Search PubMed⌕ Search

Biomedical subjects

D Burke

Publications and source records attributed to D Burke.

At least 55 records · Page 3Linked to original sources

The choice of timing for diuresis renography: the F + 0 method.

OBJECTIVE: To investigate a method of diuresis renography where the radiopharmaceutical and frusemide (diuretic) are given simultaneously, in contrast to conventional renography which involves an intravenous injection with frusemide 20 min after administering the radiopharmaceutical (F + 20) or 15 min before (F - 15), with particular interest in the effect of this change on assessing split renal function and interpreting upper tract drainage dynamics. PATIENTS AND METHODS: In a prospective study, 29 patients (18 women and 11 men, mean age 47 years, range 21--86) were assessed. Each patient had two renograms taken over a 48-h period, either by the F + 20 or F - 15, and the F + 0 method: Data for split renal function and drainage curves were obtained in the usual way. Two independent assessments of the drainage curves were obtained and the results compared. RESULTS: The split function assessments were identical (< 5% variation) in all but two patients; 26 of 29 (90%) gave identical conclusions about the drainage curves. The three patients with discrepancies between the studies had either hugely dilated upper tracts or otherwise had multiple complicating factors, e.g. impaired renal function, neuropathic bladder. CONCLUSIONS: F + 0 renography has been used in paediatric urological practice before, but there are no comparative studies and no data on its use in adults. This prospective study confirmed that in investigating dilated upper tracts, the F + 0 technique gives similar results to the conventional techniques. The F + 0 method has the potential to reduce the time required to undertake standard F + 20 renography but it may not be useful in evaluating the grossly dilated upper tract, where the F-15 technique has the best record in terms of reducing equivocal results.

Adult↗

Perceptual grouping in two visually reliant species: humans (Homo sapiens) and Australian sea lions (Neophoca cinerea).

Kurylo, van Nest, and Knepper (1997 Journal of Comparative Psychology 111 126-134) have recently shown that hooded rats are able to judge the global orientation of an array of elements if orientation is signalled by the perceptual-grouping principle of proximity, but not if it is signalled by element alignment. Using a procedure designed to overcome some potential problems with the experiment of Kurylo et al, we found the same distinction in the perceptual processing of Australian sea lions. The sea lions were able to judge the orientation of arrays containing strong proximity and similarity information, but performed at chance levels judging arrays in which element alignment signalled global orientation. Human subjects were able to judge all three pattern types quickly and accurately. This is strong evidence of a qualitative distinction in the way in which perceptual grouping operates in humans and the non-human species tested. Whether this distinction is a consequence of evolutionary or experiential factors is a question for future research, but the mere fact of a qualitative difference holds important implications for our understanding of perceptual grouping.

Animals↗

Depression amongst outpatients with traumatic brain injury.

The incidence of depression and its association with subject characteristics in outpatients with traumatic brain injury (TBI) were investigated. Logistic regression was estimated with depressed/not-depressed as the dependent variable in 41 outpatients with TBI who filled out the Beck Depression Inventory-II (BDI-II). Twenty-four of 41 subjects (59%) scored in the depressed categories based on BDI-II scores >13. Fourteen (34%) scored in the moderate or severe depression categories (BDI>19). Logistic regression demonstrated a positive relationship amongst depression and age, female gender, mild TBI, and use of antidepressant and stimulant drugs; and a negative relationship between depression and violent aetiology of injury. ANOVA demonstrated that individuals with mild TBI were significantly older than those with moderate or severe TBI, which might account for the association between depression and age. The implications of these results are discussed.

Adolescent↗

Carbonaceous oxidation using a new vertically moving biofilm system.

