be used for the quantitative real-time PCR normalization in retinal tissue of streptozotocin-induced diabetic rats
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作者 Muhammad Zulfiqah Sadikan Nurul Alimah Abdul Nasir +2 位作者 Mohammad Johari Ibahim Igor Iezhitsa Renu Agarwal 《International Journal of Ophthalmology(English edition)》 SCIE CAS 2024年第5期794-805,共12页
AIM:To investigate the stability of the seven housekeeping genes:beta-actin(ActB),glyceraldehyde-3-phosphate dehydrogenase(GAPDH),18s ribosomal unit 5(18s),cyclophilin A(CycA),hypoxanthine-guanine phosphoribosyl trans... AIM:To investigate the stability of the seven housekeeping genes:beta-actin(ActB),glyceraldehyde-3-phosphate dehydrogenase(GAPDH),18s ribosomal unit 5(18s),cyclophilin A(CycA),hypoxanthine-guanine phosphoribosyl transferase(HPRT),ribosomal protein large P0(36B4)and terminal uridylyl transferase 1(U6)in the diabetic retinal tissue of rat model.METHODS:The expression of these seven genes in rat retinal tissues was determined using real-time quantitative reverse transcription polymerase chain reaction(RT-qPCR)in two groups;normal control rats and streptozotocininduced diabetic rats.The stability analysis of gene expression was investigated using geNorm,NormFinder,BestKeeper,and comparative delta-Ct(ΔCt)algorithms.RESULTS:The 36B4 gene was stably expressed in the retinal tissues of normal control animals;however,it was less stable in diabetic retinas.The 18s gene was expressed consistently in both normal control and diabetic rats’retinal tissue.That this gene was the best reference for data normalisation in RT-qPCR studies that used the retinal tissue of streptozotocin-induced diabetic rats.Furthermore,there was no ideal gene stably expressed for use in all experimental settings.CONCLUSION:Identifying relevant genes is a need for achieving RT-qPCR validity and reliability and must be appropriately achieved based on a specific experimental setting. 展开更多
关键词 housekeeping genes stability real-time reverse transcription polymerase chain reaction retinal tissue streptozotocin-induced diabetic rats
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Effect of external and internal cues on core muscle activation during the Sahrmann five-level core stability test
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作者 Skyla Stifter Jessie McCaffrey +2 位作者 Tyler Nichols Ayse Ozcan Edeer Justine Ward 《World Journal of Methodology》 2025年第1期95-104,共10页
BACKGROUND Pain in the back or pelvis or fear of back pain may affect the timing or cocontraction of the core muscles.In both static and dynamic movements,the Sahrmann core stability test provides an assessment of cor... BACKGROUND Pain in the back or pelvis or fear of back pain may affect the timing or cocontraction of the core muscles.In both static and dynamic movements,the Sahrmann core stability test provides an assessment of core muscle activation and a person's ability to stabilize the lumbopelvic complex.Preparatory cues and images can be used to increase the activation of these muscles.To attain optimal movement patterns,it will be necessary to