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Conductometric study of shear-dependent processes in red cell suspensions. II. Transient cross-stream hematocrit distribution.

A novel experimental approach based on electrical properties of red blood cell (RBC) suspensions was applied to study the effects of the size and morphology of RBC aggregates on the transient cross-stream hematocrit distribution in suspensions flowing through a square cross-section flow channel. The information about the effective size of RBC aggregates and their morphology is extracted from the capacitance (C) and conductance (G) recorded during RBC aggregation, whereas a slower process of particle migration is manifested by delayed long-term changes in the conductance. Migration-induced changes in the conductance measured at low shear rates (< or =3.1 s(-1)) for suspensions of RBCs in a strongly aggregating medium reveal an increase to a maximum followed by a decrease to the stationary level. The ascending branch of G(t) curves reflects the aggregate migration in the direction of decreasing shear rate. A further RBC aggregation in the region of lower shear stresses leads to the formation of RBC networks and results in the transformation of the rheological behavior of suspensions from the thinning to the thickening. It is suggested that the descending branches of the G(t) curves recorded at low shear rates reflect an adjustment of the Hct distribution to a new state caused by a partial dispersion of RBC networks. For suspensions of non-aggregating RBCs it is found that depending on whether the shear rate is higher or lower compared with the prior value, individual RBCs migrate either toward the centerline of the flow or in the opposite direction.

Conductometry↗

Fluoride ingestion from drinking water by Nigerian children aged below 10 years.

AIMS: To determine daily fluoride ingestion from drinking water by Nigerian children aged below 10 years using two different methods of measurement. METHODS: The mean daily water consumption by 314 children was determined and fluoride levels in drinking water sources measured in northern and southern zones of Nigeria. From the results, daily fluoride ingestion by the children was calculated. RESULTS: The mean daily water consumption was 1.7 (SD0.4) litres in 1-3-year-olds and 2.6 (SD0.5) litres at age 7-9 years in the North; but the corresponding values were significantly lower in the South (p<0.05). However, the mean body weights of the children were significantly lower in the North (p<0.05), being 11.5 (SD 2.5) kg in 1-3-year-olds. The mean daily fluoride ingestion by children aged 1-3 years exposed to 0.7 ppm F (recommended for the tropics) was calculated to be 0.062 (SD0.023) mg/kg body weight in the South, and this is within the range of 0.04-0.07 mg/kg body weight generally regarded as appropriate. In contrast, ingestion of the ion by similarly aged children exposed to the same fluoride level in the north was higher than the threshold dose. CONCLUSION: It is, therefore, concluded that exposure to drinking water containing recommended fluoride levels in the tropics (northern zone of Nigeria) could result in ingestion of a fluoride dose higher than the threshold that is generally regarded as appropriate.

Body Weight↗

[Theoretical study of contactless conductivity detector for electrophoresis chip].

Currently most electrophoresis chips use optical detection methods, which brings some difficulties in micromation and integration of electrophoresis chips. In order to solve this problem, a new high-frequency contactless conductivity detector for electrophoresis chip is designed. At the same time, theoretical study and analysis of this new detector are carried out, based on the construction of an equivalent circuit mode of high-frequency conductivity detector and the design of the structure. With the consideration of many factors including band broadening, the dimensions of the structure were designed and optimized. In summary, the detector has many advantages such as wide application range, simple structure and easy integration.

Conductometry↗

[Capacitively coupled contactless conductivity detection in capillary electrophoresis].

Capacitively coupled contactless conductivity detection (C4D) is a new detection technique has been developed in recent years and used mainly in capillary electrophoresis and microchip electrophoresis. The characteristics of C4D detector are simple in structure, easy in miniaturization and integration, and free of electrodes contamination, which are common problems in an electrochemical detection. The principles and progresses of C4D in capillary electrophoresis are reviewed.

Conductometry↗

Designing screened enclosures: Part III.

