In this work,BiOCl/OVs-BiPO_(4)heterojunction photocatalysts were successfully in-situ prepared by treating of BiPO_(4)with dilute hydrochloric acid(HCl)under hydrothermal condition.Systematically characterization res...In this work,BiOCl/OVs-BiPO_(4)heterojunction photocatalysts were successfully in-situ prepared by treating of BiPO_(4)with dilute hydrochloric acid(HCl)under hydrothermal condition.Systematically characterization results confirm that BiOCl/BiPO_(4)heterojunctions have been successfully in-situ constructed and oxygen vacancies(OVs)are significantly increased.The OVs on the surface of the BiOCl/OVS-BiPO_(4)heterojunctions photocatalyst and the interface electric field at the interface of the heterojunctions effectively accelerate the separation and migration of photogenerated carriers,and the surface OVs provide more sites for adsorption and reaction.Consequently,BiOCl/OVs-BiPO_(4)heterojunction photocatalysts have higher separation rate of photoexcited e-/h+pairs and exhibit ascendant photocatalytic degradation activity.Electron paramagnetic resonance(EPR)technology and free radical capture experiments give strong evidence that·O2-exists in the reaction system and is the leading species during the degradation process.The experimental results reveal that the degradation efficiency of rhodamine B(RhB)over BiPO_(4)treated with 3 ml of 0.1%dilute hydrochloric acid(3HCl-BPO)is 2.42 times of that over the reference BiPO_(4).After ultraviolet(UV)light illumination for 20 min,the destruction degree of RhB on the 3HCl-BPO sample reaches 99%.Moreover,the degradation rate of tetracycline(TC)is also obviously improved over 3HCl-BPO compared with that on the reference BiPO_(4)after 40 min exposure to ultraviolet light.The excellent stability of the sample was demonstrated by five cycles.A reasonable enhancement mechanism for BiOCl/OVs-BiPO_(4)heterojunctions was proposed to elucidate the boosted photocatalytic performance.This work offers a facile and reliable reference to design high performance BiPO_(4)-based photocatalysts for environment purification.展开更多
在SDN移动自组网络中,控制转发策略集中于控制器中,使得基于流表匹配的数据转发变得简单高效。但是,由于移动自组网环境复杂多变、无线信号不稳定和网络拓扑多变等原因,容易出现数据层面失去控制器控制和流表学习老化等问题,这严重制约...在SDN移动自组网络中,控制转发策略集中于控制器中,使得基于流表匹配的数据转发变得简单高效。但是,由于移动自组网环境复杂多变、无线信号不稳定和网络拓扑多变等原因,容易出现数据层面失去控制器控制和流表学习老化等问题,这严重制约网络性能。针对以上问题,设计了一种基于Open v Switch的SDN移动自组网络架构,架构包含状态处理与应用感知等核心功能。状态处理服务实现控制器与交换机连接状态的跟踪检测、Open Flow协议的状态匹配字段拓展和数据包在不同状态场景下进行感知处理等功能,应用感知服务实现转发策略在数据层面被灵活调度的功能。在Open v Switch和Ryu开源控制器上进行协议开发和原型系统搭建。实验结果表明,控制器连发生接故障后,业务恢复时延低于100 ms,流表项可以及时更新,这可以保障网络吞吐量的稳定性。因此,设计的架构有效减小控制器失连故障对通信的影响,增强了基于SDN的移动自组网络的稳定性和可靠性。展开更多
Architecture framework has become an effective method recently to describe the system of systems(SoS)architecture,such as the United States(US)Department of Defense Architecture Framework Version 2.0(DoDAF2.0).As a vi...Architecture framework has become an effective method recently to describe the system of systems(SoS)architecture,such as the United States(US)Department of Defense Architecture Framework Version 2.0(DoDAF2.0).As a viewpoint in DoDAF2.0,the operational viewpoint(OV)describes operational activities,nodes,and resource flows.The OV models are important for SoS architecture development.However,as the SoS complexity increases,constructing OV models with traditional methods exposes shortcomings,such as inefficient data collection and low modeling standards.Therefore,we propose an intelligent modeling method for five OV models,including operational resource flow OV-2,organizational relationships OV-4,operational activity hierarchy OV-5a,operational activities model OV-5b,and operational activity sequences OV-6c.The main idea of the method is to extract OV architecture data from text and generate interoperable OV models.First,we construct the OV meta model based on the DoDAF2.0 meta model(DM2).Second,OV architecture named entities is recognized from text based on the bidirectional long short-term memory and conditional random field(BiLSTM-CRF)model.And OV architecture relationships are collected with relationship extraction rules.Finally,we define the generation rules for OV models and develop an OV modeling tool.We use unmanned surface vehicles(USV)swarm target defense SoS architecture as a case to verify the feasibility and effectiveness of the intelligent modeling method.展开更多
