PubMed Health⌕ Search

SEARCH · PubMed Health

Results for “Sound Spectrography”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 199 records · Page 11Linked to original sources

The relationship between perception and production in songbird vocal imitation: what learned calls can teach us.

Songbirds produce calls as well as song. This paper summarizes four studies of the zebra finch long call, used by both sexes in similar behavioral contexts. Female long calls are acoustically simpler than male long calls, which include acoustic features learned during development. Production of these male-typical features requires an intact nucleus robustus archistriatalis, the sexually-dimorphic source of the telencephalic projection to brainstem vocal effectors. In experiments that quantified the long calls produced in response to long call playbacks, intact adult zebra finch males, but not females, show a categorical preference for the long calls of females over those of males. Experiments with synthetic stimuli showed that males classify long call stimuli that they hear by gender, using both spectral and temporal information, but that females use only temporal information. Juvenile males (<45 days) did not show the categorical preference, but it emerged during the same period when the robustus archistriatalis matures anatomically and the first male-typical vocalizations are produced. Adult males with robustus archistriatalis lesions lost the categorical preference for female long calls, suggesting that the robustus archistriatalis plays a role in long call discrimination. These results demonstrate that calls complement song as a potent tool for studying the neurobiology of vocal communication.

Acoustic Stimulation↗

Cultures, genes, and neurons in the development of song and singing in brown-headed cowbirds (Molothrus ater).

In brown-headed cowbirds, Molothrus ater, as in many songbird species, vocalizations are fundamental to reproduction. In our studies, experiments utilizing different social housing regimes and geographic comparisons have indicated the social learning of males' vocalizations and associated abilities to use vocalizations effectively during the breeding season. Here, we describe studies indicating roles of cultural and genetic background, and of social influences from females, on male vocal development. These influences can interact with neural regions, including song learning and song control nuclei, but also visual-processing nuclei, in the development of signaling. We argue that a developmental systems approach to the study of vocal behavior provides a structure to organize these different influences and how they may interact with one another over development. A systems approach requires that researchers study the social context in which signals and signalers develop - both the ontogenetic arena in which young animals learn their signals from older animals, and the functional arena in which young and older animals socially interact with one another.

Animals↗

Brain development, song learning and mate choice in birds: a review and experimental test of the "nutritional stress hypothesis".

The nutritional stress hypothesis explains how learned features of song, such as complexity and local dialect structure, can serve as indicators of male quality of interest to females in mate choice. The link between song and quality comes about because the brain structures underlying song learning largely develop during the first few months post-hatching. During this same period, songbirds are likely to be subject to nutritional and other stresses. Only individuals faring well in the face of stress are able to invest the resources in brain development necessary to optimize song learning. Learned features of song thus become reliable indicators of male quality, with reliability maintained by the developmental costs of song. We review the background and assumptions of the nutritional stress hypothesis, and present new experimental data demonstrating an effect of nestling nutrition on nestling growth, brain development, and song learning, providing support for a key prediction of the hypothesis.

Age Factors↗

Sound-producing mechanisms and recordings in Carapini species (Teleostei, Pisces).

Carapus boraborensis, C. homei and Encheliophis gracilis are three species of Carapidae that display the ability to penetrate and reside in the holothurian Bohadschia argus. This study describes both the particular morphology of the sound-producing structures and, for the first time, the sounds produced by each species. The study of the structures composing the sound-producing system seems to indicate that the action made by the primary sonic muscles (i.e. the pulling and releasing of the front of the swim bladder) might be responsible for the sound emissions of these three species by provoking a vibration of a thinner zone in front of the swim bladder (swimbladder fenestra). The sounds were only emitted and recorded when several individuals of the same species were inside the same sea cucumber. They were composed of serially repeated knocks and were heard as drum beats or drum rolls. Their specific differences were mainly defined as variations in the timing or grouping of the knocking sounds. The recordings of these sound productions demonstrate a vocal ability for the three species, linked with the presence of particular organs associated with sound production. Moreover, the ecological significance of the sounds and of the sound apparatus system is discussed.

Air Sacs↗

Acoustic communication in two freshwater gobies: the relationship between ambient noise, hearing thresholds and sound spectrum.

