PubMed Health⌕ Search

SEARCH · PubMed Health

Results for “Computer Graphics”

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 1,333 records · Page 74Linked to original sources

Molecular modeling of substrate-enzyme reactions for the cysteine protease papain.

AM1 quantum mechanical reaction coordinate (RC) calculations were run to simulate the rate-limiting deacylation (hydrolysis) reaction for a series of para-X-PhC(O)NHCH2-C(Y)-S-papain intermediates, where X = OCH3, CH3, H, Cl, NO2 and Y = O (thioester) or S (dithioester), for which a large body of structural, kinetic, and spectroscopic data is available. Several reaction zones, in particular the so-designated Large Zone and Small Zone, were extracted for these RC simulations from the fully solvated and energy-minimized X-ray crystal structure of papain (pdb9pap) bound to the appropriate substrate moiety. The major structural difference between these two zones was the absence of the oxyanion hole in the latter. For both the thioester and dithioester cases, the calculated Ea value associated with the parent (X = H) acyl-enzyme intermediate was lower by ca. 10 kcal/mol for the Large Zone than for the Small Zone. The magnitude of this difference suggests that the oxyanion hole plays a functional if not essential role in stabilizing the anionic tetrahedral intermediate with the cysteine proteases. The calculated Ea value was lower by ca. 10 kcal/mol for the thioester [-C(O)-S-] than for the corresponding dithioester [-C(S)-S-], in qualitative agreement with kinetic data for this series of substrates which reveal that the specific rate constant for deacylation k3 is ca. 60 times larger for the former. This difference is also consistent with both AM1 and 6-31G* calculations on model intermediates, which indicate that the weaker polarity of the dithioester compared with the thioester [i.e., -C(<--S)-S-versus-C(-->O)-S-] renders the former a much poorer site for nucleophilic attack. The anionic tetrahedral intermediate is energetically more stable for the dithioester than for the corresponding thioester, a finding that is discussed in terms of its kinetic and mechanistic implications. The mode of attack by the H2O nucleophile is "concerted" rather than "sequential" in terms of the order of proton abstraction by His-159 and nucleophilic attack on the acyl-enzyme intermediate. While the presumably key Sthiol . . . N nonbonded contact remained almost constant (ca. 2.90 A) up to formation of the [TS] structure, the substrate torsion angles phi and psi rotated significantly as the hybridization around the reaction site transforms from sp2 to sp3 during formation of the tetrahedral intermediate. The AM1-calculated frontier molecular orbitals for model thioester and dithioester acyl-enzyme intermediates generally associate the HOMOs with the reaction site and the LUMOs with the benzamide moiety. Computer graphics images corroborate our view that, in relation to the Sthiol . . . N interaction, the HOMOs and LUMOs should be identified, respectively, with Sthiol and N rather than the reverse, as suggested by other workers.

Acylation↗

Three-dimensional dose-response models of competing risks and natural life span.

Three-dimensional dose-rate/time/response surfaces for chronic exposure to carcinogens, toxicants, and ionizing radiation dramatically clarify the separate and interactive roles of competing risks. The three dimensions are average dose rate, exposure time, and risk. An illustration with computer graphics shows the contributions with the passage of time of the competing risks of death from radiation pneumonitis/fibrosis, lung cancer, and natural aging consequent to the inhalation of plutonium-239 dioxide by beagles. These relationships are further evaluated by mathematical stripping with three-dimensional illustrations that graphically show the resultant separate contribution of each fatal effect. Radiation pneumonitis predominates at high dose rates and lung cancer at intermediate dose rates. Low dose rates result in spontaneous deaths from natural aging, yielding a type of practical threshold for lung cancer induction. Risk assessment is benefited by the insights that become apparent with these three-dimensional models. The improved conceptualization afforded by them contributes to the planning and evaluation of epidemiological analyses and experimental studies involving chronic exposure to toxicants.

Animals↗

Antimutagenicity of ellagic acid towards the food mutagen IQ: investigation into possible mechanisms of action.

