[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"item-2121":3},{"id":4,"title":5,"url":6,"summary":7,"summary_zh":8,"content":9,"source_name":10,"source_url":6,"published_at":11,"category":12,"cover_url":9,"hotness":13,"is_selected":14,"score":15,"score_detail":16,"sources":24,"tags":26,"view_count":32,"doi":33,"paper":34,"created_at":59},2121,"Considering the allocation of photosynthetic and non-photosynthetic nitrogen to improve the accuracy of radiative transfer model for estimating leaf biochemical traits","https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.compag.2026.112397","Considering the allocation of photosynthetic and non-photosynthetic nitrogen to improve the accuracy of radiative transfer model for estimating leaf biochemical traits。Computers and Electronics in Agriculture","考虑光合氮与非光合氮的分配以提高辐射传输模型估算叶片生化特性的准确性。",null,"Computers and Electronics in Agriculture","2026-09-10T00:00:00Z","论文",10,false,68,{"impact":17,"substance":18,"depth":19,"authority":20,"freshness":21,"relevant":22,"comment":23},12,18,16,14,8,1,"核心期刊论文，提出区分光合与非光合氮分配以提升叶片生化参数遥感反演精度，方法有新意但属细分领域进展，适合主题聚合而非头条精选。",[25],{"name":10,"url":6},[27,28,29,30,31],"智慧农业","遥感","作物表型","氮素营养","辐射传输模型",0,"10.1016\u002Fj.compag.2026.112397",{"doi":33,"openalex_id":35,"authors":36,"venue":10,"cited_by_count":32,"oa_url":9,"card":52,"direction":56,"ingested_from":58},"W7212191131",[37,39,41,43,45,47,50],{"name":38,"orcid":9},"Shuang Xiang",{"name":40,"orcid":9},"Zixin Meng",{"name":42,"orcid":9},"Zhonghui Guo",{"name":44,"orcid":9},"Zhongyu Jin",{"name":46,"orcid":9},"Le Xu",{"name":48,"orcid":49},"Fenghua Yu","https:\u002F\u002Forcid.org\u002F0000-0001-6545-9873",{"name":51,"orcid":9},"Tongyu Xu",{"tldr":53,"method":54,"finding":55,"direction":56,"opportunity":57},"区分光合与非光合氮分配，改进辐射传输模型以提升叶片生化参数估算精度。","基于叶片辐射传输模型，引入光合\u002F非光合氮分配参数进行改进与验证。","考虑氮分配可显著提高叶片氮含量等生化性状的遥感估算精度。","农业遥感与作物表型","可将氮分配机制耦合到冠层尺度模型，并探索多物种、多生育期的普适性。","openalex","2026-09-11T23:30:02.027560Z"]