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Garcia-Pelegrin, E.

Publications and source records attributed to Garcia-Pelegrin, E..

3 recordsLinked to original sources

Increasing Animal Cognition Research in Zoos

Animal cognition covers various mental processes including perception, learning, decision-making and memory, and animal behavior is often used as a proxy for measuring cognition. Animal cognition/behavior research has multiple benefits; it provides fundamental knowledge on animal biology and evolution but can also have applied conservation and welfare applications. Zoos provide an excellent yet relatively untapped resource for animal cognition research, because they house a wide variety of species - many of which are under threat - and allow close observation and relatively high experimental control compared to the wild. Multi-zoo collaboration leads to increased sample size and species representation, which in turn leads to more robust science. However, there are salient challenges associated with zoo-based cognitive research, which are subject-based (e.g., small sample sizes at single zoos, untrained/unhabituated subjects, site effects) and human-based (e.g., time restrictions, safety concerns, and perceptions of animals interacting with unnatural technology or apparatus). We aim to increase the understanding and subsequent uptake of animal cognition research in zoos, by transparently outlining the main benefits and challenges. Importantly, we use our own research (1) a study on novelty responses in hornbills, and (2) a multi-site collaboration called the ManyBirds project to demonstrate how challenges may be overcome. These potential options include using drop and go apparatuses that require no training, close human contact or animal separation. This article is aimed at zoo animal care and research staff, as well as external researchers interested in zoo-based studies. RESEARCH HIGHLIGHTSO_LIZoos are an excellent yet relatively untapped resource for animal cognition research. C_LIO_LIZoo cognition research has historically been challenging, and traditional laboratory paradigms often do not translate well to the majority of zoos. C_LIO_LISalient challenges of zoo-based cognitive research can be overcome by using less restrictive test apparatuses, limiting animal training and isolation, and subscribing to multi-zoo collaborative programs. C_LI

scientific communication and education↗

Neophobia and innovation in critically endangered Bali myna, Leucopsar rothschildi

Cognition underlies animal behaviour, which is key to successful conservation strategies, yet largely under-utilised in conservation, though there are recent calls for closer integration. Conservation-relevant cognitive abilities can impact on adaptability and survival, such as neophobia, e.g., responses to novelty, and innovation e.g., problem-solving, particularly in todays changing world. Bali myna are a critically endangered endemic species, which are a focus of active conservation efforts, including reintroductions. Therefore, gathering cognitive data can aid in improving and developing conservation strategies, like pre-release training and individual selection for release. In 22 captive Bali myna, we tested neophobia (novel object, novel food, control conditions), innovation (bark, cup, lid conditions) and individual repeatability. We found effects of condition and social environment, including longer latencies to touch familiar food in presence than absence of novel items, and between problem-solving tasks, as well as in the presence of conspecifics, compared with being alone, or with conspecifics and competing heterospecifics. Individuals were repeatable in latency responses: 1) temporally in both experiments; 2) contextually in innovation experiment and between both experiments (and approach order), suggesting a stable behaviour trait. These findings are an important starting point for improving conservation strategies in Bali myna and other similarly threatened species.

animal behavior and cognition↗

Individual repeatability, species differences, and the influence of socio-ecological factors on neophobia in 10 corvid species

Behavioural responses to novelty, including fear and subsequent avoidance of novel stimuli, behaviours referred to as neophobia, determine how animals interact with their environment. Neophobia aids in navigating risk and impacts on adaptability and survival. There is variation within and between individuals and species, however, lack of large-scale, comparative studies critically limits investigation of the socio-ecological drivers of neophobia. In this study, we tested responses to novel objects and food (alongside familiar food) versus a baseline (familiar food alone) in 10 corvid species (241 subjects) across 10 labs worldwide. There were species differences in the latency to touch familiar food in the novel object and food conditions relative to the baseline. Three of seven socio-ecological factors influenced object neophobia: 1) use of urban habitat (vs not), 2) territorial pair vs family group sociality and 3) large vs small flock size (whereas range, caching, hunting live animals, and genus did not); while only flock size influenced food neophobia. We found that, overall, individuals were temporally and contextually repeatable (i.e. consistent) in their novelty responses in all conditions, indicating neophobia is a stable behavioural trait. With this study, we have established a network of corvid researchers, demonstrating potential for further collaboration to explore the evolution of cognition in corvids and other bird species. These novel findings enable us, for the first time in corvids, to identify the socio-ecological correlates of neophobia and grant insight into specific elements that drive higher neophobic responses in this avian family group.

animal behavior and cognition↗