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Achalasia: The Current Clinical Dilemma and Possible Pathogenesis
Xingyu Jia,Songfeng Chen,Qianjun Zhuang,Niandi Tan,Mengyu Zhang,Yi Cui,Jinhui Wang,Xiangbin Xing,Yinglian Xiao 대한소화기 기능성질환∙운동학회 2023 Journal of Neurogastroenterology and Motility (JNM Vol.29 No.2
Achalasia is a primary esophageal motility disorder manifested by dysphagia and chest pain that impair patients’ quality of life, and it also leads to chronic esophageal inflammation by food retention and increases the risk of esophageal cancer. Although achalasia has long been reported, the epidemiology, diagnosis and treatment of achalasia are not fully understood. The current clinical dilemma of achalasia is mainly due to its unclear pathogenesis. In this paper, epidemiology, diagnosis treatment, as well as possible pathogenesis of achalasia will be reviewed and summarized. The proposed hypothesis on the pathogenesis of achalasia is that genetically susceptible populations potentially have a higher risk of infection with viruses, triggering autoimmune and inflammation responses to inhibitory neurons in lower esophageal sphincter.
Lei Yang,Binbin Fan,Xingyu Cui,Xiufeng Shi,Ruifeng Li 한국공업화학회 2015 Journal of Industrial and Engineering Chemistry Vol.21 No.1
A novel method for the preparation of Mn-containing silylated layered double hydroxides (LDHs) ispresented. The method involves functionalizing the calcined MgAl LDH (LDO) with dimethoxydiphenylsilane(DDS), and then treating it in the aqueous solution of KMnO4 under Ar. The prepared Mncontainingsilylated MgAl LDH catalysts have higher Mn amount and more accessible Mn sites than thecorresponding Mn-containing MgAl LDH catalysts, and exhibited much higher catalytic activity in theoxidation of ethylbenzene with O2 in the absence of organic solvents than the latter. In addition, theprepared Mn-containing silylated MgAl LDH catalyst was highly stable and reusable.
Yaotang Ji,Hongli Suo,ZiLi Zhang,Lin Ma,Jiazhi Li,Chengxi Zhang,Xingyu Wu,Shaheen Kausar,Jin Cui,Min Liu,Yi Wang,Qiuliang Wang 대한금속·재료학회 2021 METALS AND MATERIALS International Vol.27 No.5
Three types of Ni8W/Ni12W/Ni8W composite substrates with strong cube texture, high yield strength, and low magnetizationwere produced by heavy cold rolling and annealing processes. The three types of composite substrates have the same thickness,but the ratios of thickness between Ni–8 at%W and Ni–12 at%W layer are different. The contents of tungsten exceed9.3 at%, 10 at%, and 10.3 at% in the three types of obtained substrates. The presence of Ni alloys with higher W content inthe Ni–12 at%W of the three composite substrates strongly enhanced the mechanical properties with about 290, 300 and315 MPa respectively, and decreased the ferromagnetic behavior of the whole substrates. Additionally, it was found that anarea that enhances cubic nucleation and growth in the Ni8W layer of composite substrates.
Zhang Ning,Liu Huan,Zhang Tianwen,Kan Hongmin,Wang Xiaoyang,Cui Xingyu 한양대학교 세라믹연구소 2016 Journal of Ceramic Processing Research Vol.17 No.3
The paper was prepared spherical hexagonal boron nitride with different microstructures under flowing ammoniaatmosphere. The effect of boron source component ratios (molar ratio of borax and boric acid) on the phase composition ofthe sample were studied: the work also explored the effect of boron source component ratio on the microstructure andadsorption performance of h-BN. Spherical hexagonal boron nitride had corresponding to shell structure, mesoporousstructure, and solid structure when the ratio of boron source components respectively was 1 : 0.5, 1 : 1, and 1 : 2. Between 1 : 1and 1:0.5, the former had an lower adsorptions at low relative pressures. On the contrary, the adsorption of former wouldincreased at higher relative pressures and reached up 276.02 cm3 g−1, and the maximum adsorption of the latter reached only228.20 cm3 g−1. Under any relative pressure, the adsorption capacity was the lowest when the boron source composition ratiowas 1 : 2.