Bier Martin, Majka Maciej, Schmidt Cameron
Department of Physics, East Carolina University, Greenville, NC 27858, USA.
Department of Biology, East Carolina University, Greenville, NC 27858, USA.
Entropy (Basel). 2025 May 19;27(5):539. doi: 10.3390/e27050539.
Mammalian fertilization depends on sperm successfully navigating a spatially and chemically complex microenvironment in the female reproductive tract. This process is often conceptualized as a competitive race, but is better understood as a collective random search. Sperm within an ejaculate exhibit a diverse distribution of motility patterns, with some moving in relatively straight lines and others following tightly turning trajectories. Here, we present a two-state random walk model in which sperm switch from high-persistence-length to low-persistence-length motility modes. In reproductive biology, such a switch is often recognized as "hyperactivation". We study a circularly symmetric setup with sperm emerging at the center and searching a finite-area disk. We explore the implications of switching on search efficiency. The first proposed model describes an adaptive search strategy in which sperm achieve improved spatial coverage without cell-to-cell or environment-to-cell communication. The second model that we study adds a small amount of environment-to-cell communication. The models resemble macroscopic search-and-rescue tactics, but without organization or networked communication. Our findings provide a quantitative framework linking sperm motility patterns to efficient search strategies, offering insights into sperm physiology and the stochastic search dynamics of self-propelled particles.
哺乳动物的受精过程取决于精子能否成功地在雌性生殖道中一个空间和化学环境复杂的微环境中导航。这个过程通常被概念化为一场竞争激烈的赛跑,但更好的理解是一种集体随机搜索。一次射精中的精子表现出多种不同的运动模式分布,有些精子以相对直线的方式移动,而另一些则沿着紧密转弯的轨迹移动。在这里,我们提出了一个两态随机游走模型,其中精子从高持久长度运动模式转变为低持久长度运动模式。在生殖生物学中,这种转变通常被认为是“超激活”。我们研究了一种圆形对称的设置,精子从中心出现并在一个有限面积的圆盘内搜索。我们探讨了这种转变对搜索效率的影响。第一个提出的模型描述了一种自适应搜索策略,其中精子在没有细胞间或环境与细胞间通信的情况下实现了更好的空间覆盖。我们研究的第二个模型增加了少量的环境与细胞间通信。这些模型类似于宏观的搜索和救援策略,但没有组织或网络通信。我们的研究结果提供了一个定量框架,将精子运动模式与高效搜索策略联系起来,为精子生理学和自推进粒子的随机搜索动力学提供了见解。