The Qaidam Basin is a key area for understanding the paleoenvironmental and faunal history of the Tibetan Plateau.The fossil schizothoracine fish,Hsianwenia wui,evolved extraordinarily thickened bones to adapt to the ...The Qaidam Basin is a key area for understanding the paleoenvironmental and faunal history of the Tibetan Plateau.The fossil schizothoracine fish,Hsianwenia wui,evolved extraordinarily thickened bones to adapt to the aridification of the Qaidam Basin during the Pliocene.However,the nature of the bone thickening itself remains elusive.To promote the further investigation of the physiological mechanism of the pachyostosis and the phylogenetic interrelationships of Hsianwenia and all relevant cyprinids,here we present a comprehensive morphological study of Hsianwenia.We have new information on the anterior part of the cranial cavity,a large supraneural 3 in the Weberian apparatus,numerous procurrent caudal fin rays supported by the preural centrum(Pu)5,and a neural arch on Pu2.We also find the differentiated pattern of the bone-thickening:the pachyostosis exists in the endoskeleton but not in the dermal skeleton;it is more obvious in ventral bones than in dorsal ones,when the thickening is present in the dorsally and ventrally grouped endoskeletal bones(e.g.,the epineural and epipleural intermuscular bones).Considering the integrity of musculoskeletal system manipulating the chewing activities,we suspect that the thickened pharyngeal jaws and the hard food processing might be associated with the unique hind protrusion(cleithral“humeral”process)of the dermal pectoral girdle of Hsianwenia.展开更多
WUZHEN, a town witha history of 1200years, is just 50 min-utes’ drive fromHangzhou City. This small town,with its black tiled, tung oil-painted timber framework hous-
Effective wildland fire management requires real-time access to comprehensive and distilled information from different data sources.The Digital Twin technology becomes a promising tool in optimizing the processes of w...Effective wildland fire management requires real-time access to comprehensive and distilled information from different data sources.The Digital Twin technology becomes a promising tool in optimizing the processes of wildfire pre-vention,monitoring,disaster response,and post-fire recovery.This review examines the potential utility of Digital Twin in wildfire management and aims to inspire further exploration and experimentation by researchers and practitioners in the fields of environment,forestry,fire ecology,and firefighting services.By creating virtual replicas of wildfire in the physical world,a Digital Twin platform facilitates data integration from multiple sources,such as remote sensing,weather forecast-ing,and ground-based sensors,providing a holistic view of emergency response and decision-making.Furthermore,Digital Twin can support simulation-based training and scenario testing for prescribed fire planning and firefighting to improve preparedness and response to evacuation and rescue.Successful applications of Digital Twin in wildfire management require horizontal collaboration among researchers,practitioners,and stakeholders,as well as enhanced resource sharing and data exchange.This review seeks a deeper understanding of future wildland fire management from a technological perspective and inspiration of future research and implementation.Further research should focus on refining and validating Digital Twin models and the integration into existing fire management operations,and then demonstrating them in real wildland fires.展开更多
文摘The Qaidam Basin is a key area for understanding the paleoenvironmental and faunal history of the Tibetan Plateau.The fossil schizothoracine fish,Hsianwenia wui,evolved extraordinarily thickened bones to adapt to the aridification of the Qaidam Basin during the Pliocene.However,the nature of the bone thickening itself remains elusive.To promote the further investigation of the physiological mechanism of the pachyostosis and the phylogenetic interrelationships of Hsianwenia and all relevant cyprinids,here we present a comprehensive morphological study of Hsianwenia.We have new information on the anterior part of the cranial cavity,a large supraneural 3 in the Weberian apparatus,numerous procurrent caudal fin rays supported by the preural centrum(Pu)5,and a neural arch on Pu2.We also find the differentiated pattern of the bone-thickening:the pachyostosis exists in the endoskeleton but not in the dermal skeleton;it is more obvious in ventral bones than in dorsal ones,when the thickening is present in the dorsally and ventrally grouped endoskeletal bones(e.g.,the epineural and epipleural intermuscular bones).Considering the integrity of musculoskeletal system manipulating the chewing activities,we suspect that the thickened pharyngeal jaws and the hard food processing might be associated with the unique hind protrusion(cleithral“humeral”process)of the dermal pectoral girdle of Hsianwenia.
文摘WUZHEN, a town witha history of 1200years, is just 50 min-utes’ drive fromHangzhou City. This small town,with its black tiled, tung oil-painted timber framework hous-
基金supported by the Third Comprehensive Scientific Investigation in Xinjiang of China“Investigation on the ecosystem and biodiversity of wild forest in Tianshan Mountains”(2021xjkk0501)National Natural Science Foundation of China“Species and phylogenetic diversity of bryophyte in Barlik Mountain national nature reserve,Xinjiang”(32060050)。
基金funded by the National Natural Science Foundation of China(NSFC No.52322610)Hong Kong Research Grants Council Theme-based Research Scheme(T22-505/19-N).
文摘Effective wildland fire management requires real-time access to comprehensive and distilled information from different data sources.The Digital Twin technology becomes a promising tool in optimizing the processes of wildfire pre-vention,monitoring,disaster response,and post-fire recovery.This review examines the potential utility of Digital Twin in wildfire management and aims to inspire further exploration and experimentation by researchers and practitioners in the fields of environment,forestry,fire ecology,and firefighting services.By creating virtual replicas of wildfire in the physical world,a Digital Twin platform facilitates data integration from multiple sources,such as remote sensing,weather forecast-ing,and ground-based sensors,providing a holistic view of emergency response and decision-making.Furthermore,Digital Twin can support simulation-based training and scenario testing for prescribed fire planning and firefighting to improve preparedness and response to evacuation and rescue.Successful applications of Digital Twin in wildfire management require horizontal collaboration among researchers,practitioners,and stakeholders,as well as enhanced resource sharing and data exchange.This review seeks a deeper understanding of future wildland fire management from a technological perspective and inspiration of future research and implementation.Further research should focus on refining and validating Digital Twin models and the integration into existing fire management operations,and then demonstrating them in real wildland fires.