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Western Forests And Air Pollution, United States Environmental Protection Agency Jan 1992

Western Forests And Air Pollution, United States Environmental Protection Agency

Pollution

This book addresses the relationships between air pollution in the western United States and trends in the growth and condition of Western coniferous forests. The West is defined in this case as the eleven conterminous states of California, Oregon, Washington, Idaho, Nevada, Arizona, New Mexico, Utah, Colorado, Wyoming, and Montana. Approximately one-third of the West is forested, primarily by coniferous forest types.


Birds Of A Great Basin Sagebrush Habitat In East-Central Nevada, United States Department Of Agriculture, Forest Service Jan 1992

Birds Of A Great Basin Sagebrush Habitat In East-Central Nevada, United States Department Of Agriculture, Forest Service

Wildlife Conservation and Management

Breeding bird populations ranged from 3.35 to 3.48 individuals/ha over a 3-year study conducted from 1981 to 1983. Brewer's sparrows, sage sparrows, sage thrashers, and black-throated sparrows were numerically dominant. Horned larks and western meadowlarks were less common. Results are compared with bird populations in Great Basin sagebrush habitats elsewhere in the United States.


Random Image Models For Microstructure Analysis And Simulation, Dominique Jeulin Jan 1992

Random Image Models For Microstructure Analysis And Simulation, Dominique Jeulin

Scanning Microscopy

A wide spectrum of Random Function models, based on the theory of Random sets, are introduced to simulate single or multivariate signals as encountered in the common practice of electron probe microscopy.

These models are built in three steps, combining the choice of a family of primary random functions and of Poisson varieties in the n-dimensional space for their implantation. For electron microscopy images, they can describe the following situations:

- topography (as obtained from stereo pair images in fractography) simulated by Boolean and by alternate sequential random functions;

- thick slices (as in the case of Transmission Electron Microscope …


Some Applications Of Image Analysis To Materials Science, François Grillon Jan 1992

Some Applications Of Image Analysis To Materials Science, François Grillon

Scanning Microscopy

We have presented four applications of Image Analysis to material science. The first one is on a yarn composite SiC where we want to know the relative proportion of matrix, fibers, porosity and the size of the fibers. The results are used to estimate mechanical properties of the composite.

The second one is to measure the residual porosity after a laser shock on powder metallurgy steel. The knowledge of the depth of the affected zone is necessary to optimise the laser treatment.

The third one uses Fourier transformation to analyse plastic deformation on grains. Values are obtained from Fourier transform …


Diffraction And Imaging Theory Of Inelastically Scattered Electrons - A New Approach, Z. L. Wang, J. Bentley Jan 1992

Diffraction And Imaging Theory Of Inelastically Scattered Electrons - A New Approach, Z. L. Wang, J. Bentley

Scanning Microscopy

A new dynamical theory is developed for describing inelastic electron scattering in thin crystals. Compared to existing theories, the first advantage of this new theory is that the incoherent summation of the diffracted intensities contributed by electrons after exciting vast numbers of degenerate excited states has been evaluated before any numerical calculation. The second advantage is that only the modulus squared of the transition matrix elements are needed in the final computation. This greatly reduces the effort in searching for "phase shifts" in inelastic scattering matrix calculations. By iterative operation of this single-inelastic scattering theory, multiple-inelastic electron scattering of phonons, …


The Application Of Multispectral Techniques To Analytical Electron Microscopy, P. G. Kenny, M. Prutton, R. H. Roberts, I. R. Barkshire, J. C. Greenwood, M. J. Hadley, S. P. Tear Jan 1992

The Application Of Multispectral Techniques To Analytical Electron Microscopy, P. G. Kenny, M. Prutton, R. H. Roberts, I. R. Barkshire, J. C. Greenwood, M. J. Hadley, S. P. Tear

