PubMed Health⌕ Search

Biomedical subjects

W Leber

Publications and source records attributed to W Leber.

3 recordsLinked to original sources

A new suspension form of smectite (Liquid 'Diasorb') for the treatment of acute diarrhoea: a randomized comparative study.

An open, multi-centre, general practice study was carried out in 80 patients with acute diarrhoea to compare the effectiveness and tolerability of treatment with a liquid formulation of smectite, a hydrated aluminium-magnesium silicate (Liquid 'Diasorb'), and loperamide. Patients were allocated at random to receive one or other treatment for a maximum of 48 hours. Thirty-three of the patients on the smectite preparation and 30 of those on loperamide had acute diarrhoea of at least 24 hours but no longer than 48 hours in duration. Patients received a daily dose of 6 to 9 g smectite or 8 to 12 mg loperamide, depending on the symptoms. Details of red and white cell counts, serum electrolyte concentrations and stool culture for pathogens and parasites were recorded on entry and after 1 week. The results, judged in terms of resolution of symptoms after 2 and 7 days, doctor and patient assessment of response to therapy, and incidence of side-effects, showed that both treatments were equally effective and well-tolerated. Two patients were withdrawn, 1 patient (Liquid 'Diasorb') because of lack of response and the other (loperamide) because of dryness of the mouth and nausea. Laboratory parameters remained unchanged apart from a slight decrease in leucocytes in both groups.

Acute Disease↗

Single electrode voltage clamp by iteration.

A technique for providing conditions of voltage clamp which differs considerably from other voltage clamp schemes has been developed. The feedback network which determines the current which will clamp the cell to the desired voltage does not operate in real time. Instead, the system uses a form of discontinuous feedback. The event to be clamped, which must be one which can be made to repeat itself without change, is elicited and allowed to run to completion without the intervention of feedback. During each repetition of the event, a current waveform is injected whose shape is based on the foregoing trials (iterations). Successive repetitions of this process develop a current waveform which ever more closely clamps the voltage to the desired value. Implementation involves a means of converting the intracellular voltage signal to digital form (a transient recorder), a means of processing the digitalized voltage signal (a digital computer), and a means of delivering the clamping current back to the preparation. The system has two advantages over other voltage clamp techniques. First, that the feedback loop is open in real time confers great stability. This advantage is exploited in the use of iterative voltage clamp in single electrode preparations. Secondly, iterative voltage clamp is essentially unlimited in the speed with which it can respond to transients. This would make the technique of interest even in preparations such as squid giant axon, where two electrodes are used and very fast responsiveness is desired.

Animals↗