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Biomedical subjects

G Smolik

Publications and source records attributed to G Smolik.

3 recordsLinked to original sources

Bacteriorhodopsin crystal growth in reduced gravity--results under the conditions, given in CPCF on board of a Space Shuttle, versus the conditions, given in DCAM on board of the Space Station Mir.

For the purpose of bio-electronics, bacteriorhodopsin was crystallized into two habits through liquid-liquid-diffusion, namely individual needles of up to 1.9 mm in length and needle bunch-like clusters of up 4.9 mm in total length. In both the reduced gravity experiments performed, the morphology of the individual needles (crystal form A) had improved in terms of sharp needle edges and compact needle packing, compared to the parallel ground controls. For the long duration wide range low gravity condition in the "Diffusion-controlled Crystallization Apparatus for Microgravity (DCAM)" on Mir (STS-89 up), needle bunches on average were longer there than on the ground, while the compactness of the clusters, i.e. the average ratio of clustered length to clustered width was the reverse. Some exceptionally large individuals needles were grown in DCAM. For the "Commercial Protein Crystallization Facility (CPCF)" in short duration high definition microgravity conditions during a science mission of the Space Shuttle Discovery (STS-95), size and shape of the individual needles were homogeneous and superior to those of both the parallel ground controls and the results in DCAM. In CPCF, the average volume of the individual needles in suspension was increased by 50% in microgravity compared to those in the ground control.

Ammonium Sulfate↗

Optimal dimensions of capillary membranes for plasma separation.

The work presented in this article examines the relationship between the efficacy of the design (membrane consumption) and the design parameters for plasma separation modules. A computer simulation program for the design of hollow fiber modules was developed. It is based on a formula for filtrate flux prediction by Jaffrin. The limiting conditions set by red and white blood cell lysis are also taken into account. The results show that membrane area consumption is strictly related to the internal hollow fiber diameter. Low-efficiency devices (low infiltrate flux) can be designed nearly optimally, using 330-micron fibers. On the other hand, for high-efficiency devices, our model predicts lowest membrane consumption and, therefore, lowest costs using 220-micron fiber diameter. Furthermore, the results demonstrate that shear rates in commercially available plasma filters are too low.

Computer Simulation↗

Backfiltration: does it occur in membrane plasma separation?

Backfiltration in hemodialysis refers to local filtration of dialysate into the blood compartment. This investigation was performed to examine whether there is a similar backfiltration phenomenon in membrane plasma separation. It was shown experimentally in hollow fiber devices that there is a flow of plasma through the filtrate side parallel to the blood flow inside the fiber. This bypass flow includes a backfiltration of the plasma from filtrate to the blood compartment near the end of the module. The following experimental results show the existence of bypass flow and backfiltration. In the case of no net filtration, these findings were made: 1) the existence of an offset of mean transmembrane pressure and 2) the blood side pressure drop in ACD-blood was less in impermeable fibers than in permeable ones. Filtrate pressure is higher than module outlet pressure at a wide range of filtration rates. In summary, backfiltration is not restricted to zero net filtration but occurs under the conditions of clinical use. Therefore, backfiltration is a crucial issue for device safety, because any contamination or wash-out from the membrane can reach the blood side.

Equipment Safety↗