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Modelling the growth of cultured greenlip abalone (Haliotis laevigata Leach): practical modes of measurement

机译:模拟养殖的绿唇鲍鱼(Haliotis laevigata Leach)的生长:实用的测量模式

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摘要

Commercial abalone growers and aquaculture researchers need to monitor and compare the growth rate of their stocks. Growth rates based on both length and weights are often calculated, but the process of disturbance for measurement will affect the results of most studies. In natural populations, constant (linear) growth in length has been supported, while logarithmic transformations for growth rates (length and weight) have been used for aquaculture studies. This study of growth of greenlip abalone (Haliotis laevigata , Leach) over a prolonged period (3 years) indicates that both data treatments are suitable. If weights are being used, then a growth model that allows for exponential growth, such as specific growth rate (SGR), must be used. If lengths are measured, then the calculation of simple differences in the lengths over time is sufficient. The apparent paradox in use of two forms of measure is comfortably rationalized as a result of the weight-length relationship and the von Bertalanffy relationship for this species. Thus, methods of minimal disturbance and stress, such as photographic estimation of length, could be used to accurately monitor growth trends in aquacultural studies as well as in industry.
机译:商业鲍鱼种植者和水产养殖研究人员需要监测和比较其种群的增长率。通常基于长度和重量来计算增长率,但是测量过程的干扰过程将影响大多数研究的结果。在自然种群中,长度的持续(线性)增长得到了支持,而增长率(长度和重量)的对数转换已用于水产养殖研究。这项对绿唇鲍鱼(Haliotis laevigata,Leach)的长期(3年)生长的研究表明,两种数据处理方法都是合适的。如果使用权重,则必须使用允许指数增长的增长模型,例如比增长率(SGR)。如果测量长度,则随时间的长度简单差异计算就足够了。由于该物种的体重-长度关系和冯·贝塔朗菲关系,使用两种形式的量度的明显悖论可以合理地合理化。因此,最小化干扰和压力的方法(例如长度的照相估计)可用于精确监控水产养殖研究以及工业中的生长趋势。

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