Two freshwater gobies Padogobius martensii and Gobius nigricans live in shallow (5-70 cm) stony streams, and males of both species produce courtship sounds. A previous study demonstrated high noise levels near waterfalls, a quiet window in the noise around 100 Hz at noisy locations, and extremely short-range propagation of noise and goby signals. To investigate the relationship of this acoustic environment to communication, we determined audiograms for both species and measured parameters of courtship sounds produced in the streams. We also deflated the swimbladder in P. martensii to determine its effect on frequency utilization in sound production and hearing. Both species are maximally sensitive at 100 Hz and produce low-frequency sounds with main energy from 70 to 100-150 Hz. Swimbladder deflation does not affect auditory threshold or dominant frequency of courtship sounds and has no or minor effects on sound amplitude. Therefore, both species utilize frequencies for hearing and sound production that fall within the low-frequency quiet region, and the equivalent relationship between auditory sensitivity and maximum ambient noise levels in both species further suggests that ambient noise shapes hearing sensitivity.

Acoustic Stimulation↗

The effect of temporal structure on rustling-sound detection in the gleaning bat, Megaderma lyra.

For a gleaning bat hunting prey from the ground, rustling sounds generated by prey movements are essential to invoke a hunting behaviour. The detection of prey-generated rustling sounds may depend heavily on the time structure of the prey-generated and the masking sounds due to their spectral similarity. Here, we systematically investigate the effect of the temporal structure on psychophysical rustling-sound detection in the gleaning bat, Megaderma lyra. A recorded rustling sound serves as the signal; the maskers are either Gaussian noise or broadband noise with various degrees of envelope fluctuations. Exploratory experiments indicate that the selective manipulation of the temporal structure of the rustling sound does not influence its detection in a Gaussian-noise masker. The results of the main experiment show, however, that the temporal structure of the masker has a strong and systematic effect on rustling-sound detection: When the width of irregularly spaced gaps in the masker exceeded about 0.3 ms, rustling-sound detection improved monotonically with increasing gap duration. Computer simulations of this experiment reveal that a combined detection strategy of spectral and temporal analysis underlies rustling-sound detection with fluctuating masking sounds.

Acoustic Stimulation↗

Sonographic prenatal diagnosis of central nervous system abnormalities.

INTRODUCTION: Over the past 20 years, the spectrum of neonatal neurological malformations has changed due to the diffusion of ultrasound, performed either routinely or as required by maternal alpha-fetoprotein screening or history. DISCUSSION: We review and illustrate the potential of ultrasound for the prenatal diagnosis of abnormalities in size or shape of the skull (macrocephaly, microcephaly, craniostenosis), neural tube defects, ventriculomegaly, hydrocephalus, posterior fossa defects (abnormalities in the size of the cisterna magna, cerebellar abnormalities), midline abnormalities (holoprosencephaly, abnormalities of the corpus callosum), ischemic lesions and hemorrhage, tumours, and focalized hyperechogenic images. The limits of fetal ultrasound screening and of the various diagnostic strategies implemented when a fetal brain abnormality is suspected are discussed. Overall, gross lethal abnormalities such as anencephaly or major hydrocephaly are accessible to prenatal sonographic screening, and nearly always result in termination of the pregnancy. However, hydrocephaly may progress late in gestation and remain undiscovered unless a third trimester ultrasound is performed. A majority of cases with myelomeningocele are diagnosed prenatally, resulting either in termination of the pregnancy or in neonatal management. A growing number of more subtle abnormalities, including midline or posterior fossa abnormalities can be spotted by fetal ultrasound, but their postnatal outcome cannot always be predicted accurately, despite the use of fetal magnetic resonance imaging. In such cases, a trans-disciplinary approach involving perinatologists, pediatric radiologists, neuropathologists, neurosurgeons or neurologists familiar with neonates is crucial to counseling the parents. Some brain abnormalities are still extremely difficult or even impossible to diagnose in utero despite advances in sonographic imaging. This is due to the fact that severe neurological impairment may result from conditions that do not affect substantially affect the morphology of the brain, and that major structural abnormalities may develop late in gestation, and thus remain undetected at second trimester ultrasound. CONCLUSION: Ultrasound screening identifies a growing number of central nervous system abnormalities, resulting in substantial changes in the neonatal presentation of neurological congenital abnormalities.

Central Nervous System Diseases↗

CO(2) laser posterior ventriculocordectomy for the treatment of bilateral vocal cord paralysis.

