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Torsion angle dynamics for NMR structure calculation with the new program DYANA.

The new program DYANA (DYnamics Algorithm for Nmr Applications) for efficient calculation of three-dimensional protein and nucleic acid structures from distance constraints and torsion angle constraints collected by nuclear magnetic resonance (NMR) experiments performs simulated annealing by molecular dynamics in torsion angle space and uses a fast recursive algorithm to integrate the equations of motions. Torsion angle dynamics can be more efficient than molecular dynamics in Cartesian coordinate space because of the reduced number of degrees of freedom and the concomitant absence of high-frequency bond and angle vibrations, which allows for the use of longer time-steps and/or higher temperatures in the structure calculation. It also represents a significant advance over the variable target function method in torsion angle space with the REDAC strategy used by the predecessor program DIANA. DYANA computation times per accepted conformer in the "bundle" used to represent the NMR structure compare favorably with those of other presently available structure calculation algorithms, and are of the order of 160 seconds for a protein of 165 amino acid residues when using a DEC Alpha 8400 5/300 computer. Test calculations starting from conformers with random torsion angle values further showed that DYANA is capable of efficient calculation of high-quality protein structures with up to 400 amino acid residues, and of nucleic acid structures.

Algorithms↗

Who uses safe ride programs: an examination of the dynamics of individuals who use a safe ride program instead of driving home while drunk.

Drinking and driving are still a serious concern on the roads, even though the last twenty years has seen an increase in exposure to various designated driver programs. Even though a majority of people have either been one or used one, most designated drivers have still consumed some alcohol. Another option is that of an outside driver, such as a safe ride program in which a safe ride is offered for free by taxis or volunteers. One such program under study, offers a ride home for both the driver as well as their vehicle. To examine the population who utilizes such a program two studies were conducted which included 1,985 participants (1206 male, 744 female) from two major California cities. The volunteer drivers gathered data during their rounds between January 2002 and September 2002. If the current safe ride program not been in place 632 Participants (44%) reported that they would have driven themselves home. 582 participants (40%) have used back roads in the past to evade being stopped by the police; on average they used back roads 3.4 times in the past month. When questioned about having control over not drinking and driving 455 (32%) participants didn't feel they had control over their choice to avoid drinking and driving. Participants who reported having driven back roads in the past to avoid confrontation with the police after drinking had significantly higher estimated BAC levels than those who said they had never done so. This sample reflected similar populations.

Accidents, Traffic↗

De-noising of left ventricular myocardial borders in magnetic resonance images.

In short axis left ventricular MR images, endocardial borders are the major parameters in evaluation of cardiovascular functions such as end diastolic volume, end systolic volume, and ejection fraction. Functional analysis captures the dynamic behavior of the cardiovascular system as revealed by the movement of the endocardial borders over time. Because of the huge number of MR images, an effective computerized tool is required for real time applications. One of the widely used automatic border detection algorithm-dynamic programming-generates zigzag borderlines, which lead to measurement errors. This paper surveys the performance of the wavelet adaptive filter, the snake, and the medial filter in smoothing over the zigzag borders generated by dynamic programming. Statistical analysis of two hundred and sixty four images from sixteen subjects show that all three algorithms can reduce the border line errors in terms of Hausdorff distance and border area error; however, only the wavelet adaptive filter is effective in providing the physiological measurements such as ejection fraction, end systolic volume and end diastolic volume.

Algorithms↗

The effect of a 12-week dynamic resistance strength training program on gait velocity and balance of older adults.

This study tested whether a 12-week dynamic resistance strength training program can change gait velocity and improve measures of balance among adults age 65 and older. Fifty-five community-dwelling adults (mean age = 71.1) were randomized into an exercise (n = 25) or control (n = 30) group. The exercisers were requested to complete three bouts of strength training per week for 12 weeks using elastic tubing. At posttest the exercisers demonstrated slower gait velocity, enhanced balance, and an improved ability to walk backward, although none of these posttest measures was significantly different from the control group.

Age Factors↗

DIABLOG: a simulation program of insulin-glucose dynamics for education of diabetics.

