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高重叠度机载SAR影像镶嵌线自动生成及优化
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作者 韩雅鑫 程春泉 杨书成 《测绘科学》 CSCD 北大核心 2022年第12期131-137,共7页
针对传统的镶嵌方法无法实现高重叠度机载合成孔径雷达(SAR)影像快速、无缝镶嵌的问题,该文基于顾及重叠的面Voronoi图,提出了一种接缝线网络生成及优化方法。采用改进的八邻域边界跟踪算法提取影像有效区域并将其简化为四边形,利用改... 针对传统的镶嵌方法无法实现高重叠度机载合成孔径雷达(SAR)影像快速、无缝镶嵌的问题,该文基于顾及重叠的面Voronoi图,提出了一种接缝线网络生成及优化方法。采用改进的八邻域边界跟踪算法提取影像有效区域并将其简化为四边形,利用改进的中轴线算法提取重叠区的接缝线并对影像有效区域进行切分生成互不重叠的Voronoi面,快速生成初始接缝线网络;提出了一套接缝线优化方法,实现了机载SAR影像高重叠度高、重叠情况复杂易导致的接缝线网络的孔洞消除。利用高分辨率机载SAR影像对本文算法进行验证,结果表明该方法有效克服了机载SAR影像镶嵌的小孔洞问题,能生成无缝且唯一的接缝线网络,从而实现影像的高效、自动镶嵌。 展开更多
关键词 影像镶嵌 VORONOI图 高重叠度 接缝线优化 SAR
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Promotion of spinosad biosynthesis by chromosomal integration of the Vitreoscilla hemoglobin gene in Saccharopolyspora spinosa 被引量:14
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作者 LUO YuShuang KOU XiaoXiao +7 位作者 DING XueZhi HU ShengBiao TANG Ying LI WenPing HUANG Fan YANG Qi CHEN HanNa XIA LiQiu 《Science China(Life Sciences)》 SCIE CAS 2012年第2期172-180,共9页
To promote spinosad biosynthesis by improving the limited oxygen supply during high-density fermentation of Saccharopolyspora spinosa, the open reading frame of the Vitreoscilla hemoglobin gene was placed under the co... To promote spinosad biosynthesis by improving the limited oxygen supply during high-density fermentation of Saccharopolyspora spinosa, the open reading frame of the Vitreoscilla hemoglobin gene was placed under the control of the promoter for the erythromycin resistance gene by splicing using overlapping extension PCR. This was cloned into the integrating vector pSET152, yielding the Vitreoscilla hemoglobin gene expression plasmid pSET152EVHB. This was then introduced into S. spinosa SP06081 by conjugal transfer, and integrated into the chromosome by site-specific recombination at the integration site ФC31 on pSET152EVHB. The resultant conjugant, S. spinosa S078-1101, was genetically stable. The integration was further confirmed by PCR and Southern blotting analysis. A carbon monoxide differential spectrum assay showed that active Vitreoscilla hemoglobin was successfully expressed in S. spinosa S078-1101. Fermentation results revealed that expression of the Vitreoscilla hemoglobin gene significantly promoted spinosad biosynthesis under normal oxygen and moderately oxygen-limiting conditions (P〈0.01). These findings demonstrate that integrating expression of the Vitreoscilla hemoglobin gene improves oxygen uptake and is an effective means for the genetic improvement of S. spinosa fermentation. Saccharopolyspora spinosa, spinosad, Vitreoscilla hemoglobin, integrating vector, homologous recombination 展开更多
关键词 Saccharopolyspora spinosa SPINOSAD Vitreoscilla hemoglobin integrating vector homologous recombination
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