We reviewed our clinical experience between 1991 and 1997 concerning use of the CO(2) laser for posterior ventriculocordectomy (PVC) for the treatment of bilateral vocal cord paralysis. Pre- and postoperative functional evaluation was assessed in a prospective setting. In all, 41 patients (33 females and 8 males) underwent an endoscopic CO(2) laser PVC. Pre- and postoperative pulmonary function tests documented a significant statistical improvement in the parameters considered. Sixteen of 21 previously tracheostomized patients were decannulated within 15 months of operation. In no case was a postoperative tracheostomy required. We found no evidence of subclinical aspiration among our cases. Evaluation of vocal parameters by spectrographic analysis was assessed in 20 patients and revealed a postoperative reduction in voice quality. Laser CO(2) PVC seems to be an effective and reliable surgical procedure that allows for rapid decannulation and gives stable results with a low incidence of revision surgery and functional failures.

Adolescent↗

The effect of impulse noise exposure on distortion product otoacoustic emissions in the awake guinea pig.

Distortion product otoacoustic emissions (DPOAE) are a sensitive detector of outer hair cell (OHC) function and were monitored in awake guinea pigs before and after impulse noise damaging the cochlea (peak intensity 153 dB SPL, rise time < 0.1 ms). Animals had stable DPOAE levels before noise exposure. In the first hours after noise exposure DPOAE levels were reduced significantly. Three different patterns of recovery of DPOAE were seen in the post-exposure period:restitution exceeding controls, partial recovery and no recovery. In general, DPOAE levels declined and types of recovery closely corresponded to changes in amplitudes of cochlear microphonics after noise exposure. These data suggest that the monitoring of DPOAE is a suitable method for diagnosing impaired OHC function.

Animals↗

Effects on voice by endolaryngeal microsurgery.

Endolaryngeal microsurgery (EM) is functionally oriented. Therefore, assessment of vocal function is important to evaluate the effect of the surgery on voice. In all, 58 patients, including 26 patients with vocal cord nodules and 32 patients with vocal cord polyps, underwent EM. The patients' voices were recorded and analyzed before EM and 2 weeks after. Analysis of voice quality included perceptual assessment and each patient's own subjective evaluation of social acceptability of voice according to the 10.0 cm visual analogue scale (VAS) scale. Acoustic voice signal data were measured for fundamental frequency (Fo), jitter, shimmer and normalized noise energy (NNE) using Tiger Electronics Dr. Speech software. Statistically significant (P < 0.001) improvement was achieved in both perceptual and acoustic analysis and in both patient groups. According to the VAS scale, a high degree of satisfaction with the surgery was achieved. The grade of hoarseness (G) as well as roughness (R) and breathiness (B) decreased significantly after the operation. EM resulted in a statistically significant decrease in the mean jitter, shimmer and NNE postoperatively. There were no significant changes in the Fo after EM. These results confirm a high degree of effectiveness of EM on vocal rehabilitation and meet the expectations regarding the assessment and documentation of postsurgical voice changes.

Adult↗

A new method for measuring mechanical properties of laryngeal mucosa.

A study of the effect of exogenous hazardous agents or conditions on the mechanical characteristics of vocal fold mucosa should meet three methodological criteria. 1) The outer surface of the mucosa should be exposed to the agent or condition while the inner surface is exposed to a physiological environment. 2) Even slight changes in mechanical characteristics should be detected. 3) The applied strain should be within physiological ranges. To date, no such method has been described in the literature. A method meeting the listed criteria is proposed and evaluated here.

Animals↗

Voice restoration after circumferential pharyngolaryngectomy with free jejunum repair.

Speech restoration after circumferential pharyngolaryngectomy with free jejunal repair for advanced tumors of the hypopharyngo-esophageal tract remains a difficult problem to solve. We report here the results of secondary voice restoration in six patients who received a Provox 2 type prosthesis and intensive speech therapy after circumferential pharyngolaryngectomy with free jejunum repair. No patient had operative or post-operative complications due to insertion of the prosthesis. No patient had to have the prosthesis removed during the follow-up (8 to 14 months). Analysis of some acoustic parameters of voice (fundamental frequency, waveform perturbations) and qualitative characteristics of speech (intelligibility, pleasantness and acceptability) demonstrated that all the patients were able to produce satisfactory speech after tracheojejunum puncture and speech therapy and were satisfied with their own ability to communicate. Our results are reassuring and we therefore advise that in patients undergoing free jejunum flap reconstruction of the hypopharyngo-esophageal tract voice restoration should be attempted by placing a voice prosthesis through a secondary tracheo-esophageal puncture and providing intensive speech training.