Scanning Microscopy

The York multispectral analytical electron microscope (MULSAM) was the first instrument specifically designed to acquire and process multiple Auger, X-ray, backscattered electron, elastically scattered electron, scanning electron microscopy (SEM) and specimen absorption current images simultaneously. Analyzing combinations of these signals with multispectral correlation techniques yields more information than would normally be obtained by treating each image separately. This paper reports some of the multispectral methods we have investigated at York which may be of use to other workers. Included are (1) a method that corrects for beam current fluctuations during long acquisition runs which is based on the anti-correlation between …


Calculation Of Barriers To Proton Transfer Using Multiconfiguration Self‐Consistent‐Field Methods. I. Effects Of Localization, K. Luth, Steve Scheiner Jan 1992

Calculation Of Barriers To Proton Transfer Using Multiconfiguration Self‐Consistent‐Field Methods. I. Effects Of Localization, K. Luth, Steve Scheiner

Chemistry and Biochemistry Faculty Publications

The usefulness of multiconfiguration self‐consistent‐field (MCSCF) calculations in computing correlated proton transfer potentials is investigated for the systems HF2−, H7N2+, H3O2−, and H5O2+. In deciding whether to include particular molecular orbitals, it is important to consider the balance of electron density between the donor and acceptor groups and the interactions that are incorporated in the orbitals. Only orbitals which have the proper symmetry to interact with the transferring hydrogen need be included in the MCSCF active space. Reasonable transfer barriers are obtained …


Final Environmental Impact Statement Stanley Basin C & H Allotment Management Plan Sawtooth National Recreation Area, United States Forest Service Jan 1992

Final Environmental Impact Statement Stanley Basin C & H Allotment Management Plan Sawtooth National Recreation Area, United States Forest Service

Final Environmental Impact Statements (ID)

This Final Environmental Impact Statement (FEIS) documents the analysis conducted for the Stanley Basin Cattle and Horse Allotment Management Plan. The allotment management plan involves National Forest System lands within the Sawtooth and Challis National Forests. The analysis of the current condition of the Stanley Basin Allotment has found that the existing grazing system does not comply with the direction, standards and guidelines of the Sawtooth and Challis Forest Land and Resource Management Plans (FLRMP). The proposed action of this Final Environmental Impact Statement is to bring management of the allotment into compliance with the FLRMPs. The FEIS describes five …


Oil And Gas Leasing On The Thunder Basin National Grassland Final Environmental Impact Statement, United States Forest Service Jan 1992

Oil And Gas Leasing On The Thunder Basin National Grassland Final Environmental Impact Statement, United States Forest Service

Final Environmental Impact Statements (WY)

This Final Environmental Impact Statement was conducted to analyze what lands on the Medicine Bow National Forest, Thunder Basin National Grassland in northeast Wyoming could be available for leasing and what conditions could be attached to future leases. Seven alternatives are described, and potential effects are disclosed and evaluated. These alternatives represent possible ways to manage oil and gas leasing on 520,000 acres that are available for leasing. The alternatives are: ALTERNATIVE 1, Leasing consistent with the Forest Plan (No Action); ALTERNATIVE 2, Leasing with standard and special stipulations, consistent with the Forest Plan; ALTERNATIVE 3, Leasing with standard and …


A Brief Introduction To Aims And Methods For Image Processing Of Electron Micrographs Of Biological Specimens, Murray Stewart Jan 1992

A Brief Introduction To Aims And Methods For Image Processing Of Electron Micrographs Of Biological Specimens, Murray Stewart

Scanning Microscopy

A common problem with electron micrographs of biological objects is that fine details are usually faint and, moreover, tend to be obscured by background noise from stain and support film. Filtering is a useful way to improve the signal-to-noise ratio and is particularly important when trying to detect small changes (conformational or due to labelling) or when examining frozen hydrated objects, where the statistical definition of the image has been reduced because of the low-dose conditions needed to prevent radiation damage. Filtering can also be used to address the superposition effects that result from the large depth of focus of …


Three-Dimensional Crystallographic Reconstruction For Atomic Resolution, Kenneth H. Downing Jan 1992

