Saline and hypersaline wetlands account for almost half of the volume of inland water globally.They provide pivotal habitat for a vast range of species,including crucial ecosystem services for humans such as carbon si...Saline and hypersaline wetlands account for almost half of the volume of inland water globally.They provide pivotal habitat for a vast range of species,including crucial ecosystem services for humans such as carbon sink storage and extractive resource reservoirs.Despite their importance,effective ecological assessment is in its infancy compared to current conventional surveys carried out in freshwater ecosystems.The integration of environmental DNA(eDNA)analysis and traditional techniques has the potential to transform biomonitoring processes,particularly in remote and understudied saline environments.In this context,this preliminary study aims to explore the potential of eDNA coupled with conventional approaches by targeting five hypersaline lakes at Rottnest Island(Wadjemup)in Western Australia.We focused on the invertebrate community,a widely accepted key ecological indicator to assess the conservational status in rivers and lakes.The combination of metabarcoding with morphology-based taxonomic analysis described 16 taxa belonging to the orders Anostraca,Diptera,Isopoda,and Coleoptera.DNA-based diversity assessment revealed more taxa at higher taxonomic resolution than the morphology-based taxonomic analysis.However,certain taxa(i.e.,Ephydridae,Stratyiomidae,Ceratopogonidae)were only identified via net surveying.Overall,our results indicate that great potential resides in combining conventional net-based surveys with novel eDNA approaches in saline and hypersaline lakes.Indeed,urgent and effective conservational frameworks are required to contrast the enormous pressure that these ecosystems are increasingly facing.Further investigations at larger spatial temporal scales will allow consolidation of robust,reliable,and affordable biomonitoring frameworks in the underexplored world of saline wetlands.展开更多
目的探讨脊柱微创通道镜系统辅助椎间孔腰椎椎体间融合术(TLIF)对腰椎退行性疾病患者脊髓功能及血清P物质(SP)、前列腺素E2(PGE2)水平的影响。方法选取51例腰椎退行性疾病患者,按照入院次序单双号法分为A组(n=25)及B组(n=26)。A组行脊...目的探讨脊柱微创通道镜系统辅助椎间孔腰椎椎体间融合术(TLIF)对腰椎退行性疾病患者脊髓功能及血清P物质(SP)、前列腺素E2(PGE2)水平的影响。方法选取51例腰椎退行性疾病患者,按照入院次序单双号法分为A组(n=25)及B组(n=26)。A组行脊柱微创通道镜系统辅助TLIF术治疗,B组行常规TLIF术治疗。比较两组手术指标,腰腿部疼痛与功能障碍状况,脊髓功能,血清P物质(SP)、前列腺素E2(PGE2)水平。结果A组术中失血量、术后引流量均少于B组,下床活动时间短于B组(P<0.05);术后4周两组腰腿部视觉模拟评分法(VAS)与Oswestry障碍指数(ODI)评分均较术前均明显改善(P<0.05);术后7 d两组各项脊髓功能指标较术前均明显改善,且A组改善幅度优于B组(P<0.05);术后3 d A组血清SP水平高于B组,而血清PGE2水平低于B组(P<0.05)。结论脊柱微创通道镜系统辅助TLIF术可显著改善腰椎退行性疾病患者脊髓功能以及疼痛介质水平。展开更多
The rapid growth of distributed renewable energy penetration is promoting the evolution of the energy system toward decentralization and decentralized and digitized smart grids.This study was based on energy blockchai...The rapid growth of distributed renewable energy penetration is promoting the evolution of the energy system toward decentralization and decentralized and digitized smart grids.This study was based on energy blockchain,and developed a dual-biding mechanism based on the real-time energy surplus and demand in the local smart grid,which is expected to enable reliable,affordable,and clean energy supply in smart communities.In the proposed system,economic benefits could be achieved by replacing fossil-fuel-based electricity with the high penetration of affordable solar PV electricity.The reduction of energy surplus realized by distributed energy production and P2P energy trading,within the smart grid results in less transmission loss and lower requirements for costly upgrading of existing grids.By adopting energy blockchain and smart contract technologies,energy secure trading with a low risk of privacy leakage could be accommodated.The prototype is examined through a case study,and the feasibility and efficiency of the proposed mechanism are further validated by scenario analysis.展开更多
