PubMed Health⌕ Search

SEARCH · PubMed Health

Results for “Computer Simulation”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 919 records · Page 51Linked to original sources

Computer simulation of fermentation systems.

Results of batch fermentation of gluconic acid by Pseudomonas ovalis were graphically analyzed to obtain a kinetic model to represent the data. Since gluconic acid was produced by the hydrolysis of a lactone intermediate, the model was necessarily represented by a set of kinetic equations. A computer simulation technique involving the use of the MIDAS program was developed to solve the system of nonlinear equations and to check the appropriateness of the model. Since the maximal specific growth rate and the rate constant for the production of the lactone intermediate varied with time, function generators were used to simulate these system parameters. The merit of using the MIDAS program was considered in relation to analysis and model testing in microbiological processes of similar types.

Computers↗

Computer simulation technique for assessing pediatric auditory test protocols.

Adaptive testing procedures are widely used for evaluating the hearing of young children. A standard protocol for such testing, however, has not been recommended and, as a result, many variations of the procedure are used clinically. This study, by utilizing computer simulations, varied several test parameters and examined the resulting test outcomes. We evaluated the effects of starting level, stimulus step size, and the use of conditioning trials on test outcome, while also varying the hearing levels and false positive and and negative rates of our simulated subjects. Results indicated that a low starting level, with a 20-dB down 10-dB up step size, and no conditioning trials produced the most accurate estimates of thresholds under most conditions.

Acoustic Stimulation↗

Analog computer simulation of maternal - fetal transfer of cefazolin.

Cefazolin concentration-time data after normal vaginal delivery were obtained for maternal serum, placenta, umbilical cord blood, and amniotic fluid. After normalizing of the data, concentration-time profiles were generated for each sampling compartment. A pharmacokinetic model for analog computer simulation was developed. Multiple dosing simulation suggests a higher accumulation of cefazolin in fetal than in maternal blood, and a slow accumulation in amniotic fluid, which acts as a depot or storage. The drug is transferred diaplacentally; paraplacental transfer seems to be absent for cefazolin.

Amniotic Fluid↗

Computer simulation of iron absorption: regulation of mucosal and systemic iron kinetics in dogs.

The quantity and distribution of body iron normally vary little over time. This homeostasis is maintained primarily through control of intestinal iron absorption, but the mechanism of this regulation is unclear. Modern techniques for computer simulation and numerical analysis now make it possible to study the kinetics of iron absorption in vivo. We used a physiologically based mathematical model of iron metabolism to analyze tracer iron kinetics in normal and iron-deficient beagles. The model provides characteristic information about both intestinal and systemic iron exchange, thus permitting formulation of an hypothesis that may explain the regulation of iron absorption under these conditions. The results indicate that control of iron absorption is a function of independent expression of iron requirements by each tissue, including the intestinal mucosa. This hypothesis is consistent with other in vivo and in vitro observations in iron deficiency and may have implications for understanding the mechanism of the altered iron absorption in other disorders of iron metabolism.

Animals↗

A computer simulation study of optimal thyroid radiation protection during investigations involving the administration of radioiodine-labelled pharmaceuticals.

The administration of iodide for thyroid blocking is now known to carry its own risks, at least in certain categories of patients. We have therefore made a theoretical study by computer simulation of the efficacy of various thyroid blocking regimes. In the case of injected 125I- or 131I-iodide, substantial thyroid protection may theoretically be achieved by a single oral dose of inorganic iodide, for example a 90% reduction in radiation dose is produced by only 20 mg iodide. Repeating the initial blocking dose is of little value. A single blocking dose, however, affords poor protection against radioiodine released from labelled plasma proteins. Both for short-lived proteins such as fibrinogen, and for the longer-lived proteins such as albumin, the optimum dosage schedule appears to be stable iodide given daily for two to three weeks. For instance, 10 mg daily for a fortnight will reduce thyroid irradiation by a factor of ten following injection of 125I-fibrinogen.

Albumins↗

Recombination and assortment in the macronucleus of Tetrahymena thermophila: a theoretical study by computer simulation.