Three-Dimensional Crystallographic Reconstruction For Atomic Resolution, Kenneth H. Downing

Scanning Microscopy

Three-dimensional structures have recently been determined by electron crystallography at a resolution high enough to determine atomic arrangements in both protein and mineral specimens. The different nature of these two types of specimens produces some very significant differences in the way data is obtained and processed, although the principles are the same. The sensitivity of proteins to damage by the electron beam limits the signal-to-noise ratio in the image and the resolution to which data can be extracted from the image. A number of constraints, such as the amino acid sequence and the connectivity of atoms within amino acids, can …


Alignment, Classification, And Three-Dimensional Reconstruction Of Single Particles Embedded In Ice, Joachim Frank, Pawel Penczek, Weiping Liu Jan 1992

Alignment, Classification, And Three-Dimensional Reconstruction Of Single Particles Embedded In Ice, Joachim Frank, Pawel Penczek, Weiping Liu

Scanning Microscopy

Cryo-electron microscopy of single biological particles poses new challenges to digital image processing due to the low signal-to-noise ratio of the data. New tools have been devised to deal with important aspects of 3-D reconstruction following the random-conical data collection scheme: (a) a new shift-invariant function has been derived, which promises to facilitate alignment and classification of single particle projections; (b) a new method of orientation search is proposed, which makes it possible to relate random-conical data sets to one another prior to reconstruction; and (c) the foundation is laid for a 3-D variance estimation which utilizes the oversampling of …


Confocal Microscopy And Three-Dimensional Reconstruction Of Thick, Transparent, Vital Tissue, Barry R. Masters Jan 1992

Confocal Microscopy And Three-Dimensional Reconstruction Of Thick, Transparent, Vital Tissue, Barry R. Masters

Scanning Microscopy

The three-dimensional visualization of the 400 micron thick, transparent, in situ cornea is described to demonstrate the use of confocal light microscopy for noninvasive imaging of living cells and thick tissues in their normal, vital conditions. Specimen preparation and physiological stability, as well as light attenuation corrections are critical to data acquisition. The technique to provide mechanical stability of the specimen during the duration of the image acquisition is explained. A laser scanning confocal light microscope (LSCM) was used to obtain optical serial sections from rabbit eyes that were freshly removed and placed in a physiological Ringer's solution. This study …


Structure Analysis Of Ice-Embedded Single Particles, M. Van Heel, H. Winkler, E. Orlova, M. Schatz Jan 1992

Structure Analysis Of Ice-Embedded Single Particles, M. Van Heel, H. Winkler, E. Orlova, M. Schatz

Scanning Microscopy

The conventional negative-stain preparation method for electron microscopy, in which biological macromolecules are contrasted using heavy metal salts (such as uranyl-acetate), is a simple and fast technique which has helped visualize hundreds of different molecular structures. Computer analysis of such negatively stained images of individual (i.e., non-crystalline) macromolecules using statistical pattern-recognition techniques has revealed considerable new structural information. Negative staining, however, has some disadvantages: the specimens are often severely flattened (as much as 25%-75%), they often exhibit strong preferential attachment of the molecules to the supporting carbon foil, and the molecular images may be difficult to interpret due to the …


Morphological Filtering And Granulometric Analysis On Scanning Electron Micrographs: Applications In Materials Science, Murielle Prod'homme, Michel Coster, Liliane Chermant, Jean-Louis Chermant Jan 1992

Morphological Filtering And Granulometric Analysis On Scanning Electron Micrographs: Applications In Materials Science, Murielle Prod'homme, Michel Coster, Liliane Chermant, Jean-Louis Chermant

Scanning Microscopy

For many applications, scanning electron microscopy (SEM) images reflect the granular texture of analysed objects. So it is important to characterise the morphology of this texture and also to filter these images. Because the size of the texture is the main criterion to be studied, we have focused our paper on granulometric analysis.

We present basic parameters, morphological filtering and granulometry for Rn•R functions and their properties with local knowledge and anamorphosis.

