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Intraperitoneal hyaline vascular Castleman disease: Three case reports
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作者 jia-wei gao Zhe-Yi Shi +2 位作者 Zhao-Bi Zhu Xiang-Rong Xu Wei Chen 《World Journal of Clinical Cases》 SCIE 2023年第36期8527-8534,共8页
BACKGROUND Castleman disease(CD)was first reported in 1954.It is a rare non-malignant lymphoproliferative disease with unclear etiology.As the clinical manifestations of CD are different,there are difficulties in its ... BACKGROUND Castleman disease(CD)was first reported in 1954.It is a rare non-malignant lymphoproliferative disease with unclear etiology.As the clinical manifestations of CD are different,there are difficulties in its diagnosis and treatment.Therefore,for patients with CD,it is important to establish the diagnosis in order to choose the appropriate treatment.CASE SUMMARY In this report,three patients with intraperitoneal CD treated at our center from January 2018 to June 2023 were reviewed,and the clinical and paraclinical exa-minations,diagnosis,and treatment were analyzed,and all three patients were diagnosed with CD by routine histopathological and immunohistochemical exa-minations.CONCLUSION CD is a complex and rare disease.Because there are no special clinical symptoms and laboratory abnormalities,the diagnosis often depends on routine pathological and immunohistochemical findings. 展开更多
关键词 Castleman disease Intraperitoneal mass Lymph node Case report
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Structural Evolution of Ultra-High Molecular Weight Polyethylene Low-Entangled Films with Reserved Shish Crystals During Hot Stretching
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作者 jia-wei gao Li Chen +3 位作者 Ye-Shun Zhong Chao-Wei Xing Yi-Guo Li Zong-Bao Wang 《Chinese Journal of Polymer Science》 SCIE EI CAS CSCD 2024年第8期1227-1242,共16页
Shish crystals are crucial to achieving high performance low-dimensional ultra-high molecular weight polyethylene(UHMWPE)products.Typically,high stretch and shear flow fields are necessary for the formation of shish c... Shish crystals are crucial to achieving high performance low-dimensional ultra-high molecular weight polyethylene(UHMWPE)products.Typically,high stretch and shear flow fields are necessary for the formation of shish crystals.In this study,UHMWPE gel films with reserved shish crystals were prepared by gel molding,the structural evolution and properties of UHMWPE films stretched at temperatu res of 100,110,120and 130℃were investigated by in situ small-angle X-ray scattering(SAXS)/ultra-small-angle X-ray scattering(USAXS)/wide-angle X-ray diffraction(WAXD)measu rements as well as scanning electron microscopy(SEM)and differential scanning calorimetry(DSC)measurements.Our findings showed that the reserved shish crystals can facilitate the formation and structural evolution of shish-kebab crystals during the hot stretching.Additionally,the reserved shish crystals promote the structu ral evolution of UHMWPE films to a greater extent when stretched at 120 and 130℃,compared to 100 and 110℃,resulting in higher crystallinity,orientation,thermal properties,breaking strength and Young's modulus.Com pared to UHMWPE high-entangled films with reserved shish crystals prepared by compression molding,UHMWPE low-entangled films with reserved shish crystals prepared by gel molding are more effective in inducing the formation and evolution of shish-kebab crystals during the hot stretching,resulting in increased breaking strength and Young's modulus. 展开更多
关键词 UHMWPE low-entangled films Reserved shish crystals Structural evolution Hot stretching
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Field observations of the thermal stability of permafrost under buildings with an underfloor open ventilation space and pile foundations in warm permafrost at high altitudes
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作者 Xin HOU Ji CHEN +5 位作者 Yu SHENG Peng-Fei RUI You-Qian LIU Shou-Hong ZHANG Tian-Chun DONG jia-wei gao 《Advances in Climate Change Research》 SCIE CSCD 2023年第2期267-275,共9页
Pile foundations combined with ventilation spaces under floors are the most common method in buildings over permafrost.The safety and stability of buildings are closely related to the temperature of permafrost.However... Pile foundations combined with ventilation spaces under floors are the most common method in buildings over permafrost.The safety and stability of buildings are closely related to the temperature of permafrost.However,there are limitations of understanding on this method in the high-altitude,warm(>−1℃)permafrost areas on the Qinghai–Tibet Plateau.In this study,the thermal stability of permafrost foundation soils under buildings with an underfloor open ventilation space and pile foundations in warm permafrost at high altitudes was studied through field observations of ground and air temperatures,wind speed,net radiation from 2017 to 2021.The results indicated that the open ventilation space exerted an effective cooling effect on the underlying permafrost and pile foundations from March to October,while a thermal insulation effect was observed from November to February of the following year,but overall,the cooling effect dominated;the cooling effect of open ventilation spaces differed spatially.The permafrost temperature on the south-facing side was higher than that on the north-facing side,and those on the east and west sides were higher than that directly under the open ventilation space of the building.This study also demonstrated that radiation shielded by the building was a main factor of the cooling effect of open ventilation spaces,and the cooling effect of open ventilation spaces could accelerate the back-freezing of the cast-in-place(CIP)pile foundations.This structure could effectively maintain the frozen state of the underlying warm permafrost at high elevations on the interior Qinghai–Tibet Plateau. 展开更多
关键词 Warm permafrost INFRASTRUCTURE Open ventilation space Pile foundation Cooling effect
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