The engineer will be able to design a successful screened enclosure using careful selection of materials, gaskets and, if necessary, screened optical windows. Many of the techniques covered in this series of articles can be employed during the research and development stage to arrive at a cost-effective solution that offers the required mechanical, aesthetical, environmental and electrical properties.

Computer Peripherals↗

[New methods and equipment for studying the hemostatic system (review of the literature)].

The author analyzes the principles and reviews the ranges of application of conductometric, filtration rapid method for studies of formed element aggregation in stabilized blood, hemostographic, photodynamic method for blood clotting registration, superfusion method for assessment of hemocoagulation tissue factor release reaction. He comes to a conclusion that the diagnosis may become objective, rapid, reliable, and accurate if biophysical characteristics of the hemostasis are investigated, their informative value assessed, and measuring equipment for hematologic laboratories designed and commercially produced.

Blood Coagulation Tests↗

[Structure of an Escherichia coli bacterial suspension].

The structure of bacterial suspensions of Escherichia coli M-17 at the counting concentrations of the cells 10(7), 10(8), 10(9) i/ml and in the temperature range of (18-50) degrees C has been investigated by means of orientational conductometric, electron microscopic and UV-spectroscopic methods. On the basis of experimental relationships of the anisotropy of suspensions electric conductivity upon the intensity of a sinusoidal electric field and relaxation of anisotropy after switching off the field the function of the distribution of bacteria with respect to their sizes was evaluated at different temperatures and concentrations. The conductometric function of bacteria distribution is in a good agreement with the analogous function obtained with the help of the electron microscope. In accordance with the functions the suspension of E. coli contained three kinds of cells: high electronic density, low electronic density bacteria and bacteria aggregates. Relative amounts of every kind of bacteria depended on temperature and concentration of cells. The minimum of bacteria aggregates and maximum of low electronic density cells were obtained in the temperature range of (32-42) degrees C. This fact could be explained by the activation of the transport membrane systems in this temperature range. This hypothesis was confirmed by the UV-spectroscopic method.

Conductometry↗

[The dispersion analysis of cell suspensions by a conductometric method].

A conductometric device-analyser ADS-05 designed by the authors is proposed for dispersive analysis of cell suspensions. The device makes it possible to do a wide range express analysis of suspensions (0.1-600 microns) according to any required number of classes (from 2 to 2(10)). The results of dispersion analysis of the yeast cells of Saccharomyces aragilis crop are given (according to the 16 classes).

Conductometry↗

Electrical activity of canine gallbladder.

Our aims were to describe the myoelectrical activity in the single very thin layer of muscle of the canine gallbladder. The study was performed on 22 freshly removed canine gallbladders. Electrical activity was studied by the single sucrose-gap method and contractility of the tissue was measured simultaneously using a force transducer. The strips (15 x 1 mm) from different regions of gallbladder (fundus, corpus, neck) were cut in longitudinal, circular and oblique axes. The sucrose-gap apparatus together with connecting tubes, solutions and electrodes were kept at 37 degrees C and the initial tension applied to the tissue was set to 1 g. In 82.7% of recordings, spontaneous myoelectrical activity consisted of regular rhythmic changes in membrane potential similar to slow waves recorded in intestinal tissue. The overall mean frequency was 11.4 +/- 5.2 (mean +/- SD) cycles per min: 11.1 +/- 4.4 cycles per min in fundus, 11.9 +/- 6.2 cycles per min in corpus and 10.8 +/- 3.8 cycles per min in the neck of the gallbladder. In 84.2% of cases electrical activity correlated with mechanical activity and preceded it. No significant differences were seen between the electrical patterns in strips with different orientations or from the different regions of the gallbladder.

Animals↗

Total body electrical conductivity measurements in the neonate.

