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Biomedical subjects

A Rees

Publications and source records attributed to A Rees.

At least 145 records · Page 8Linked to original sources

Rate-intensity functions and their modification by broadband noise for neurons in the guinea pig inferior colliculus.

Rate-intensity functions (RIFs) were generated in response to characteristic frequency (CF) tones presented alone and in the presence of broadband noise for neurons in the central nucleus of the inferior colliculus (IC) of the anesthetized guinea pig. Seventy-six percent of the RIFs to CF tones were monotonic (some showing incomplete saturation), and 24% were nonmonotonic. The RIFs to continuous noise were more nonmonotonic than those to CF tones. In continuous or gated noise, the dynamic portion of the RIF to a tone was shifted to a higher tone level, with little change in the dynamic range. Above a threshold noise level, the shift was a linear function of noise level with slope 0.97. Little shift occurred when the noise was inversely gated with respect to the tone burst, suggesting that the underlying mechanism is suppression rather than adaptation. For 63% of units, the maximum discharge rate to a tone in low levels (less than 0-dB spectrum level) of noise (including inversely gated) was greater than to the tone alone. Although many of the effects of noise in the IC reflect peripheral mechanisms, they are supplemented by centrally based processes which enhance the detectability of tone intensity increments in the presence of noise.

Acoustic Stimulation↗

Adrenocortical responses of pigeons (Columba livia) to treadwheel exercise.

Voluntary flight has previously been observed to stimulate adrenocortical activity in pigeons and in the present study increased circulating corticosterone levels were observed in adult feral pigeons forced to exercise in a treadwheel. The magnitude of the corticosterone response to treadwheel exercise was related to the speed of the moving drum, and hence to the work rate involved. Rapidly increasing the ambient temperature also stimulated corticosterone secretion in pigeons and masked the stimulatory effect of exercise. Treadwheel locomotion may serve as a laboratory model for the endocrine physiology of exercise and complements studies on flight.

Adrenal Cortex↗

Stimulus properties influencing the responses of inferior colliculus neurons to amplitude-modulated sounds.

The temporal pattern of the responses of neurons in the inferior colliculus of the anesthetized rat were studied using continuous tone or noise carrier signals, amplitude modulated by pseudorandom noise. Period histograms of the responses, cross-correlated with the pseudorandom noise, gave an estimate of the unit's impulse responses to modulation. The amplitude-modulation rate transfer function (MTF) was obtained by Fourier transforming the correlograms. At sound levels within approximately 15 dB of the unit threshold, the MTFs were near lowpass functions between 6 and 200 Hz but became more bandpass-like as the intensity was increased. There was a steep decline in the response to modulation at modulation frequencies above 200 Hz for all stimulus intensities. For the bandpass-type MTFs the greatest modulation of the discharge pattern occurred at modulation frequencies between 10 and 200 Hz with a maximum in the distribution of MTF peak values between 100 and 120 Hz. There was no consistent relationship with characteristic frequency of either the position of the MTF peak or the high-frequency cutoff of the MTF. The cross-correlograms obtained at high stimulus intensities (30-60 dB above threshold) often showed a negative peak, representing a decrease in the probability of firing in response to intensity increments in the stimulus, and denoting a nonmonotonic rate-intensity function. The MTFs for units responding to amplitude-modulated broadband noise were often flatter in the low frequency region than those generated with tone carriers at corresponding intensities. For some units addition of a broadband noise background to the modulated tone changed the response characteristic of the MTF from bandpass to lowpass and shifted the MTF peak to a lower modulation frequency. The results demonstrate that although neurons in the inferior colliculus are selectively sensitive to the modulation frequency of dynamic stimuli, the response characteristics are not invariant, but instead are closely dependent on the conditions under which the modulation is presented.

Acoustic Stimulation↗

A DNA polymorphism of the apoprotein AII gene in hypertriglyceridaemia.

A polymorphism of the apolipoprotein AII gene (on chromosome 1) was investigated using genomic hybridisation analysis. The two common alleles at this locus were defined by MspI restriction fragments of 3.0 kilobase pairs (M3.0) and 3.7 kilobase pairs (M3.7) respectively. The M3.7 allele was significantly more common (P less than 0.02) in Caucasian subjects who were normo-lipaemic (34%, 20/59) than in those who were hypertriglyceridaemic (16%, 16/98). Serum triglyceride levels were measured in 126 Caucasian subjects with different combinations of disease-associated alleles at the ApoAII and ApoCIII gene loci. Mean serum triglyceride levels were found to be significantly higher (P less than 0.05) in subjects with disease-associated alleles of both the ApoCIII and ApoAII genes, compared with subjects with a disease-associated allele of one or neither locus.

