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A comparison of neural circuits underlying auditory and visual object categorization.

Knowledge about environmental objects derives from representations of multiple object features both within and across sensory modalities. While our understanding of the neural basis for visual object representation in the human and nonhuman primate brain is well advanced, a similar understanding of auditory objects is in its infancy. We used a name verification task and functional magnetic resonance imaging (fMRI) to characterize the neural circuits that are activated as human subjects match visually presented words with either simultaneously presented pictures or environmental sounds. The difficulty of the matching judgment was manipulated by varying the level of semantic detail at which the words and objects were compared. We found that blood oxygen level dependent (BOLD) signal was modulated in ventral and dorsal regions of the inferior frontal gyrus of both hemispheres during auditory and visual object categorization, potentially implicating these areas as sites for integrating polymodal object representations with concepts in semantic memory. As expected, BOLD signal increases in the fusiform gyrus varied with the semantic level of object categorization, though this effect was weak and restricted to the left hemisphere in the case of auditory objects.

Adult↗

Auditory brain-stem responses in Marcus Gunn ptosis.

The auditory brain-stem response (ABR) can detect anomalies both in the auditory pathways and in structures adjacent to these pathways. Patients with Duane's retraction syndrome, associated with hypoplasia of the abducens nerve in the brain-stem, and patients with hemifacial spasm, due to compression of the facial nerve in the brain-stem, have been found to have abnormal ABRs. Marcus Gunn ptosis with 'jaw winking' is considered to be due to misconnection of oculomotor, trigeminal and other cranial nerves. Suspecting that perhaps some 'jaw-winking' phenomena may be due to detectable brain-stem anomalies we tested 7 patients with Marcus Gunn ptosis. Three of the patients demonstrated abnormal ABRs indicative of pontine pathology.

Adolescent↗

A problem with auditory processing?

Recent studies have found associations between auditory processing deficits and language disorders such as dyslexia; but whether the former cause the latter, or simply co-occur with them, is still an open question.

Adult↗

Frequency discrimination threshold at search call frequencies in the echolocating bat, Eptesicus fuscus.

While searching for prey in open spaces, Epteisicus fuscus emits long-duration, downward frequency-modulated calls which cover a frequency band of about 28-22 kHz. In the ascending auditory pathways of E. fuscus, neurons tuned to these search call frequencies are characterised by a remarkably high frequency selectivity and very sensitive absolute thresholds. We investigated whether this narrow tuning is reflected in an exceptional psychoacoustic frequency discrimination ability. The average frequency difference limen of E. fuscus at search call frequencies determined in a two-alternative, forced-choice experiment amounted to about 420 Hz, corresponding to a Weber ratio of 0.017. This value is similar to those found in non-echolocating mammals, and an order of magnitude larger than the frequency difference limens of bats emitting constant-frequency call components. We discuss these differences in frequency difference limen, and relate them to different echolocation strategies.

Acoustics↗

Electric response audiometry in infants and preschool children. Long-term control of the results.

Two hundred and four infants and preschool children (mean age 2 years and 7 months +/- 9 months) with auditory impairment according to ABR and ECochG data, and 33 subjected to SVR were followed up for periods ranging from 1 year to 4 years and 6 months until a reliable conventional pure tone audiogram was obtained. One hundred and fifty-one children had conductive hearing loss, 75 sensorineural, 7 had ABR indicating disorders of the central auditory pathways, 5 were normal. Hit, false positive and false negative rates resulted as follows: 58.62%, 17.24% and 24.14% for SVR: 98.37%, 1.63% and 0% for ABR; 99.15%, 0.85% and 0% for ECochG. In the group with sensorineural hearing loss, 75% of the children gave ECochG detectable responses at 90 dB nHL, against 51.5% with ABR. With 1 kHz tonebursts, 64% of the tested subjects gave threshold responses to ECochG and 12% to ABR. The best strategy for children who failed the behavioral hearing tests, or in whom these tests were not applicable, was that based on ABR and middle ear impedance measures, complemented, when necessary, by ECochG.