Esophageal Neoplasms↗

Female-pitched sound-producing voice prostheses--initial experimental and clinical results.

In order to improve voice quality in female laryngectomees and/or laryngectomees with a hypotonic pharyngo-oesophageal segment, a sound-producing voice prosthesis was designed. The new source of voice consists of either one or two bent silicone lips which perform an oscillatory movement driven by the expired pulmonary air that flows along the outward-striking lips through the tracheo-oesophageal shunt valve. Four different prototypes of this pneumatic sound source were evaluated in vitro and in two female laryngectomees, testing the feasibility and characteristics of this new mechanism for alternative alaryngeal voice production. In vivo evaluation included acoustic analyses of both sustained vowels and read-aloud prose, videofluoroscopy, speech rate, and registration of tracheal phonatory pressure and vocal intensity. The mechanism proved feasible and did not result in unacceptable airflow resistance. The average pitch of voice increased and clarity improved in female laryngectomees. Pitch regulation of this prosthetic voice is possible with sufficient modulation to avoid monotony. The quality of voice attained through the sound-producing voice prostheses depends on a patient's ability to let pulmonary air flow easily through the pharyngo-oesophageal segment without evoking the low-frequency mucosal vibrations that form the regular tracheo-oesophageal shunt voice. These initial experimental and clinical results provide directions for the future development of sound-producing voice prostheses. A single relatively long lip in a container with a rectangular lumen that hardly protrudes from the voice prosthesis may have the most promising characteristics.

Aged↗

Voice monitoring to measure emotional load during short-term stress.

It is well known that there is a relationship between the voice the human emotional status. Previous studies have demonstrated that changes of fundamental frequency ( f(0)), in particular, have a significant relationship with emotional load. The aim of the present study was to investigate how f(0) changes in response to an unknown emotionally stressful task under real-life conditions. A further question was whether repetitions of this task lead to an adaptation of f(0), indicating a lower emotional load. The participants of this study included 26 healthy males. f(0) and heart rate ( f(c)) were recorded for baseline testing (BLT) under relaxed laboratory conditions. Then the participants were asked to negotiate a natural obstacle by way of sliding down a rope hanging from a handlebar without any safety provisions, thus being exposed to the danger of a fall from a height of up to 12 m into shallow water (guerrilla slide I, GSI). The task was repeated after 30 min (GSII) and after 3 days of physical strain (GSIII). Immediately before starting the task the participants were asked to give a standardised speech sample, during which f(c) was recorded. The mode value of f(0) ( f(0,mode)) of the speech samples was used for further analysis. The mean (SD) value of f(0,mode) at BLT was 114.9 (14.8) Hz; this increased to 138.8 (19.6) Hz at GSI ( P<0.000), decreased to 135.9 (19.6) Hz at GSII and to 130.0 (21.5) Hz at GSIII ( P=0.012). The increase in f(c) was significantly different from BLT to GSI ( P<0.000). The repetitions of the task did not produce significant changes in f(c). It was shown that f(0,mode) is a sensitive parameter to describe changes in emotional load, at least in response to short-term psychoemotional stress, and seems to throw light upon the amount of adaptation caused by increased experience.

Adult↗

Noise level and ultrasound spectra during burring.

