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首页> 外文期刊>Development >When whorls collide: the development of hair patterns in frizzled 6 mutant mice.
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When whorls collide: the development of hair patterns in frizzled 6 mutant mice.

机译:当螺纹碰撞时:卷曲的6个突变小鼠的毛发生长。

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摘要

Surface appendages such as bristles, feathers and hairs exhibit both long- and short-range order. In the frizzled 6 null (Fz6(-/-)) mouse the orientations of the earliest born hair follicles are uncorrelated, but over time the follicles reorient to create patterns that are characterized by a high degree of local order. By quantifying follicle orientations over time, in both living and fixed tissues, we define the time course of local hair follicle refinement and the resulting evolution of a montage of competing patterns in Fz6(-/-) skin. We observe an apparently local process that within one week can organize a field of many tens of thousands of follicles, generating long-range order that extends over distances of more than one centimeter. Physical systems that undergo an analogous ordering of vector components suggest potential mechanisms that might apply to the patterning of hair follicles and related biological structures.
机译:诸如猪鬃,羽毛和头发之类的表面附属物表现出远距离和近距离秩序。在毛躁不整的6个null(Fz6(-/-))鼠标中,最早出生的毛囊的方向不相关,但是随着时间的流逝,毛囊会重新定向以创建具有高度局部有序特征的模式。通过量化活体和固定组织中卵泡随时间的方向,我们定义了局部毛囊细化的时间过程以及Fz6(-/-)皮肤中竞争模式的蒙太奇的演变。我们观察到了一个明显的局部过程,一个星期之内可以组织成千上万个卵泡,产生远距离超过一厘米的远距离有序。经历矢量成分相似排序的物理系统暗示了可能适用于毛囊和相关生物结构模式的潜在机制。

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