Audiometry, Evoked Response↗

Sound-induced illusory flash perception: role of gamma band responses.

In the recently discovered sound-induced illusory flash phenomenon, a single flash accompanied with two auditory beeps is perceived as two flashes in a majority of trials. Here we asked what the neural substrates distinguishing illusion and no-illusion (i.e. perception of single flash) percepts are under identical stimulus configuration. Wavelet based method was used to analyze gamma band (> 30 Hz) responses in the event-related potential (ERP) signals recorded over visual cortical regions. We found: (i) significantly higher oscillatory and induced gamma band responses in illusion than in no-illusion trials, and (ii) significant supra-additive audio-visual interactions only in illusion trials. These results provide a clear neurophysiological correlate to the perception of illusion. Furthermore, the results suggest that auditory stimuli modulate cortical processing of visual stimuli, and the flash illusion (qualitative alteration of visual percept) only takes place when this modulation exceeds some critical threshold for the registration of conscious awareness.

Acoustic Stimulation↗

Aspects in diagnostics of central neural hearing disorders.

The central neural hearing disorders - in contrast to central cortical lesions - can be concretely defined audiometrically, and they can be localized realiably within the 2nd-4th neurons. For this purpose a definite test program is needed; especially indicative are the behavior of the acoustico-facial stapedius reflex and the results in dichotic discrimination and ERA. SISI and difference limen mostly point to a neural dysfunction, but - in distinct patterns of impairment - they may correspond to the picture of a peripheral hearing disorder as well. A fatigue of hearing apparently only appears if the myelin is damaged, at - perhaps additional - axonal lesions it shows up less clearly or not at all. The deficiency pattern of the stapedius reflex reflects up less clearly or not at all. The deficiency pattern of the stapedius reflex reflects the course of the reflex arc within the brain stem; accordingly, more central lesions of the auditory pathway do not affect the reflex. ERA mostly makes perceivable a lesion of synchronization, which only becomes noticeable at fast repetition rates with ultra short stimuli (1/4 ms), i.e., solely in the responses of the brain stem. The cortical responses, on the contrary, are not impaired more than the subjective threshold renders to be expected, they even show the same values of the pure tone audiogram. The dichotic discrimination is nearly always disturbed unilaterally, at processes of the brain stem homolaterally, at cortical foci predominantly leftside, perhaps because the left hemisphere dominates in speech discrimination. The otologist should know how to make use of the possibility of neuro-otologic diagnostics.

Adult↗

GAD levels and muscimol binding in rat inferior colliculus following acoustic trauma.

Pharmacological studies of the inferior colliculus (IC) suggest that the inhibitory amino acid neurotransmitter gamma-aminobutyric acid (GABA) plays an important role in shaping responses to simple and complex acoustic stimuli. Several models of auditory dysfunction, including age-related hearing loss, tinnitus, and peripheral deafferentation, suggest an alteration of normal GABA neurotransmission in central auditory pathways. The present study attempts to further characterize noise-induced changes in GABA markers in the IC. Four groups (unexposed control, 0 h post-exposure, 42 h post-exposure, and 30 days post-exposure) of 3-month-old male Fischer 344 rats were exposed to a high intensity sound (12 kHz, 106 dB) for 10 h. Observed hair cell damage was primarily confined to the basal half of the cochlea. There was a significant decrease in glutamic acid decarboxylase (GAD(65)) immunoreactivity in the IC membrane fraction compared to controls (P<0.05) at 0 h (-41%) and 42 h (-28%) post-exposure, with complete recovery by 30 days post-exposure (P>0.98). Observed decreases in cytosolic levels of GAD(65) were not significant. Quantitative muscimol receptor binding revealed a significant increase (+20%) in IC 30 days after sound exposure (P<0.05). These data suggest that changes in GABA neurotransmission occur in the IC of animals exposed to intense sound. Additional studies are needed to determine whether these changes are a result of protective/compensatory mechanisms or merely peripheral differentiation, as well as whether these changes preserve or diminish central auditory system function.

Animals↗

Intracellular responses of the rat cochlear nucleus to sound and its role in temporal coding.