The aim of this study was to evaluate the noise spectra of current dentistry equipment during normal work at the dental clinic and in the laboratory. In the study, noise was measured during the dental treatment of seven patients at a dental clinic and also in the acoustics laboratory, where working noise was simulated by drilling a polyacetal plate. All samples were analyzed in audible and ultrasonic areas in the one-third octave bands of 20-80,000 Hz. The measuring instruments used were B&K 4135 microphones, B&K 2633 preamplifiers, the B&K 2811 multiplexer, and the B&K 2133 real-time analyzer with the ZT 0318 high-frequency expansion unit. In the in situ measurements, the A-weighted sound pressure level was occasionally over 85 dB(A), and the equivalent continuous A-weighted sound pressure level, L(Aeq), was 76 dB(A). The noise level was most powerful in the one-third octave band of 40,000 Hz, where it was 74 dB. In laboratory measurements, the noise levels of the air-turbine and the micromotor hand pieces (n=16) were also most powerful in the one-third octave band of 40,000 Hz, where they were 80-89 dB. The L(Aeq) of the different micromotor handpieces (n=6) varied between 76 dB(A) and 77 dB(A), and the L(Aeq) of the turbine hand pieces (n=10) varied between 77 dB(A) and 82 dB(A). The noise of the drills is most powerful in the high frequencies, so using hearing protectors, it is possible that speech communication improves because the protectors attenuate high frequencies more than low frequencies. The very light protectors give sufficient protection against the drilling noise.

Acoustics↗

Large band spectral analysis and harmful risks of dental turbines.

Previous studies have attributed harmful effects to ultrasonic frequencies and recently many have addressed the problem of early deafness among dentists caused by high-speed air turbines. In this study, we measured the spectra of the sounds generated by high-speed air turbines, ranging from audible to ultrasonic frequencies (0-70 kHz). The hypothesis advanced is that the ultrasound spectrum of high-speed air turbines reaches amplitudes that may be noxious. We performed continuous analyses of the spectra of three bands of turbines (n = 17). Measurements of frontal incidence were made using a Bruel & Kjaer microphone and sonometer. For spectral analysis we used the autoregressive parametric method. Using Akaike's criteria the model weights were fixed at 12. The method used in the present work led to an accuracy in the results of 10(-2) kHz within the same brand of turbine. Results show, in terms of frequencies, the presence of four main peaks: 5.6 kHz +/- 0.73 in the audible range, and 20.1 kHz +/- 2.16, 35.7 kHz +/- 2.56 and 46.5 kHz +/- 0.71 in the ultrasonic range. In a normalized spectrum, the amplitude of the ultrasonic component reaches 115 dBspl for 46.5 kHz and is 76% greater than that of the audible component. Such values, both in terms of frequencies and amplitude, reach levels which may provoke short- or long-term negative physiological disturbances and hearing-damage risk. Further research should be directed to determine to what extent they might induce noxious effects for the dental team.

Analysis of Variance↗

[Speech outcome after simple and multiple cleft palate operations].

OBJECTIVES: If the primary palatal closure in a patient with cleft lip and palate is unsuccessful, defects such as palatal fistulas and a short velum have to be corrected by secondary operations. It is an informal belief among surgeons that these reoperations can have detrimental effects on the patients' nasal resonance and articulation. It was our aim to critically evaluate the validity of this belief. MATERIAL AND METHODS: One hundred and twenty-four patients with cleft lip and palate were divided into three groups. The 70 patients in group 1 had only undergone a primary palatal closure operation. The 33 patients in group 2 had undergone one or more palatal reoperations. The 21 patients in group 3 had undergone an additional pharyngeal flap operation. Resonance and articulation were evaluated perceptually. Nasalance was assessed with the NasalView system, and the mean speech rate was analyzed with the MODIAS software. RESULTS: There were no significant differences for any of the speech measures between groups 1 and 2. Patients in group 3 had significantly worse results for all speech measures. CONCLUSIONS: The speech outcomes for patients with multiple palatal reoperations were no different from those of patients with single palatal closure operations. The pharyngeal flap operation did not lead to sufficient improvements in the speech of the patients in group 3.

Adolescent↗

Constancy and normalization in the perception of Voice Offset Time as a cue for preaspiration.

It is a well-established fact that the realization of individual speech segments is heavily dependent on context. One factor, temporal organization, has been shown to affect numerous speech cues, especially those which are defined in the temporal domain. Theories of speech perception have adopted two different views of the nature of these contextual effects. On the one hand it has been hypothesized that the listener normalizes by taking account of the context. On the other hand it has been hypothesized that higher-order invariants, e.g. speech segment ratios, are sufficient cues for the relevant temporal contrasts, thus obviating the need for mechanisms of normalization. The present series of experiments investigates the merits of these opposing theoretical positions. The experiments involve Voice Offset Time as a cue for preaspiration in Icelandic. The results indicate that durational ratios can, for the most part, function as higher-order invariants for the perception of preaspiration.

Adult↗