This paper presents a dialogue computer program, DIABLOG, for the education of diabetic patients with insulin therapy. Through mathematical modelling of glucose-insulin dynamics this program is able to simulate glucose and insulin profiles of a 24 h period and display them graphically as curves. The subjects could vary the carbohydrate content of meals, the injection time and dose of short-acting and intermediate-acting insulin and could switch to insulin pump therapy. For a first evaluation 22 patients with insulin-dependent diabetes mellitus tested the program and their comments were recorded by a questionnaire. The results indicate a good acceptance of the program even by patients with no previous computer experience. Further suggestions by the patients will be discussed as well.

Blood Glucose↗

[A program of research on biocultural dynamics].

"The objective of the research program presented in this note is to analyse the interrelations between biological and social factors in the process of demographic renewal. Population registers of various communities, among them those of Saint-Barthelemy (French Antilles) and Ile-aux-Coudres (Quebec), are used. The genealogies which were obtained from these registers contribute to the study of genetical epidemiology. The research program also includes the identification of social factors which may have contributed to the biological structure of the communities under study." (SUMMARY IN ENG AND SPA)

Americas↗

[The significance of adequacy for success of an automated peritoneal dialysis program].

The dynamic development of APD causes the increasing importance of issues regarding the adequacy of this renal replacement therapy method. Basic parameters of effective dialysis are still Kt/V and weekly creatinine clearance. The lack of steady state of substance concentration in different body compartments is a potential cause of mistakes in calculation of APD adequacy kinetic parameters. The solute removal index (SRI) may be used as an alternative method of dialysis efficacy assessment. However, there is no "ideal" marker of adequacy. Therefore, it should be assessed on the base of analysis including kinetic, clinical and biochemical data. Residual renal function (RRF) is an important factor of successful APD, but there are different opinions concerning the influence of automatic dialysis on RRF preservation presented in literature. The characteristics of peritoneal transport is the basic criterion for the qualification of patients to APD program. Automated techniques are recommended for patients being high-average transporters and particularly high transporters. The evolution of APD creates new perspectives for adequacy assessment and improvement of dialysis efficacy. The performance of multicenter studies and usage of new parameters of adequate dialysis will be very important for the development of APD. The employment of alternative fluids, introduction of modernized catheters and construction of "intelligent cyclers" will create new possibilities for programming and monitoring of dialysis and improvement of patient's life quality.

Creatinine↗

Voluntary counseling, testing, and referral for HIV: new technologies, research findings create dynamic opportunities.

Programs for voluntary counseling and testing (VCT) for HIV play an increasingly important role in comprehensive prevention and care strategies. New technological advancements and behavioral interventions can improve the effectiveness of VCT as a tool for preventing new HIV infections and helping HIV-positive individuals access appropriate care. With growing consensus that early access to HIV therapy increases its effectiveness, and that individuals diagnosed with HIV reduce risk behavior, VCT has become integral to the continuum of HIV primary care. However, federal funding of VCT has declined, with concomitant decreases in numbers of people being tested. An estimated 200,000 people in the United States remain unaware that they are HIV positive, and many at-risk individuals do not seek out standard HIV counseling and testing services. To increase the acceptability and effectiveness of VCT, the authors recommend that VCT programs employ outreach programs offering anonymous testing to reach those at heightened risk of HIV infection, and to make rapid use of new technologies and counseling strategies to improve the reach and efficacy. Given the important role that VCT can play in both prevention and early treatment, the authors recommend significant increases in federal support.

Confidentiality↗

ChromWin--a computer program for the determination of enantiomerization barriers in dynamic chromatography.

The software program ChromWin simulates interconversion profiles in dynamic chromatography (rearrangements, isomerizations, epimerizations, diastereomerizations and, notably, enanatiomerizations) on a personal computer in a user-friendly environment. ChromWin is especially suited for systems involving large plate numbers, e.g. gas chromatography (GC) and capillary electrophoresis (CE, CEC, MEKC), and first or pseudo-first order reactions. ChromWin (1) simulates the elution profiles of interconverting enantiomers by different models and yields the rate constant, (2) allows automation of the 'find enantiomerization barrier' function, (3) helps to optimise separation parameters by visualization of the separation process and (4) provides other useful tools for chromatography. In addition to the theoretical plate and the stochastic model a modified and improved stochastic model has been developed and implemented in the program.

Journal Article↗

Molecular dynamics simulation on a network of workstations using a machine-independent parallel programming language.