The anteroventral cochlear nucleus (AVCN), the first centre of the central auditory pathway, contains globular bushy cells, which are unique in their ability to produce fast excitatory post-synaptic potentials (EPSPs). Using in vivo intracellular recordings in the rat AVCN we examined these fast EPSPs in relation to temporal coding. At frequencies up to 2.5 kHz, EPSPs were evoked on successive sine waves of the stimulus with EPSP summation limited. This one-to-one relationship between the EPSPs and the sound wave period was present at higher frequencies and over a greater intensity range than for action potentials. These results suggest that temporal coding is possible in globular bushy neurones by their ability to extract temporal information through fast processing of convergent presynaptic input.

Acoustic Stimulation↗

Differential effects of exogenous estrogen versus a estrogen-progesterone combination on auditory evoked potentials in menopausal women.

The study was undertaken to determine the differential effects of estrogen and progestin on auditory evoked responses in postmenopausal women receiving hormone replacement therapy (HRT). Forty-seven women between 45 and 70 years of age attending menopause and HRT clinic were divided into two groups. Group I included 32 women who attained natural menopause and receiving combined estrogen progestin therapy. While group II included 15 surgically menopausal women receiving only estrogen. Evoked potentials were recorded in form of auditory brainstem response (ABR), middle latency response (MLR) & slow vertex response (SVR). There was improvement of conduction in auditory pathways at the level of brainstem and thalamocortical projections as indicated by the decrease in latencies of most of the waves of ABR and/MLR after 6 months of HRT in both the groups. The conduction in association areas, as indicated by SVR, did not show a significant change. The intergroup comparison after therapy revealed a decrease in latency of wave V and I-V interpeak latency in group II indicating that only estrogen users are benefited more. Thus HRT facilitates the process of sensory conduction, which may form one of the mechanisms of improved neuropsychological functions in menopausal women on HRT. The addition of progestin to estrogen does not have a negative or potentiating effect on it.

Aged↗

Brain-stem auditory evoked potentials in children with brain-stem or cerebellar dysfunction.

Brain-stem auditory evoked potentials (BAEPs) were recorded in 23 children who had signs of brain-stem or cerebellar dysfunction. In patients with brain-stem gliomas, BAEPs were abnormal in all except one, in whom involvement of the brain-stem auditory pathway was limited to the midbrain tectum. The BAEPs were normal in neuronal ceroid lipofuscinosis, but abnormal bilaterally in inheritable leukoencephalopathies. All patients with Leigh's encephalopathy had BAEP abnormalities; in two, abnormalities occurred before the appearance of lesions on computed tomographic scan. Patients with Friedreich's ataxia and giant axonal dystrophy had abnormal BAEPs, but the test was normal in a child with similar neurologic findings with vitamin E deficiency. Patients with diffuse metabolic encephalopathies had variable findings. Thus, BAEP abnormalities are nonspecific for various disease processes but are frequently seen in neoplastic and neurodegenerative diseases, with primary white matter or extensive brain-stem involvement.

Adolescent↗

Ventriloquist effect reinstates responsiveness to auditory stimuli in the 'ignored' space in patients with hemispatial neglect.

We examined 6 patients with robust visual neglect following right hemisphere damage. All of them had signs of auditory neglect as documented by the inferior identification of syllables delivered through a loudspeaker on the left side. When the same stimuli on the left were administered in the presence of a fictitious source of sound (a dummy loudspeaker) visible in the homolesional space, a significant increase in the identification score of sounds was obtained (the "ventriloquist" effect). The result is in keeping with a notion of a strong coupling between auditory and visual systems. The effect is attributed to the activation by the fictitious source of sound of the audio-visual map in the left hemisphere. We draw attention to the possibility that loss of awareness of auditory input may arise due to the disconnection of the visual input from the audio-visual template.

Adult↗

Effects of different schedules of oxaliplatin treatment on the peripheral nervous system of the rat.

