Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “computational frameworks”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

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

At least 1,099 records · Page 61Linked to original sources

Telecommunications and disease management in the home environment: new strategies to improve outcomes.

This article provides an overview of the issues and effects of principle-centered health care within organized systems of care; portrays a comprehensive disease management framework for home health care; and offers virtual health management, telecommunications, and mobile computing strategies to enable health management enterprises to achieve health and outcomes maximization accountability demands in managed care.

Disease Management↗

Integrating Application Programs for Bioinformatics Using a Web Browser.

We have constructed a general framework for integrating application programs with control through a local Web browser. This method is based on a simple inter-process message function from an external process to application programs. Commands to a target program are prepared in a script file, which is parsed by a message dispatcher program. When it is used as a helper application to a Web browser, these messages will be sent from the browser by clicking a hyper-link in a Web document. Our framework also supports pluggable extension-modules for application programs by means of dynamic linking. A prototype system is implemented on our molecular structure-viewer program, MOSBY. It successfully featured a function to load an extension-module required for the docking study of molecular fragments from a Web page. Our simple framework facilitates the concise configuration of Web softwares without complicated knowledge on network computation and security issues. It is also applicable for a wide range of network computations processing private data using a Web browser.

Journal Article↗

Role of the dental team in mass fatality incidents.

The process of dental identification for a mass fatality incident has unique aspects in comparison with that of a routine dental identification, outside of the obvious increase in the number of victims and responders. The dental team is a small part of a large effort to resolve the incident. Incident command structure applies to the dental team as a unit as well as to the entire organization of the response. Teamwork and planning are essential on all levels. Discussing the casework is limited to the public information officer; only the public information officer is authorized to talk to anyone outside the medical examiner's office. For the team, communication is essential between the team members and between the team and other morgue sections. Daily meetings not only update progress, but also identify and solve problems as they arise. Redundancy and cross-checking occur each step in each section. A core team of trained individuals provides a framework for the use of less experienced members. Use of a dental identification computer program is extremely beneficial, especially as the amount of fragmentation or number of victims increases. Because of the magnitude of the response, the physical and mental stresses require critical incident stress debriefing for all responders, regardless of their experience. The past and future service of the dental profession to the victims of mass fatality incidents and their families is an excellent example of the ideal of service on which the profession is based.

Accidents, Aviation↗

The federal and private sector roles in the development of minimum data sets and core health data elements.

This article presents a picture of federal and private efforts in defining minimum data sets and core data elements for health care. For more than 25 years the Federal Government has been engaged in extensive development of minimum data sets and core health data elements. As a major collector and processor of health data, the government identifies, defines, and implements standardized data in the health care field for describing data such as mortality, morbidity, and infectious diseases of the population. This article reports on 17 minimum data sets and core health data elements that are published or in draft form in health care to date. They include regulated data elements that are needed for reimbursement from the Health Care Financing Administration and core health data elements from the Health Resources and Services Administration. They also include recommended data elements for better reporting to the government, and private sector initiatives that are under development, being researched, or in use to standardize data collection for assessing access, quality, and costs of health care. This significant framework can be used in furthering research on the development of the computer-based patient record, the acceleration of data standards, and the evaluation of vocabulary in health care.

Ambulatory Care↗

[Effect of dosage in the planning of intracavitary irradiation].

A comparison was carried out of different procedures of evaluation of the role of dosage in contact radiation effect. The assets and liabilities of the available methods of evaluation were studied with respect to the Ellis--time-dose-fractionation and linear-quadratic concepts. It was demonstrated that the sublethal damage repair model evolved by H.D.Thames and R.G. Dale (11, 16) in the framework of linear-quadratic approach to protracted irradiation can be used to compute iso-effective dosage when high or low loses are employed for fractionated intracavitary irradiation. A correction for dosage is a function of time of dose application and should be made for each fractionation regiment, i.e. number of fractions per week, dose per fraction, specifically in each case. The Thames-Dake model provides a means for establishing critical dosage for a modality of fractionated contact irradiation which is clinically significant, i.e. it differs from the set value by more than 5%. This, in turn, means that the absorbed dose should exceed the previously set one by at least 5%.

Brachytherapy↗

[Computer analysis of echocardiograms].

Owing to its non-invasive nature, echocardiography, is widely used in many fields of clinical sciences. Especially in cardiology, real-time pictures of the beating heart are now essential in clinical practice. With recent developments of computer technology, various aspects of computerization have been introduced into echocardiography. Analysis of cardiac function became easier by automated echocardiography with three dimensional framework, length-tension-velocity. A 3-dimensional view of the heart could also be obtained by computerized image processing of serial echocardiograms. The results of the automated analysis by computer were in good agreement with those with manual measurements. Therefore, the computer processing is valid. These kinds of computer image processing of echocardiograms would be useful in various clinical settings.

