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Auditory orienting and detection in rats following lesions of the superior colliculus.

Rats were trained to run towards a lighted target following either bilateral lesions of the superior colliculus (SC) or control lesions of the overlying cortex. At 4 months post-surgery, the animals were tested for the disruptive effects of an auditory tone. An increase in running times was found in both groups, attributable to frequent freezing reactions in all animals. However, only the control rats made orienting reactions to the tones. It is argued that the freezing responses show that the SC lesions did not impair sensory detection; consequently, the orienting failure cannot be attributed to a sensory deficit.

Animals↗

Comparisons of hemi-inattention produced by unilateral lesions of the posterior parietal cortex or medial agranular prefrontal cortex in rats: neglect, extinction, and the role of stimulus distance.

Neglect in human and non-human primates has been demonstrated following unilateral lesions of both posterior parietal and prefrontal areas. While it has now been well established that a unilateral lesion of the rodent analog of dorsolateral prefrontal cortex, medial agranular cortex (AGm), results in neglect, the effects of unilateral damage restricted to rodent posterior parietal cortex (PPC) have not been examined in detail. The current study assessed rats with unilateral lesions of PPC or AGm on their ability to orient to unilateral and bilateral stimulation. Since it has been proposed in both the primate and rodent literatures that frontal areas may be responsible for the perception of near space while parietal areas may be responsible for far space, stimuli were presented at two different distances. Lesions of PPC and AGm resulted in severe neglect relative to control operates, with both PPC and AGm operates manifesting severe hemi-inattention and allesthesia relative to control operates. After behavioral recovery from neglect there was no evidence of extinction to bilateral simultaneous stimulation. While neglect to visual stimuli predominated in unilateral PPC operates, unilateral AGm operates had severe neglect in all modalities. In addition, while both left and right PPC operates showed contralesional neglect, AGm operates demonstrated the lateralized differences in neglect reported in previous studies. All groups demonstrated an approximately equivalent level of neglect to stimuli presented at the two different distances, and thus failed to support the suggestion of a peripersonal-extrapersonal dichotomy between frontal and parietal areas in rodents.

Animals↗

The effect of head turn on auditory asymmetry.

In two experiments, right-handed men and women were tested for ear differences in report of dichotically presented digits, with their heads straight ahead, turned 90 degrees to the left, and turned 90 degrees to the right. In Experiment 1, head turn was controlled simply by asking the subjects to fixate an appropriately located point; a right-ear advantage occurred under all conditions of head turn among the men, but only in the head-straight condition among the women. In Experiment 2, head turn was controlled by having the subjects direct a flashlight attached to their heads toward the fixation point. This eliminated the right-ear advantage under all head conditions for the men, but for the women the right-ear advantage was, if anything, more pronounced when their heads were turned than when straight. These results suggest that auditory asymmetry depends in part on whether space is perceived as divided into left and right sides, and in part of the balance between spatial and verbal requirements. Both factors, and the asymmetry itself, may interact with sex.

Adolescent↗

Head turning versus manual pointing to auditory targets in normal subjects and in subjects with right parietal damage.

Head turning and manual pointing to auditory targets have been studied in normal subjects and in subjects with right parietal damage. Important differences were found between these two types of movement. (1) In brain-damaged subjects, audiospatial manual pointing deficit patterns and audiospatial head turning deficit patterns were dissociated. Moreover, head turning deficits tended to appear peripherally in both auditory hemifields, while manual pointing deficits tended to appear unilaterally in the left hemifield. (2) In normal subjects, at all tested eccentricities in both hemifields, head turning performances showed a characteristic undershooting of auditory targets when compared to manual pointing. Results are discussed in terms of differences between the processes underlying audio-motor tasks that involve the head and tasks that involve the hands.

Adult↗

Event-related potentials and selective attention to tones moving in location and pitch: an examination of movement velocity.

