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H Malotta

Publications and source records attributed to H Malotta.

6 recordsLinked to original sources

A comparative study: perfusion of the micro- and macrocirculation as a function of the hematocrit value.

The fluidity (the inverse of viscosity) of red blood cell (RBC) suspensions in vivo was estimated by means of microcirculatory measurements such as RBC flow velocity, micropressure in arterioles and venules, and vessel geometry, and by means of simultaneous macrocirculatory measurements such as volume flow and perfusion pressure in the whole organ. These in vivo data were compared to in vitro data obtained by viscometry. The experiments were performed on the isolated rat mesentery perfused with a nonaggregating and an aggregating suspension: Human RBC were either suspended in Ringer's or Ficoll 400 solution. The tissue was perfused at various perfusion pressures and hematocrit values. The microcirculatory perfusion was recorded by means of microscopy using a video TV system. Five major results have been identified: First, microfluidities calculated from velocity data in capillaries of the mesenteric membrane were almost identical to the fluidities calculated from macroflow data (volume flow rates and perfusion pressure in the whole organ). Second, in vivo fluidities of both suspensions decrease with increasing hematocrit value but seem to be independent of driving pressure between 4 and 10 kPa. Third, the fluidity of the Ficoll suspensions is lower than the fluidity of the Ringer's suspensions by the same ratio as the continuous phases. Fourth, the in vivo fluidities of the Ringer's suspensions and the Ficoll suspensions for hematocrit values from 20 to 70% and a range of wall shear stresses from 0.6 to 1 Pa were higher than those measured in vitro. Finally, it has been quantified that an increasing number of vessels became stagnant (that is packed by red blood cells) at high hematocrit values, low perfusion pressure, and increased aggregability of RBC.

Animals↗

Do nonionic contrast media increase red cell aggregation and clot formation?

Red cell aggregate formation was studied both macroscopically and microscopically in blood mixed with a contrast medium, either ioxaglate or iohexol. Whole blood was layered on top of the contrast medium, and after being shaken, blood cells were separated from the medium by centrifugation. The kinetics of red cell aggregate formation were measured by a transparent rheoscope and a photoaggregometer at different shear rates. Coagulation studies were conducted on citrated platelet-rich plasma mixed with contrast media. Platelet shapes were observed with phase contrast optics, and coagulation times were measured. It was demonstrated that the increased red cell aggregation, which occurred during the initial contact between blood and the contrast medium, dispersed after being submitted to shear force and did not re-form in the remaining plasma. Since this phenomenon is associated with high concentrations of contrast media in nonflowing blood, the high shear rate in arteries and arterioles make it unimportant in the in vivo situation. Within highly concentrated contrast media solutions, blood clot formation was not inducible, and the risk of thrombus formation in fresh blood drawn into contrast medium-filled syringes appears minimal.

Blood Coagulation↗

Effect of temperature dependent changes in mechanical stability of red cell aggregates on relative apparent whole blood viscosity.

As the temperature dependence of relative apparent whole blood viscosity eta rel is still controversial, the relation between the temperature dependence of red cell aggregation (RCA) and that of eta rel was examined in normal donors and in patients with venous ulcers of the leg. Apparent whole blood viscosity was measured in the DEER-rheometer (0.01 Pa less than tau less than 2.9 Pa) at 10 degrees C, 20 degrees C, 30 degrees C and 37 degrees C. The instrument was calibrated for each temperature to correct for changes in viscometer geometry. Simultaneously the minimal shear stress tau Tmin to keep RCA dispersed was determined by photometric aggregometry. eta rel was found to increase with decreasing temperature. By basing the relative cold induced increase in eta rel on the state of RCA as defined by the ratio of tau/tau Tmin the relation between both features is verified: With increasing RCA the cold induced increase in eta rel is progressively enhanced.

Blood Viscosity↗

Recent progress in improving data processing in filtration measurements.

Nucleopore filter membranes currently utilized to assess RBC "deformability" do not meet the strict metrological requirements of a measuring gauge. They present different kinds of inhomogeneities introducing an useless information (a background noise) into measurement results and expressed as poor reproducibility. Variance reduction can only be achieved by eliminating aberrant results from a series of parallel measurements made with different membranes. To this end a procedure is proposed to identify aberrant values by an iterative statistical regression analysis of data from filter calibration and measurements on RBC suspensions and to express results as "reduced" initial flow rates for a standard filter resistance.

Erythrocytes↗