摘要。交通摄像头的视频供稿对于许多目的都是有用的,其中最关键的是与监视道路安全有关。车辆轨迹是危险行为和交通事故的关键要素。在这方面,至关重要的是要脱离那些异常的车辆轨迹,即偏离通常的路径的轨迹。在这项工作中,提出了一个模型,以使用流量摄像机的视频序列自动解决该模型。该提案通过框架检测车辆,跨帧跟踪其轨迹,估计速度向量,并将其与其他空间相邻轨迹的速度向量进行比较。可以从速度向量的比较中,可以检测到与相邻的trajectories非常不同(异常)的轨迹。实际上,该策略可以检测错误的轨迹中的车辆。模型的某些组成部分是现成的,例如最近深度学习方法提供的检测;但是,考虑了几种不同的选择和分析车辆跟踪。该系统的性能已通过各种真实和合成的交通视频进行了测试。
图1。Taxane mechanism of action ............................................................................ 2 Figure 2.Kaplan-Meier curve of the frequency of Grades 2-4 peripheral neuropathy separated by race ............................................................................................................. 5 Figure 3.曼哈顿的图3-4年级的tipn来自ECOG-5103中的AA患者................................................................................................................. 8图4。SBF2 expression across various tissues ........................................................... 10 Figure 5.Schematic of Schwann cells ........................................................................... 11 Figure 6.Simplified schematic representation of SBF2 protein and annotated functional domains ........................................................................................................ 13 Figure 7.Workflow of iPSC-dSN generation ................................................................ 20 Figure 8.Analysis pipeline of single-cell sequencing .................................................... 27 Figure 9.紫杉醇对IPSC-DSN生存能力和形态的影响........................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................... 34图10。Relative expression of SBF2 and cell viability .............................................. 38 Figure 11.Neurite outgrowth in iPSC-dSN ................................................................... 40 Figure 12.IPSC-DSN的电生理特性。 .............................................. 46 Figure 13. GMC203细胞系中线粒体含量的小提琴图.............................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................IPSC-DSN的电生理特性。.............................................. 46 Figure 13.GMC203细胞系中线粒体含量的小提琴图.............................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................Barcode rank plot ......................................................................................... 52 Figure 14.RSAA12细胞系中线粒体含量的小提琴图.................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................Violin plot of mitochondrial content in STAN601 cell line ........................... 57 Figure 17.线粒体含量的小提琴图06401单元线................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................. 58图18。每个测序样品的双重分布...................................................................................................................................................................................................................................................................................................................................................................IPSC-DSN的多维缩放(MDS)图............................................................................................................................................................................................................................................................................................................. 60图20。Single-cell RNA-sequencing of iPSC-dSN ................................................... 62 Figure 21.Distribution of differentially expressed mature sensory marker genes among cell type-specific clusters ................................................................................... 63 Figure 22.火山图强调了紫杉醇和IPSC-DSN的媒介物处理之间的显着基因表达变化。.............................................................. 66 Figure 23.Multidimensional scaling (MDS) plot of NTC and si SBF2 cells ................... 71 Figure 24.si SBF2 IPSC-DSN中的差异基因表达.......................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................
Elektrode 16旨在容纳3至8岁的骑手,并且具有高度可调的组件使其成为成长中的骑手的理想电动自行车。座椅中的可调节性超过4英寸,Elektrode 16可以舒适地适合37英寸至55英寸的儿童。用橡胶垫的折叠钢脚踏板在Elektrode 16上提供刚性和多功能性,从而使自行车轻松地转换为平衡自行车,并简单地折叠。孩子们可以学习使用Elektrode 16作为自行车的平衡自行车,而没有电动机摩擦/阻力,然后毕业于使用fotpegs和电动机/油门。车把设计促进了直立的骑行位置,而无需损害膝盖空间,随着孩子的成长提供额外的空间,并有了普通大小的车把和座椅,父母将有能力在他们认为合适的情况下更改和定制孩子的自行车。
*其他法案所需的许可证触发IAA OGD参与者| Illustrative – some components would not apply to same project YESAA – Yukon Environmental and Socio-Economic Assessment Act / MVRMA – Mackenzie Valley Resource Management Act / MBCA – Migratory Birds Convention Act / IBWTA – International Boundary Waters Treaty Act / CPRA – Canadian Petroleum Resource Act / Offshore Accords – Canada – NS and NFLD Offshore Accords / CEPA – Canadian Environmental Protection Act / Nuppaa - Nunavut计划和项目评估法(NUPPAA)< / div>