This laboratory study consisted of the construction and testing of a new experimental biofilm system for the carbonaceous oxidation of a synthetic wastewater. In the system, a biofilm cuboid module with a high surface area was vertically and repeatedly immersed in and lifted out of the wastewater in a reactor. The performance of two different biofilm modules were compared: one module was constructed from crossflow corrugated plastic sheets with a specific surface area of 410 m2m(-3) and had a calculated surface area of 6.24 m2; the other consisted of honeycombed plastic with hexagonal vertical columns and an estimated surface area of about 2.8 m2. Filtered chemical oxygen demand (COD) removal rates per bulk fluid volume for the corrugated and honeycombed modules of 7.2 kg COD m(-3) d(-1) and 7.6 kg COD m(-3) d(-1) were respectively achieved and these rates compare favourably with other wastewater treatment systems. The new biofilm system was simple to construct and operate, and was very effective in removing biodegradable COD from the synthetic wastewater. The system offers potential for reduced reactor volumes, energy saving, low solids production and easy solids removal.

Biodegradation, Environmental↗

Spinal anaesthesia with ropivacaine 5 mg ml(-1) in glucose 10 mg ml(-1) or 50 mg ml(-1).

Forty patients undergoing spinal anaesthesia for a variety of surgical procedures were randomly allocated to receive 3 ml of ropivacaine 5 mg ml(-1) in glucose 10 mg ml(-1) or 50 mg ml(-1). Onset of sensory block to T10 was significantly faster (P=0.03) with the glucose 50 mg ml(-1) solution (median 5 min, range 2-20 min) than with the 10 mg ml(-1) solution (median 10 min, range 2-25 min). Maximum extent of cephalad spread was virtually the same in both groups (10 mg ml(-1) median T6/7, range T3-T10; 50 mg ml(-1) median T6, range T3-T10) with similar times to regression beyond S2 (10 mg ml(-1) median 210 min, range 150-330 min; 50 mg ml(-1) median 210 min, range 150-330 min). Complete motor block was produced in the majority of patients (10 mg ml(-1) 90%; 50 mg ml(-1) 85%) and the time to complete regression was the same in both groups (median 120 min, range 90-210 min). A block adequate for the projected surgery was achieved in all patients.

Adult↗

Membrane properties in chronic inflammatory demyelinating polyneuropathy.

Threshold tracking was used to compare excitability properties (stimulus-response curves, strength-duration properties, recovery cycle and threshold electrotonus) of the median nerve in 11 patients with chronic inflammatory demyelinating polyneuropathy (CIDP) and 25 healthy controls. Stimulus-response curves were significantly different: threshold was much higher, the slope of the curves reduced and the spread of the thresholds greater in the CIDP group. The strength-duration time constant (tau(SD)) was significantly shorter and the rheobase higher in the CIDP group. In the recovery cycle, the CIDP group had less refractoriness, supernormality and late subnormality than healthy controls, but the duration of the relatively refractory period was normal. These changes in tau(SD) and the recovery cycle were not those previously predicted. There were no consistent changes in threshold electrotonus, suggesting that, for the studied axons, there are no consistent changes in accommodation properties that depend on internodal conductances. It is difficult to explain these changes in excitability on the basis of a change in membrane potential, or solely as the result of demyelination, and it is possible that other morphological factors such as variable remyelination and inflammatory oedema affected axonal excitability in the patients.

Action Potentials↗

The Sheffield experiment: the effects of centralising accident and emergency services in a large urban setting.

OBJECTIVES: To assess the effects of centralisation of accident and emergency (A&E) services in a large urban setting. The end points were the quality of patient care judged by time to see a doctor or nurse practitioner, time to admission and the cost of the A&E service as a whole. METHODS: Sheffield is a large industrial city with a population of 471000. In 1994 Sheffield health authority took a decision to centralise a number of services including the A&E services. This study presents data collected over a three year period before, during and after the centralisation of adult A&E services from two sites to one site and the centralisation of children's A&E services to a separate site. A minor injury unit was also established along with an emergency admissions unit. The study used information from the A&E departments' computer system and routinely available financial data. RESULTS: There has been a small decrease in the number of new patient attendances using the Sheffield A&E system. Most patients go to the correct department. The numbers of acute admissions through the adult A&E have doubled. Measures of process efficiency show some improvement in times to admission. There has been measurable deterioration in the time to be seen for minor injuries in the A&E departments. This is partly offset by the very good waiting time to be seen in the minor injuries unit. The costs of providing the service within Sheffield have increased. CONCLUSION: Centralisation of A&E services in Sheffield has led to concentration of the most ill patients in a single adult department and separate paediatric A&E department. Despite a greatly increased number of admissions at the adult site this change has not resulted in increased waiting times for admission because of the transfer of adequate beds to support the changes. There has however been a deterioration in the time to see a clinician, especially in the A&E departments. The waiting times at the minor injury unit are very short.

