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Tracheid analysis and modeling of the minor veins of the coleus and smilax leaves

机译:骨大骨和叶片的小脉的气管分析和建模

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Tracheid analysis was carried out on the veinlets and minor veins of the coleus (Solenostemon scutellarioides [L.] Codd) leaf. Third- to fifth-order, or minor, veins average 3.4 tracheids in tandem and they bipartition islets when these enclosed islets reach a critical size; both these features of vein length and islet size contribute to a self-similar process of vein pattern generation. An areole was calculated to be initially comprised of about ten cells making the patterning event for vein formation requiring only a few cells. An algorithmic model developed here for minor vein formation includes five production rules, and this computer model explains the 3–4 tracheids per minor vein, presence of isolated tracheids, the structure of veinlets, and the elaborate branching patterns of veinlets in coleus and other plants.
机译:在大骨膜(Solenostemon scutellarioides [L.] Codd)叶片的小脉和小脉上进行气管分析。三至五阶或次要静脉平均串联3.4个气管,当这些封闭的胰岛达到临界大小时,它们将分成两部分。静脉长度和胰岛大小的这些特征都有助于静脉图样生成的自相似过程。计算出一个区域最初由大约十个细胞组成,这使得形成静脉的图案化事件仅需要几个细胞。这里开发的用于小静脉形成的算法模型包括五个生产规则,并且该计算机模型解释了每条小静脉3-4个气管,孤立的气管的存在,小静脉的结构以及锦紫苏和其他植物中小静脉的精细分支模式。

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