Molecular dynamics simulations investigate local and global motion in molecules. Several parallel computing approaches have been taken to attack the most computationally expensive phase of molecular simulations, the evaluation of long range interactions. This paper develops a straightforward but effective algorithm for molecular dynamics simulations using the machine-independent parallel programming language, Linda. The algorithm was run both on a shared memory parallel computer and on a network of high performance Unix workstations. Performance benchmarks were performed on both systems using two proteins. This algorithm offers a portable cost-effective alternative for molecular dynamics simulations. In view of the increasing numbers of networked workstations, this approach could help make molecular dynamics simulations more easily accessible to the research community.

Algorithms↗

Early protected motion after extensor tendon repair.

Thirty hands with 50 extensor tendon lacerations, excluding mallet finger injuries, were examined. They were treated with surgical repair followed by immediate motion which included a dynamic splinting and tendon mobilization program. The average follow-up period was 7 months (range, 8 weeks to 2 years). Forty-five of the 50 tendons regained full range of motion (average total active motion, 262 degrees) within an average time of 9 weeks; the remaining 5 tendons had extension lags of < or = 10 degrees. All patients regained at least 93% of their predicted normal strength within 9 to 12 weeks and returned to their previous level of activity in an average of 10 weeks. These results, which include complex lacerations, are an improvement from previously published data. This is probably due to the addition of a tendon mobilization program to dynamic splinting following extensor tendon repair.

Adolescent↗

Evolution of a computer program for classifying protein segments as transmembrane domains using genetic programming.

The recently-developed genetic programming paradigm is used to evolve a computer program to classify a given protein segment as being a transmembrane domain or non-transmembrane area of the protein. Genetic programming starts with a primordial ooze of randomly generated computer programs composed of available programmatic ingredients and then genetically breeds the population of programs using the Darwinian principle of survival of the fittest and an analog of the naturally occurring genetic operation of crossover (sexual recombination). Automatic function definition enables genetic programming to dynamically create subroutines dynamically during the run. Genetic programming is given a training set of differently-sized protein segments and their correct classification (but no biochemical knowledge, such as hydrophobicity values). Correlation is used as the fitness measure to drive the evolutionary process. The best genetically-evolved program achieves an out-of-sample correlation of 0.968 and an out-of-sample error rate of 1.6%. This error rate is better than that reported for four other algorithms reported at the First International Conference on Intelligent Systems for Molecular Biology. Our genetically evolved program is an instance of an algorithm discovered by an automated learning paradigm that is superior to that written by human investigators.

Amino Acid Sequence↗

Declarative simulation of dynamicals systems: the 812 programming language and its application to the simulation of genetic networks.

A major part of biological processes can be modeled as dynamical systems (DS), that is, as a time-varying state. In this article, we advocate a declarative approach for prototyping the simulation of DS. We introduce the concepts of collection, stream and fabric. A fabric is a multi-dimensional object that represents the successive values of a structured set of variables. A declarative programming language, called 8 1/2 has been developed to support the concept of fabrics. Several examples of working 8 1/2 programs are given to illustrate the relevance of the fabric data structure for simulation applications and to show how recursive fabric definitions can be easily used to model various biological phenomena in a natural way (a resolution of PDE, a simulation in artificial life, the Turing diffusion-reaction process and various examples of genetic networks). In the conclusion, we recapitulate several lessons we have learned from the 8 1/2 project.

Programming Languages↗

Molecular dynamics simulation on a network of workstations using a machine-independent parallel programming language.

Molecular dynamics simulations investigate local and global motion in molecules. Several parallel computing approaches have been taken to attack the most computationally expensive phase of molecular simulations, the evaluation of long range interactions. This paper reviews these approaches and develops a straightforward but effective algorithm using the machine-independent parallel programming language, Linda. The algorithm was run both on a shared memory parallel computer and on a network of high performance Unix workstations. Performance benchmarks were performed on both systems using two proteins. This algorithm offers a portable cost-effective alternative for molecular dynamics simulations. In view of the increasing numbers of networked workstations, this approach could help make molecular dynamics simulations more easily accessible to the research community.

Algorithms↗

Dynamic simulation of molecular and ionic materials.