Immune checkpoint inhibitor(ICI)has limited efficacy in the treatment of immune“cold”tumors.Due to insufficient T cell infiltration and heterogeneous programmed death ligand 1(PD-L1)expression,the ORR is only 5%–8%...Immune checkpoint inhibitor(ICI)has limited efficacy in the treatment of immune“cold”tumors.Due to insufficient T cell infiltration and heterogeneous programmed death ligand 1(PD-L1)expression,the ORR is only 5%–8%compared with 30%–40%of“hot”tumors.This article reviews the synergistic mechanism,clinical efficacy and optimization strategy of oncolytic virus(OVs)combined with ICIs in the treatment of refractory malignant tumors.Systematic analysis of mechanistic interactions across tumor types and clinical trial data demonstrates that OVs transform the immunosuppressive microenvironment by inducing immunogenic cell death and activating innate immunity.Concurrently,ICIs enhance adaptive immunity by reversing T-cell exhaustion and expanding T-cell diversity.Clinical trials in melanoma,head and neck cancer and breast cancer showed superior efficacy.The Objective Response Rate(ORR)of combination therapy was 39%–62%,while the ORR of ICI monotherapy was 18%.Treatment heterogeneity is mainly attributed to virus-related factors,including targeting specificity and replication efficiency,tumor characteristics,such as antigen presenting ability and mutation load,and host immune status,including preexisting antiviral antibodies and microbiome composition.This combined approach represents a paradigm shift in cancer immunotherapy,which effectively transforms immune“cold”tumors into“hot”tumors through the continuous activation of innate and adaptive immune responses.In the future,it is expected to improve the therapeutic effect of treatment-resistant malignant tumors through the integration of immune regulatory molecules,accurate biomarkers to guide the treatment scheme and triple combination strategy by a new generation of engineering viruses.展开更多
基金supported by Sichuan University of Science and Engineering(No.2021RC26)Chemical Synthesis and Pollution Control Key Laboratory of Sichuan Province(No.CSPC202105).
文摘In this work,BiOCl/OVs-BiPO_(4)heterojunction photocatalysts were successfully in-situ prepared by treating of BiPO_(4)with dilute hydrochloric acid(HCl)under hydrothermal condition.Systematically characterization results confirm that BiOCl/BiPO_(4)heterojunctions have been successfully in-situ constructed and oxygen vacancies(OVs)are significantly increased.The OVs on the surface of the BiOCl/OVS-BiPO_(4)heterojunctions photocatalyst and the interface electric field at the interface of the heterojunctions effectively accelerate the separation and migration of photogenerated carriers,and the surface OVs provide more sites for adsorption and reaction.Consequently,BiOCl/OVs-BiPO_(4)heterojunction photocatalysts have higher separation rate of photoexcited e-/h+pairs and exhibit ascendant photocatalytic degradation activity.Electron paramagnetic resonance(EPR)technology and free radical capture experiments give strong evidence that·O2-exists in the reaction system and is the leading species during the degradation process.The experimental results reveal that the degradation efficiency of rhodamine B(RhB)over BiPO_(4)treated with 3 ml of 0.1%dilute hydrochloric acid(3HCl-BPO)is 2.42 times of that over the reference BiPO_(4).After ultraviolet(UV)light illumination for 20 min,the destruction degree of RhB on the 3HCl-BPO sample reaches 99%.Moreover,the degradation rate of tetracycline(TC)is also obviously improved over 3HCl-BPO compared with that on the reference BiPO_(4)after 40 min exposure to ultraviolet light.The excellent stability of the sample was demonstrated by five cycles.A reasonable enhancement mechanism for BiOCl/OVs-BiPO_(4)heterojunctions was proposed to elucidate the boosted photocatalytic performance.This work offers a facile and reliable reference to design high performance BiPO_(4)-based photocatalysts for environment purification.