Computer Systems↗

Calculation on cosmic-ray muon exposure rate in non-walled concrete buildings.

Computer simulations on the exposure indoors from cosmic ray muons were practiced in the framework of non-scattering and non-cascade assumptions. The model buildings were two-dimensional, rectangular, and were made of a normal concrete. A stratified structure was assumed in each building, where no mezzanine was considered. Walls were not taken into account yet. The distributions of the exposure rates in 26-story buildings were illustrated in contour maps for various sets of parameters. All of them gave basically archlike patterns. Analyses of the results showed that the exposure rate is affected most largely by the floor board thickness. The ceiling height would be an insignificant factor for short buildings. The min/max ratio of the muon exposure rate in a moderate size building was estimated to be more than 0.7.

Computers↗

Time series methods in the monitoring of intracranial pressure. Part 2: Comparative study and initial assessment.

The primary objective of monitoring intracranial pressure (ICP) is to detect a reduction in brain compliance at an early stage in order to be able to initiate corrective therapy and thus ensure that an adequate cerebral perfusion is maintained. This paper describes studies aimed at assessing the value of several time series analysis techniques as a basis for a scheme of monitoring ICP. The theoretical foundations for this work were laid in part 1. The paper begins with the outline of a suite of computer programs that were written to implement the techniques selected. Early results from studies with the programs are presented and the discussion is directed towards explaining practical aspects and limitations of the methods that were experienced. It is concluded that the most promising avenue for future development is the use of a dynamic linear model with a recursive parameter estimator within an adaptive framework. The direction of this future work is presented.

Computers↗

Enhancing the accuracy, the efficiency and the scope of free energy simulations.

Many different methods exist for computing free energy changes from molecular simulations. Recent advances have led to improvements in the theoretical framework underlying these calculations, as well as in the accuracy and sampling efficiency of the algorithms. Novel methods combining the advantages afforded by various existing approaches offer promising strategies and open up new perspectives to help elucidate the physical basis of important biological processes.

Algorithms↗

Computational analysis of early visual mechanisms.

An important class of mechanism, image filtering, is normally used to model the first stages in the human visual process. A formal examination of the general computational properties of image filtering, looking at the logic of what image filtering should accomplish and how filtered images can be described, shows that image filtering does not make any useful information explicit. To do this, a further stage of post-filtering processing, termed image description, is necessary. With these image descriptions it is possible to establish relationships between the structures that emerge and the filters used. Three properties emerge that are of benefit: the structures are simply shaped when filters are used that are modestly orientation tuned; the responses are suitably primitive; and the response structures show spatial clusterings that can be used to identify certain classes of object. Within this framework, the properties of a range of oriented filters were examined in a series of computational experiments. Given a particular form of image description, the optimal filters in terms of response structure simplicity, primitiveness and flexibility show a degree of orientation selectivity corresponding to that obtained in mammalian vision.

Animals↗

Peripheral quantitative computed tomography of the distal radius in young subjects - new reference data and interpretation of results.

Application of bone densitometry to clinical use requires the availability of accessible reference data and is helped by an interpretative framework that is based on bone physiology. The aim of this contribution is to provide both reference data and help in the interpretation of results for peripheral quantitative computed tomography (Stratec XCT2000 performed at the distal radius of young subjects. Data from a previous reference data study on 478 subjects between 6 and 40 years were re-analyzed and smooth curves were fitted. The corresponding equations allow for calculation of age- and sex-specific z-scores of bone mineral content, volumetric bone mineral density (vBMD) of the trabecular compartment, vBMD of the entire radial cross-section, total cross-sectional area and cortical thickness. These data should facilitate the clinical use of peripheral quantitative computed tomography in young subjects.

Adolescent↗

Bayesian coestimation of phylogeny and sequence alignment.