The ability of the plant phenol ellagic acid to inhibit the mutagenicity of the food mutagen IQ was evaluated using Salmonella typhimurium strain TA98 in the Ames mutagenicity test. Ellagic acid caused a concentration-dependent decrease in the S-9- and microsome-mediated mutagenicity of IQ. The plant phenol did not interact directly with the IQ-derived mutagenic species and did not modify the cytosol-mediated activation of the promutagen. At the concentrations used in the mutagenicity studies, ellagic acid failed to inhibit microsomal mixed-function oxidase activity, including that mediated by the P450I family responsible for the bioactivation of IQ, despite being an essentially planar molecule as indicated by computer-graphic analysis. The inhibitory effect of ellagic acid was independent of its ability to chelate Mg2+. However, pre-incubation of ellagic acid with the bacteria, followed by removal of the plant phenol, did not completely prevent the inhibitory effect of the phenol on the mutagenicity of IQ. Intraperitoneal administration of ellagic acid to rats caused a decrease in total cytochrome P-450 levels and related activities as well as in cytosolic glutathione S-transferase activity. Finally, the possibility that the reported anticarcinogenic action of ellagic acid reflects nothing more than non-selective destruction of hepatic cytochromes P-450, and thus reduced chemical activation, is considered.

Animals↗

Visual evoked response correlates of cerebral specialization after human commissurotomy.

Visual evoked responses (VERS) were recorded from commissurotomy patients and normal subjects in order to investigate the electrophysiological correlates of cerebral lateralization and independent hemispheric processing. A verbal task consisted of detecting rhyming words and a spatial task consisted of comparing matching shapes. Stimuli were delivered, by means of a computer graphic display, into the right visual field, the left visual field, or both visual fields. Behavioral results and evoked response waveforms showed lateralization for verbal processing in the left hemisphere for the patient group. Analysis of variance of product moment correlation coefficients between VER waveforms indicated significant differences between unilateral and bilateral stimulation for both patients and normals. Commissurotomy and normal VERs showed similar patterns of correlation when verbal stimuli were delivered to the left hemisphere, but differed during right hemisphere stimulation. The results are discussed in terms of VER correlates of visual-verbal processing.

Adolescent↗

Virtually-augmented interfaces for tactical aircraft.

The term Fusion Interface is defined as a class of interface which integrally incorporates both virtual and non-virtual concepts and devices across the visual, auditory and haptic sensory modalities. A fusion interface is a multi-sensory virtually-augmented synthetic environment. A new facility has been developed within the Human Engineering Division of the Armstrong Laboratory dedicated to exploratory development of fusion-interface concepts. One of the virtual concepts to be investigated in the Fusion Interfaces for Tactical Environments facility (FITE) is the application of EEG and other physiological measures for virtual control of functions within the flight environment. FITE is a specialized flight simulator which allows efficient concept development through the use of rapid prototyping followed by direct experience of new fusion concepts. The FITE facility also supports evaluation of fusion concepts by operational fighter pilots in a high fidelity simulated air combat environment. The facility was utilized by a multi-disciplinary team composed of operational pilots, human-factors engineers, electronics engineers, computer scientists, and experimental psychologists to prototype and evaluate the first multi-sensory, virtually-augmented cockpit. The cockpit employed LCD-based head-down displays, a helmet-mounted display, three-dimensionally localized audio displays, and a haptic display. This paper will endeavor to describe the FITE facility architecture, some of the characteristics of the FITE virtual display and control devices, and the potential application of EEG and other physiological measures within the FITE facility.

Aerospace Medicine↗

A computer-aided control, design and image-processing system for electron microscopes.

A computer-control system for electron microscopes is described. The aim is to reduce a complex series of vacuum-system controls to a menu-driven program that simplifies the operation of the microscope. The system also incorporates image processing, notebook, computer-aided design, and communication functions. It is designed around a commercially available computer workstation. This system has been implemented on an institute-built photoelectron microscope of ultrahigh-vacuum design.

Computer Graphics↗

Data fusion in medical imaging: merging multimodal and multipatient images, identification of structures and 3D display aspects.