文摘在SDN移动自组网络中,控制转发策略集中于控制器中,使得基于流表匹配的数据转发变得简单高效。但是,由于移动自组网环境复杂多变、无线信号不稳定和网络拓扑多变等原因,容易出现数据层面失去控制器控制和流表学习老化等问题,这严重制约网络性能。针对以上问题,设计了一种基于Open v Switch的SDN移动自组网络架构,架构包含状态处理与应用感知等核心功能。状态处理服务实现控制器与交换机连接状态的跟踪检测、Open Flow协议的状态匹配字段拓展和数据包在不同状态场景下进行感知处理等功能,应用感知服务实现转发策略在数据层面被灵活调度的功能。在Open v Switch和Ryu开源控制器上进行协议开发和原型系统搭建。实验结果表明,控制器连发生接故障后,业务恢复时延低于100 ms,流表项可以及时更新,这可以保障网络吞吐量的稳定性。因此,设计的架构有效减小控制器失连故障对通信的影响,增强了基于SDN的移动自组网络的稳定性和可靠性。
基金National Natural Science Foundation of China(71690233,71971213,71901214)。
文摘Architecture framework has become an effective method recently to describe the system of systems(SoS)architecture,such as the United States(US)Department of Defense Architecture Framework Version 2.0(DoDAF2.0).As a viewpoint in DoDAF2.0,the operational viewpoint(OV)describes operational activities,nodes,and resource flows.The OV models are important for SoS architecture development.However,as the SoS complexity increases,constructing OV models with traditional methods exposes shortcomings,such as inefficient data collection and low modeling standards.Therefore,we propose an intelligent modeling method for five OV models,including operational resource flow OV-2,organizational relationships OV-4,operational activity hierarchy OV-5a,operational activities model OV-5b,and operational activity sequences OV-6c.The main idea of the method is to extract OV architecture data from text and generate interoperable OV models.First,we construct the OV meta model based on the DoDAF2.0 meta model(DM2).Second,OV architecture named entities is recognized from text based on the bidirectional long short-term memory and conditional random field(BiLSTM-CRF)model.And OV architecture relationships are collected with relationship extraction rules.Finally,we define the generation rules for OV models and develop an OV modeling tool.We use unmanned surface vehicles(USV)swarm target defense SoS architecture as a case to verify the feasibility and effectiveness of the intelligent modeling method.
基金supported in part by grants from the National Natural Science Foundation ofChina(Nos.82260462,82460606,32360046)Yunnan Fundamental Research Kunming Medical University Joint Projects(Nos.202201AY0700001-144,202301AY070001-115)+2 种基金Yunnan Fundamental Research Projects(No.202201AT070269)Yunnan health training project of high level talents(Nos.D-2024007,H-2024023)Graduate Innovation Fund of Kunming Medical University(No.2025S100).
文摘Immune checkpoint inhibitor(ICI)has limited efficacy in the treatment of immune“cold”tumors.Due to insufficient T cell infiltration and heterogeneous programmed death ligand 1(PD-L1)expression,the ORR is only 5%–8%compared with 30%–40%of“hot”tumors.This article reviews the synergistic mechanism,clinical efficacy and optimization strategy of oncolytic virus(OVs)combined with ICIs in the treatment of refractory malignant tumors.Systematic analysis of mechanistic interactions across tumor types and clinical trial data demonstrates that OVs transform the immunosuppressive microenvironment by inducing immunogenic cell death and activating innate immunity.Concurrently,ICIs enhance adaptive immunity by reversing T-cell exhaustion and expanding T-cell diversity.Clinical trials in melanoma,head and neck cancer and breast cancer showed superior efficacy.The Objective Response Rate(ORR)of combination therapy was 39%–62%,while the ORR of ICI monotherapy was 18%.Treatment heterogeneity is mainly attributed to virus-related factors,including targeting specificity and replication efficiency,tumor characteristics,such as antigen presenting ability and mutation load,and host immune status,including preexisting antiviral antibodies and microbiome composition.This combined approach represents a paradigm shift in cancer immunotherapy,which effectively transforms immune“cold”tumors into“hot”tumors through the continuous activation of innate and adaptive immune responses.In the future,it is expected to improve the therapeutic effect of treatment-resistant malignant tumors through the integration of immune regulatory molecules,accurate biomarkers to guide the treatment scheme and triple combination strategy by a new generation of engineering viruses.