determine what cueing will give the most effective results for core stability.AIM To investigate the effects of external and internal cues on core muscle activation during the Sahrmann five-level core stability test.METHODS Total 68 participants(21.83±3.47 years)were randomly allocated to an external(n=35)or internal cue group(n=33).Participants performed the Sahrmann fivelevel core stability test without a cue as baseline and the five-level stability exercises with an internal or external cue.External cue group received a pressure biofeedback unit(PBU),and the internal cue group received an audio cue.A Delsys Trigno^(TM)surface electromyography unit was used for muscle activation from the rectus abdominis,external oblique,and transverse abdominis/internal oblique muscles.RESULTS Linear mixed effects model analysis showed that cueing had a significant effect on core muscle activation(P=0.001);however,there was no significant difference between cue types(internal or external)(P=0.130).CONCLUSION Both external and internal cueing have significant effects on core muscle activation during the Sahrmann five-level core stability test and the PBU does not create higher muscle activation than internal cueing. 展开更多
关键词 External cue Internal cue Muscle activation Core muscles Lumbopelvic stability Pressure biofeedback unit
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Retrospective Case Series on The Enduring Rotational Stability of The AcrySof IQ Toric Intraocular Lens in Cataract Patients Suffering from Myopia
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作者 Jie Luo Yang Liu +2 位作者 Bing Wang Lei Li Junyu Yang 《Journal of Clinical and Nursing Research》 2024年第3期207-214,共8页
Objective:To analyze the enduring rotational steadiness of AcrySof IQ Toric intraocular lens(IOL)in cataract patients suffering from myopia in a long-term study.Methods:A retrospective study was conducted on a case se... Objective:To analyze the enduring rotational steadiness of AcrySof IQ Toric intraocular lens(IOL)in cataract patients suffering from myopia in a long-term study.Methods:A retrospective study was conducted on a case series involving 78 patients.A total of 120 eyes with an axial length(AL)ranging from 24-30 mm and corneal astigmatism≥1.50 D underwent implantation of AcrySof IQ Toric IOL guided by the version navigation system.The eyes were divided into two groups based on AL.Group A included 60 eyes with high myopia(AL≥26 mm),while Group B consisted of eyes with low to moderate myopia(24 mm≤AL<26 mm).Data on the preoperative AL were collected.Measurements were taken for residual astigmatism,the best corrected visual acuity(BCDVA),corneal astigmatism,and IOL rotation occurring between 24-and 48-months post-surgery.The percentage of eyes with an IOL rotation of under 5°and 10°was analyzed.Results:The mean length of follow-up times was recorded as 34.27±4.98,and the average rotation was 2.73±1.29°.Group A exhibited a slightly higher average rotation of 2.87±1.31°,compared to the rotation of 2.59±1.27°observed in Group B.At both the 24-36 month and 26-48 month post-operation marks,the