Admitting Department, Hospital↗

Differences in accommodative properties of median and peroneal motor axons.

OBJECTIVES: To investigate whether accommodation to depolarising and hyperpolarising currents differs for motor axons of human upper and lower limb nerves. METHODS: The threshold tracking technique was used to measure threshold electrotonus for median and peroneal motor axons. The threshold current that produced a compound muscle action potential 50% of maximum was measured, and membrane potential was altered using subthreshold polarising currents of 330 ms duration but of variable intensity, from +40% (depolarising) to -100% (hyperpolarising) of the unconditioned threshold. RESULTS: The maximal threshold changes (the peak of the S1 phase of threshold electrotonus) were significantly greater in median axons for both depolarising and hyperpolarising currents. The subsequent phases of accommodation to depolarising currents (S2) and to hyperpolarising currents (S3) were also significantly greater in median axons. These findings raised the possibility that greater accommodation (S2 and S3) in median axons resulted from greater changes in membrane potential. However, regression of S2 against S1 to depolarising currents disclosed significantly greater accommodation (27.8%) for median axons, suggesting that slow K(+) conductances may be more prominent on median than peroneal axons. By contrast, the relation between S3 and S1 to hyperpolarising currents was similar for the two nerves, suggesting that the difference in inward rectification was merely because the conductance varies with the extent of hyperpolarisation. CONCLUSIONS: Slow K(+) conductances are more prominent for median motor axons than for peroneal axons. It would therefore be expected that axons innervating the lower limbs have less protection from depolarising stress and could develop ectopic activity more readily.

Action Potentials↗

Accommodation to depolarizing and hyperpolarizing currents in cutaneous afferents of the human median and sural nerves.

To determine whether accommodation to depolarizing and hyperpolarizing stimuli differs for cutaneous afferents in the median and sural nerves, studies were performed in normal human subjects using threshold electrotonus. The changes in threshold for compound sensory action potentials of 50 % of maximum were recorded when the nerves were subjected to long-lasting depolarizing and hyperpolarizing DC. The premise was that the threshold changes largely mirror the underlying electrotonic changes in membrane potential. The maximal threshold changes produced by depolarizing and hyperpolarizing currents were greater for median afferents, suggesting that the DC produced greater changes in membrane potential in these afferents. Median afferents underwent greater accommodation to depolarizing currents than sural afferents and a greater threshold undershoot at the end of the currents, suggesting greater activity of a slow K+ conductance. Median afferents also underwent greater accommodation to hyperpolarizing currents, suggesting greater inward rectification. These conductances are voltage dependent, and the differences in accommodation could be due to greater changes in membrane potential for the median nerve. The changes in threshold produced by long-lasting depolarizing and hyperpolarizing currents of graded intensity were therefore measured. When the threshold changes were matched for the two nerves, median afferents underwent 22.4 % more accommodation to depolarizing currents and 28.7 % more accommodation to hyperpolarizing currents. We conclude that there is greater expression of two internodally located conductances responsible for accommodation on median afferents. The biophysical differences identified in this study might contribute to the finding that sural afferents have a greater tendency to dysfunction than median afferents.

Action Potentials↗

The effect of cigarette smoking and smoking cessation on spinal fusion.