BACKGROUND: Two central problems in computational biology are the determination of the alignment and phylogeny of a set of biological sequences. The traditional approach to this problem is to first build a multiple alignment of these sequences, followed by a phylogenetic reconstruction step based on this multiple alignment. However, alignment and phylogenetic inference are fundamentally interdependent, and ignoring this fact leads to biased and overconfident estimations. Whether the main interest be in sequence alignment or phylogeny, a major goal of computational biology is the co-estimation of both. RESULTS: We developed a fully Bayesian Markov chain Monte Carlo method for coestimating phylogeny and sequence alignment, under the Thorne-Kishino-Felsenstein model of substitution and single nucleotide insertion-deletion (indel) events. In our earlier work, we introduced a novel and efficient algorithm, termed the "indel peeling algorithm", which includes indels as phylogenetically informative evolutionary events, and resembles Felsenstein's peeling algorithm for substitutions on a phylogenetic tree. For a fixed alignment, our extension analytically integrates out both substitution and indel events within a proper statistical model, without the need for data augmentation at internal tree nodes, allowing for efficient sampling of tree topologies and edge lengths. To additionally sample multiple alignments, we here introduce an efficient partial Metropolized independence sampler for alignments, and combine these two algorithms into a fully Bayesian co-estimation procedure for the alignment and phylogeny problem. Our approach results in estimates for the posterior distribution of evolutionary rate parameters, for the maximum a-posteriori (MAP) phylogenetic tree, and for the posterior decoding alignment. Estimates for the evolutionary tree and multiple alignment are augmented with confidence estimates for each node height and alignment column. Our results indicate that the patterns in reliability broadly correspond to structural features of the proteins, and thus provides biologically meaningful information which is not existent in the usual point-estimate of the alignment. Our methods can handle input data of moderate size (10-20 protein sequences, each 100-200 bp), which we analyzed overnight on a standard 2 GHz personal computer. CONCLUSION: Joint analysis of multiple sequence alignment, evolutionary trees and additional evolutionary parameters can be now done within a single coherent statistical framework.

Algorithms↗

A stochastic model of tumor response to fractionated radiation: limit theorems and rate of convergence.

The iterated birth and death Markov process is defined as an n-fold iteration of a birth and death Markov process describing kinetics of certain population combined with random killing of individuals in the population at moments tau 1,...,tau n with given survival probabilities s1,...,sn. A long-standing problem of computing the distribution of the number of clonogenic tumor cells surviving an arbitrary fractionated radiation schedule is solved within the framework of iterated birth and death Markov process. It is shown that, for any initial population size iota, the distribution of the size N of the population at moment t > or = tau n is generalized negative binomial, and an explicit computationally feasible formula for the latter is found. It is shown that if i --> infinity and sn --> 0 so that the product iota s1...sn tends to a finite positive limit, the distribution of random variable N converges to a probability distribution, which for t = tau n turns out to be Poisson. In the latter case, an estimate of the rate of convergence in the total variation metric similar to the classical Law of Rare Events is obtained.

Cell Survival↗

ADAMIXTURE: adaptive first-order optimization for biobank-scale genetic clustering.

MOTIVATION: Estimating genetic clusters from sequencing data is a fundamental task in population and medical genetics, enabling demographic inference and adjustment for population structure in association studies. ADMIXTURE, a widely used model-based clustering method, employs an accelerated Expectation-Maximization (EM) algorithm to infer population parameters; however, its computational demands scale poorly, limiting its usefulness for modern biobank-sized datasets. While recent EM acceleration strategies employing second-order quasi-Newton schemes preserve accuracy, they remain computationally intensive. Conversely, EM-free approaches that prioritize speed often compromise solution quality. RESULTS: We introduce ADAMIXTURE, a novel optimization framework that integrates the EM algorithm with Adaptive Moment Estimation (Adam). Unlike traditional acceleration methods, ADAMIXTURE utilizes first-order gradients with adaptive learning rates derived from raw and squared moments to approximate curvature information, bypassing the computational overhead of Hessian approximations. This approach surpasses the convergence efficiency of second-order methods while maintaining the low computational complexity of first-order updates. Across simulated and large-scale empirical datasets, ADAMIXTURE demonstrates substantial reductions in wall-clock runtime and enhanced scalability compared to state-of-the-art methods, while maintaining comparable or improved inference accuracy. Its GPU implementation runs in under 2 h on half a million samples and variants, a two order of magnitude speedup over current state-of-the-art. AVAILABILITY AND IMPLEMENTATION: Source code is available at: https://github.com/AI-sandbox/ADAMIXTURE.

Clustering Algorithms↗

Computational optical biopsy.

Optical molecular imaging is based on fluorescence or bioluminescence, and hindered by photon scattering in the tissue, especially in patient studies. Here we propose a computational optical biopsy (COB) approach to localize and quantify a light source deep inside a subject. In contrast to existing optical biopsy techniques, our scheme is to collect optical signals directly from a region of interest along one or multiple biopsy paths in a subject, and then compute features of an underlying light source distribution. In this paper, we formulate this inverse problem in the framework of diffusion approximation, demonstrate the solution uniqueness properties in two representative configurations, and obtain analytic solutions for reconstruction of both optical properties and source parameters.

Algorithms↗