Allocation of mobile chippers is a tactical problem of management in a bioenergy supply chain. It influences the entire supply cost of the wood chip since the transportation distance and the chipping productivity deci...Allocation of mobile chippers is a tactical problem of management in a bioenergy supply chain. It influences the entire supply cost of the wood chip since the transportation distance and the chipping productivity decide the transportation cost. Great and concentrated demands of woody biomass require multiple suppliers, and there should be the best allocation of mobile chippers which minimize the entire supply cost. This study aims to clarify better management of the supply chain consisting of multiple players for a great and concentrated demand for wood chip. The model was a supply chain for a typical biomass power plant with 5.8 MW capacity. Suppliers were assumed to select mobile chippers from two sizes, 140-kW and 353-kW. By the model simulation, it was clarified that the well-considered allocation of two different mobile chippers could reduce the entire supply cost less than the conventional system using a fixed chipper at the power plant. The best management was to use only the 353-kW chippers, and secondly to allocate the less productive chippers closer to the demand to prevent the incline of the transportation cost. However, the possible conflict was also specified as the increased cost of the suppliers using more productive chippers in the second best allocation strategy. This result emphasizes the necessity of resolving such conflict by making the collaborative relationship among stakeholders which has been pointed out by other researches as well to sustain the better condition of the supply chain.展开更多
目的研究缺血性脑卒中患者血清差异基因的筛选及生物信息学。方法以2023年3月-2024年3月在新疆医科大学第二附属医院神经内科确诊的80例缺血性脑卒中患者为病例组,选择同期80例健康体检者为对照组。分别挑选两组各10例受试者的外周血清...目的研究缺血性脑卒中患者血清差异基因的筛选及生物信息学。方法以2023年3月-2024年3月在新疆医科大学第二附属医院神经内科确诊的80例缺血性脑卒中患者为病例组,选择同期80例健康体检者为对照组。分别挑选两组各10例受试者的外周血清采用芯片差异性基因鉴定法筛选缺血性脑卒中差异表达的长链非编码RNA(lncRNA),并采用KEGG通路富集和基因本体论(GO)分析鉴定差异表达基因发挥的生物学功能。挑选2个上调和2个下调的lncR-NAs,在两组患者外周血中采用实时荧光定量PCR(qRT-PCR)法检测表达量,采用受试者工作特征曲线(Receiver operating characteristic,ROC)计算差异性表达lncRNAs诊断缺血性脑卒中的曲线下面积(Area under the curve,AUC)。结果共检测到34个高表达和16个低表达的lncR-NAs。KEGG通道分析显示,差异表达的lncRNAs涉及肿瘤坏死因子(TNF)信号通路、类风湿性关节炎、细胞因子与细胞因子受体相互作用,病毒蛋白与细胞因子和细胞因子受体的相互作用、癌症的转录失调、沙门氏菌感染、白细胞介素(IL)-17信号通路、趋化因子信号通路。GO分析显示,差异表达的lncRNAs涉及白细胞黏附调控、细胞黏附调节、白细胞与其他细胞黏附、细胞趋化性、T细胞活化、骨髓细胞分化、止血和凝血。qRT-PCR检测显示,与对照组比较,病例组患者A1BG-AS1和BRWD1-AS2表达量升高,BVES-AS1和C10ORF71-AS1表达量降低,差异有统计学意义(P<0.05)。ROC分析显示,A1BG-AS1、BRWD1-AS2、BVES-AS1和C10ORF71-AS1表达量诊断缺血性脑卒中的AUC分别为0.803、0.856、0.897和0.798(P<0.001)。结论缺血性脑卒中患者外周血中A1BG-AS1、BRWD1-AS2、BVES-AS1和C10ORF71-AS1基因差异性表达,可以辅助缺血性脑卒中的疾病诊断。展开更多
文摘Allocation of mobile chippers is a tactical problem of management in a bioenergy supply chain. It influences the entire supply cost of the wood chip since the transportation distance and the chipping productivity decide the transportation cost. Great and concentrated demands of woody biomass require multiple suppliers, and there should be the best allocation of mobile chippers which minimize the entire supply cost. This study aims to clarify better management of the supply chain consisting of multiple players for a great and concentrated demand for wood chip. The model was a supply chain for a typical biomass power plant with 5.8 MW capacity. Suppliers were assumed to select mobile chippers from two sizes, 140-kW and 353-kW. By the model simulation, it was clarified that the well-considered allocation of two different mobile chippers could reduce the entire supply cost less than the conventional system using a fixed chipper at the power plant. The best management was to use only the 353-kW chippers, and secondly to allocate the less productive chippers closer to the demand to prevent the incline of the transportation cost. However, the possible conflict was also specified as the increased cost of the suppliers using more productive chippers in the second best allocation strategy. This result emphasizes the necessity of resolving such conflict by making the collaborative relationship among stakeholders which has been pointed out by other researches as well to sustain the better condition of the supply chain.
文摘目的研究缺血性脑卒中患者血清差异基因的筛选及生物信息学。方法以2023年3月-2024年3月在新疆医科大学第二附属医院神经内科确诊的80例缺血性脑卒中患者为病例组,选择同期80例健康体检者为对照组。分别挑选两组各10例受试者的外周血清采用芯片差异性基因鉴定法筛选缺血性脑卒中差异表达的长链非编码RNA(lncRNA),并采用KEGG通路富集和基因本体论(GO)分析鉴定差异表达基因发挥的生物学功能。挑选2个上调和2个下调的lncR-NAs,在两组患者外周血中采用实时荧光定量PCR(qRT-PCR)法检测表达量,采用受试者工作特征曲线(Receiver operating characteristic,ROC)计算差异性表达lncRNAs诊断缺血性脑卒中的曲线下面积(Area under the curve,AUC)。结果共检测到34个高表达和16个低表达的lncR-NAs。KEGG通道分析显示,差异表达的lncRNAs涉及肿瘤坏死因子(TNF)信号通路、类风湿性关节炎、细胞因子与细胞因子受体相互作用,病毒蛋白与细胞因子和细胞因子受体的相互作用、癌症的转录失调、沙门氏菌感染、白细胞介素(IL)-17信号通路、趋化因子信号通路。GO分析显示,差异表达的lncRNAs涉及白细胞黏附调控、细胞黏附调节、白细胞与其他细胞黏附、细胞趋化性、T细胞活化、骨髓细胞分化、止血和凝血。qRT-PCR检测显示,与对照组比较,病例组患者A1BG-AS1和BRWD1-AS2表达量升高,BVES-AS1和C10ORF71-AS1表达量降低,差异有统计学意义(P<0.05)。ROC分析显示,A1BG-AS1、BRWD1-AS2、BVES-AS1和C10ORF71-AS1表达量诊断缺血性脑卒中的AUC分别为0.803、0.856、0.897和0.798(P<0.001)。结论缺血性脑卒中患者外周血中A1BG-AS1、BRWD1-AS2、BVES-AS1和C10ORF71-AS1基因差异性表达,可以辅助缺血性脑卒中的疾病诊断。