目的对比无机三氧化物聚合物(MTA)、iRoot BP Plus在难治性前牙根尖周病患者根管治疗中的应用效果。方法选取2016年3月—2018年3月承德医学院附属医院口腔科收治的246例难治性前牙根尖周病患者,均为单颗患病且实施根管倒充填治疗。其中8...目的对比无机三氧化物聚合物(MTA)、iRoot BP Plus在难治性前牙根尖周病患者根管治疗中的应用效果。方法选取2016年3月—2018年3月承德医学院附属医院口腔科收治的246例难治性前牙根尖周病患者,均为单颗患病且实施根管倒充填治疗。其中82例患者采用MTA治疗(MTA组),84例患者采用iRoot BP Plus治疗(iRoot BP Plus组),80例患者接受氢氧化钙糊剂治疗(对照组)。对比根充质量、治疗前和治疗1周后局部红肿、疼痛评分,不同时刻旧根尖指数(O-PAI)变化及临床疗效。结果iRoot BP Plus组适充率较MTA组和对照组高(P<0.05)。MTA组治疗前和治疗1周后局部红肿、疼痛评分的差值较对照组高(P<0.05),iRoot BP Plus组最高(P<0.05)。iRoot BP Plus组O-PAI评级较MTA组、对照组低(P<0.05),相对效果较好;MTA组治疗后较对照组低(P<0.05),相对效果较好。iRoot BP Plus组临床总有效率最高(P<0.05)。结论在难治性前牙根尖周病患者根管治疗中MTA、iRoot BP Plus均优于氢氧化钙糊剂,且应用iRoot BP Plus可保证适充率,并有效减轻局部红肿、疼痛,改善O-PAI,疗效理想,有望替代MTA推广应用。展开更多
Controlling the interaction between metal nanoparticles and the support is a means to tune catalytic activity and stability.Herein we investigated the influence of the morphology of hematite on the performance of gold...Controlling the interaction between metal nanoparticles and the support is a means to tune catalytic activity and stability.Herein we investigated the influence of the morphology of hematite on the performance of gold for CO oxidation.Nanosphere and nanorod forms of hematite,α-Fe_(2)O_(3)(S)andα-Fe_(2)O_(3)(R)respectively,were used to support gold nanoparticles.The surface ofα-Fe_(2)O_(3)(R)was more corrugated than that ofα-Fe_(2)O_(3)(S).These defects provide anchoring sites for gold nanoparticle deposition and stabilization.Due to the stronger gold-support interactions,Au/α-Fe_(2)O_(3)(R)contained smaller and more hemispherical gold particles than Au/α-Fe_(2)O_(3)(S).Au/α-Fe_(2)O_(3)(R)was not only more active in CO oxidation but also much more stable as evident from the small change in gold particle size during reaction.The higher reducibility of Au/α-Fe_(2)O_(3)(R)also contributed to the higher CO oxidation activity.展开更多
How to control the dynamic behavior of large-scale artificial active matter is a critical concern in experimental research on soft matter, particularly regarding the emergence of collective behaviors and the formation...How to control the dynamic behavior of large-scale artificial active matter is a critical concern in experimental research on soft matter, particularly regarding the emergence of collective behaviors and the formation of group patterns. Centralized systems excel in precise control over individual behavior within a group, ensuring high accuracy and controllability in task execution. Nevertheless, their sensitivity to group size may limit their adaptability to diverse tasks. In contrast, decentralized systems empower individuals with autonomous decision-making, enhancing adaptability and system robustness. Yet, this flexibility comes at the cost of reduced accuracy and efficiency in task execution. In this work, we present a unique method for regulating the centralized dynamic behavior of self-organizing clusters based on environmental interactions. Within this environment-coupled robot system, each robot possesses similar dynamic characteristics, and their internal programs are entirely identical. However, their behaviors can be guided by the centralized control of the environment, facilitating the accomplishment of diverse cluster tasks. This approach aims to balance the accuracy and flexibility of centralized control with the robustness and task adaptability of decentralized control. The proactive regulation of dynamic behavioral characteristics in active matter groups, demonstrated in this work through environmental interactions, holds the potential to introduce a novel technological approach and provide experimental references for studying the dynamic behavior control of large-scale artificial active matter systems.展开更多