Event-related potentials (ERPs) were recorded from subjects who listened selectively to one of two classes of tone pips that arose from separate, virtual sound sources moving in spatial location and pitch. In different runs the speeds of the moving sources were varied; for the slow speed, the two classes of tones were easily separable, but for the moderate and fast speeds selective listening was difficult without practice. A prolonged negative shift of the ERP, beginning around 60 ms poststimulus and lasting over 300 ms, was observed when the eliciting tones were selectively attended. However, no differences at any phase of the negative ERPs were found as a function of movement velocity, in contrast to the decline of target detection performance for the fast speed. The results were interpreted as indicating that anticipation, based on contextual information, can play an important role in early input selection.

Adult↗

Stimulus selection during auditory spatial attention as expressed by event-related potentials.

Selective listening to stimuli with certain physical features, such as pitch or location, is reflected by an event-related brain-potential (ERP) component called the processing negativity (PN). PN may reflect a matching or comparison process between the sensory inflow and the hypothesized 'attentional trace'. The latter is an actively formed and maintained neuronal representation of the physical features defining the relevant stimulus. According to this matching theory of selective attention, the better the sensory input corresponds to the attentional trace the longer the stimulus is processes (as reflected by a larger and longer PN). This theory is supported by the experiment in which the relevant and irrelevant stimuli were separated from one another in pitch. It was found that even the irrelevant stimuli elicited PN, and further that this PN was larger the smaller the pitch separation between the eliciting stimuli and the relevant stimuli. The largest PN was elicited by the relevant stimuli. The present study finds analogous results when the relevant and irrelevant stimuli are separated in spatial origin rather than in pitch.

Adult↗

Event-related potentials to auditory stimuli following transient shifts of spatial attention in a Go/Nogo task.

The effects of spatial attention on the human auditory event-related potential (ERP) were examined, while attention was oriented on a trial-by-trial basis. Additionally, it was investigated whether the ERP modulation to Nogo stimuli depends on attention. In four experiments, Go and Nogo stimuli were delivered 13.3 degrees from the left or right of fixation. In Experiments 1 and 2, subjects had to press a button whenever a Go stimulus was presented at the location previously indicated by a visual precue. In Experiments 3 and 4, the cue indicated the likely location of the upcoming stimulus but a button-press was required to Go stimuli at either location. Attended (correctly cued) as compared with unattended (incorrectly cued) stimuli elicited a bimodal negative deflection in the ERPs with a parietally distributed first and a frontocentrally distributed second part. Further, Nogo stimuli evoked differential ERP modulations in the N2 and in the P3 range. The former were dependent and the latter were independent of spatial attention.

Adult↗

The effects of magnitude and direction of stimulus change on auditory event-related potentials elicited by deviant signal stimuli.

The present study sought to identify components of the auditory event-related potential (ERP) elicited by stimuli that serve as signals for overt discriminative responses. Sokolov's view of a selective neural filter for deviant stimuli predicts that responses to deviant signal stimuli will be graded in proportion to the amount of change from the standard and independent of the direction of that change. The demonstration of a bi-directional and graded ERP response requires at least two levels of stimulus change in each direction. The present study incorporated two deviants that were lower in pitch (lowest, low) and two that were higher in pitch (high, highest) in order to evaluate the degree (linear, quadratic, etc.) of the function relating ERP response to tonal deviance. Stimulus changes on both the direction and magnitude dimensions were also varied on a trial-by-trial, rather than on a block-by-block, basis which eliminated potential confounds with block or session differences, and discriminative responses were required to both standard and deviant tones, thereby investing both categories of stimuli with signal value. The amplitude of the P3 component associated with deviant stimuli showed close correspondence to the (quadratic) function predicted from the selective filter model. A late negative slow wave (NSW) at Fz and a positive slow wave (PSW) at Pz differentiated deviant tones from the standard but did not distinguish between the deviants themselves. A fronto-central NSW observed at Fz and Cz for initial standard tones was greater than the predominantly frontal NSW elicited by the deviant tones. The topographical differences in NSW elicited by the initial standard tone and by all deviant tones suggest that different processes are reflected in the NSW response to these stimuli.

