Search results for "Acoustic Signals"

showing 4 items of 4 documents

Decoding Group Vocalizations: The Acoustic Energy Distribution of Chorus Howls Is Useful to Determine Wolf Reproduction

2016

Population monitoring is crucial for wildlife management and conservation. In the last few decades, wildlife researchers have increasingly applied bioacoustics tools to obtain information on several essential ecological parameters, such as distribution and abundance. One such application involves wolves (Canis lupus). These canids respond to simulated howls by emitting group vocalizations known as chorus howls. These responses to simulated howls reveal the presence of wolf litters during the breeding period and are therefore often used to determine the status of wolf populations. However, the acoustic structure of chorus howls is complex and discriminating the presence of pups in a chorus i…

0106 biological sciencesEntropyPopulation Dynamicslcsh:MedicineWildlife01 natural sciencesVocalizationMathematical and Statistical Techniqueslcsh:ScienceAnimal Signaling and CommunicationIberian wolfMammalseducation.field_of_studyMultidisciplinarybiologyAnimal BehaviorBehavior AnimalEcologyPhysicsReproductionAcoustic energyCanisPhysical SciencesVertebratesThermodynamicsCartographyStatistics (Mathematics)Research ArticleConservation of Natural ResourcesBioacousticsAnimal TypesPopulationResearch and Analysis Methods010603 evolutionary biologyCoyotesAcoustic SignalsAnimalsWildlife managementStatistical MethodseducationEcosystemBehaviorWolvesReproductive success010604 marine biology & hydrobiologylcsh:RChorusOrganismsBiology and Life SciencesAcousticsJackalsModels Theoreticalbiology.organism_classificationAmnioteslcsh:QVocalization AnimalZoologyBioacousticsMathematicsForecasting
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High-speed duetting - latency times of the female acoustic response within the bush-cricket genera

2018

Abstract To find a mate, male and female bush-crickets of the family Phaneropteridae typically engage in duets. The male sings and the female responds. For mutual recognition, the amplitude pattern of the male song and the species-specific timing of the female response have been shown to be very important. In the seven studied species, belonging to the genera Leptophyes and Andreiniimon, these duets are extremely fast and nearly completely in the ultrasonic range. The females produce very short sounds by fast closing movements of the tegmina. They respond with species-specific delays of 20 to 150 ms after the beginning of the male song. The different latency times are probably not important…

Evolutionary BiologyInsectaArthropodaHexapodaduetTettigoniideafemale acoustic signalsEuropeEnsiferakatydidPhaneropterinaeAnimaliaOrthopteraNeogenePhaneropteridaeInvertebrataResearch Articlestridulatory movementZooKeys
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Fractionating auditory priors: A neural dissociation between active and passive experience of musical sounds

2019

Learning, attention and action play a crucial role in determining how stimulus predictions are formed, stored, and updated. Years-long experience with the specific repertoires of sounds of one or more musical styles is what characterizes professional musicians. Here we contrasted active experience with sounds, namely long-lasting motor practice, theoretical study and engaged listening to the acoustic features characterizing a musical style of choice in professional musicians with mainly passive experience of sounds in laypersons. We hypothesized that long-term active experience of sounds would influence the neural predictions of the stylistic features in professional musicians in a distinct…

Malecognitionmagnetoencephalographykognitiomusic perceptionPhysiologyPREDICTIONLoudness PerceptionFEATURESSocial SciencesMismatch negativityhavaitseminenMusical0302 clinical medicineHearingHESCHLS GYRUSMedicine and Health SciencesPsychologymusic cognitionta515media_commonClinical NeurophysiologyBrain MappingMEGMultidisciplinaryMusic psychologyPhysicsQBRAIN RESPONSES05 social sciencesRMUSICIANSElectrophysiologyBioassays and Physiological AnalysisBrain ElectrophysiologyPhysical Sciencesta6131MedicineSensory PerceptionFemaleJazzPsychologyelectroencephalographyResearch ArticleCognitive psychologyAdultImaging Techniques515 PsychologySciencemedia_common.quotation_subjectmusiikkiNeurophysiologybioakustiikkaNeuroimagingResearch and Analysis Methodsta3112050105 experimental psychologybioacousticsYoung Adult03 medical and health sciencesacoustic signalsPerceptionENCULTURATIONHumans0501 psychology and cognitive sciencesActive listeningACQUISITIONElectrophysiological TechniquesCognitive Psychology3112 NeurosciencesBiology and Life SciencesAcousticsREPRESENTATIONSViolin musical stylespitch perceptionAcoustic StimulationDISCRIMINATIONCognitive ScienceClinical MedicineTimbreMusicNEUROPLASTICITY030217 neurology & neurosurgeryNeurosciencePLOS ONE
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High-speed duetting-latency times of the female acoustic response within the bush-cricket genera Leptophyes and Andreiniimon (Orthoptera, Phaneropter…

2018

To find a mate, male and female bush-crickets of the family Phaneropteridae typically engage in duets. The male sings and the female responds. For mutual recognition, the amplitude pattern of the male song and the species-specific timing of the female response have been shown to be very important. In the seven studied species, belonging to the generaLeptophyesandAndreiniimon, these duets are extremely fast and nearly completely in the ultrasonic range. The females produce very short sounds by fast closing movements of the tegmina. They respond with species-specific delays of 20 to 150 ms after the beginning of the male song. The different latency times are probably not important for species…

0106 biological sciencesInsectafood.ingredientArthropodaRange (biology)OrthopteraPhaneropteridae010607 zoologyZoologyduetAndreiniimon010603 evolutionary biology01 natural sciencesfemale acoustic signalsfoodPhaneropterinae katydid female acoustic signals duet stridulatory movementCricketTettigoniidaelcsh:ZoologyPhaneropterinaeAnimalialcsh:QL1-991Latency (engineering)Ecology Evolution Behavior and Systematicsstridulatory movementLeptophyesbiologyLeptophyesbiology.organism_classificationTettigonioideaSettore AGR/11 - Entomologia Generale E ApplicataSympatric speciationkatydidOrthopteraAnimal Science and ZoologyPhaneropterinae
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