degree of IOL rotation did not show a statistically significant difference between the two groups,with none of the patients experiencing a rotation exceeding 10°(P>0.05).The percentage of rotation degrees under 5°was recorded as 98.22%.After the procedure,the BCDVA was 0.1322±0.03 LogMAR.There was a substantial increase in theχvalue after the operation as compared to the pre-operativeχ^(2) value(χ^(2)=76.79).The standard deviation of preoperative corneal astigmatism was statistically significant(P<0.05)at 2.17±1.08 D.Following the surgical procedure,the remaining astigmatism was measured at 0.41±0.26 D.The data showed a notable gap in statistical significance(t=4.281,P<0.05).Conclusion:The AcrySof Toric IOL was a reliable solution for managing corneal astigmatism in cataract patients with myopia,demonstrating excellent long-term rotational stability. 展开更多
关键词 ASTIGMATISM Long-term MYOPIA Rotational stability
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Striving for progress while maintaining stability is the most important goal of China's textile industry--Interview with Mr.Sun Ruizhe,President of the China National Textile and Apparel Council,International Textile Manufacturers Federation
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作者 Sun Ruizhe 《China Textile》 2023年第3期40-43,共4页
The past year was an unusual year.After experiencing the great impact of the COVID-19 and conflicts between countries,the world economy continued to be in a downturn,and various risks and challenges far exceeded peopl... The past year was an unusual year.After experiencing the great impact of the COVID-19 and conflicts between countries,the world economy continued to be in a downturn,and various risks and challenges far exceeded people's expectations.In the past few years,the world and times are changing in an unprecedented way.Faced with risks and challenges,China's textile industry,with tenacity,patience,firmness and decisiveness,has passed the most difficult time and explored the way to survive in difficulties. 展开更多
关键词 continued industry stability
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《植物品种DUS测试原理与技术》课程教学改革与实践
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作者 谢彦周 刘玉秀 +3 位作者 李晓燕 宋瑜龙 陈亮 李学军 《中国种业》 2024年第7期76-78,共3页
在“加快推进种业振兴、打好种业翻身仗”的国家战略指引下,为了更有效地培养种业高级人才,西北农林科技大学农学院种子科学与工程专业教学团队针对《植物品种DUS测试原理与技术》这门课程,从教学内容的优化、教学方法的革新、教学实践... 在“加快推进种业振兴、打好种业翻身仗”的国家战略指引下,为了更有效地培养种业高级人才,西北农林科技大学农学院种子科学与工程专业教学团队针对《植物品种DUS测试原理与技术》这门课程,从教学内容的优化、教学方法的革新、教学实践的加强和课程考核的科学化等多个方面进行了深入的教学改革探索。教学团队成功打造了一套创新教学模式,该模式显著提升了教学质量,并有效地激发了学生的学习积极性,为培养种业领域的优秀人才奠定了坚实基础。 展开更多
关键词 种业 植物品种 dus测试 教学改革 实践
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我国丝瓜品种选育与保护现状及DUS测试
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作者 钟海丰 钟声远 +3 位作者 陈剑锋 陈宇华 林觅 刘中华 《东南园艺》 2024年第2期150-160,共11页
在提倡新质生产力的当下,我国丝瓜优异种质资源的充分挖掘以及品种特异性、一致性和稳定性(DUS)测试执行力和业界影响力的不断强化,对丝瓜产业发展至关重要。回顾了我国近20年来丝瓜种质资源收集保存与评价,及围绕早熟、抗病、耐冷耐热... 在提倡新质生产力的当下,我国丝瓜优异种质资源的充分挖掘以及品种特异性、一致性和稳定性(DUS)测试执行力和业界影响力的不断强化,对丝瓜产业发展至关重要。回顾了我国近20年来丝瓜种质资源收集保存与评价,及围绕早熟、抗病、耐冷耐热、丰产优质等育种目标的品种选育进展,分析了新品种保护现状;解析了丝瓜品种DUS测试指南性状构成、观测方法;归纳总结了近似品种筛选、种子催芽、性状观测和特异性判定在丝瓜品种DUS测试中的应用;指出了丝瓜品种DUS测试中存在测试水平、标准品种、性状表达状态等存在的问题,进一步提出了丝瓜新品种选育创新的发展对策,可综合应用现代育种技术,实现多元化育种目标的产业需求,并适时启动丝瓜品种DUS测试指南修订,以期推动丝瓜产业高质量发展。 展开更多