Alleles↗

Haplotypes identified by DNA polymorphisms at the apolipoprotein A-1 and C-III loci and hypertriglyceridaemia. A study in a Japanese population.

A Japanese group comprising 40 hypertriglyceridaemic and 35 normolipidaemic subjects were genotyped for two intragenic DNA restriction fragment length polymorphisms (RFLPs) at the A-1 and C-III gene loci. An Sst-1 polymorphism is located at the 3' end of the C-III gene and a Msp-1 polymorphism in the third intron of the A-1 gene. The polymorphic restriction sites are 3.8kb apart. The polymorphism with Sst-1 was present at allelic frequencies of 0.67 (S1 allele) and 0.33 (S2 allele), and the polymorphism with Msp-1 was present at allelic frequencies of 0.55 (M1 allele) and 0.45 (M2 allele). The alleles S1, S2, M1, and M2 are in linkage disequilibrium and three haplotypes were identified S1-M1, S1-M2, and S2-M2. Unlike the previously reported association of the S2 allele with hypertriglyceridaemia found in Caucasians there was no difference in the frequency of S2 allele between normolipidaemic and hyperlipidaemic Japanese. However one of the haplotypes S1-M2 was significantly increased in the hypertriglyceridaemic subjects (32% versus 11% P less than 0.025). Thus in Japanese there is an association with genotypes at this locus and hypertriglyceridaemia but with a different haplotype than in Caucasians.

Alleles↗

Flight stimulates adrenocortical activity in pigeons (Columba livia).

The influence of long-distance flight on corticosterone secretion has been examined in trained racing pigeons. Flights of 315-561 min from release sites 115-557 km from the home loft greatly increased the circulating corticosterone concentration in comparison with the levels in nonexercised controls sampled before release or bled in the loft at the times of release or arrival. The increase in corticosterone concentration was unrelated to the distance flown or duration of flight. Flights of less than 1 min duration (from release sites 100 m from the loft) increased the corticosterone concentration, in comparison with that in the loft controls, but to levels much lower (P less than 0.001) than those following long-distance flights and to concentrations similar to those in birds that were returned to the loft by hand.

Animals↗

Steady-state evoked responses to sinusoidally amplitude-modulated sounds recorded in man.

Steady-state potentials evoked in response to binaural, sinusoidally amplitude-modulated (AM) pure tones and broadband noise signals were recorded differentially from position F4 and the ipsilateral mastoid on the human scalp. The responses elicited by the AM stimuli were approximately periodic waveforms whose energy was predominantly at the modulation frequency of the stimulus. The magnitude of responses was between 0.1 and 4 microV for modulation frequencies between 2 and 400 Hz imposed on a 1-kHz carrier signal. The magnitude of the responses increased linearly with log modulation depth for low (4 Hz) and high (80 Hz) modulation rates. The response magnitude also increased linearly with the mean intensity of the sound for intensities up to 60 dB above the subject's pure tone threshold; at higher levels the response saturated. The relationship between response magnitude and modulation frequency (the modulation transfer function) was a lowpass function for both pure tone and broadband noise carrier signals. The modulation transfer functions were similar to those obtained from human psychophysical measurements where spectral cues are either unavailable or not used by the subject. The responses also contained a significant component at the second harmonic of the modulation frequency. The magnitude of this component was greatest at modulation rates between 5 and 20 Hz. The responses elicited by ipsilateral and contralateral monaural stimulation were approximately equal in magnitude, and binaural stimulation produced a potential 30% greater than the individual monaural responses. It is suggested that the evoked response represents the entrained neural activity to temporal amplitude fluctuations, and reflects the psychophysically measured performance of the auditory system for the detection and analysis of amplitude modulation.

Adult↗

Dynamic properties of the responses of single neurons in the inferior colliculus of the rat.

