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赤点石斑鱼仔稚鱼侧线感觉器官的形成过程
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作者 铃木绅洋 《海洋水产科技》 1996年第2期43-45,49,共4页
关键词 石斑鱼 赤点石斑鱼 仔稚鱼 感觉器官形成
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Glevic抑制ICCs功能对ATP诱导大鼠盆神经放电的影响 被引量:1
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作者 方强 杨景 +3 位作者 潘进洪 李为兵 封建立 宋波 《局解手术学杂志》 2012年第5期483-484,487,共3页
目的探讨Glevic抑制ICCS功能对ATP诱导大鼠盆神经传入电活动的影响。方法 20只SD大鼠随机分为ATP组和Glevic组。ATP组通过膀胱内灌注ATP诱发盆神经放电评估ATP介导的膀胱感觉功能,Glevic组则通过Glevic预处理抑制膀胱ICCs功能后,重复AT... 目的探讨Glevic抑制ICCS功能对ATP诱导大鼠盆神经传入电活动的影响。方法 20只SD大鼠随机分为ATP组和Glevic组。ATP组通过膀胱内灌注ATP诱发盆神经放电评估ATP介导的膀胱感觉功能,Glevic组则通过Glevic预处理抑制膀胱ICCs功能后,重复ATP组实验。结果两组大鼠给药前膀胱灌注生理盐水均可诱发盆神经进行性增强的簇状放电。膀胱内灌注20 mmol/L ATP可诱发大鼠盆神经放电,频率为(27.36±2.53)次/分,并伴有较微弱的逼尿肌收缩。100μmol/L Glevic抑制ICCs功能后,ATP诱发的盆神经放电频率为(2.46±0.38)次/分,与ATP组相比差异非常显著(P<0.01)。结论 Glevic对ATP诱发的大鼠盆神经放电的抑制作用表明ICCs可能在ATP介导的膀胱感觉形成中发挥了重要作用。 展开更多
关键词 CAJAL间质细胞 膀胱 感觉形成
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Global shape reconstruction of nano grid with singly fixed camera 被引量:2
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作者 WEI YangJie WU ChengDong DONG ZaiLi 《Science China(Technological Sciences)》 SCIE EI CAS 2011年第4期1044-1052,共9页
Depth from defocus(DFD),as a typical shape reconstruction method,has been widely researched in most recent years.However,all the existing DFD algorithms require at least two defocused images with different camera para... Depth from defocus(DFD),as a typical shape reconstruction method,has been widely researched in most recent years.However,all the existing DFD algorithms require at least two defocused images with different camera parameters.Unfortunately,in micro/nano manipulation,any change on visual sensor's parameters is absolutely forbidden.Therefore,a novel DFD method to reconstruct the shape of a nano grid on micro/nano scale is researched in this paper.First,the blurring imaging model is constructed with the relative blurring and the diffusion equation.Second,the relationship between depth and blurring is discussed from four aspects.Subsequently,depth measurement problem is transformed into an optimization issue which is solved using the gradient flow algorithm.Finally,experiment results and error analysis are conducted to show the feasibility and effectiveness of the proposed method. 展开更多
关键词 depth from defocus diffusion equation shape reconstruction nano grid
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