The compound nature of the macronucleus of Tetrahymena thermophila presents multiple opportunities for recombination between genes on the same macronuclear chromosome. Such recombinants should be detectable through their assortment at subsequent amitotic macronuclear divisions. Thus, a macronucleus that is initially AB/ab should produce recombinant assortees of the genotypes Ab/aB. Computer simulation shows that, when the recombination frequency is two or fewer times per cell cycle, recombinant assortees are produced at experimentally measurable frequencies of less than 40%. At higher recombination frequencies, linked genes appear to assort independently. The simulations also show that recombination during macronuclear development can be distinguished from recombination in subsequent cell cycles only if the first appearance of recombinant assortees is 100 or more fissions after conjugation. The use of macronuclear recombination and assortment as a means of mapping macronuclear genes is severely constrained by the large variances in assortment outcomes; with experimentally small sample sizes, such mapping is impossible.

Animals↗

Computer simulation of diffusion processes as a teaching aid.

A computer program for the simulation of diffusion processes has been developed. It displays the trajectories of single molecules under Brownian motion. Diffusion of 40 to 100 molecules in a box with or without barriers can be simulated, and concentration-time and concentration-distance functions can be plotted. This program may be useful, when complemented with experimental work and theoretical study, for teaching diffusion and membrane permeability processes.

Chemistry↗

Computer simulation investigation of the water-benzene interface in a broad range of thermodynamic States from ambient to supercritical conditions.

The dependence of the properties of the water-benzene system on the thermodynamic conditions in a broad range of temperatures and pressures has been investigated by computer simulation methods. For this purpose, Monte Carlo simulations have been performed at 23 different thermodynamic states, ranging from ambient to supercritical conditions. The density profiles of the water and benzene molecules have been determined at each of the thermodynamic states investigated. Information on the dependence of the mutual solubility of the two components in each other as well as of the width of the interface on the temperature and pressure has been extracted from these profiles. The width of the interface has been found to increase with increasing temperature up to a certain point, where it diverges. The temperature of this divergence corresponds to the mixing of the two phases. The determination of the critical mixing temperature at various pressures allowed us to estimate the upper critical curve, separating the two-phase and one-phase liquid systems, of the phase diagram of the simulated water-benzene system. In analyzing the preferential orientation of the interfacial molecules relative to the interface, it has been found that the main orientational preference of the benzene molecules is to lie parallel with the plane of the interface, and the water molecules penetrated deepest into the benzene phase prefer to stay perpendicular to the interface, pointing by one of their O-H bonds almost straight toward the benzene phase, whereas the waters located at the aqueous side of the interface are preferentially aligned parallel with the interfacial plane. Although the strength of the observed orientational preferences decreases rapidly with increasing temperature, the preferred orientations themselves are found to be independent of the thermodynamic conditions. Remains of the orientational preferences of the molecules are found to be present up to temperatures as high as 650 K. The analysis of the relative orientation of the neighboring water-benzene pairs has revealed that the radius of the first hydration shell of the benzene molecules is independent of the thermodynamic conditions, even if the system consists of one single phase. It has been found that the nearest water neighbors of the benzene molecules are preferentially located above and below the benzene ring, whereas more distant water neighbors, belonging still to the first hydration shell, prefer to stay within the plane of the benzene molecule. In the two-phase systems the dipole vector of the nearest waters has been found to be preferentially perpendicular to the vector pointing from the center of the benzene molecule to the water O atom.

Journal Article↗

Developing computer simulations for staff nurse education.

Computer-assisted instruction holds promise for individualizing continuing education programs. This article describes how staff nurse educators are taught how to use the principles of instructional design to write clinical nursing simulations. At the conclusion of a 15-hour workshop participants have written, programmed, and begun the process of field testing their simulation.

Computer-Assisted Instruction↗

Computer simulation of apolar bent-core and rodlike molecules.