Adult↗

Quantitative electrophysiological studies of mental tasks.

A number of pilot studies were performed to evaluate the utility in human studies of the so-called 'tracer strategy' previously used extensively in numerous experiments by the senior author of this paper. This strategy utilized presentation of visual or auditory information intensity modulated at some specific repetition rate or 'tracer frequency'. Representation, storage and retrieval by the brain of information thus presented is identified by the appearance of 'labelled responses' defined as power in the EEG spectrum at the tracer frequency or averaged ERP waveshapes extracted from brain electrical activity by triggering on the onset of the modulation cycle. This method has been applied to scalp recordings obtained during performance of (1) audio-visual continuous pursuit tasks in which the target and pursuer were labelled at different frequencies and (2) delayed match from sample tasks in which sets of letters, numbers or faces modulated at a specific frequency had to be retrieved from working memory. Results showed statistically significant appearance of labelled responses in different scalp regions, depending upon the nature of the cognitive task.

Adult↗

Effects of lateralized cues on the processing of lateralized auditory stimuli.

We examined the influence of auditory spatial cues on the processing of subsequently presented lateralized auditory target stimuli. In three experiments, effects of the position of the cue on event-related potentials (ERPs) and reaction times (RTs) to the target, which could occur at the same or at a different position to the cue, were examined. In Experiments I and II, stimulus-pairs were delivered via loudspeakers 13 degrees to the right or left of fixation. The cue was task-irrelevant in the sense that it never required a response, whereas the target was task-relevant. In Experiment I, the cue was not informative about the position of the succeeding target, that is, the target was presented at the same or at a different position to the cue with equal probability. In Experiment II, the cue predicted a target with high validity, occurring at the position opposite to the cue. In both experiments, the ERPs to targets presented at the same position as the preceding cue were negatively modulated compared with the ERPs to targets presented at a different position. This negative difference (Nd) between the ERPs to same and different position stimuli occurring between 200-300 ms relative to target onset was also obtained in situations where no overt behavior was required. Effects of cue position on RTs to the target were only observed in Experiment II, being shorter for validly predicted targets. These Nd effects either reflect refractoriness of location-specific exogeneous ERP components or involuntary attentional selection. In order to decide between these alternatives, a third experiment was performed, in which stimulus-pairs were presented via headphones to the left and right ear in attend and ignore condition. An Nd effect was obtained in the attend condition only. The absence of Nd effects in the ignore condition suggests that the Nd obtained in attend condition cannot completely be explained by refractoriness of exogeneous ERP components and thus reflects attentional processes.

Adult↗

New method of estimating the ultrasonic beam ratio parameter for characterizing sound propagation in tissue.

The backscattered ultrasonic signal from soft tissue can be considered to consist of two parts: a spatially fluctuating component due to coherent scattering from randomly distributed scattering centers and a relatively constant component related to structural ordering. The relationship between these, which has been termed the "beam ratio parameter" influences the speckle pattern of an ultrasound image. First-order image statistics for this special speckle pattern are characterized by the Rician distribution. Changes of second-order statistics have also been derived as a function of the beam ratio parameter. A new method for the estimation of the beam ratio parameter from the intensity distribution of the ultrasonic signal is described in this paper. This method was used to measure the parameter in ultrasonic images from phantoms and liver tissue yielding values of about 0.1. The measured changes of the second-order statistics were not correlated to this parameter. The results indicate that the relatively constant intensity component related to structural ordering has only a small influence on the speckle pattern.

Biopsy↗

Recognition of egocentric and allocentric visual and auditory space by neurons in the hippocampus of monkeys.

