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1.
Immunoglobulin G4-related disease (IgG4-RD) is a systemic disorder characterized by tissue fibrosis and intense lymphoplasmacytic infiltration, causing progressive organ dysfunction. Activation-induced cytidine deaminase (AID), a deaminase normally expressed in activated B-cells in germinal centers, edits ribonucleotides to induce somatic hypermutation and class switching of immunoglobulin. While AID expression is strictly controlled under physiological conditions, chronic inflammation has been noted to induce its upregulation to propel oncogenesis. We examined AID expression in IgG4-related ophthalmic disease (IgG4-ROD; n = 16), marginal zone lymphoma with IgG4-positive cells (IgG4+ MZL; n = 11), and marginal zone lymphoma without IgG4-positive cells (IgG4- MZL; n = 12) of ocular adnexa using immunohistochemical staining. Immunohistochemistry revealed significantly higher AID-intensity index in IgG4-ROD and IgG4+ MZL than IgG4- MZL (p < 0.001 and = 0.001, respectively). The present results suggest that IgG4-RD has several specific causes of AID up-regulation in addition to inflammation, and AID may be a driver of oncogenesis in IgG4-ROD to IgG4+ MZL.  相似文献   
2.
This paper presents part of the work ComEd and Quanta Technology have performed to quantify the locational and temporal value of DER to avoid distribution grid upgrade investments. It focuses on the formulation of a robust and efficient algorithm for DER optimal dispatch on a distribution feeder to mitigate the violation of current and voltage limits using the allocated cost of capacity and locational marginal value of real and reactive DER injection/withdrawal.  相似文献   
3.
《Ceramics International》2020,46(13):21343-21350
The transition metal sulfides have gained extensive interest in energy storage devices owing to their unique features. However, the research-based on cobalt, copper and manganese sulfide composites is limited while they are considered as promising contenders for supercapacitor electrodes. The simplest and facile one-step electrodeposition technique was adopted for the direct growth of CuMnS and CoMnS on a Ni-substrate. The electrochemical properties of CuMnS and CoMnS electrodes were investigated and maximum specific capacitances of 1691 and 2290 F/g, respectively, were obtained at 10 A/g current density. Further, these electrodes are investigated with activated carbon (AC) electrode to fabricate asymmetric supercapacitor devices where CoMnS//AC exhibited superior energy density values than CuMnS//AC device. However, both the devices show a relatively uniform capacitance retention rate (~94%) after 2500 charging-discharging cycles. Furthermore, the role of capacitive- and diffusive-controlled contributions in the charge storage phenomenon of supercapacitor devices are explicitly scrutinized by employing Dunn's model. Co-electrodeposition of transition metal sulfides has great potential as electrode material for highly effective supercapacitor devices.  相似文献   
4.
5.
The effect of the operating voltage on the performance of a microbial electrolysis cell (MEC) equipped with both a bioanode and a biocathode for hydrogen production is reported. Chronoamperometry tests ranged between 0.3 and 2.0 V were carried out after both bioelectrodes were developed. A maximum current density up to 1.6 A m−2 was recorded at 1.0 V with hydrogen production rate of nearly 6.0 ± 1.5 L m−2 cathode day−1. Trace amounts of methane, acetone and formate were detected in cathode's headspace and catholyte which followed the same trend as hydrogen production rate. Meanwhile substrate consumption in anolyte also followed the trend of hydrogen production and current density changes. The bioanode could utilise up to 95% of acetate in the tested voltage ranges, however, at a cell voltage of 2.0 V the bioanode's activity stopped due to oxygen evolution from water hydrolysis. Cyclic voltammograms revealed that the bioanode activity was vital to maintain the functionality of the whole system. The biocathode relied on the bioanode to maintain its potential during the hydrogen evolution. The overall energy efficiency recovered from both bioanode and external power in terms of hydrogen production at the cathode was determined as 29.4 ± 9.0%, within which substrate oxidation contributed up to nearly 1/3 of the total energy marking the importance of bioanode recovering energy from wastewater to reduce the external power supply.  相似文献   
6.