基金Supported by the Curtin-BHP alliance within the framework of the“eDNA for Global Environment Studies(eDGES)”program。
文摘Saline and hypersaline wetlands account for almost half of the volume of inland water globally.They provide pivotal habitat for a vast range of species,including crucial ecosystem services for humans such as carbon sink storage and extractive resource reservoirs.Despite their importance,effective ecological assessment is in its infancy compared to current conventional surveys carried out in freshwater ecosystems.The integration of environmental DNA(eDNA)analysis and traditional techniques has the potential to transform biomonitoring processes,particularly in remote and understudied saline environments.In this context,this preliminary study aims to explore the potential of eDNA coupled with conventional approaches by targeting five hypersaline lakes at Rottnest Island(Wadjemup)in Western Australia.We focused on the invertebrate community,a widely accepted key ecological indicator to assess the conservational status in rivers and lakes.The combination of metabarcoding with morphology-based taxonomic analysis described 16 taxa belonging to the orders Anostraca,Diptera,Isopoda,and Coleoptera.DNA-based diversity assessment revealed more taxa at higher taxonomic resolution than the morphology-based taxonomic analysis.However,certain taxa(i.e.,Ephydridae,Stratyiomidae,Ceratopogonidae)were only identified via net surveying.Overall,our results indicate that great potential resides in combining conventional net-based surveys with novel eDNA approaches in saline and hypersaline lakes.Indeed,urgent and effective conservational frameworks are required to contrast the enormous pressure that these ecosystems are increasingly facing.Further investigations at larger spatial temporal scales will allow consolidation of robust,reliable,and affordable biomonitoring frameworks in the underexplored world of saline wetlands.
文摘目的探讨脊柱微创通道镜系统辅助椎间孔腰椎椎体间融合术(TLIF)对腰椎退行性疾病患者脊髓功能及血清P物质(SP)、前列腺素E2(PGE2)水平的影响。方法选取51例腰椎退行性疾病患者,按照入院次序单双号法分为A组(n=25)及B组(n=26)。A组行脊柱微创通道镜系统辅助TLIF术治疗,B组行常规TLIF术治疗。比较两组手术指标,腰腿部疼痛与功能障碍状况,脊髓功能,血清P物质(SP)、前列腺素E2(PGE2)水平。结果A组术中失血量、术后引流量均少于B组,下床活动时间短于B组(P<0.05);术后4周两组腰腿部视觉模拟评分法(VAS)与Oswestry障碍指数(ODI)评分均较术前均明显改善(P<0.05);术后7 d两组各项脊髓功能指标较术前均明显改善,且A组改善幅度优于B组(P<0.05);术后3 d A组血清SP水平高于B组,而血清PGE2水平低于B组(P<0.05)。结论脊柱微创通道镜系统辅助TLIF术可显著改善腰椎退行性疾病患者脊髓功能以及疼痛介质水平。
基金Fundings that permitted this research were granted by Australia CRC for Low Carbon Living through the Project“Integrated Carbon Metrics(ICM)”(RP2007)the National Natural Science Foundation of China(51908064)the Natural Science Foundation of Hunan Province(2021JJ30717).
文摘The rapid growth of distributed renewable energy penetration is promoting the evolution of the energy system toward decentralization and decentralized and digitized smart grids.This study was based on energy blockchain,and developed a dual-biding mechanism based on the real-time energy surplus and demand in the local smart grid,which is expected to enable reliable,affordable,and clean energy supply in smart communities.In the proposed system,economic benefits could be achieved by replacing fossil-fuel-based electricity with the high penetration of affordable solar PV electricity.The reduction of energy surplus realized by distributed energy production and P2P energy trading,within the smart grid results in less transmission loss and lower requirements for costly upgrading of existing grids.By adopting energy blockchain and smart contract technologies,energy secure trading with a low risk of privacy leakage could be accommodated.The prototype is examined through a case study,and the feasibility and efficiency of the proposed mechanism are further validated by scenario analysis.