The responses of single cells in the central nucleus of the inferior colliculus of the rat were studied with characteristic frequency tones amplitude modulated by pseudorandom noise or sinusoidal waveforms, in order to investigate the degree to which these responses can be described by a linear model. When pseudorandom noise was used as the modulating waveform, period histograms of the response locked to the periodicity of the noise were cross-correlated with a single period of the noise. The response of a model, having this cross-correlogram as its impulse response and the pseudorandom noise sequence as the input waveform, differed in appearance from the corresponding period histogram of the neural discharges, indicating that the latter contained a non-negligible, nonlinear component. Further manipulation of the data showed that the most significant nonlinearities were of even order, which indicates that the changes in neural discharge rate to increments and decrements in stimulus intensity are asymmetrical. In some units, particularly at low mean stimulus intensities, this was clearly evident as a halfwave rectification of the period histogram. The magnitude of the modulation of the period histograms increased as a function of the sound intensity for some units, while in others it decreased; in still other units the magnitude of the modulation of the neural discharges was relatively constant over a large range of stimulus intensities. When the modulation transfer functions were estimated from the responses to noise-modulated sounds they were found to be very similar to those obtained using sinusoidally modulated sound, despite large degrees of nonlinearity being present in the responses to both types of sound.

Acoustic Stimulation↗

Immunological activity of a 38-kilodalton protein purified from Mycobacterium tuberculosis.

A 38-kilodalton (kDa) protein antigen from Mycobacterium tuberculosis was purified by monoclonal antibody TB71-based affinity chromatography. This molecule carries two nonoverlapping epitopes recognized by monoclonal antibodies TB71 and TB72, which are expressed substantially more strongly by M. tuberculosis than by Mycobacterium bovis. However, cross-reactive determinants between these two species were revealed on the 38-kDa protein by a rabbit anti-BCG serum. An immunoradiometric assay based on the TB71 and TB72 antibody pair specifically determined 38-kDa-antigen concentrations in mycobacterial extracts. Antibodies in sera from tuberculosis patients estimated by binding to 38-kDa-antigen-coated microtiter plates were positively correlated with TB72 competing titers. Unlike antibodies, T-cell proliferative responses to the 38-kDa protein were expressed equally by 60% of tuberculosis patients and healthy BCG-vaccinated subjects. Similarly, delayed-type hypersensitivity skin reactions were elicited in both M. tuberculosis- and M. bovis-sensitized guinea pigs. The results suggest the immunodominance of the species-specific B-cell and cross-reactive T-cell stimulatory epitopes.

Animals↗

Cryoanalgesia after thoracotomy. Improvement of technique and review of 600 cases.

The efficacy of cryoanalgesia for the control of post-thoracotomy pain has led to the acceptance of the technique as a routine procedure in this unit. A study of 600 consecutive patients in whom an improved technique was used is not reported. The freezing time for each intercostal nerve in this group was reduced to one 30 second exposure instead of the two 30 second exposures previously used. This reduced the duration of cutaneous numbness, with no loss of pain control. Freezing above the fifth intercostal nerve is no longer practiced in women. Modification to the probe has simplified the procedure. Pulmonary function studies and blood-gas analysis are also described.

Adolescent↗

DNA polymorphisms flanking the apo A-1 and insulin genes and type III hyperlipidaemia.

Two alleles identified by DNA restriction fragment length polymorphisms around the apo A-1/C-III and insulin genes have been shown to be associated with Type IV and V hyperlipidaemia. We have genotyped 19 patients with Type III hyperlipidaemia to establish whether this association is also found in the disorder. Our data show that these associations are not responsible for the majority of cases of Type III hyperlipidaemia, but cannot exclude the possibility that a small proportion (less than 50%) of cases of Type III are caused by interaction between these alleles and the apolipoprotein E2 phenotype.

Adult↗

Independence of salt gland function and adrenocortical activity in ducks (Anas platyrhynchos).

In immature ducklings injected with hypertonic saline the volume of extrarenal salt gland secretion was unaffected by prior treatment (immediately or 4 hr before salt loading) with long-lasting adrenocorticotrophin (ACTH 100 iu/kg, im) or exogenous corticosterone (1.0 mg/kg, im). Pretreatment with metyrapone, an 11-beta-hydroxylase blocker, (80 mg/kg, im) 4 hr before salt loading did not effect the volume of salt gland secretion but delayed the onset of extrarenal excretion. Salt gland function was suppressed in birds pretreated with metyrapone immediately prior to salt loading. The intravenous administration of metyrapone after salt loading immediately reduced salt gland activity, which remained suppressed for at least 40-50 min thereafter. The inhibitory effect of metyrapone on salt gland activity was not counteracted by the subsequent or simultaneous administration of exogenous corticosterone to salt-loaded ducks. These results suggest that acute alterations in adrenocortical activity are not causally responsible for changes in salt gland function.

