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George Ruck

Publications and source records attributed to George Ruck.

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Multivariate Functional Data Analysis Uncovers Behavioral Fingerprints in Invertebrate Locomotor Response to Micropollutants

The need for effective biomonitoring in wastewater has become clear due to the impracticality of continuously tracking all chemicals and emerging contaminants in the aquatic exposome. Effect-based biomonitoring provides a cost-effective solution. The ToxMate device, which uses videotracking of locomotor behavior in aquatic invertebrates, has proven efficient for real-time detection of micropollutant surges in effluents. To extend the approach, this proof-of-concept study evaluates the potential to formalize behavioral fingerprints from real-time videotracking data to characterize qualitative variations in effluent contamination. We present the first application of a functional data analysis (FDA) framework in ecotoxicology. Data were obtained by simultaneously tracking three sentinel organisms from distinct taxa (a crustacean, an annelid, and a gastropod) during pulse exposures to four chemicals in the laboratory (two metals, one pharmaceutical, and one insecticide). Individual and multispecies responses were analy-zed to determine whether combining species enhances the resolution of contamination fingerprints through multidimensional FDA. Applying the same data-driven approach to field data from a wastewater treatment plant (WWTP) revealed four recurring types of micropollution events. This proof of concept demonstrates the potential of behavioral fingerprints to improve wastewater monitoring and reduce pollutant transfer to the environment.

q-bio.QM

Rank Ordering of Species Sensitivities to Chemicals: Discrepancies between Behavioral and Lethal Responses in Freshwater and Marine Invertebrates

Locomotor behavioural responses are increasingly recognized as sensitive and ecologically relevant indicators for assessing aquatic organism exposure to contaminants. They often occur at concentrations lower than those causing physiological damage, yet their consequences for organisms' fitness and population dynamics remain unclear. Moreover, it is still uncertain how these behavioural endpoints align with traditional toxicological apical endpoints used to assess species sensitivities in risk assessment. This study evaluates the correlation between thresholds triggering locomotor reactions with LC50 values across 19 freshwater and 12 marine invertebrate species exposed to the insecticide imidacloprid and the metal copper. Behavioural responses were measured via videotracking during pulse exposure assays, while 96h acute tests provided species-specific LC50 values for copper. Results reveal strong discrepancies: some highly sensitive species showed no locomotor changes, whereas others tolerant to lethality displayed strong movement responses. For instance, freshwater annelids and gastropods responded markedly to imidacloprid, while marine shrimps exhibited hyperactivity under low copper levels. These findings indicate that relying solely on lethality-based data may underestimate the fraction of species affected by contamination. Integrating behavioural endpoints into population risk assessment frameworks is therefore crucial to better protect aquatic biodiversity.

q-bio.QM