Some applications in the domain of materials science illustrate these methods and present their suitable possibilities.


Application Of The Wavelet Transform To The Digital Image Processing Of Electron Micrographs And Of Backreflection Electron Diffraction Patterns, A. Gómez, L. Beltrán Del Río, D. Romeu, M. Jose Yacamán Jan 1992

Application Of The Wavelet Transform To The Digital Image Processing Of Electron Micrographs And Of Backreflection Electron Diffraction Patterns, A. Gómez, L. Beltrán Del Río, D. Romeu, M. Jose Yacamán

Scanning Microscopy

In this work we explore the use of the so-called wavelet transform in the digital image processing of micrographs. The wavelet transform of an image f(x,y) is defined as:

Wf(s,u,v)

= f(x,y) s Ψ(s(x-u),s(y-v)) dxdy

where Ψ is an analyzing function called "wavelet" and which is in our examples always taken to be the "Mexican hat" given by

Ψ(x)=(2-(x2+y2))exp(-(x2+y2)/2)

Some synthetic images are shown in which it can be clearly seen how the wavelet transform can be useful to reveal edges and to emphasize the boundaries of the clusters.

The technique is …


Image Algebra And Restoration, P. W. Hawkes Jan 1992

Image Algebra And Restoration, P. W. Hawkes

Scanning Microscopy

The arrival of image algebras has made it possible to express a vast amount of the heterogeneous material in the image processing literature in a convenient and consistent manner. Furthermore, this type of formulation has proved very fertile and many new ideas have emerged. Image restoration has, however, been studied very much less than enhancement and analysis. We explain briefly the use of one such algebra in this field and show that such tasks as reconstruction from focal series and three-dimensional reconstruction can easily be incorporated.


A Robust Solution To The Super-Resolution Phase Problem In Scanning Transmission Electron Microscopy, J. M. Rodenburg, B. C. Mccallum Jan 1992

A Robust Solution To The Super-Resolution Phase Problem In Scanning Transmission Electron Microscopy, J. M. Rodenburg, B. C. Mccallum

Scanning Microscopy

From a set of images, each of poor resolution, recorded in a transmission microscope under many different incident angles of coherent illumination, it is possible to obtain wavelength-limited resolution even if there is a narrow aperture lying in the back-focal plane of the imaging lens. This is achieved by a deconvolution algorithm which retrieves the phase of the Fourier transform of the specimen. The method accounts for complex components in the transfer function of the lens, is not very sensitive to defocus and is remarkably resilient to noise. It may have important applications in overcoming the resolution limit in the …


The Detection And Quantification Of Straight-Lined Irregularities On Surfaces, J. Alan Swift Jan 1992

The Detection And Quantification Of Straight-Lined Irregularities On Surfaces, J. Alan Swift

Scanning Microscopy

Under the microscope, scratches or abrasions on hard otherwise flat surfaces are usually revealed as straight-lined irregularities. At a more macroscopic level creases in thin sheets such as of paper and textile fabrics are also observed to be straight-lined. A computer-aided image analytical method is described here not only for identifying such features but also for counting them, measuring their lengths and evaluating their contrast. Further measures are derived that are in accord with the qualitative visual impact of each line within the milleau of lines in the original image. The method makes use of a parametric transformation from two …


Multi-Dimensional Data Analysis And Processing In Electron-Induced Microanalysis, N. Bonnet, P. Trebbia Jan 1992

Multi-Dimensional Data Analysis And Processing In Electron-Induced Microanalysis, N. Bonnet, P. Trebbia

Scanning Microscopy

The new facilities offered by computer controlled data capturing devices allow one to open the field of data acquisition from one or two-dimensional spaces to multi-dimensional ones. The methods used for analysing and processing such data sets have to move in parallel towards multi-dimensionality. Multivariate Statistical Analysis is one of the tools which appear to be promising in : data analysis, data reduction, data processing (multivariate noise filtering), data interpolation and extrapolation. Illustrations of these different possibilities are given in the fields of spatially resolved spectroscopy, time-dependent spectroscopy and elemental mapping from Electron Energy Loss Spectroscopy.