Bent-core molecules have received much interest due to their biaxiality and novel phase ordering. It is, therefore, of interest to model the characteristic shape of these molecules and observe the effect on liquid crystal mesophase formation in a computer simulation study. A simple model of the interaction employed a two-site Gay-Berne potential with the sites separated by +/-0.5 reduced units for all models. The angle between the two sites, 180 degrees -gamma, was varied from gamma=0 degrees to gamma=70 degrees and influenced the phase behavior markedly. The rodlike model formed isotropic, nematic, smectic-A, and smectic-B, phases. Results for the bent-core models show that as the angle gamma increases the transition temperature to the ordered phase decreases. As gamma increases the nematic phase is first destabilized then stabilized with respect to the smectic phase and a tilted smectic-B phase is seen at gamma=20 degrees. For gamma=40 degrees a "TGB-like" phase is identified as the system cools whereas for gamma=70 degrees no ordered phase is formed.

Journal Article↗

Computer simulation of renal countercurrent systems.

The history of mathematical modeling of renal countercurrent systems is briefly outlined. Several examples are cited and discussed. These include efforts at parameter estimation and experimental design with models. The goal of this work was the evaluation of hypotheses of hypertonic urine formation. The argument is made that computer simulation with reasonably isomorphic models can be used in a variety of ways, but that one indispensable role for this approach is to provide a test of the quantitative sufficiency of hypotheses. Hypotheses of hypertonic urine formation that do not consider active transport in thin ascending limbs do not pass this test. A new proposal is suggested in which the energy for NaCl reabsorption from thin ascending limbs is derived from dissipation of a urea gradient via an antiport.

Arginine Vasopressin↗

Aspects of temperature regulation in harp seal pups evaluated by in vivo experiments and computer simulations.

Temperature regulation in harp seal pups (Pagophilus groenlandicus) has been studied by in vivo measurements of oxygen consumption, body temperatures and in vitro determinations of the thermal values of a fur sample. The experimental animals were restrained and exposed to natural wheather conditions. Solar irradiance above 600 W/m (global radiation) caused hyperthermia. Computer simulations based on the thermal values of the fur indicated that heat dissipation from primarily the limbs is a prerequisite for avoiding hyperthermia under natural weather conditions. Further simulations showed that the lower critical temperature of a lean newborn harp seal pup with standard metabolism is only--1 degree C while it is depressed to--59 degree C as the pup grows, aquire a 10 cm thick layer of blubber and the metabolism increases to 1.5 times standard. High metabolism and tolerance to low deep body temperatures (35 degree C) seems a prerequisite for thermal balance in the harp seal pup under cold conditions.

Animals↗

Demography and computer simulation in historic village population reconstruction.

"Demographic anthropology has given rise to methodological advances in the analysis of single community populations. However, the obstacles of small data bases and incomplete vital-event registration remain. This paper details one approach to these problems; the principles of community demography are incorporated with computer simulation methodology, with the goals of validating the internal consistency of and determining demographic secular trends from data commonly utilized in anthropological investigations." The approach is tested on data for the 250 inhabitants of Old Crow Village, Yukon Territory, Canada, in 1978.

Americas↗

Determination of L-ascorbic acid in tomato by isotachoelectrophoresis. Application of computer simulation system for setting of determination conditions to avoid the mixed-zone problem.

When the isotachoelectrophoretical method is used with HCl-beta-alanine as the leading electrolyte solution (pH 3.6), ascorbic acid forms a mixed zone with glutamic acid, and it is difficult to separate the two. Therefore, the application of a computer simulation system to separate the two acids was investigated. This system can be used with compounds for which the absolute electrophoretical mobility and dissociation constant have already been determined. Values for glutamic acid alone were entered in the data bank "SIPS-1", and then those for ascorbic acid were estimated from the values of similar compounds. Values for aspartic acid were used, and the electrophoretical behavior of ascorbic and glutamic acids was simulated at pH range from 3 to 9.9. Based on this simulation, separation appeared possible at pH 9.0 to 10.0, and indeed, experimental determination of ascorbic acid was successfully performed with a leading electrolyte solution composed of HCl-ethanolamine (pH 9.4) without any glutamic acid interference. Even though ascorbic acid is highly susceptible to oxidation in an alkaline medium, because the ascorbic acid solution is injected at the interface of the leading and terminal electrolyte solutions in the electrophoretical procedure, it does not come in contact with air during electrophoresis. This explains why ascorbic acid can be determined in an alkaline medium.

Ascorbic Acid↗