STUDY DESIGN: The effect of cigarette smoking and smoking cessation on spinal fusion was studied in a retrospective review of 357 patients who had undergone instrumented spinal fusion. OBJECTIVE: To document the widely assumed but unreported benefit of cigarette smoking cessation on fusion rate and clinical outcome after spinal fusion surgery. BACKGROUND DATA: Cigarette smoking has been shown to inhibit lumbar spinal fusion and to adversely effect outcome in treatment of lumbar spinal disorders. Prior reports have compared smokers and nonsmokers, as opposed to comparing smokers and quitters. METHODS: This study retrospectively identified 357 patients who underwent a posterior instrumented fusion at either L4-L5 or L4-S1 between 1992 and 1996. Analysis of the medical record and follow-up telephone surveys were conducted. Clinical outcome and fusion status was analyzed in relation to preoperative and postoperative smoking parameters. RESULTS: In this study, the nonunion rate was 14.2% for nonsmokers and 26.5% for patients who continued to smoke after surgery (P < 0.05). Patients who quit smoking after surgery for longer than 6 months had a nonunion rate of 17.1%. The nonunion rate was not significantly affected by either the quantity that a patient smoked before surgery or the duration of preoperative smoking abatement. Return-to-work was achieved in 71% of nonsmokers, 53% of nonquitters, and 75% of patients who quit smoking for more than 6 months after surgery. DISCUSSION: These results validate the hypothetical assumption that postoperative smoking cessation helps to reverse the impact of cigarette smoking on outcome after spinal fusion.

Adult↗

High-precision measurement of the left-right Z Boson cross-section asymmetry.

We present a measurement of the left-right cross-section asymmetry ( A(LR)) for Z boson production by e(+)e(-) collisions. The measurement includes the final data taken with the SLD detector at the SLAC Linear Collider during the period 1996-1998. Using a sample of 383 487 Z decays collected during the 1996-1998 runs we measure the pole value of the asymmetry, A(0)(LR), to be 0.150 56+/-0.002 39 which is equivalent to an effective weak mixing angle of sin (2)straight theta(eff)(W) = 0.231 07+/-0.000 30. Our result for the complete 1992-1998 data set comprising approximately 537 000 Z decays is sin (2)straight theta(eff)(W) = 0.230 97+/-0.000 27.

Journal Article↗

Ischaemic changes in refractoriness of human cutaneous afferents under threshold-clamp conditions.

1. A technique was developed to counteract the changes in threshold to electrical stimuli of large myelinated cutaneous afferents in the human median nerve induced by ischaemia for 13 min. Intermittent application of polarizing currents was used in five subjects, in whom refractoriness, supernormality and the strength-duration time constant (tauSD) were tracked to determine whether compensating for the ischaemia-induced changes in threshold also controlled the ischaemic changes in these excitability parameters. 2. The threshold compensation prevented the ischaemic changes in tauSD, an excitability parameter dependent on nodal Na+ channels. Threshold compensation did not prevent the changes in refractoriness and supernormality, whether the compensation began 10, 100 or 200 ms prior to the test stimuli. 3. In three subjects, continuous polarizing current was injected for 13 min to compensate for the ischaemic change in threshold, thus clamping threshold at the pre-ischaemic level. Again, tauSD was effectively controlled, but there were still ischaemic changes in refractoriness and supernormality. 4. The effective control of tauSD suggests that both the intermittent threshold compensation and the continuous threshold clamp effectively controlled membrane potential at the node of Ranvier. 5. The ischaemic increase in refractoriness when threshold was kept constant could be due to interference with the processes responsible for refractoriness by a metabolic product of ischaemia. The ischaemic change in supernormality during effective compensation probably results from the intrusion of refractoriness into the conditioning-test intervals normally associated with maximal supernormality. 6. The present results indicate that ischaemia has effects on axonal excitability that cannot be readily explained by changes in membrane potential. Specifically, it is suggested that ischaemic metabolites interfere with the recovery of Na+ channels from inactivation.

Adaptation, Physiological↗

Mechanisms of paresthesias arising from healthy axons.

Paresthesias are common manifestations of central and peripheral pathological processes and are due to ectopic impulse activity in cutaneous afferents or their central projections. Cutaneous afferents are more excitable than motor axons, due to differences in their biophysical properties. These differences probably include more persistent Na(+) conductance and inward rectification on cutaneous afferents, properties which probably confer greater protection from impulse-dependent conduction failure but create a greater tendency to ectopic activity. Ectopic discharges can be induced in normal afferents by four maneuvers: hyperventilation, ischemia, release of ischemia, and prolonged tetanization. The alkaline shift produced by hyperventilation selectively increases the persistent Na(+) conductance, while the membrane depolarization produced by ischemia affects both transient and persistent Na(+) channels. Postischemic and posttetanic paresthesias occur when hyperpolarization by the Na(+)/K(+) pump is transiently prevented by raised extracellular K(+). The electrochemical gradient for K(+) is reversed, and inward K(+) currents trigger regenerative depolarization. These mechanisms of paresthesia generation can account for paresthesias in normal subjects and may be relevant in some peripheral nerve disorders.