文摘目的对比无机三氧化物聚合物(MTA)、iRoot BP Plus在难治性前牙根尖周病患者根管治疗中的应用效果。方法选取2016年3月—2018年3月承德医学院附属医院口腔科收治的246例难治性前牙根尖周病患者,均为单颗患病且实施根管倒充填治疗。其中82例患者采用MTA治疗(MTA组),84例患者采用iRoot BP Plus治疗(iRoot BP Plus组),80例患者接受氢氧化钙糊剂治疗(对照组)。对比根充质量、治疗前和治疗1周后局部红肿、疼痛评分,不同时刻旧根尖指数(O-PAI)变化及临床疗效。结果iRoot BP Plus组适充率较MTA组和对照组高(P<0.05)。MTA组治疗前和治疗1周后局部红肿、疼痛评分的差值较对照组高(P<0.05),iRoot BP Plus组最高(P<0.05)。iRoot BP Plus组O-PAI评级较MTA组、对照组低(P<0.05),相对效果较好;MTA组治疗后较对照组低(P<0.05),相对效果较好。iRoot BP Plus组临床总有效率最高(P<0.05)。结论在难治性前牙根尖周病患者根管治疗中MTA、iRoot BP Plus均优于氢氧化钙糊剂,且应用iRoot BP Plus可保证适充率,并有效减轻局部红肿、疼痛,改善O-PAI,疗效理想,有望替代MTA推广应用。
文摘Controlling the interaction between metal nanoparticles and the support is a means to tune catalytic activity and stability.Herein we investigated the influence of the morphology of hematite on the performance of gold for CO oxidation.Nanosphere and nanorod forms of hematite,α-Fe_(2)O_(3)(S)andα-Fe_(2)O_(3)(R)respectively,were used to support gold nanoparticles.The surface ofα-Fe_(2)O_(3)(R)was more corrugated than that ofα-Fe_(2)O_(3)(S).These defects provide anchoring sites for gold nanoparticle deposition and stabilization.Due to the stronger gold-support interactions,Au/α-Fe_(2)O_(3)(R)contained smaller and more hemispherical gold particles than Au/α-Fe_(2)O_(3)(S).Au/α-Fe_(2)O_(3)(R)was not only more active in CO oxidation but also much more stable as evident from the small change in gold particle size during reaction.The higher reducibility of Au/α-Fe_(2)O_(3)(R)also contributed to the higher CO oxidation activity.
基金Project supported by the National Natural Science Foundation of China (Grant No. 12174041)China Postdoctoral Science Foundation (CPSF)(Grant No. 2022M723118)the seed grants from the Wenzhou Institute,University of Chinese Academy of Sciences (Grant No. WIUCASQD2021002)。
文摘How to control the dynamic behavior of large-scale artificial active matter is a critical concern in experimental research on soft matter, particularly regarding the emergence of collective behaviors and the formation of group patterns. Centralized systems excel in precise control over individual behavior within a group, ensuring high accuracy and controllability in task execution. Nevertheless, their sensitivity to group size may limit their adaptability to diverse tasks. In contrast, decentralized systems empower individuals with autonomous decision-making, enhancing adaptability and system robustness. Yet, this flexibility comes at the cost of reduced accuracy and efficiency in task execution. In this work, we present a unique method for regulating the centralized dynamic behavior of self-organizing clusters based on environmental interactions. Within this environment-coupled robot system, each robot possesses similar dynamic characteristics, and their internal programs are entirely identical. However, their behaviors can be guided by the centralized control of the environment, facilitating the accomplishment of diverse cluster tasks. This approach aims to balance the accuracy and flexibility of centralized control with the robustness and task adaptability of decentralized control. The proactive regulation of dynamic behavioral characteristics in active matter groups, demonstrated in this work through environmental interactions, holds the potential to introduce a novel technological approach and provide experimental references for studying the dynamic behavior control of large-scale artificial active matter systems.