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通过三维毒性效应生长模型估算铜对微藻种群的毒性效应。

Estimating toxic effect of copper on population of microalgae through a three-dimensional toxic effect growth model.

机构信息

Key Laboratory of Meteorological Disaster of Ministry of Education, NUIST, Nanjing 210044, People's Republic of China.

出版信息

Bull Environ Contam Toxicol. 2011 Jun;86(6):576-82. doi: 10.1007/s00128-011-0274-3. Epub 2011 Apr 26.

Abstract

A newly proposed three-dimensional model for the effects of heavy metals on the growth of batch cultures of algae that allows the estimation of the no detected toxic effect concentration (NDEC) is presented. Two batch assays with exposure to copper were investigated in situ (ship-based enclosure). As an endpoint in these studies, the carrying capacity B(f), a parameter of the logistic growth model, possesses higher sensitivity and reliability than routine ecotoxicological endpoints. Using B(f) as the endpoint, the NDEC from the proposed model is compared to the no observed effect concentration (NOEC), Lowest Observed Effect Concentration (LOEC), the 5% effect concentration (EC₀₅) and no effect concentration (NEC) also calculated from field-derived data. The results show the confidence interval for the NDEC was wholly contained within the corresponding interval between the NOEC and LOEC, as well as within the corresponding much wider confidence interval for EC₀₅. Though the width of the confidence interval for NEC was basically equivalent to the corresponding width for NDEC, the NEC was somewhat higher than the corresponding NDEC. The results indicate that the NDEC is a promising possible alternative parameter to the NOEC.

摘要

本文提出了一种新的三维模型,用于评估重金属对藻类分批培养物生长的影响,可用于估计无检测毒性效应浓度(NDEC)。本研究采用现场(船基围隔)方法,对铜暴露的两种分批测定进行了研究。在这些研究中,作为终点参数的承载能力 B(f) 比常规生态毒理学终点更具有灵敏度和可靠性。利用 B(f) 作为终点参数,将所提出模型的 NDEC 与无观察效应浓度(NOEC)、最低观察效应浓度(LOEC)、5%效应浓度(EC₅₀)和根据现场数据计算得出的无效应浓度(NEC)进行了比较。结果表明,NDEC 的置信区间完全包含在 NOEC 和 LOEC 之间的相应区间内,以及 EC₅₀ 的相应更宽置信区间内。尽管 NEC 的置信区间宽度与相应的 NDEC 基本相当,但 NEC 略高于相应的 NDEC。研究结果表明,NDEC 是替代 NOEC 的一个很有前途的可能参数。

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