[1] 李鹏. 中国设施畜牧业的现状及发展重点[J]. 天津农业科学, 2010, 16(1): 110-112. LI P.Current situation and development of the facility animal husbandry in china[J]. Tianjin agricultural sciences, 2010, 16(1): 110-112. [2] 任妮, 孙艺伟, 李果, 等. 基于专利计量的全球设施畜牧业关键技术发展态势分析[J]. 中国畜牧杂志, 2020, 56(5): 183-193. REN N, SUN Y W, LI G, et al.Development status of the key technology for global protected livestock and poultry based in patentometrics[J]. Chinese journal of animal science, 2020, 56(5): 183-193. [3] 杨阳. “无形手”精准饲喂畜禽[J]. 中国农村科技, 2017(5): 56-58. YANG Y.Precise feeding of livestock and poultry with invisible hands[J]. China rural science & technology, 2017(5): 56-58. [4] 夏艳阳, 雷书彦, 张智, 等. 基于氮平衡的公安县畜禽养殖分析[J]. 河南农业科学, 2019, 48(12): 63-72. XIA Y Y, LEI S Y, ZHANG Z, et al.Analysis of livestock and poultry breeding based on the nitrogen nutrient balance in Gong'an county[J]. Journal of Henan agricultural sciences, 2019, 48(12): 63-72. [5] 陶秀萍, 董红敏. 畜禽废弃物无害化处理与资源化利用技术研究进展[J]. 中国农业科技导报, 2017, 19(1): 37-42. TAO X P, DONG H M.Research progress on animal waste treatment and recycling technology[J]. Journal of agricultural science and technology, 2017, 19(1): 37-42. [6] 麻福芳, 徐光耀, 戴天放. 畜禽养殖业废弃物污染防治研究[J]. 农业展望, 2017, 13(4): 63-68. MA F F, XU G Y, DAI T F.Prevention and treatment of waste pol-lution from livestock and poultry breeding industry[J]. Agricultural outlook, 2017, 13(4): 63-68. [7] 支丽平. 基于专利计量视角的我国本体技术发展态势分析[J]. 情报杂志, 2014, 33(6): 79-83. ZHI L P.Technological development situations of ontology in China based on patentometrics[J]. Journal of intelligence, 2014, 33(6): 79-83. [8] 郭柯磊, 欧阳昭连, 杜然然, 等. 国际生物技术专利计量分析[J]. 生物技术通讯, 2011, 22(2): 248-251. GUO K L, OUYANG Z L, DU R R, et al.Study of international patents on biotechnology[J]. Letters in biotechnology, 2011, 22(2): 248-251. [9] 常茹茹, 赵蓉英, 贾增帅, 等. 全球人工智能专利合作特征及影响力研究[J]. 农业图书情报学报, 2020, 32(2): 58-70. CHANG R R, ZHAO R Y, JIA Z S, et al.The characteristics and impact of international artificial intelligence(AI) patent cooperation[J]. Journal of library and information science in agriculture, 2020, 32(2): 58-70. [10] 唐恒, 刘帅. 中国设施农业专利计量分析[J]. 图书情报研究, 2017, 10(4): 77-82. TANG H, LIU S.An analysis of the patents in the field of facility agriculture in China[J]. Library and information studies, 2017, 10(4): 77-82. [11] 赵霞, 王玉光, 胡瑞法. 基于专利分析的转基因农作物技术布局态势研究[J]. 情报杂志, 2014, 33(9): 51-55, 92. ZHAO X, WANG Y G, HU R F.Patent layout and status analysis of genetically modified crop technology[J]. Journal of intelligence,2014, 33(9): 51-55, 92. [12] 程锦祥, 张钟月, 曹淼, 等. 渔业专利文献分类类目设置与机器标引策略研究[J]. 农业图书情报学报, 2020, 32(7): 63-72. CHENG J X, ZHANG Z Y, CAO M, et al.Taxonomy construction and machine indexing strategies of fishery patent literature[J]. Journal of library and information science in agriculture, 2020, 32(7): 63-72. [13] 卢垚, 宋敏. 基于专利数据的植物抗逆境胁迫基因研究态势分析[J]. 中国农业科技导报, 2014, 16(5): 167-174. LU Y, SONG M.Analysis about research status of plant stress-resistance gene based on patent data[J]. Journal of agricultural science and technology, 2014, 16(5): 167-174. [14] 梁毅劼, 王海伶, 谭芳香, 等. 广西蔗糖加工业专利现状分析与技术创新对策[J]. 南方农业学报, 2016, 47(9): 1629-1634. LIANG Y J, WANG H L, TAN F X, et al.Analysis on patent situa-tion of cane sugar industry and technological innovation countermea-sures in Guangxi[J]. Journal of southern agriculture, 2016, 47(9): 1629-1634. [15] 林鑫, 肖宇锋, 张佳维, 等. 基于专利计量分析的国际抗高血压药物研究[J]. 中国新药杂志, 2019, 28(15): 1797-1802. LIN X, XIAO Y F, ZHANG W J, et al.Study on international anti-hypertensive agents based on patent bibliometrics analysis[J]. Chi-nese journal of new drugs, 2019, 28(15): 1797-1802. [16] 汪满容, 刘桂锋, 孙华平. 基于专利地图的全球大数据技术竞争态势研究[J]. 现代情报, 2017, 37(1): 148-155. WANG M R, LIU G F, SUN H P.Research on the competitive intelligence of global big data technology based on patent map[J]. Journal of modern information, 2017, 37(1): 148-155. [17] 许彤彤, 李砚. 专利计量学视角下4G通讯发展趋势分析[J]. 吉林大学学报(信息科学版), 2016, 34(5): 594-599. XU T T, LI Y.Analysis of development trend of 4G communication from patent metrology perspective[J]. Journal of Jilin university, 2016, 34(5): 594-599. [18] 赵蓉英, 李新来, 李丹阳. 基于专利计量的企业技术竞争力研究——以国外船舶柴油机领域为例[J]. 数字图书馆论坛, 2020 (2): 52-58. ZHAO R Y, LI X L, LI D Y.Technological competitiveness research of enterprises based on patent analysis: Taking foreign marine diesel engine as an example[J]. Digital library forum, 2020(2): 52-58. [19] 张雅贤, 方战强. 重金属污染场地修复技术的专利计量分析[J]. 环境工程学报, 2019, 13(12): 3019-3026. ZHANG Y X, FANG Z Q.Bibliometric analysis of patents on the remediation technologies of heavy-metal(loid)contaminated sites[J]. Chinese journal of environmental engineering, 2019, 13(12): 3019-3026. [20] 巩珗, 刘俐媛, 陈扬. 基于专利计量的汞污染治理技术态势分析[J]. 环境工程学报, 2019, 13(6): 1473-1487. GONG Y, LIU L Y, CHEN Y.Analysis on the international develop-ment trends of merc-ury pollution abatement technology based on-patent bibliometrics[J]. Chinese journal of environmental engineer-ing, 2019, 13(6): 1473-1487. [21] 李维波, 赵蕴华, 孟浩. 基于专利计量的页岩气技术发展态势分析[J]. 全球科技经济瞭望, 2017, 32(2): 49-57. LI W B, ZHAO Y H, MENG H.Analysis on development trend of shale gas technologies based on patent bibliometrics[J]. Global sci-ence, technology and economy outlook, 2017, 32(2): 49-57. |