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首页> 外文期刊>Annals of the New York Academy of Sciences >Penises as Variable-Volume Hydrostatic Skeletons
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Penises as Variable-Volume Hydrostatic Skeletons

机译:阴茎为可变体积静液压骨架

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摘要

Penises are inflatable intromittent organs that transfer sperm to a female during copulation. Most of the time, males store their penises in a flexible detumesced state, but they can rapidly inflate them with blood when an opportunity for reproductive behavior arises. In mammals, the primary erectile tissue is called the corpus cavernosum; its anatomy is a close match to a model hydroskeleton reinforced by an axial orthogonal fiber array. The wall of the corpus cavernosum contains layers of highly organized collagen fibers arranged at 0° and 90° to the penile long axis. Flaccid wall tissue is folded. Collagen fiber straightening during erection expands the tunica albuginea and increases both its stiffness and its second moment of area. These changes make the entire penis larger and harder to bend. Axial orthogonal fiber reinforcement affects the mechanical behavior of the erect corpus cavernosum, making it resistant to tensile, compressive, and bending forces.
机译:阴茎是可充气的内脏器官,在交配过程中将精子转移给女性。在大多数情况下,雄性将阴茎存储在柔软的脱瘤状态,但是当出现生殖行为的机会时,雄性可以迅速给它们充血。在哺乳动物中,主要的勃起组织称为海绵体。它的解剖结构与通过轴向正交纤维阵列增强的模型水骨架非常匹配。海绵体壁包含高度组织化的胶原纤维层,这些纤维排列在与阴茎长轴成0°和90°的位置。松弛的壁组织被折叠。勃起过程中胶原纤维的拉直会扩大白膜,并增加其硬度和面积的第二矩。这些变化使整个阴茎更大,更难弯曲。轴向正交纤维增强会影响直立海绵体的机械性能,使其抵抗拉伸,压缩和弯曲力。

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