Data fusion in medical imaging can be seen into two ways (i) multisensors fusion of anatomical and functional information and (ii) interpatient data fusion by means of warping models. These two aspects set the methodological framework necessary to perform anatomical modelling especially when concerning the modelling of brain structures. The major relevance of the work presented here concerns the interpretation of multimodal 3D neuro-anatomical data bases. Three types of data fusion problems are considered in this paper. The first one concerns the problem of data combination which includes multimodal registration (multisensor fusion applied to CT, MRI, DSA, PET, SPECT, or MEG). In particular, the problem of warping patient data to an anatomical atlas is reviewed and a solution is proposed. The second problem of data fusion addressed in this paper is the identification of anatomical structures by means of image analysis methods. Two techniques have been developed. The first one deals with the analysis of image geometrical features to end up with the determination of a fuzzy mask to label the structure of interest. The second technique consists of labelling major cerebral structures by means of statistical image features associated with relaxation techniques. Finally, the paper presents a review of up to date 3D display techniques with a special emphasis on volume rendering and 3D display of combined data.

Algorithms↗

Digital mapping of multi-parameter contrast functions in magnetic resonance (MR) imaging using a standard MR computer system and digital display.

A technique is described which utilises the full analysis and display capabilities of a commercial MRI system to produce digital maps of multi-parameter functions produced by MR contrast theory. The technique is utilised to determine the effects of nominating specific overall scan times on the optimum solutions as produced by the theory and it is shown that different solutions are obtained when the theory is applied using typical clinical constraints. The digital mapping approach is potentially of great value in prospectively determining pulse timing parameters to produce optimum contrast images, in producing contrast maps to aid retrospective image interpretation, and as a training aid for clinicians inexperienced in the interpretation MR images.

Computer Graphics↗

Development of a microcomputer program for statistical evaluation of potential pharmacokinetic drug interactions.

A simple and self-explanatory program in BASIC for the statistical evaluation of potential pharmacokinetic drug interactions is described. This program, using the data (times and drug concentrations) obtained from two different populations, and with the help of graphic computing techniques, allows the determination and statistical comparison of pharmacokinetic parameters (disposition constants, transfer rate constants, area under the concentration-time curves, etc.) for one- and two-compartment open models after intravenous or extravasal administration. The program is organized in subroutines so that it can be easily modified or extended to other pharmacokinetic models by the user.

Drug Interactions↗

Microcomputer-based three-dimensional reconstruction of in situ hybridization autoradiographs.

A number of software routines were written for the public domain Macintosh-based video-densitometry program, Image, to facilitate in situ hybridization analysis. These routines utilize fiducial marks drilled in unused portions of the brain to rotate high-magnification images of individual sections so that they may be placed in register. The regions of interest within the registered sections are outlined and intermediate sections interpolated to produce a data set representing a three-dimensional volume. This shell is then filled with the original density data obtained with one or more in situ hybridization probes. The final object can be viewed in various degrees of translucency and examined from different angles or computationally resectioned to yield new information concerning activity changes within the region and relationships between reactive sites. These static images can be collected and rapidly displayed as a movie. These routines have been used in this paper to display the differential hybridization of three different mRNA probes in the hypothalamic paraventricular nucleus.

Animals↗

A program evaluation of classroom data collection with bar codes.

A technology incorporating bar code symbols and hand-held optical scanners was evaluated for its utility for routine data collection in a special education classroom. A different bar code symbol was created for each Individualized Educational Plan objective, each type of response occurrence, and each student in the first author's classroom. These symbols were organized by activity and printed as data sheets. The teacher and paraprofessionals scanned relevant codes with scanners when the students emitted targeted behaviors. The codes, dates, and approximate times of the scans were retained in the scanner's electronic memory until they could be transferred by communication software to a computer file. The data from the computer file were organized weekly into a printed report of student performance using a program written with commercially available database software. Advantages, disadvantages, and costs of using the system are discussed.

Child↗

Techniques for the rapid display and manipulation of 3-D biomedical data.