Two new programs perform molecular dynamics simulations on molecular and ionic materials, respectively. The first simulates systems of small molecules, treated dynamically as rigid bodies, with interactions of the site-site Lennard-Jones form, plus point charges. The second simulates systems of point ions, which may be made polarizable by means of the shell model, treated by the method of adiabatic dynamics. Both programs handle Coulombic interactions in periodic boundaries by means of the Ewald sum. Force evaluations make use of efficient neighbor-search algorithms. The programs incorporate extensive analysis options in terms of structural and dynamic correlation functions. The programs are controlled by a command language, Dynamo, which provides a good environment for further development, as well as ease of use and flexibility in the choice of simulation protocol.

Algorithms↗

Correspondence between spin-dynamic phases and pulse program phases of NMR spectrometers.

Spin state selective experiments have become very useful tools in solution NMR spectroscopy, particularly in the context of TROSY line narrowing. However, the practical implementation of such pulse sequences is frequently complicated by unexpected instrument behavior. Furthermore, a literal theoretical analysis of sequences published with specific phase settings can fail to rationalize such experiments and can seemingly contradict experimental findings. In this communication, we develop a practical approach to this ostensible paradox. Spin-dynamic design, rationalization, and simulation of NMR pulse sequences, as well as their confident and reliable implementation across current spectrometer hardware platforms, require precise understanding of the underlying nutation axis conventions. While currently often approached empirically, we demonstrate with a simple but general pulse program how to uncover these correspondences a priori in the general case. From this, we deduce a correspondence table between the spin-dynamic phases used in NMR theory and simulation on the one hand and pulse program phases of current commercial spectrometers on the other. As a practical application of these results, we analyze implementations of the original (1)H-(15)N TROSY experiment and illustrate how steady-state magnetization can be predictably, rather than empirically, added to a desired component. We show why and under which circumstances a literal adoption of phases from published sequences can lead to incorrect results. We suggest that pulse sequences should be consistently given with spin-dynamically correct (physical) phases, rather than in spectrometer-specific (software) syntax.

Carbon Isotopes↗

Brownian dynamics simulations of the self- and collective rotational diffusion coefficients of rigid long thin rods.

Recently a microscopic theory for the dynamics of suspensions of long thin rigid rods was presented, confirming and expanding the well-known theory by Doi and Edwards [The Theory of Polymer Dynamics (Clarendon, Oxford, 1986)] and Kuzuu [J. Phys. Soc. Jpn. 52, 3486 (1983)]. Here this theory is put to the test by comparing it against computer simulations. A Brownian dynamics simulation program was developed to follow the dynamics of the rods, with a length over a diameter ratio of 60, on the Smoluchowski time scale. The model accounts for excluded volume interactions between rods, but neglects hydrodynamic interactions. The self-rotational diffusion coefficients D(r)(phi) of the rods were calculated by standard methods and by a new, more efficient method based on calculating average restoring torques. Collective decay of orientational order was calculated by means of equilibrium and nonequilibrium simulations. Our results show that, for the currently accessible volume fractions, the decay times in both cases are virtually identical. Moreover, the observed decay of diffusion coefficients with volume fraction is much quicker than predicted by the theory, which is attributed to an oversimplification of dynamic correlations in the theory.

Journal Article↗

Dynamic training and circulating levels of corticotropin-releasing factor, beta-lipotropin and beta-endorphin in rheumatoid arthritis.

The study aimed at evaluating the effects of a dynamic training program on circulating levels of corticotropin-releasing factor (CRF), beta-lipotropin (beta-LPH), and beta-endorphin (beta-EP) in 8 patients (5 females and 3 males, aged 39-65 years) with classical/definite rheumatoid arthritis (RA). Blood samples were collected immediately before, in the middle of, and after a 6-week high-intensity training period as well as after a subsequent 1-year period of low-intensity training. In addition, baseline data were obtained 3 weeks before the start of the training program. Use of multivariate analyses of variance, and of analyses of variance of contrast variables, indicated a short-term effect of the high-intensity training program for beta-EP with increased levels (P less than 0.05) between the 3rd and the 6th weeks, no significant differences being obtained for CRF or beta-LPH here. Corresponding analyses with regard to the combined high and low-intensity training program revealed CRF (P less than 0.01), and beta-LPH (P less than 0.01) levels to increase over time, no long-term effect being found for beta-EP. Despite the intensity of the dynamic training program, no change was found in pain experience as measured on a visual analogue scale.

Adult↗