关键词 丝瓜 品种选育 品种保护 dus测试
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柚类种质资源DUS测试数量性状分级研究
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作者 陈璞 徐振江 +4 位作者 江东 易静 苏穆清 邓超 饶得花 《果树学报》 CAS CSCD 北大核心 2024年第9期1885-1902,共18页
【目的】验证中国柑橘属DUS测试指南中数量性状对柚类种质资源的适应性,为更客观更科学地描述柚类数量性状和修订柑橘属DUS测试指南提供参考。【方法】以中国柑橘属测试指南为标准,对117份柚类种质资源的25个数量性状进行数据采集,根据... 【目的】验证中国柑橘属DUS测试指南中数量性状对柚类种质资源的适应性,为更客观更科学地描述柚类数量性状和修订柑橘属DUS测试指南提供参考。【方法】以中国柑橘属测试指南为标准,对117份柚类种质资源的25个数量性状进行数据采集,根据各性状的特点选择合适的分级方法并确定分级范围。【结果】25个数量性状品种内变异系数在2.96%~26.96%之间,品种间变异系数在10.33%~62.90%之间,大部分数量性状数据的多态性和稳定性较好;根据正态性检验结果对25个数量性状进行分级,得到了25个数量性状的分级标准,与柑橘属测试指南的分级数相比:花萼直径、果形指数、汁胞长度由3级增为5级,花瓣长度、花瓣宽度、叶片长度、叶片宽度、果皮厚度由9级减为7级,花瓣指数、叶形指数、中心柱大小、囊瓣数、果汁含量、可溶性固形物含量由9级减为5级,对果实质量、果实纵径和果实横径3个性状分别制定了柚和葡萄柚的分级标准;该分级标准下25个数量性状的多样性指数变化范围为0.878~1.954,性状间的相似系数分布在-0.69~0.91之间;通过主成分分析得到6个主成分,累积贡献率达72.76%。【结论】初步建立了柚类种质资源25个数量性状的分级指标,对柚类品种的性状评价、利用及良种选育具有一定指导意义,同时为中国柚类种质鉴定和DUS测试指南修订提供参考。 展开更多
关键词 柚类 dus测试 数量性状 分级
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基于DUS测试性状的贵州水稻品种综合分析
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作者 焦爱霞 张丽娜 +5 位作者 李娟 张浩 周欢欢 莫远琪 韦启迪 霍可以 《西南农业学报》 CSCD 北大核心 2024年第8期1655-1668,共14页
【目的】明确贵州水稻品种资源的现状及DUS测试[品种特异性(可区别性,Distinctness)、一致性(Uniformity)和稳定性(Stability)测试]性状在品种评价中的作用,为培育具有优良综合特性的水稻品种时提供表型选择的指导,为高效水稻DUS测试提... 【目的】明确贵州水稻品种资源的现状及DUS测试[品种特异性(可区别性,Distinctness)、一致性(Uniformity)和稳定性(Stability)测试]性状在品种评价中的作用,为培育具有优良综合特性的水稻品种时提供表型选择的指导,为高效水稻DUS测试提供理论支持。【方法】采用遗传多样性分析、相关性分析、聚类分析及主成分分析等方法,研究贵州250份水稻品种的遗传多样性、综合表现及测试性状对品种的测试性能。【结果】表型分析表明,部分目测性状分布集中,倒二叶叶舌形状均为二裂,96.8%的水稻品种具有直立、半直立的生长习性,株型紧凑。剑叶初期,有99.2%的品种表现为直立、半直立状态,而96.0%的品种其基部茎节处于包裹状态;成熟期,91.2%的穗部明显下弯,且97.2%的谷粒外颖呈浅黄色,仅有1份品种的谷粒外颖有修饰色。对14个测量性状进行表型变异及多样性分析,除结实率外,其余性状具有丰富的遗传变异,变异系数为6.51%~20.82%,其中,每穗粒数的变异系数最大,结实率的变异系数最小。相关性分析揭示,各性状间均呈现不同程度的相关性,其中8对性状间达到显著水平,另外43对性状间呈极显著水平。通过聚类分析,测试品种被分为4大主要类群,第Ⅰ类群包含68份样品,其中产量相关性状均值最高;第Ⅱ类群有25份样品,每穗粒数明显高于其他类群;第Ⅲ类群体包括67份样品,具有最矮的茎秆;第IV类群体占总品种数的36%,在穗长、谷粒(糙米)长度方面的均值最高,综合表现最为出色。隶属函数法的分析结果表明,在所测量的性状中,剑叶长度、穗长、谷粒性状等10个性状对测试品种的综合特性有显著影响。在综合评价(D值)最高的10份测试品种中,有8份恢复系、2份杂交种。通过逐步回归分析,建立品种评价的最优回归方程:Y=-0.707+0.032X_(13)+0.003X_(7)+0.008X_(10)+0.003X_(5)+0.04X_(1)+0.02X_(3)+0.025X_(11)-0.003X_(2)+0.001X_(4)-0.1156×10^(-3)X_(8)。多元线性回归分析显示,每穗粒数分布分散,拟合情况不佳,其余13个性状拟合情况则较好。【结论】在水稻测试指南中,除倒二叶的叶舌形状外,目测性状能够有效地区分不同品种;而对于测量性状,每穗粒数表现出最大的变异系数和遗传多样性指数,是判断品种特异性的有效指标。另外,剑叶长度、穗长、谷粒特性等10个性状是影响测试品种综合评价值的关键因素。 展开更多
关键词 水稻 dus测试 目测性状 测量性状 综合分析
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西洋参DUS测试性状筛选与分级研究
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作者 贾文浩 何旭彤 +4 位作者 张洁 李琳 林红梅 雷秀娟 王英平 《种子》 北大核心 2024年第9期122-130,共9页
为筛选适宜用作国内西洋参品种特异性、一致性和稳定性测试(DUS测试)的性状及分级方法,以51份西洋参种质资源为研究材料,经表型观测、统计分析等方法对34个性状进行筛选,并对筛选后的数量性状进行分级。经变异分析、正态性检验及相关性... 为筛选适宜用作国内西洋参品种特异性、一致性和稳定性测试(DUS测试)的性状及分级方法,以51份西洋参种质资源为研究材料,经表型观测、统计分析等方法对34个性状进行筛选,并对筛选后的数量性状进行分级。经变异分析、正态性检验及相关性分析,共筛选出26个适宜用作DUS测试的性状,包含7个质量性状、2个假质量性状、17个数量性状,并利用主成分分析法从中挑选出6个分组性状。采用最小显著差异(LSD)分级法对筛选后的数量性状进行分级,可分为3~9级。 展开更多
关键词 西洋参 种质资源 dus测试性状 分级
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