Neuronal activity in the hippocampus was recorded in the awake monkey during presentation of visual and auditory stimuli from various directions. About 10% of the neurons coded visual and/or auditory information from unique directions. Some of these neurons were stimulus-selective, and others were not. Three types of neurons were identified by rotating the animals: egocentric and allocentric, and indeterminate. The results are consistent with a role of the hippocampus in spatial memory.

Acoustic Stimulation↗

Human brain potential signs of selection by location and frequency in an auditory transient attention situation.

Event-related brain potentials (ERPs) were recorded in human subjects receiving tones. Each tone was preceded by a visual cue indicating a to-be-attended feature. In one part of the experiment, subjects had to attend to tones of the indicated frequency, whereas they had to attend to tones delivered at the designated ear in the other part. ERPs to attended tones showed enhanced frontal negativities as compared with ERPs to unattended tones. Additionally, in the location selection condition, a negative difference (Nd) between attended and unattended EPRs occurred between 100 and 200 ms at parietal areas. This parietal Nd seems to be characteristic for transient spatial attention.

Acoustic Stimulation↗

Illusory directional hearing in humans.

Trains of 8 binaural clicks, 4 left-ear-leading followed by 4 right-ear-leading, were presented to 14 healthy adults. At interstimulus intervals of less than 120 ms, the subjects mislocalized the sounds, perceiving illusorily that the clicks jumped in equidistant steps from left to right. However, monaural clicks, left-sided followed by right-sided, did not produce a similar effect. The illusion thus has strict neuronal constraints: activation of overlapping neuronal populations in rapid succession. In such conditions the brain integrates sound locations for 100-150 ms and the conscious perception may be delayed by about 500 ms.

Acoustic Stimulation↗

The effect of noise on time-intensity trading in lateralization.

A two-interval forced-choice lateralization task was used to determine interaural delays and interaural amplitude ratios which, when opposed in quiet, led to chance lateralization; the opposed cues formed time-intensity trades. Three types of signal were used: (1) 20-microseconds clicks; (2) 250-ms bursts of a 305 Hz tone; and (3) 250-ms bursts of 3965 Hz carrier amplitude modulated to a depth of 100% at a modulation rate of 305 Hz. The addition of various levels of broad-band white noise did not influence the relative effectiveness of the two lateralization cues with pure tone signals; however, the addition of noise to clicks and to AM waveforms led to lateralization judgements in which the cue based on interaural delay appeared to be less effective than in quiet.

Acoustic Stimulation↗

Binaural masking level differences with a variety of waveforms.

Binaural masking level differences (BMLDs) were measured in a standard two-interval forced-choice detection task. The signals were (a) 250-ms bursts of pure tones, (b) amplitude-modulated waveforms with either high- or low-frequency carriers, and (c) 20-microseconds clicks. The pure tones and clicks were presented either eith zero phase difference between the ears or with an 180 degrees phase difference between the ears: the AM tones were presented in several different interaural phase conditions, only some of which lead to changes in the apparent location of the signal source. The noise against which all the signals were detected was white, broad-band, and identical at the ears. BMLDs were invariably small with high-frequency signals and with clicks. Although the magnitude of the BMLD obtained with low-frequency signals appeared to be related to the Observers' ability to lateralize the signal, there is a simpler explanation based on the assumption that detection of low-frequency AM signals is determined by independent detection of its components.

Acoustic Stimulation↗

The effect of carrier and modulation frequency on lateralization based on interaural phase and interaural group delay.

The sensitivity of Observers to interaural delay in either the envelope or the carrier of an amplitude-modulated sinusoid was measured in a two-interval forced-choice task as a function of the frequency of the modulation and the frequency of the carrier. The two types of delay were set in opposition with the carrier leading in one ear but the modulation leading in the other. Lateralization appeared to be based on carrier (phase) delay when carrier frequency was below 1500 Hz, whatever the modulation frequency. For carrier frequency greater than 1500 Hz, lateralization performance was dependent both on carrier and on modulation frequency and was based on modulation (group) delay.

Acoustic Stimulation↗