Axons↗

Multiple measures of axonal excitability: a new approach in clinical testing.

From measurements of nerve excitability and the changes in excitability produced by nerve impulses and conditioning currents, it is possible to infer information about the membrane potential and biophysical properties of peripheral axons. Such information cannot be obtained from conventional nerve conduction studies. This article describes a new method that enables several such measurements to be made on a motor nerve quickly and reproducibly, with minimal operator intervention. The protocol measures stimulus-response behavior using two stimulus durations (from which the distribution of strength-duration time constants can be estimated), threshold electrotonus to 100-ms polarizing currents, a current-threshold relationship (indicating inward and outward rectification), and the recovery of excitability following supramaximal activation. The method was tested on 30 healthy volunteers, stimulating the median nerve at the wrist and recording from the abductor pollicis brevis. The results were comparable with previously published normal data, but the recordings took less than 10 min. The convenience and brevity of the new method make it appropriate for routine clinical use.

Action Potentials↗

Recovery of excitability of cutaneous afferents in the median and sural nerves following activity.

In acquired polyneuropathies, symptoms and signs are typically distal and symmetrical, more prominent in the lower limbs than the upper limbs. This study was undertaken to measure the extent of the decrease in excitability produced by single impulses and by impulse trains in cutaneous afferents in the median and sural nerves, and to compare the resulting changes in excitability of these afferents. Threshold tracking was used in 10 healthy subjects to measure the changes in threshold for a compound sensory action potential of 50% maximum produced by conditioning stimuli. Following a single supramaximal conditioning stimulus, the threshold changes occurring during the refractory and supernormal periods were identical for the two nerves, but there was a greater increase in threshold during the late subnormal period for median afferents. Following a train of 10 supramaximal conditioning stimuli, threshold increased by approximately 40% for median afferents and by approximately 20% for sural afferents. These differences are consistent with differences in a slow K(+) conductance. It is suggested that the hypo-excitability produced by brief trains of impulses may be sufficient to disturb conduction in diseased nerve fibers, and that the lesser expression of slow K(+) conductances on cutaneous afferents in the sural nerve could render them more sensitive to depolarizing stresses than median afferents. This could be a factor in the ease with which sural afferents become ectopically active in polyneuropathies.

Action Potentials↗

Excitability properties of median and peroneal motor axons.

Threshold tracking was used to compare excitability properties (stimulus-response curves, strength-duration properties, recovery cycle, and threshold electrotonus) of median motor axons at the wrist and peroneal motor axons at the ankle in 12 healthy subjects. Stimulus-response curves and strength-duration properties were similar, though higher stimulus intensities were required for peroneal axons. However, there were significant differences in the recovery cycle of excitability following a conditioning stimulus and in threshold electrotonus. In the recovery cycle, median axons had significantly greater supernormality and late subnormality. In threshold electrotonus, the initial slow threshold changes in response to subthreshold depolarizing and hyperpolarizing currents (S1) were significantly greater in median axons, and there was also greater accommodation to depolarizing currents (S2) and greater threshold undershoot after depolarization. Similar differences in supernormality and the S1 phase of threshold electrotonus were found between peroneal axons at ankle and knee, suggesting that these properties may be dependent on nerve length. When median motor axons at the wrist were compared with peroneal motor axons at the knee, there were no differences in refractoriness and supernormality and only small differences in S1, but the late subnormality and undershoot were significantly greater in the median axons. These findings suggest that, in addition to any length-dependent differences, peroneal axons have a less prominent slow K(+) conductance. We conclude that the properties of different motor axons are not identical and their responses to injury or disease may therefore differ.

Adult↗