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18篇 您的检索式:作者名="Mohsan"
    题名 作者 年代 出处 被引量
1Induction of innate immunity and its perturbation by influenza viruses显示文摘流行性感冒 A 病毒(IAV ) 是引起可怕的损失到人和动物的高度传染的病原体,在地球附近。IAV 首先通过上皮的细胞,和包含一个 5-triphosphate 组的病毒的 RNA 与宿主交往是为经由模式识别受体依赖者的有效天生的免疫的激活的批评扳机的思维正在表明小径。这些导致的有免疫力的回答为病毒的复制和提高的病毒的清理的有效抑制建立主人的抗病毒的国家。然而, IAV 发展了他们能由入侵主人房间的许多机制,围绕主人免疫者回答,并且使用综合并且搬运他们的自己的部件的主人房间的机械,它帮助他们建立成功的感染和复制。在这评论,我们将加亮 IAV 感染怎么刺激主人的分子的机制 IAV 由躲避主人回答的天生的免疫系统和策略。Mohsan Ullah Goraya Song Wang Muhammad Munir Ji-Long Chen 2015Protein & Cell2015,6,10:8
2Update on management of gastric varices显示文摘Gastric varices(GV) have different physiology and clinical characteristics compared to oesophageal varices(OV). There is little information about the management of GV. Most part of the recommendations is extrapolated from studies where the majority of participants had OV. Thus, most recommendations lack of strong evidence. This is a comprehensive review on all aspects of management of GV, i.e., primary, secondary prophylaxis and management of acute bleeding. The papers on which international societies' recommendations are based are scrutinised in this review and areas of research are identified.Louisa J Vine Mohsan Subhani Juan G Acevedo 2019World Journal of Hepatology2019,11,3:3
3牛顿加热条件下近弹性表面Jeffrey流变流体中浮游微生物的游动和纳米流体的悬浮特征显示文摘生物对流在可持续、环境友好型燃料电池技术中具有重要作用。这种设计的生物数学模型需要不断的改进,以在实验和计算结果中取得强有力的一致性。实际上,微生物在工业产品的制造过程中,特别是在肥料工业中,运输各种成分。通过与物质散热相关的物理现象来测量分子结构的传热特性。受仿生燃料电池近壁流动现象的启发,本文运用数值方法研究了在靠近伸展壁面的流变性Jeffery流体中运动的旋控微生物的横向游动。通过适当的相似度变换,将主导物理模型转化为非线性ODE系统。采用R-K Fehlberg打靶法在数学软件上进行数值模拟,得到所有物理条件对旋控微生物的速度、温度、浓度和体积分数的影响。结果表明,由于布朗运动和热泳参数的影响,表面的热通量和质量通量以及运动微生物的密度均有所下降。与已有文献进行比较,验证对流边界条件下极限情况结果的有效性。Siddra RANA Rashid MEHMOOD M.M.BHATTI Mohsan HASSAN 2021Journal of Central South University2021,28,11:2
4Phosphorus and sulfur application improves the chickpea productivity under rainfed conditions 显示文摘Islam M Mohsan S Afzal S 2011In- ternational Journal of Agriculture and Biology2011,13,5:1
5Chemotheraptic management of alternaria black spot (Alternaria Alternata) in mango fruits显示文摘Muhammad Mohsan Muhammad Intizar-ul-Hassan Liaquat Ali 2011Journal of Agricul- tural Research2011,49,4:1
6CureShrinkage Characterization and Modeling of a PolyesterResin Containing Lowprofile Additives 显示文摘Mohsan Haider Pascal Hubml and'Larry Lessard 2007Composites :Part A2007,38,3:1
7Cure shrinkage characterization and mod-eling of a polyester resin containing low profile additives显示文摘Mohsan Haider Pascal Hubert Larry Lessard 0,,38:1
8Cure Shrinkage Characterization and Modeling of a Polyester Resin Containing Low Profile Additives显示文摘Mohsan Haider Pascal Hubert Larry Lessard 2007Applied Science and Manufacturing2007,38,3:1
9Cure shrinkage characterization and modeling of a polyester resin contai- ning low profile additives显示文摘MOHSAN H PASCAL H LARRY L 2007Composites2007,,38:1
10Cure shrinkage characteriza tion and modeling of a polyester resin containing low profile additives显示文摘Mohsan H Pascal H Larry L 2007Compos: Part A2007,38,:1
11Thermomechanical response of aluminum alloys under the combined action of tensile loading and laser irradiations显示文摘This study reports the investigation of the thermomechanical behavior of aluminum alloys(Al-1060, Al-6061, and Al-7075) under the combined action of tensile loading and laser irradiations. The continuous wave ytterbium fiber laser(wavelength 1080 nm) was employed as the irradiation source, while tensile loading was provided by the tensile testing machine. The effects of various pre-loading and laser power densities on the failure time, temperature distribution, and the deformation behavior of aluminum alloys are analyzed. The experimental results represent the significant reduction in failure time for higher laser power densities and for high preloading values, which implies that preloading may contribute a significant role in the failure of the material at elevated temperature. Fracture on a microscopic scale was predominantly ductile comprising micro-void nucleation, growth, and coalescence. The Al-1060 specimens behaved plastically to some extent, while Al-6061 and Al-7075 specimens experienced catastrophic failure. The reason and characterization of material failure by tensile and laser loading are explored in detail. A comparative behavior of under-tested materials is also investigated. This work suggests that studies considering only combined loading are not enough to fully understand the mechanical behavior of under-tested materials. For complete characterization, one should consider the effect of heating as well as loading rate and the corresponding involved processes with the help of thermomechanical coupling and the thermal elastic-plastic theory.Mohsan Jelani 李泽文 沈中华 Maryam Sardar 2018Chinese Physics B2018,27,3:0