The influence of neodymium and nickel substitution on structural and dielectric parameters was investigated in strontium-barium X-type hexagonal ferrites having composition SrBaCu2?xNixNdyFe28?yO46 (x = 0, 0.2, 0.4, 0.6, 0.8, 1 and y = 0, 0.02, 0.04, 0.06, 0.08, 0.1). Sol-gel method was employed for synthesizing these hexagonal ferrites. The XRD plots of all studied materials which were annealed at 1250 °C show single phase characteristics. Lattice parameter ‘c’ increased as a consequence of larger radius of rare earth ion (Nd3+) as compared to (Fe3+), while lattice parameter ‘a’ showed very small variation. The cell volume was obtained in the range 2508.32–2523.75 (Å3). The inclusion of Nd-Ni also affected X-ray density, bulk density and porosity. The FTIR spectroscopy indicated the particular absorption peaks of hexagonal ferrites and it was performed in the range of 500–700 cm?1. On account of Nd-Ni doping, the dielectric constant, dielectric loss and AC-conductivity showed decreasing trend. The occupancy of Nd3+ ions at octahedral site impedes the valence alternation of Fe3+; therefore there was decrease in dielectric permittivity. Ac conductivity has been decreased from 9.14 to 6.49 (Ω cm)?1 at frequency of 2.7 GHz. The Cole-Cole plots of synthesized materials noticeably revealed grain boundary contribution. The appearance of single semi-circle in impedance Cole-Cole graphs confirms the exceptional role of grain boundaries in the conduction process. The considerably lower dielectric parameters of investigated nano X-type ferrites propose their feasibility for high-frequency applications (phase shifters, dielectric resonators, stealth technology etc).  相似文献   
7.
This note reconsiders the marginal density of a threshold moving average process and proposes a simple yet effective numerical algorithm to implement that by solving an associated integral equation. This algorithm can also be applied to calculate stationary probability density or distribution functions of a few other types of nonlinear stationary stochastic processes numerically.  相似文献   
8.
为了使7075铝合金薄壁件表面喷丸加工应力得到松弛和均化,运用ANSYS建立平台式振动时效有限元模型,通过振动模态和谐响应分析,获得最佳激振频率和试样装夹位置。在此基础上,将薄壁框架件置于平台上进行振动时效处理,以验证仿真分析结果,评价其对试样表面应力作用效果。结果表明:在亚共振频率为112 Hz时,试样在平台零振幅和最大弯曲位置处分别对称布置,时效后表面均形成应力松弛,松弛率分别为29.5%和33.3%,不均匀波动分别为20.3%和20.7%,而沿振动方向松弛程度不均匀,说明激振力造成了材料表面组织屈服,且屈服程度与应力强度有关。提出再时效-位置交叠方法,使应力松弛不均匀度分别下降到9.9%和15.9%,应力均化得到改善,该研究工作为薄壁类零件表面应力均匀化提供了参考。  相似文献   
9.
奶酪中的内酯类物质主要包括γ-内酯和δ-内酯两大类,它们是奶酪关键气味物质之一,对于奶酪整体风味的形成有着重要作用。本文在查阅相关文献的基础上,对常见奶酪中内酯类物质的组成、香气贡献以及主要内酯物质的浓度范围进行了系统的综述;介绍了GC外标法、峰面积归一化法、超高效液相色谱-串联质谱法、GC-MS内标法、选择离子流动管质谱法、稳定同位素稀释分析法六种内酯类物质主要的定量测定方法;总结了奶酪中内酯类物质的形成机理以及研究者们提出的生物合成调控策略;并对当前研究中存在的问题以及未来研究方向做了归纳与展望。为全面认知奶酪中内酯类香气化合物及其形成和调控,开发更适合国人口味原制奶酪,实现我国奶酪产业转型和升级提供理论参考。  相似文献   
10.
针对直升机自动倾斜器轴承早期微弱故障特征易被强烈背景噪声淹没的问题,提出了一种基于最小熵反褶积(Minimum Entropy Deconvolution,MED)和边际谱的自动倾斜器轴承故障诊断方法。采用MED对采集的振动信号进行滤波降噪,提高了信号的信噪比,突出了轴承早期微弱故障特征;通过Hilbert变换和经验模态分解(Empirical Mode Decomposition,EMD)获取去噪包络信号的本征模态函数(Intrinsic Mode Functions,IMF)集,并引入峭度筛选准则选取合理IMF集计算局部Hilbert边际谱,有效地提取了故障特征频率,能够通过故障特征频率进行故障类型判别。通过某型直升机自动倾斜器故障诊断试验系统验证了该诊断方法的合理性和可行性。  相似文献   
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