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Biomedical subjects

D Burke

Publications and source records attributed to D Burke.

At least 163 records · Page 9Linked to original sources

Increased resting discharge of human spindle afferents following voluntary contractions.

1. The aim of this study was to assess the incidence of lasting alterations in discharge rate of muscle spindle afferents innervating human ankle and toe dorsiflexor muscles following isometric contractions. 2. The subjects performed controlled isometric ankle dorsiflexions maintained for approximately 5 s. During the contraction the discharge of all but one spindle afferent increased above the precontraction level. After complete relaxation, there was prolonged enhancement of the discharge rate of nineteen of fifty-five muscle spindle afferents and none of three Golgi tendon organ afferents. Ten of the nineteen spindle afferents had been silent prior to the contraction. For the population of fifty-five spindle afferents, the mean 'postcontraction' discharge rate was 65% higher than the mean precontraction discharge rate, with the mean rate increasing from 2.3 to 3.9 Hz (P < 0.001). The mean duration of the enhanced postcontraction discharge was 52 s (range, 8-240 s). 3. Stretch applied to the tendon of the receptor-bearing muscle in twelve of fourteen spindle afferents with an enhanced postcontraction discharge rate eliminated or reduced the enhanced discharge rate. 4. The high incidence of an enhanced spindle discharge after voluntary contraction (35% of spindle afferents) suggests that muscle 'history' should be taken into account when interpreting changes in spindle discharge rates. The enhanced discharge rates following contraction probably reflect a long-lasting effect of the contraction-associated increase in fusimotor drive on intrafusal stiffness, rather than the persistence of fusimotor drive following relaxation.

Adult↗

Efferent responses to twitch tests used in identifying human muscle afferents.

The response of a muscle afferent to the mechanical stimulus produced by a twitch contraction of the receptor-bearing muscle is an important test for differentiating between muscle spindle endings and Golgi tendon organs. The present study demonstrates that active alpha-motor axons can behave in a similar manner to spindle afferents, presumably responding not to the mechanical event per se, but reflexly to the change in afferent discharge created by the mechanical event. alpha-Motor axons were unequivocally identified during microneurography using spike-triggered averages of EMG. Caution is required when the twitch test is utilized to assist in the classification of muscle afferents during an intentional or unintentional voluntary contraction.

Action Potentials↗

Effect of aberrant hepatic arterial anatomy on tumour response to hepatic artery infusion of floxuridine for colorectal liver metastases.

Regional hepatic artery infusion of colorectal liver metastases produces the highest reported treatment response. The effect of variation in hepatic artery anatomy on tumour response to regional floxuridine (FUdR) was studied. Aberrant hepatic arterial anatomy occurred in 13 of 74 patients (18 per cent) who underwent cannulation of the hepatic artery and infusion of FUdR for colorectal liver metastases. The non-dominant hepatic artery was ligated and the dominant artery cannulated in those with aberrant anatomy. Despite evidence of a collateral circulation to the non-dominant area of the liver in these patients, there was no significant reduction in median tumour volume with treatment (before treatment 214 ml, after treatment 339 ml). By contrast, there was a significant (P < 0.001) decrease in median tumour volume (before treatment 329 ml, after treatment 148 ml) in those with normal anatomy. Delivery of FUdR to metastases via an intrahepatic collateral circulation was not as effective as through a main hepatic artery.

Colorectal Neoplasms↗

Homonymous and heteronymous monosynaptic reflexes in biceps brachii.

Using poststimulus time histograms, it has been reported that stimulation of the median nerve at the elbow produces a monosynaptic EPSP in voluntarily active single motoneurons of the human biceps brachii. The present study was undertaken to: (i) determine whether such stimulation could evoke a reproducible reflex response in biceps brachii; and (ii) establish the optimal conditions for eliciting the reflex under clinical conditions. Twelve normal subjects were studied. No reflex response was recordable when biceps brachii was relaxed. A reflex response with a mean latency of 14.0 ms (+/- 0.96 ms) could be recorded during a background voluntary contraction. The response was small (0.5-4.5% of the maximal M wave) but symmetrical, and could be obtained in all subjects. The responsible afferents appear to be rapidly conducting fibers from forearm flexor muscles and the latencies of the response were consistent with a monosynaptic reflex. Reflex amplitude increased with stimulus intensity and contraction strength. Stimulus rate did not affect amplitude significantly. It is concluded that a reproducible heteronymous monosynaptic reflex can be recorded from the contracting biceps brachii on stimulation of the median nerve at the elbow. Although smaller than the homonymous H reflex evoked by stimulation at Erb's point, it was technically easier to demonstrate that the EMG potential was of reflex origin (rather than part of an M wave). These reflexes should be of value in the assessment of the C-5/C-6 segments and the upper trunk of the brachial plexus.

Adult↗

Genetic and physical mapping of the natural resistance-associated macrophage protein 1 (NRAMP1) in chicken.

The chicken natural resistance-associated macrophage protein 1 (NRAMP1) gene has been mapped by linkage analysis by use of a reference panel to develop the chicken molecular genetic linkage map and by fluorescence in situ hybridization. The chicken homolog of the murine Nramp 1 gene was mapped to a linkage group located on Chromosome (Chr) 7q13, which includes three genes (CD28, NDUSF1, and EF1B) that have previously been mapped either to mouse Chr 1 or to human Chr 2q. Physical mapping by pulsed-field gel electrophoresis revealed that NRAMP1 is tightly linked to the villin gene and that the genomic organization (gene order and presence of CpG islands) of the chromosomal region carrying NRAMP1 is well conserved between the chicken and mammalian genomes. The regions on mouse Chr 1, human Chr 2q, and chicken Chr 7q that encompass NRAMP1 represent large conserved chromosomal segments between the mammalian and avian genomes. The chromosome mapping of the chicken NRAMP1 gene is a first step in determining its possible role in differential susceptibility to salmonellosis in this species.

Animals↗

Trial-to-trial variability of corticospinal volleys in human subjects.

The trial-to-trial variability of the different components of corticospinal volleys evoked by transcranial electrical stimulation of the motor cortex using a constant stimulus intensity was measured from epidural recordings during surgery to correct scoliosis. The recordings were made when there was no operative interference, and blood pressure, temperature, ventilation and anaesthetic regimen were stable. A simple D wave with a single negative peak of 10-30 microV amplitude was recorded in 4 patients. It varied little in amplitude (S.D.s < 8% for 100 consecutive single responses). In 4 patients the stimulus was adjusted to produce a complex D wave with 3 components, the earliest 2 of which arise from subcortical/brain-stem sites. The variability of amplitude of these components was high (S.D.s of 13-50%), but the variability of latency was low (S.D.s of 2-3%). Eighteen I waves were recorded in 6 of the subjects. Their variability from trial to trial was similar to that of the components of the complex D wave. It is argued that there would be greater trial-to-trial variability of the corticospinal volley in the awake state, particularly when the stimulus was magnetic rather than electrical. Explanations for changes in the compound muscle action potential produced by transcranial stimulation, electrical or magnetic, must take into account that a constant stimulus does not evoke an identical descending volley.

Adolescent↗