Processing Multi-Spectral Scanning Electron Microscopy Images For Quantitative Microfabric Analysis, N. K. Tovey, D. L. Dent, W. M. Corbett, D. H. Krinsley Jan 1992

Processing Multi-Spectral Scanning Electron Microscopy Images For Quantitative Microfabric Analysis, N. K. Tovey, D. L. Dent, W. M. Corbett, D. H. Krinsley

Scanning Microscopy

Multi-spectral image analysis is a powerful method to characterise quantitatively the mineralogy and microfabric of soils, sediments, and other particulate materials. Backscattered scanning electron microscope (SEM) images of polished, resin-impregnated samples are grouped with the corresponding X-ray elemental maps using classification methods commonly used in remote sensing. However, the resulting mineral-segmented images require processing to render them suitable for quantification. In the past, this has been done subjectively and interactively, but the new objective methods described in this paper largely eliminate this subjectivity. An intensity gradient magnitude image of the original backscattered electron image is used as the basis of …


Image Segmentation Applied To Scanning Electron Microscopy Multi-Images Of Weathered Stones Of Monuments, M. Rautureau, R. Harba, G. Jacquet Jan 1992

Image Segmentation Applied To Scanning Electron Microscopy Multi-Images Of Weathered Stones Of Monuments, M. Rautureau, R. Harba, G. Jacquet

Scanning Microscopy

This paper describes a three complementary images processing method. The three images are coming from a scanning electron microscope (SEM) during the analysis of a particular stone: the Tuffeau used in most monuments of the Loire valley (France). The goal is to separate two classes of particles (calcareous and siliceous) from the porosity to give more information to experts who evaluate the damage of weathering on monuments. A specific process is developed: a first threshold on the good quality image allows separation of particles from porosity. Then, the complementarity of the three images gives the two other thresholds. Granulometry, percentages …


Random Access Direct Parallel Detection Of Electron Energy Loss Spectra With A New Photodiode Array, Stephan La Barré, Eckhard Quandt, Heinz Niedrig Jan 1992

Random Access Direct Parallel Detection Of Electron Energy Loss Spectra With A New Photodiode Array, Stephan La Barré, Eckhard Quandt, Heinz Niedrig

Scanning Microscopy

A new type of photodiode array (PDA) which allows the individual access of single diodes is used to record energy loss electrons directly without electron photon conversion.

The detector is part of an electron energy loss parallel detection system which consists of a sector field spectrometer and a quadrupole lens system to magnify the spectra electron-optically.

The parallel detector is a new random access PDA (RAPDA) which allows the individual access of single diodes. Therefore, different parts of the spectrum with dramatically different electron rates (zero loss peak, plasmon loss, ionization edges) can be recorded, each with optimum acquisition time …


On-Line Processing And Computer Control In High Resolution Transmission Electron Microscopy, F. A. Ponce, H. Hikashi Jan 1992

On-Line Processing And Computer Control In High Resolution Transmission Electron Microscopy, F. A. Ponce, H. Hikashi

Scanning Microscopy

Recent advances in hardware and software make it possible to perform real-time image processing, and to do simultaneous analysis of the image characteristics in the transmission electron microscope (TEM). We have used a commercially available image processor and a suitable computer/TEM interface to build a automated computer-control system for a JEOL 4000EX TEM. We report here the characteristics of the system, which has direct access to all electronic controls of a JEOL 4000EX. The various microscope parameters are set by changing one parameter at a time while the image processor measures a specific image variable such as the variance. From …


Quantification Of High-Resolution Lattice Images And Electron Holograms, W. J. De Ruijter, M. Gajdardziska-Josifovska, M. R. Mccartney, R. Sharma, David J. Smith, J. K. Weiss Jan 1992