12Numerical Simulation of Reiner–Rivlin Nanofluid Flow under the Influence of Thermal Radiation and Activation Energy over a Rotating Disk显示文摘In current study,the numerical computations of Reiner–Rivlin nanofluid flow through a rotational disk under the influence of thermal radiation and Arrhenius activation energy is considered.For innovative physical situations,the motile microorganisms are incorporated too.The multiple slip effects are considered in the boundary conditions.The bioconvection of motile microorganism is utilized alongside nanofluids to provide stability to enhanced thermal transportation.The Bioconvection pattern in various nanoparticles accredits novel applications of biotechnology like the synthesis of biological polymers,biosensors,fuel cells,petroleum engineering,and the natural environment.By deploying some suitable similarity transformation functions,the governing partial differential equations(PDEs)of the flow problem are rehabilitated into dimensionless forms.The accomplished ordinary differential equations(ODEs)are solved numerically through the bvp4c scheme via a built-in function in computational MATLAB software.The upshots of some prominent physical and bioconvection parameters including wall slip parameters,thermophoresis parameter,Brownian motion parameter,Reiner–Revlin nanofluid parameter,Prandtl number,Peclet number,Lewis number,bioconvection Lewis number,and the mixed convection parameter against velocity,temperature,nanoparticles concentration,and density of motile microorganism profiles are dichotomized and pondered through graphs and tables.The presented computations show that the velocity profiles are de-escalated by the wall slip parameters while the thermal and solutal fields are upgraded with augmentation in thermophoresis number and wall slip parameters.The presence of thermal radiation enhances the temperature profile of nanofluid.The concentration profile of nanoparticles is boosted by intensification in activation energy.Furthermore,the increasing values of bioconvection Lewis number and Peclet number decay the motile microorganisms’field.Arfan Shahzad Muhammad Imran Muhammad Nawaz Naeem Mohsan Raza 2022Computer Modeling in Engineering & Sciences2022,,6:0
13Dramatic changes in anatomical traits of a C4 grass Chrysopogon serrulatus Trin.(Poaceae)over a 1000 m elevational gradient显示文摘Chrysopogon serrulatus(false beard-grass)is a dominant component of vegetation in the foothills of the Himalayas.To study whole plant morphology,individuals of C.serrulatus were collected from three plots at each of six locations spanning from 400 to 1,400 m.The population colonizing the highest elevation modifications in different plant organs.Roots showed increased metaxylem number and area.In the stem,especially outside of the vascular tissue,there was intensive sclerification indicative of increased xeromorphy as a survival strategy.At the highest elevation,leaves were wider;aerenchyma formation and increased sclerification were noted in the leaf sheath;and a greater proportion of storage parenchyma was observed in the leaf blade,all indicators of succulence.In contrast,leaves at lower elevations had xeric morphological features such as increased epidermal thickness,sclerification and more developed metaxylem area.In conclusion,shifting of morphological features in below-and above-ground plant parts of C.serrulatus were linked to shifts in environmental factors along this elevation gradient,thus enabling the successful distribution of this species along this elevation gradient.FATIMA Sana HAMEED Mansoor AHMAD Farooq AHMAD Muhammad Sajid Aqeel ANWAR Majid MUNIR Mahwish ASHRAF Muhammad SHAH Syed Mohsan Raza BASHARAT Sana AHMAD Iftikhar KHALIL Sangam 2023Journal of Mountain Science2023,20,5:0
