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Vessel redundancy: modeling safety in numbers.

机译:船只冗余:以数字模拟安全性。

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We examined the concept that high vessel number provides xylem safety and also show that under certain circumstances high vessel number may increase rather than decrease the probability of mortality. The independent variable was the number of vessels per organ (redundancy). The dependent variable was the probability of organ death for which we set three thresholds for catastrophic runaway embolism (50, 75 and 90% embolism). Results were calculated based upon the probability that any particular vessel would become embolized (p). When the modelled p was below the runaway embolism threshold, the safety benefits (decreased probability of organ death) increased dramatically in going from one to ten vessels and approached maximum levels of safety in organs with 100 or more vessels. Vessel redundancy conferred the greatest advantage when p approached, but was less than, the runaway embolism threshold of the organ. However, when p exceeded the runaway embolism threshold the redundancy relationship was reversed and safety was greatest in organs with lower vessel numbers. Having greater vessel redundancy increased the likelihood of an "average" result, i.e., mortality if p is above the threshold, and survival when p is below the threshold. Model predictions are discussed in terms of redundancy segmentation, stem splitting and various other ecological and evolutionary strategies for plants exposed to different environmental conditions.
机译:我们研究了高血管数量提供木质部安全性的概念,并且还表明在某些情况下,高血管数量可能会增加而不是降低死亡率。自变量是每个器官的血管数量(冗余)。因变量是器官死亡的可能性,为此我们为灾难性失控栓塞设定了三个阈值(50%,75%和90%栓塞)。根据任何特定血管被栓塞的概率计算结果(p)。当建模的p低于失控栓塞阈值时,安全益处(器官死亡的可能性降低)从1艘增加到10艘,并在拥有100艘或更多船只的器官中达到最大安全水平。当p接近但小于器官失控的栓塞阈值时,血管冗余提供最大的优势。但是,当p超过失控栓塞阈值时,冗余关系将逆转,并且在血管数目较少的器官中安全性最高。具有更大的血管冗余度增加了“平均”结果的可能性,即,如果p高于阈值,则死亡率;而当p低于阈值时,存活率更高。针对冗余模型,茎分裂以及暴露于不同环境条件下的植物的各种其他生态和进化策略,讨论了模型预测。

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