Quantification Of High-Resolution Lattice Images And Electron Holograms, W. J. De Ruijter, M. Gajdardziska-Josifovska, M. R. Mccartney, R. Sharma, David J. Smith, J. K. Weiss

Scanning Microscopy

Progress towards the quantification of high-resolution electron microscopy and electron holograms has been achieved using digital acquisition with a slow-scan charge-coupled device (CCD) camera. Two applications are described: the precise measurement of lattice-fringe spacings and the determination of the mean inner potential. Lattice images can be characterized by a finite sum of two-dimensional sinusoids. A new method for measurement of the frequency, amplitude and phase of each sinusoid, based on an interpolation technique in reciprocal space, is presented. The method offers considerably higher precision for measurement of lattice fringes than the optical bench and is applicable to images recorded with …


Digital Image Processing Of Electron Micrographs: The Pic System Ii, Benes L. Trus, Michael Unser, Thierry Pun, Alasdair C. Steven Jan 1992

Digital Image Processing Of Electron Micrographs: The Pic System Ii, Benes L. Trus, Michael Unser, Thierry Pun, Alasdair C. Steven

Scanning Microscopy

The PIC system, an integrated package of Fortran programs and subroutines designed to run on the Digital Equipment Corporation VAX family of computers, has been developed for analysis of electron micrographs with emphasis on the particular requirements for structural analysis of biological macromolecules. The substantially improved VAX version of PIC reported here has been developed from an earlier PDP-11 version which was, in turn, developed from a set of IBM 370 programs called MDPP. PIC now encompasses over 150 commands or processing operations that afford a comprehensive range of image processing operations including image restoration, enhancement, Fourier analysis, correlation averaging, …


A Low-Temperature Scanning Electron Microscopy Study Of Ice Cream. I Techniques And General Microstructure, K. B. Caldwell, H. D. Goff, D. W. Stanley Jan 1992

A Low-Temperature Scanning Electron Microscopy Study Of Ice Cream. I Techniques And General Microstructure, K. B. Caldwell, H. D. Goff, D. W. Stanley

Food Structure

The objective of this study was to investigate techniques suitable for viewing the microstructure of ice cream in the frozen and fully hydrated state using low temperature scanning electron microscopy (L T-SEM), and to examine the microstructure of the frozen product. lee cream bad four distinct structural phases: ice crystals, air bubbles, fat globules and serum. Air bubbles, 10 to 60 ~-tm in diameter, were lined with fat globules, 0.5 to 2.5 J.tnl in diameter. Ice cry stals with a mean di ameter of 40 J.Lffi showed a characteri stic reticulat e structure after sublimation. The appearance of the ice …


Functional Properties And Microstructure Of Chicken Breast Salt Soluble Protein Gels As Influenced By Ph And Temperature, S. F. Wang, D. M. Smith Jan 1992

Functional Properties And Microstructure Of Chicken Breast Salt Soluble Protein Gels As Influenced By Ph And Temperature, S. F. Wang, D. M. Smith

Food Structure

The effects of different pH's (4 .5 , 5.5, 6.5 and 7.5) and temperatures (30-80 •c) on the functional properties and microstructure of chicken breast salt soluble protein (SSP) in 0.6 M NaCI were investigated. Protein solubility decreased from 98% at pH 6.5 to less than I% at pH 4.3 and below. Salt soluble protein at pH 4.5 produced a discontinuous gel which could not be measured by back extrusion and had an expressible moisture above 80% at all heating temperatures . Aggregated globular microstructures were observed at pH 4.5 by scanning electron microscopy (SEM). Thin-sectioned images as seen by …


Insect Problems Encountered By The Firewood Gatherer, Jay B. Karren Jan 1992

Insect Problems Encountered By The Firewood Gatherer, Jay B. Karren

All Archived Publications

No abstract provided.


Blackhorned Pine Borers, Jay B. Karren Jan 1992

Blackhorned Pine Borers, Jay B. Karren

All Archived Publications

No abstract provided.