The use of fully interactive 3-D workstations with true real-time performance will become increasingly common as technology matures and economical commercial systems become available. This paper provides a comprehensive introduction to high speed approaches to the display and manipulation of 3-D medical objects obtained from tomographic data acquisition systems such as CT, MR, and PET. A variety of techniques are outlined including the use of software on conventional minicomputers, hardware assist devices such as array processors and programmable frame buffers, and special purpose computer architecture for dedicated high performance systems. While both algorithms and architectures are addressed, the major theme centers around the utilization of hardware-based approaches including parallel processors for the implementation of true real-time systems.

Algorithms↗

Colour displays and look-up tables: real time modification of digital images.

Image processing in biomedical research has become customary, along with use of colour displays to run image processing packages. The performance of softwares is highly dependent on the device they run on: architecture of colour display, depth of frame buffer, existence of look-up table, etc. Knowledge of such basic features is therefore becoming very important, especially because results can differ from device to device. This introductory paper discusses hardware features and software applications. A general architecture of colour displays is exposed, comparing the features of the most commonly used devices. Basic organisation of memory, electron gun and screen are analysed for each type of display, concluding with a more detailed study of raster scan devices. Frame buffer and look-up table organisation are then analysed in relation with overhead expenses such as time and memory. Relation between image data and displayed images is discussed. By means of examples, the manipulation of colour tables is examined in detail, showing how to improve display of images without altering image data. Finally, the basic operations performed by the look-up table editor developed at University of Geneva are presented.

Color↗

Animating the 3D structure and function of brain.

Three dimensional (3D) reconstructions of brain anatomy and physiology have greatly improved our understanding of complex spatial and densitometric relationships. The complexity and sophistication of these imaging techniques has steadily improved in the last few years and there are many situations in which the static display of 3D models contains more information than can be easily appreciated. Animating a sequence of these displays adds another dimension to the visualization, understanding and communication of 3D data. This paper describes those situations that warrant animations, the techniques necessary to compute them and the results that can be obtained.

Animals↗

MRA-guided stereotactic radiation treatment planning for cerebral angiomas.

Stereotactic neurosurgical interventions are characterized by a high risk of rupturing intracranial vessels or damaging vital brain structures. By MRI and MRA, the anatomic information necessary for stereotactic treatment planning may be assessed with a single modality as a high-resolution digital image volume. The adequacy of MR as a modality for stereotactic guidance is demonstrated by the example of the radiosurgical treatment of cerebral angiomas. An optimized acquisition protocol, a stereotactic apparatus, a distortion correction and minimization method, and a 3D treatment planning workstation are elements of a proposed preoperative approach which in a clinical study met with good acceptance.

Algorithms↗

FAMIS: a software package for functional feature extraction from biomedical multidimensional images.

An increased number of image sequences is acquired in all modalities of the biomedical imaging field in order to study displacement or metabolism of a tracer or a contrast agent. It requires effective processing methods to estimate the underlying physiological components. We have developed a software package based on factor analysis algorithms which can adapt to various imaging modalities and its extension to double-indexed image sequences. We describe general characteristics of the software and present the main points of the user-friendly interface. The performances of the package are discussed and the possibilities of the methodology are illustrated using an example in magnetic resonance imaging.

Algorithms↗

Modeling the moving skeleton of walking subjects.

The proposed study consists in moving several bones such as pelvis, femur and tibia in conditions as similar as possible to those obtained in a walking subject, to evidence the functioning of this hip and knee joints. The analysis is performed during the stance phase when the joints are loaded. This study is the first phase of a research consisting in: (i) the visualization of the motion of joints in both normal and pathologic subjects; and (ii) the calculation in real time of articular loading caused by muscular forces when sustaining both the external and inertial loads. This research will provide the kinematic and dynamic boundary conditions applied to both a knee and a hip prosthesis of the patient in movement.

Arthrography↗

Three-dimensional modeling of tree-like anatomical structures.

In this paper a method for creating geometrical models of tree-like anatomical structures is described. This method is basically interactive and thus it takes advantage of the user's expertise to define highly-structured models even when using nonhomogeneous data sets. First, tubular cavities are reconstructed sequentially; then, junctions between these cavities are provided in such a way that resulting models are continuously shaped (we characterize this property by the G1-continuity (i.e., a tangent plane can be defined at any point on the surface).

Computer Graphics↗