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Zhong, Zheng; Chen, Weidong; Zhang, Yue; Yang, Jing; Dai, Zhicheng – Interactive Learning Environments, 2022
Animal vocal behaviour represents a certain meaning, which is the explicit expression of animal emotions, needs and communication. Different from human language, animal vocal behaviour is very abstract, and the learning material of animal vocal behaviour is also more difficult to obtain. It is hard for college students to recognize vocal…
Descriptors: Animals, Computer Simulation, Animal Behavior, Zoology
Nieto, Javier; Mason, Tere A.; Bernal-Gamboa, Rodolfo; Uengoer, Metin – Learning & Memory, 2020
In two instrumental conditioning experiments with rats, we examined the impacts of acquisition and extinction cues on ABC renewal of instrumental behavior. Animals were reinforced with food for lever pressing in one context, followed by extinction of the response in a second one. Presentations of a brief tone accompanied extinction in Experiment 1…
Descriptors: Cues, Conditioning, Animals, Animal Behavior
Darling, Randi A.; Smith, Alyssa; Mello, Alex – Bioscene: Journal of College Biology Teaching, 2021
Many science departments encourage students to gain experience conducting research. However, finding ecological research projects that allow students to test a hypothesis in the field, over the relatively short time span of a semester, can be challenging. This article describes an inquiry-based research activity examining the influence that urban…
Descriptors: Science Instruction, Student Research, Wildlife, Animals
Lee, Tammy D.; Lubischer, Jane L. – Science and Children, 2014
In this article, Tammy D. Lee and Jane L. Lubischer describe a classroom lesson designed to explore how animals use sound to communicate and how this communication affects their survival. Lee and Lubischer wanted to bring an awareness of how science is happening in students' own backyards. They developed a half-day 5E lesson integrating two…
Descriptors: Science Education, Physical Sciences, Biological Sciences, Interdisciplinary Approach
Wallez, Catherine; Schaeffer, Jennifer; Meguerditchian, Adrien; Vauclair, Jacques; Schapiro, Steven J.; Hopkins, William D. – Brain and Language, 2012
Studies involving oro-facial asymmetries in nonhuman primates have largely demonstrated a right hemispheric dominance for communicative signals and conveyance of emotional information. A recent study on chimpanzee reported the first evidence of significant left-hemispheric dominance when using attention-getting sounds and rightward bias for…
Descriptors: Evidence, Brain Hemisphere Functions, Specialization, Lateral Dominance
Fox, Bradley K.; Gorospe, Kelvin D.; Haverkort-Yeh, Roxanne D.; Rivera, Malia Ana J. – American Biology Teacher, 2013
This bioacoustics activity combines concepts in invertebrate taxonomy, animal communication, and acoustical physics while providing a unique opportunity for physics and biology teachers to collaborate and introduce their students to an exciting, interdisciplinary research field. Here, we propose a lab-and field-based activity that uses hydrophones…
Descriptors: Inquiry, Active Learning, Science Activities, Interdisciplinary Approach
Kudoh, Masaharu; Shibuki, Katsuei – Learning & Memory, 2006
We have previously reported that sound sequence discrimination learning requires cholinergic inputs to the auditory cortex (AC) in rats. In that study, reward was used for motivating discrimination behavior in rats. Therefore, dopaminergic inputs mediating reward signals may have an important role in the learning. We tested the possibility in the…
Descriptors: Stimuli, Auditory Perception, Discrimination Learning, Rewards
Are Consonant Intervals Music to Their Ears?: Spontaneous Acoustic Preferences in a Nonhuman Primate
McDermott, Josh; Hauser, Marc – Cognition, 2004
Humans find some sounds more pleasing than others; such preferences may underlie our enjoyment of music. To gain insight into the evolutionary origins of these preferences, we explored whether they are present in other animals. We designed a novel method to measure the spontaneous sound preferences of cotton-top tamarins, a species that has been…
Descriptors: Intervals, Acoustics, Auditory Perception, Primatology

Sussman, Harvey M. – Psychological Review, 1989
The neuronal model shown to code sound-source azimuth in the barn owl by H. Wagner et al. in 1987 is used as the basis for a speculative brain-based human model, which can establish contrastive phonetic categories to solve the problem of perception "non-invariance." (SLD)
Descriptors: Acoustics, Animal Behavior, Cognitive Processes, Encoding (Psychology)