14Bioconvection Cross Diffusion Effects on MHD Flow of Nanofluids over Three Different Geometries with Melting显示文摘Currently,nanofluid is a hot area of interest for researchers.The nanofluid with bioconvection phenomenon attracted the researchers owing to its numerous applications in the field of nanotechnology,microbiology,nuclear science,heat storage devices,biosensors,biotechnology,hydrogen bomb,engine of motors,cancer treatment,the atomic reactor,cooling of devices,and in many more.This article presents the bioconvection cross-diffusion effects on the magnetohydrodynamic flow of nanofluids on three different geometries(cone,wedge,and plate)with mixed convection.The temperature-dependent thermal conductivity,thermal diffusivity,and Arrhenius activation energy applications are considered on the fluid flow with melting phenomenon.The flow is analyzed under thermal and solutal Robin’s conditions.The problem is formulated in the mathematical formulation of partial differential equations(PDEs).The similarity transformations are applied to diminish the governing nonlinear coupled boundary value problems into higher-order non-linear ordinary differential equations(ODEs).The resulting expressions/equation numerically tackled utilizing the famous bvp4c package by MATLAB for various interesting parameters.The results were physically and numerically calculated through graphics and tables for the velocity field,energy distribution,nanoparticles concentration,and microorganisms profile for numerous parameters.From the obtained results,we discern that the transfer of heat and mass coefficient is high over a plate and cone in the flow,respectively.The velocity profile is reduced via a larger magnetic parameter.Temperaturedependent thermal conductivity enhances the thermal field.Larger thermophoresis enhanced the concentration of nanoparticles.The microorganisms’Biot number boosts the microorganism’s profile.Tahir Kamran Muhammad Imran Muhammad N.Naeem Mohsan Raza 2022Computer Modeling in Engineering & Sciences2022,,5:0
15A comprehensive review of optical wireless power transfer technology显示文摘Ground-breaking optical wireless power transfer(OWPT)techniques have gained significant attention from both academia and industry in recent decades.Powering remote systems through laser diodes(LDs)to either operate devices or recharge batteries offers several benefits.Remote LDs can remove the burden of carrying extra batteries and can reduce mission time by removing battery swap-time and charging.Apart from its appealing benefits,laser power transfer(LPT)is still a challenging task due to its low transfer efficiency.In this paper,we discuss the necessity and feasibility of OWPT and discuss several projects,working principle,system design,and components.In addition,we show that OWPT is an essential element to supply power to Internet-of-Things(IoT)terminals.We also highlight the impacts of dynamic OWPT.We outline several OWPT techniques including optical beamforming,distributed laser charging(DLC),adaptive-DLC(ADLC),simultaneous lightwave information and power transfer(SLIPT),Thing-to-Thing(T2T)OWPT,and high intensity laser power beaming(HILPB).We also deal with laser selection,hazard analysis,and received photovoltaic(PV)cell selection for OWPT systems.Finally,we discuss a range of open challenges and counter measures.We believe that this review will be helpful in integrating research and eliminating technical uncertainties,thereby promoting progress and innovation in the development of OWPT technologies.Syed Agha Hassnain MOHSAN Haoze QIAN Hussain AMJAD 2023Frontiers of Information Technology & Electronic Engineering2023,24,6:0
16Edge-Computing with Graph Computation:A Novel Mechanism to Handle Network Intrusion and Address Spoofing in SDN显示文摘Software Defined Networking(SDN)being an emerging network control model is widely recognized as a control and management platform.This model provides efficient techniques to control and manage the enterprise network.Another emerging paradigm is edge computing in which data processing is performed at the edges of the network instead of a central controller.This data processing at the edge nodes reduces the latency and bandwidth requirements.In SDN,the controller is a single point of failure.Several security issues related to the traditional network can be solved by using SDN central management and control.Address Spoofing and Network Intrusion are the most common attacks.These attacks severely degrade performance and security.We propose an edge computing-based mechanism that automatically detects and mitigates those attacks.In this mechanism,an edge system gets the network topology from the controller and the Address Resolution Protocol(ARP)traffic is directed to it for further analysis.As such,the controller is saved from unnecessary processing related to addressing translation.We propose a graph computation based method to identify the location of an attacker or intruder by implementing a graph difference method.By using the correct location information,the exact attacker or intruder is blocked,while the legitimate users get access to the network resources.The proposed mechanism is evaluated in a Mininet simulator and a POX controller.The results show that it improves system performance in terms of attack mitigation time,attack detection time,and bandwidth requirements.Rashid Amin Mudassar Hussain Mohammed Alhameed Syed Mohsan Raza Fathe Jeribi Ali Tahir 2020Computers, Materials & Continua2020,,12:0
