Functional changes in vocal organ morphology and motor control facilitate the evolution of acoustic signal diversity. Although many rodents produce vocalizations in a variety of social contexts, few studies have explored the underlying production mechanisms. Here, we describe mechanisms of audible and ultrasonic vocalizations (USVs) produced by grasshopper mice (genus Onychomys). Grasshopper mice are predatory rodents of the desert that produce both loud, long-distance advertisement calls and USVs in close-distance mating contexts. Using live-animal recording in normal air and heliox, laryngeal and vocal tract morphological investigations, and biomechanical modelling, we found that grasshopper mice employ two distinct vocal production mecha...
House mice, like many tetrapods, produce multielement calls consisting of individual vocalizations r...
House mice, like many tetrapods, produce multielement calls consisting of individual vocalizations r...
Intraspecific variation in animal signaling is striking and complex, and it can impact individual fi...
Functional changes in vocal organ morphology and motor control facilitate the evolution of acoustic ...
It has long been known that rodents emit signals in the ultrasonic range, but their role in social c...
It has long been known that rodents emit signals in the ultrasonic range, but their role in social c...
House mice, like many tetrapods, produce multielement calls consisting of individual vocalizations r...
<div><p>Humans and song-learning birds communicate acoustically using learned vocalizations. The cha...
Mice (Mus musculus) live in social groups where they frequently interact and cooperate with other co...
Humans and song-learning birds communicate acoustically using learned vocalizations. The characteris...
<p>Mice produce many ultrasonic vocalizations (USVs) in the 30 - 100 kHz range including pup isolati...
House mice (Mus musculus) live in social groups where they frequently interact with conspecifics, th...
We examined the individual context of ultrasonic vocalizations (USVs) produced by free-living wild m...
<div><p>Mouse ultrasonic vocalizations (USVs) have variable spectrotemporal features, which research...
Mouse ultrasonic vocalizations (USVs) have variable spectrotemporal features, which researchers use ...
House mice, like many tetrapods, produce multielement calls consisting of individual vocalizations r...
House mice, like many tetrapods, produce multielement calls consisting of individual vocalizations r...
Intraspecific variation in animal signaling is striking and complex, and it can impact individual fi...
Functional changes in vocal organ morphology and motor control facilitate the evolution of acoustic ...
It has long been known that rodents emit signals in the ultrasonic range, but their role in social c...
It has long been known that rodents emit signals in the ultrasonic range, but their role in social c...
House mice, like many tetrapods, produce multielement calls consisting of individual vocalizations r...
<div><p>Humans and song-learning birds communicate acoustically using learned vocalizations. The cha...
Mice (Mus musculus) live in social groups where they frequently interact and cooperate with other co...
Humans and song-learning birds communicate acoustically using learned vocalizations. The characteris...
<p>Mice produce many ultrasonic vocalizations (USVs) in the 30 - 100 kHz range including pup isolati...
House mice (Mus musculus) live in social groups where they frequently interact with conspecifics, th...
We examined the individual context of ultrasonic vocalizations (USVs) produced by free-living wild m...
<div><p>Mouse ultrasonic vocalizations (USVs) have variable spectrotemporal features, which research...
Mouse ultrasonic vocalizations (USVs) have variable spectrotemporal features, which researchers use ...
House mice, like many tetrapods, produce multielement calls consisting of individual vocalizations r...
House mice, like many tetrapods, produce multielement calls consisting of individual vocalizations r...
Intraspecific variation in animal signaling is striking and complex, and it can impact individual fi...