Anole Lizards

Anole lizards are small, mostly arboreal reptiles in the genus Anolis, valued in biology for their diverse behaviors, adaptations, and evolutionary history. They regulate body temperature through behavioral thermoregulation, communicate with visual displays such as extendable dewlaps, and often use specialized toe pads to grip vegetation and other surfaces. Differences in body form, coloration, habitat use, and signaling provide natural examples of adaptation, sexual selection, and ecological niche partitioning. Because many anole species occupy distinct environments and respond measurably to temperature, predators, and competitors, researchers use them to study evolution, biomechanics, animal behavior, and the effects of environmental change.

Anole Lizards - Related Videos

Research

JoVE Journal - Biology

Testing Visual Sensitivity to the Speed and Direction of Motion in Lizards

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Cited by 2 •

2006

Testing visual sensitivity in lizards using an operant conditioning paradigm that employs video playback of random-dot kinematograms and computer-generated invertebrates.

Computer-Generated Animal Model Stimuli

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Cited by 8 •

2007

Computer-generated stimuli using the Jacky dragon as a model.

Assessing Spatial Learning and Memory in Small Squamate Reptiles

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Cited by 3 •

2017

This paper describes a modification of the Barnes maze, a standard rodent paradigm used to assess spatial memory and learning, for use in small squamate reptiles.

Education

JoVE Science Education - Advanced Biology

An Introduction to Aging and Regeneration

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2023

Tissues are maintained through a balance of cellular aging and regeneration. Aging refers to the gradual loss of cellular function, and regeneration is the repair of damaged tissue generally mediated by preexisting adult or somatic stem cells. Scientists are interested in understanding the biological mechanisms behind these two complex processes. By doing so, researchers may be able to use somatic stem cells to treat degenerative diseases and develop therapies that could delay the effects of...

Isolation of Small Noncoding RNAs from Human Serum

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Cited by 13 •

2014

This protocol describes a method for extracting small RNAs from human serum. We have used this method to isolate microRNAs from cancer serum for use in DNA arrays and also singleplex quantitative PCR. The protocol utilizes phenol and guanidinium thiocyanate reagents with modifications to yield high quality RNA.

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