17Prognostic non-invasive biomarkers for all-cause mortality in nonalcoholic fatty liver disease:A systematic review and meta-analysis显示文摘BACKGROUND Non-alcoholic fatty liver disease(NAFLD)represents a growing public health concern,with patients having higher risk of morbidity and mortality.It has a considerably high prevalence in the general population,estimated 20%-40%in Europe,and is asymptomatic until late in the disease course.It is therefore important to identify and validate tools that predict hard outcomes such as mortality for use in clinical practice in risk-stratifying NAFLD patients.AIM To evaluate available evidence on the use of non-invasive test(s)as prognostic factors for mortality in NAFLD.METHODS We performed electronic searches of Medline and EMBASE(Ovid)until 7^(th)January 2021 of studies in NAFLD populations.Prognostic markers included serum biomarkers,non-invasive scoring systems,and non-invasive imaging.The population included all spectrums of disease severity,including NAFLD and non-alcoholic steatohepatitis(NASH).Outcomes included all-cause,and cardiovascular mortality.All non-invasive tests were synthesised in a narrative systematic review.Finally,we conducted a meta-analysis of non-invasive scoring systems for predicting all-cause and cardiovascular mortality,calculating pooled hazard ratios and 95%confidence(STATA 16.1).RESULTS Database searches identified 2850 studies-24 were included.16 studies reported non-invasive scoring systems,10 studies reported individual biomarkers,and 1 study reported imaging modalities.4 studies on non-invasive scoring systems(6324 participants)had data available for inclusion in the meta-analysis.The non-invasive scoring system that performed best at predicting all-cause mortality was NAFLD fibrosis score(NFS)[pHR 3.07(1.62-5.83)],followed by fibrosis-4 index[pHR 3.06(1.54-6.07)],BARD[pHR 2.87(1.27-6.46)],and AST to platelet ratio index[pHR 1.90(1.32-2.73)].NFS was also prognostic of cardiovascular-related mortality[pHR 3.09(1.78-5.34)].CONCLUSION This study reaffirms that non-invasive scoring systems,especially NFS,are reliable prognostic markers of all-cause mortality and cardiovascular mortality in NAFLD patients.These findings can inform clinical practice in risk stratifying NAFLD patients.Nicole Cianci Mohsan Subhani Trevor Hill Amardeep Khanna Dong Zheng Abhishek Sheth Colin Crooks Guruprasad P Aithal 2022World Journal of Hepatology2022,14,5:0
18EFFECT OF THE COMPOSITION OF m-CRESOL/H_2O SOLVENT ON HYDRODYNAMIC PROPERTIES OF NYLON 6显示文摘The intrinsic viscosity [77], Muggins constant (KH), [η]0,α3 and flow activation energy values of nylon 6 have been measured in water/m-cresol (0/100-20/80) systems at different temperatures (20-60癈). It has been found that the intrinsic viscosity, [η]0 andα3 increase with the increase in water contents in m-cresol up to 15% and then decrease. They increase with the increase in temperature irrespective of solvent composition. It has been noted that the percent increase ofα3 is the highest at 60℃and the lowest at 20℃for a particular solvent system. The intrinsic viscosity data obey Arrhenius equation over the considered conditions. The activation energy and the KH values decrease very sharply with the addition of water, giving a minimum value at 15% of water and then increase slowly. The variation of all the parameters has been explained in terms of variation in thermodynamic quality of solvent with the addition of water to m-cresol and change in temperature, resulting in the change of conformational and orientational properties of polymer molecules. This change of solvent quality also results in variation of selective sorption of solvent over the polymer, such as hydrogen bonding, etc.Musa Kaleem Baloch Mohsan Nawaz 2006Chinese Journal of Polymer Science2006,24,4:0
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