The aim of this study was to determine the influence of oxaliplatin scheduling on the onset of peripheral neurotoxicity and ototoxicity in a rat model. Animals were treated with four different schedules of oxaliplatin using two cumulative doses (36 and 48 mg/kg intraperitoneally (i.p.)). The neuropathological examination evidenced dorsal root ganglia (DRG) nucleolar, nuclear and somatic size reduction with nucleolar segregation in the treated rats. Sensory nerve conduction velocity (SNCV) was reduced after oxaliplatin treatment, while the auditory pathway was unaffected. After treatment, platinum was detected in the kidney, DRG and sciatic nerve. After a 5-week follow-up period, recovery of the pathological changes in the DRG and sciatic nerves occurred, although platinum was still detectable in these tissues. The following conclusions may be drawn: the main targets of oxaliplatin neurotoxicity were the DRG; the shorter the interval between the injections, the higher the severity of peripheral neuropathy and this was also related to the cumulative oxaliplatin dose; the peripheral neurotoxicity tended to be reversible; ototoxicity was absent even with high cumulative doses of oxaliplatin.

Animals↗

Cumulative lifelong alcohol consumption alters auditory brainstem potentials.

BACKGROUND: Alcohol is one of the most widely abused substances in the United States and Europe. It is believed that alcohol causes brain damage that may influence the central auditory tracts. Brainstem auditory evoked potentials (BAEPs) are a common method for measuring central auditory pathways. Therefore, the influence of cumulative lifelong alcohol consumption on BAEPs in subjects with normal hearing was investigated both qualitatively and quantitatively. METHODS: BAEPs were measured in 38 male subjects, 19 of whom were head and neck tumor patients with an ECOG (Eastern Cooperative Oncology Group) scale of zero and 19 plastic surgery patients. A self-report questionnaire on alcohol and nicotine consumption together with blood tests and pure tone audiometry were obtained for all subjects before the BAEP measurement. RESULTS: The alcohol consumption of the head and neck tumor patients corresponded to high-risk, dangerous, and risky alcohol consumption behavior, whereas that of the plastic surgery patients corresponded to risky and low-risk consumption behavior. In this way, a wide spectrum of alcohol consumption was covered. The latency I-V of the high-risk, dangerous, and risky drinkers was found to be significantly delayed compared with low-risk drinkers. A logarithmic relationship between BAEP latencies and cumulative lifelong alcohol consumption was obtained. CONCLUSION: Alcohol consumption leads to damage in the brainstem. The logarithmic behavior between BAEP latencies and cumulative lifelong alcohol consumption reveals that even alcohol consumption within the range of low-risk drinkers may alter auditory evoked brainstem potentials significantly.

Adult↗

On the relationship between speech- and nonspeech-evoked auditory brainstem responses.

Auditory brainstem response (ABR) reflects activation of the neural generators along the ascending auditory pathway when a sound is heard. In this study, we explored the relationship between brainstem encoding of click and speech signals in normal-learning children and in those with language-based learning problems. To that end, ABR was recorded from both types of stimuli. We found that the normal pattern of correlation between click- and speech-evoked ABRs was disrupted when speech-evoked ABRs were delayed. Thus, delayed responses to speech were not indicative of clinically abnormal responses to clicks. We conclude that these two responses reflect largely separate neural processes and that only processes involved in encoding complex signals such as speech are impaired in children with learning problems.

Acoustic Stimulation↗

Indices of hearing in patients with central auditory pathology. II. Choice response time.

The response times of three groups of subjects with pathology of the auditory pathway, localized either to the eighth nerve or to the right or left temporal cortex, were compared on three psychoacoustic tasks. These tasks included detection, frequency discrimination and duration discrimination. Measurements were made at two stimulus frequencies, 500 and 2000 Hz, in combination with two durations, 50 and 300 ms. The results were compared to those obtained for normal hospitalized and non-hospitalized control subjects. All subjects, except those with acoustic neuroma, had age-corrected normal hearing. Statistically significant group differences were apparent in discrimination but not detection, indicating the importance of task demands for response time measures, especially in patients with cortical pathology. The outcomes were not related to neuropsychological measures of speed or accuracy, supporting the conclusion that the time for decision-making rather than motor function had been affected.

Auditory Cortex↗