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关注数学生物学难题的表面:为什么海龟的头部类似于一个凸形两侧对称的十二面体?

Tending to the Facial Surfaces of a Mathematical Biology Head-Scratcher: Why Does the Head of the Sea Turtle Resemble a Convex Zygomorphic Dodecahedron?

作者信息

Becker David A

机构信息

Department of Chemistry and Biochemistry, Florida International University, Miami, FL 33199, USA.

出版信息

Animals (Basel). 2025 Jan 4;15(1):100. doi: 10.3390/ani15010100.

Abstract

Two convex polyhedra that markedly resemble the head of the flatback sea turtle hatchling are identified. The first example is a zygomorphic tetragonal dodecahedron, while the other, an even better matching structure, is a related tetradecahedron, herein speculated to arise from this particular dodecahedron via known mechanisms gleaned from studies of the behavior of foams. A segmented, biomorphic, convex polyhedral model to address cephalic topology is thus presented stemming from solid geometry, anatomical observations, and a recently computed densest local packing arrangement of fifteen slightly oblate spheroids in which fourteen oblate spheroids surround a central such spheroid. This particular array of oblate spheroids shares salient structural features with the aforementioned dodecahedron. Successful testing of the model has been achieved by converting this array of fifteen oblate spheroids constructed with putty to the cephaloid dodecahedron in a process involving ventral elongation induced by stretching in the anterior direction along the anteroposterior axis (convergent extension). During convergent extension, the two left most anterolateral oblate spheroids that are in direct contact with the ventral spheroid of the array merge into a single lateral facet of the incipient dodecahedron, while the corresponding two right such oblate spheroids do the same. Thus, the fourteen outer oblate spheroids of the array give rise to the twelve facets of the finalized dodecahedron, while the central oblate spheroid remnant assumes an interior dodecahedral position. The hypothetical dodecahedron to tetradecahedron transformation entails the collapse of a tetravalent vertex (which is known to occur in foams as part of a T1 transition) followed by bilateral facet splitting. Remarkably, a model stipulating that convexity is to be retained in connection with this sequence of steps necessitates that the starting dodecahedral template undergoes modification to become a tetradecahedron in possession of precisely the highly ordered feature found at the top of the head of numerous specimens of the flatback sea turtle hatchling, namely, a fused medial pentagon-heptagon pair in the form of a pentagonal frontal scute and heptagonal frontoparietal scute. Such a possible new instance of geometric biomorphy, taken together with the correct anticipation of the cephalic pentagon-heptagon pair, might serve to instill further confidence in renewed efforts to shed light on morphogenesis with foam embryo models.

摘要

识别出两个明显类似于平背海龟幼体头部的凸多面体。第一个例子是左右对称的四方十二面体,而另一个与之匹配度更高的结构是相关的十四面体,本文推测它是通过从泡沫行为研究中收集的已知机制,由这个特定的十二面体演变而来。因此,基于立体几何、解剖学观察以及最近计算出的十五个略呈扁球形的球体的最密集局部堆积排列(其中十四 个扁球体围绕着一个中心扁球体),提出了一个用于解决头部拓扑结构的分段、生物形态的凸多面体模型。这种特殊的扁球体排列与上述十二面体具有显著的结构特征。通过将用橡皮泥构建的这十五个扁球体阵列在一个涉及沿前后轴向前拉伸诱导腹侧伸长(汇聚延伸)的过程中转化为头状十二面体,成功地对该模型进行了测试。在汇聚延伸过程中,与阵列腹侧球体直接接触的最左侧两个前外侧扁球体合并为初始十二面体的一个单一侧面,而相应的右侧两个扁球体也如此。因此,阵列中的十四个外部扁球体形成了最终十二面体的十二个面,而中央扁球体残余部分占据了十二面体内的位置。假设的十二面体到十四面体的转变需要一个四价顶点的塌陷(已知在泡沫中作为T1转变的一部分会发生),随后是双侧面分裂。值得注意的是,一个规定在这一系列步骤中要保持凸性的模型要求起始的十二面体模板进行修改,以成为一个具有在众多平背海龟幼体头部顶部发现的精确高度有序特征的十四面体,即一个呈五角形额盾和七角形额顶盾形式的融合内侧五边形 - 七边形对。这种几何生物形态的可能新实例,连同对头部长五边形 - 七边形对的正确预测,可能有助于进一步增强人们对利用泡沫胚胎模型揭示形态发生的新努力的信心。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e64/11718810/65d6b70df29b/animals-15-00100-g001.jpg

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