TOBEC measurements are based on the premise that a conductive object will interact with an electromagnetic field and result in the dissipation of a small quantity of the field's energy. TOBEC instruments provide a measure of this energy loss, which for a given conductor varies according to its size. The conductive component of the body is that part that contains water with dissolved electrolytes, i.e., essentially the FFM. Fat, by definition, is anhydrous and does not contribute to a TOBEC measurement. To interpret TOBEC readings in terms of the quantity of FFM in the body requires the use of a calibration equation that is generated by measuring the FFM of a reference population using an alternative technique and relating this to each individual's TOBEC value. Because no alternative method exists to estimate the FFM of an infant, a calibration equation is used that was generated from measurements of young miniature piglets. The body composition of infants thus derived is consistent with our general understanding of the changes in fat and FFM in human infants in early life. Whether TOBEC can be used as described in premature or older children has yet to be determined. Variations in the composition of the FFM do not seem to compromise the accuracy of the technique. TOBEC measurements are precise, rapid, noninvasive, and safe and cause the subject no discomfort. These features not only make TOBEC a useful tool for the nutritional assessment of a pediatric patient but they also may be a useful diagnostic tool for the clinician.

Adipose Tissue↗

[Mechanism of action of proteinases of Pseudomonas aeruginosa].

Of the two proteases produced by Pseudomonas aeruginosa, one whose optimal pH is neutral, exhibits elastolytic activity. This elastase is produced as a prepropeptide, subsequently modified by proteolysis, and finally secreted as an active enzyme. Both proteases act mainly on hydrophobic aminoacids. The most important site for the elastase seems to be the P'1 site where Phe, Tyr and Leu residues enhance hydrolysis. The alkaline protease is less specific of this site. At least four aminoacids are needed to obtain measurable rates of hydrolysis. A synthetic substrate, Ala-Ala-Phe-Ala, is proposed for conductimetric measurements of Pseudomonas aeruginosa elastase activities in the nanomolar range. A review of recent studies shows that a very wide range of proteins can be hydrolyzed by the two Pseudomonas aeruginosa proteases, a fact which may explain why these enzymes are major determinants of the bacteria's infectivity.

Conductometry↗

Therapeutic role of carbogen in impaired hearing.

The therapeutic role of carbogen was evaluated in subjects with sensorineural hearing loss by administering carbogen, a gas mixture of 95 per cent O2 and 5 per cent CO2, for seven consecutive days (30 min/day) and monitoring puretone audiometry before and after the administration. Significant improvement was observed both in air and bone conduction threshold levels on seventh day, indicating that there was some recoverable portion in the hearing level of these subjects. The improvement in hearing may be due to action of CO2 as an otic vasodilator coupled with supplementation of the O2 requirement of degenerating hair cells. Carbogen thus appears to be useful in persons with impaired hearing, involving the inner ear.

Adult↗

Elastolysis of kappa-elastin sub-fractions by pancreatic and leukocyte elastases.

Kappa-elastin peptides, obtained from insoluble elastin by organo-alkaline hydrolysis, were fractioned by gel filtration on Biogel agarose. Rates of hydrolysis by pancreatic and leukocyte elastases of the fractions were measured using a conductometric method. Kinetics obey to Michaelis-Menten model for both substrates and enzymes. KM and Vmax values derived from Lineweaver-Burk plots indicate that, if KM remains quite constant, differences were observed in catalytic rates. The kcat values decreased with molecular-weight, the high-molecular-weight kappa-elastin peptides being hydrolyzed 3 to 5 times faster than the low-molecular-weight ones. Apparent differences between potentiometric (pH-Stat) and conductometric results were discussed, in relation with buffer capacity of soluble and insoluble elastins.

Animals↗

[An evaluation of conductometric methods for determining circulating blood volume].

An analysis of the theory and practical check-up of the methods of determination of the circulating blood volume by the conductometric methods in 86 surgical patients with different phases of compensation of disturbance of water-electrolyte metabolism have shown them to be incompetent. The authors propose a new way to search for and develop a noninvasive impedance measurement method of determination of the extracellular fluid on the basis of Thomasset principle corresponding to possibilities and specific features of national rheographic apparatus.

Blood Volume↗