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3篇 您的检索式:作者名="Jiting Liang"
    题名 作者 年代 出处 被引量
1Precise localization of small pulmonary nodules using Pre-VATS with Xper-CT in combination with real-time fluoroscopy-guided coil:report of 15 patients显示文摘Purpose: This study aimed to evaluate the value of precise localization of nodules using pre-video-assisted thoracic surgery(VATS) Xper–CT in combination with real-time fluoroscopy-guided coil in the resection of pulmonary nodules using VATS. Materials and Methods: Precise localization of nodules using Xper-CT in combination with real-time fluoroscopy-guided coil and wedge resection using VATS were conducted on 15 patients with 17 small pulmonary nodules(diameter 0.5–1.5 cm) from April 2015 to January 2016. The value of localization was evaluated in terms of procedure time, type of coils, associated complications of localization, and VATS success rate. Results: The success rate of coil localization was found to be 100% in the primary stage(as shown by the CT scan), and the average procedure time was 30–45 min(35.6 ± 3.05 min). No deaths or major complications occurred. Minor complications included five incidents of pneumothorax(the morbidity was 29.4%, 5/17; no patient required chest tube drainage). The dislocation of coil was found in one patient. The results of pathological examination of 17 small pulmonary nodules revealed 11 primary lung cancers, 1 mesenchymal tumor, 3 nonspecific chronic inflammations, 1 hamartoma, and 1 tuberculosis. Two patients with primary lung cancer underwent lobectomy with mediastinal lymph node dissection. Conclusion: The preoperative precise localization of small pulmonary nodules using Xper-CT-guided coil is an effective and safe technique. It helps in the resection of nodules using VATS. It increases the rate of lung wedge resection with few complications and allows for proper diagnosis with a low thoracotomy conversion rate.Jiemin Cheng Changyu Li Liangwen Wang Jiting Liang Zhiping Yan Jiani Hu Huibing Shi 2018Journal of Interventional Medicine2018,1,2:8
2A back analysis of the temperature field in the combustion volume space during underground coal gasification显示文摘The exact shape and size of the gasification channel during underground coal gasification(UGC) are of vital importance for the safety and stability of the upper parts of the geological formation.In practice existing geological measurements are insufficient to obtain such information because the coal seam is typically deeply buried and the geological conditions are often complex.This paper introduces a cylindrical model for the gasification channel.The rock and soil masses are assumed to be homogeneous and isotropic and the effect of seepage on the temperature field was neglected.The theory of heat conduction was used to write the equation predicting the temperature field around the gasification channel.The idea of an excess temperature was introduced to solve the equations.Applying this model to UCG in the field for an influence radius,r,of 70 m gave the model parameters,u1,2,3...,of 2.4,5.5,8.7...By adjusting the radius(2,4,or 6 m) reasonable temperatures of the gasification channel were found for 4 m.The temperature distribution in the vertical direction,and the combustion volume,were also calculated.Comparison to field measurements shows that the results obtained from the proposed model are very close to practice.Chen Liang Hou Chaohu Chen Jiansheng Xu Jiting 2011Mining Science and Technology2011,21,4:3
3Modeling hepatoblastoma development with human fetal liver organoids reveals YAP1 activation is sufficient for tumorigenesis显示文摘Dear Editor,Hepatoblastoma(HB)is a predominant hepatic neoplasm that develops in children from 0 to 4 years of age at the rate of 2.16 per 1,000,000.It originates from abnormal differentiation of hepatocyte precursors(hepatoblasts)during embryogenesis(Sumazin et al.,2017).Approximately 20%of children with HB have metastasis in lung at diagnosis,which indicates poor prognosis(Angelico et al.,2019).While surgery in combination of chemotherapy and/or metastasectomy is the most popular therapy,relapse happens in a significant portion of HB patients(Zhang et al.,2021).Therefore,novel and less aggressive therapies targeting the pathogenesis of HB should be explored to prolong patients’s disease-free survival as well as to improve their quality of life.Li Yang Jin Chen Jianqing Liang Yufeng Zhang Qingzhe Wang Xiaojun Ren Jinsong Wei Qianchun Gong Jiting Zhang Ning Jiang Xinhua Lin Jin Li Bing Zhao 2022Protein & Cell2022,13,9:1
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