Adrenal Cortex↗

Transitory corticosterone responses of ducks (Anas platyrhynchos) to exercise.

Horizontal treadmill exercise induced a marked (P less than 0.001) but transitory increase in the level of circulating corticosterone in the plasma of adult male ducks. The decline in corticosterone concentration during exercise is unlikely to be due to a depletion of adrenocortical stores since a marked (P less than 0.001) corticosterone response to adrenocorticotrophin (ACTH) administration was observed immediately after exercise, and was of similar magnitude to that induced in nonexercised controls. The corticosterone response to repeated exercise is also transitory, habituating completely within 28 days of the start of daily training. The corticosterone response (P less than 0.001) to ACTH challenge is not, however, diminished by training. These results indicate that the habituation of the corticosterone response to either acute or repeated exercise is due to a reduction in endogenous ACTH secretion. A similar mechanism appears to be responsible for the habituation of the corticosterone response to handling and confinement in nonexercised control birds. A marked (P less than 0.001) increase in the level of circulating corticosterone was, however, elicited when these birds were exercised, indicating that despite adaptation to handling and confinement the birds remained responsive to the novel stressor of exercise. The corticosterone response of these birds was, however, less than that in untrained birds indicating that the corticosterone response in untrained birds is due to both workload and the stress of handling and confinement.

Adrenocorticotropic Hormone↗

Adrenocortical responses to novel stressors in acutely or repeatedly starved chickens.

The effect of starvation on the corticosterone responses of immature cockerels to acute, novel stress has been determined. The marked corticosterone responses of fed birds to either horizontal treadmill exercise (0.04 km/hr) or intravenous adrenocorticotrophic hormone (ACTH) administration (P less than 0.001 in both cases) were reduced by starvation (P less than 0.01 and P less than 0.001, respectively). This reduction did not appear to be due to either feedback inhibition of corticosterone on the hypothalamus or pituitary, or to reduced adrenal responsiveness to endogenous ACTH. Starvation significantly elevated the basal level of circulating corticosterone (P less than 0.001), but the magnitude of this elevation and the level of corticosterone attained were less (P less than 0.05) in birds that were accustomed to starvation. This habituation of adrenocortical activity may be due to reduced pituitary ACTH secretion, and was specific in that the corticosterone responses to novel stressors were unaffected.

Acute Disease↗

DNA polymorphisms in the apolipoprotein C-III and insulin genes and atherosclerosis.

A total of 167 patients undergoing investigation for suspected coronary artery disease (CAD) were genotyped for restriction fragment length polymorphisms (RFLP) at the apo A-1/C-III locus and the insulin gene locus using cloned human apo A-1 and insulin gene probes. The study group was subdivided into patients with absent or minimal CAD, intermediate CAD and severe obstructive CAD. An Sst-1 polymorphism located in the 3' non-coding region of the apo C-III gene identifies two alleles. One of the alleles (S2) showed a significantly increased frequency in the subjects with severe obstructive CAD (18%) compared with patients with minimal or absent CAD (6%) (P less than 0.025) and normolipidaemic control subjects. This A-1/C-III polymorphism may be a marker for an abnormality in the A-1/C-III genes predisposing to atherosclerosis. In contrast to a previous report, we found no increase in the frequency of the Class 3 insulin alleles in subjects with severe CAD.

Adult↗

Delineation of FM rate channels in man by detectability of a three-component modulation waveform.

Adaptation studies have provided evidence for auditory mechanisms which operate on the modulation waveform of frequency-modulated sounds, and that these mechanisms behave like a series of channels selectively tuned to a limited range of modulation rates. In the present experiments, measurements of the modulation detectability threshold of a frequency-modulated tone, which had a modulation waveform spectrum consisting of three components: one component at the modulation rate and two sidebands which could be set to different frequency positions on either side of it, revealed that when the two sidebands were located within a limited bandwidth around the central component they contributed to the detection of the modulation. However, when the sidebands were more widely separated from the central component, the modulation detection threshold was dependent only on the magnitude of the central component. Within the area of sideband interaction, there was an inversely proportional relationship between the magnitude of the sidebands and the modulation threshold. Differences in the time-integrated sound spectra for the FM signals, although very complex, do not contain changes which adequately explain the data on the basis of critical band mechanisms, or a peak-to-peak detection model. The data provide further evidence in support of the hypothesis derived from adaptation studies that channels selectively sensitive to the rate of frequency modulation in frequency-modulated tones are concerned in the processing of frequency-modulated signals.

Auditory Threshold↗