Faculty of Fisheries Sciences, Hokkaido University, Hakodate, Hokkaido, Japan.
PLoS One. 2023 Feb 2;18(2):e0280017. doi: 10.1371/journal.pone.0280017. eCollection 2023.
In this study, we developed a feeding simulation using the fish schooling behavior model to evaluate growth differences from the feeding spatial distribution. In the proposed simulation, feeding behavior was modeled using the fish schooling model to simulate the amount of feed consumed by each individual. Next, body mass growth was calculated based on the amount of feed consumed. A 3.0-m diameter aquaculture tank was used for the simulation. We used three feeding methods to evaluate how feeding distribution affected growth: Feeding A, B, and C. The feed was distributed in a square pattern with one side length of 1.5, 1.0, or 0.5 m for Feeding A, B, and C groups, respectively. The results revealed that individual differences in body mass resulting from each feeding method differed greatly. The individual difference was largest in the Feeding C group. Here, maximum swimming speed was assumed to be proportional to total length. The feeding area of Feeding C was narrow; therefore, the first individual to arrive in the feeding area dominated the feed. Large individuals accessed the feed more easily than did small individuals. Consequently, the growth of large individuals became more rapid, and the individual differences became large in Feeding C. A rearing test can be conducted in a short time, and the optimal aquaculture operation was easily determined using the proposed simulation method. We concluded that the proposed simulation is useful as a decision-making tool for aquaculture management.
在本研究中,我们开发了一种基于鱼群行为模型的投喂模拟,以评估从投喂空间分布角度来看的生长差异。在提出的模拟中,使用鱼群行为模型对投喂行为进行建模,以模拟每个个体消耗的饲料量。然后,根据消耗的饲料量计算体重增长。模拟使用了一个 3.0 米直径的水产养殖水箱。我们使用了三种投喂方法来评估投喂分布如何影响生长:投喂 A、B 和 C。对于投喂 A、B 和 C 组,饲料分别以 1.5、1.0 或 0.5 米的边长呈正方形分布。结果表明,不同投喂方法导致的个体体重差异很大。在投喂 C 组中个体差异最大。在这里,最大游泳速度被假设与全长成正比。投喂 C 的投喂区域很窄;因此,第一个到达投喂区域的个体主导了饲料。大个体比小个体更容易获得饲料。因此,大个体的生长速度更快,投喂 C 中的个体差异更大。养殖试验可以在短时间内进行,并且可以使用提出的模拟方法轻松确定最佳水产养殖操作。我们得出结论,提出的模拟方法可作为水产养殖管理的决策工具。