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Bi-directional transmission of molecular information by photon or electron beams passing in the close vicinity of specific molecules, and its clinical and basic research applications: 1) Diagnosis of humans or animal patients without any direct contact; 2) Light microscopic and electron microscopic localization of neuro-transmitters, heavy metals, Oncogen C-fos (AB2), etc. of intracellular fine structures of normal and abnormal single cells using light or electro-microscopic indirect Bi-Digital O-Ring Test.

In 1985, Omura, Y. discovered that, when specific molecules were placed anywhere in the close vicinity of the path of a light beam (laser), their molecular information, as well as information on electrical & magnetic fields, is transmitted bi-directionally along the path of this light beam. Namely, this information is transmitted in the direction the light beam is projected and towards the direction from which the light beam is coming. This finding was applied to the following clinical and basic research: 1) In the past, using indirect Bi-Digital O-Ring Test, human or animal patients were diagnosed through an intermediate third person holding a good electrical conducting probe, the tip of which was touching the part of the patient to be examined. However, in order to diagnose the patient in isolation from a distance, or a dangerous or unmanagable unanesthesized animal, such as a lion or tiger, the author succeeded in making a diagnosis by replacing the metal conducting probe with a soft laser beam which is held by the one hand of the third person whose index finger is placed in close vicinity of the laser beam generated by a battery-powered penlight-type solid state laser generator. Thus, diagnosis within visible distance, without direct patient contact, became a reality. 2) Using a projection light microscope, by giving indirect Bi-Digital O-Ring Test while contacting with a fine electro-conductive probe on the magnified fine structure of normal and abnormal cells, various normal and abnormal intracellular substances were localized through a third person holding a pure reference control substance with the same hand that is holding the probe as an intermediary for the indirect Bi-Digital O-Ring Test. Instead of the photon beam in a light microscope, the author found that, using an electron beam passing through the close vicinity of specific molecules of specimens in an electron microscope, the molecular information is transmitted to the magnified fluorescent screen, and an indirect Bi-Digital O-Ring Test could be performed through a projected penlight-type solid state soft laser beam on the magnified intracellular structure through an observation glass window. Using the magnified fine structure of the cells, by either a light projection microscopic field or electron microscope, in various cancer cells of both humans and animals, Oncogen C-fos (AB2) and mercury were found inside of the nucleus. Integrin alpha 5 beta 1 was found on cell membranes and nuclear cell membranes of cancer cells. Acetylcholine was not found anywhere within cancer cells.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Electron microscopy of Cowdria-infected macrophages suggests that in the absence of binary fission a mosaic of organisms develops from an amorphous electron dense matrix.

Electron microscopy of mouse peritoneal macrophages infected with the Kümm stock of Cowdria ruminantium suggests that in the final stage of intracellular growth, a mosaic of organisms develops from an amorphous matrix of varying electron density by a process in which double unit membranes portion off the Cowdria particles. This stage is preceded by inclusions consisting of a network of aggregated electron dense granules and these in turn by homogeneous dense bodies. The study failed to show how these dense bodies develop from internalized Cowdria particles introduced in the infective inoculum. The replication of the heartwater agent in macrophages differs from that in vascular endothelial cells in two important respects. First, at no stage during the course of development in macrophages is binary fission in evidence and second, in the absence of a limiting membrane the inclusions and colonies of organisms throughout the cycle of development in macrophages are in intimate contact with the host cell cytoplasm.

Animals↗

Field emission scanning electron microscopy and freeze-fracture transmission electron microscopy of mouse cerebellar synaptic contacts.

Samples of albino mice were processed by the cryofracture method for scanning electron microscopy and examined with the field emission scanning electron microscope (FESEM). Freeze-etching direct replicas of mice cerebellar cortex were also studied with the transmission electron microscope (FFTEM), as a complementary technique for obtaining higher resolution, three-dimensional correlative images of cerebellar synaptic contacts. At the granular, Purkinje cells and molecular layers, the cryofracture method for FESEM selectively removed the neuroglial cell investment, facilitating the visualization of the outer and inner surfaces of cerebellar synaptic contacts. In addition, FFTEM showed the real extension of perisynaptic neuroglial investment. The outer surface of mossy fiber rosettes and their digitiform processes were seen at the granular layer, making flat and invaginated synaptic contacts with the granule cell dendrites. At the molecular layer, the longitudinal traject of parallel fibers or nonsynaptic segments and their synaptic varicosities were characterized. These latter established synaptic contacts with Purkinje dendritic spines. Fractured parallel fiber endings showed the SE-I images of clustered spheroidal synaptic vesicles and mitochondria and the surrounding cotton-like appearance of Bergmann glial cell cytoplasm. Climbing fibers showed a characteristic crossing-over bifurcation pattern in the white matter and in the three-layer structure of cerebellar cortex, formation of tendril collaterals in the granular layer, topographical relationship with Purkinje cell soma and retrograde collaterals in the molecular layer. The climbing fiber synaptic relationship with Purkinje dendritic spines was characterized, by means of FFTEM, by the presence of large synaptic endings and aggregation of intramembrane particles at the P and E faces of presynaptic endings, characteristic of excitatory synapses.

Animals↗

Correlative transmission electron microscopic and scanning electron microscopic observations of the tissues supporting endosteal blade implants.

Correlated scanning electron microscopic (SEM), routine transmission electron microscopic (TEM), and high-voltage transmission electron microscopic (HVEM) observations demonstrated that one-stage and two-stage endosteal blade-type implants were well-supported by mandibular tissues after five months of unloaded healing in dogs. Areas of the implants were apposed directly by mineralized tissues without any apparent interposed unmineralized connective tissue. Other areas of the implants were apposed by narrow areas of unmineralized tissue, often containing osteoblasts. These unmineralized areas were interposed between the implant and a supporting mineralized matrix. A healthy mix of tissues, which represented a dynamic osseous complex, supported these serviceable blade-type dental implants. This study, for the first time in the dental implant literature, utilizes HVEM stereology for evaluation of the bone-implant interface.

Alveolar Process↗

Observation on backscattered electron image (BEI) of a scanning electron microscope (SEM) in semi-thin sections prepared for light microscopy.

In order to examine semi-thin section for light microscopy with the backscattered electron mode (BE mode), identical sites in tissue sections were comparatively observed with both light microscopy and BE mode. Tissue blocks (ca. 3 X 3 X 1 mm) were fixed in glutaraldehyde or combined formaldehyde-glutaraldehyde solution. After dehydration in alcohol, they were embedded in Kushida's GMA-Quetol 523. 1.0 micron sections on glass slides coated with indium oxide were stained with hematoxylin-eosin or toluidine blue or by the Giemsa method, and then treated with osmium tetroxide vapor or aqueous KMnO4 solution or uranyl acetate-lead citrate solution. The identical places of such sections could be examined with the accelerating potential of 6 kV and the probe current of 8 X 10(-10) A using a JSM-35C SEM with BEIS BE detector. Photographs were taken with the 2500-line resolution cathode ray tube and the time of exposure was 100 sec. The sections were placed at a distance of 5mm from the BE detector. BE images from osmium tetroxide vapor staining showed a distinctly improved contrast especially when the sections were previously stained with hematoxylin and eosin. The cellular structure was clearly demonstrated under the electron microscope in the BE mode. Identical sites in tissue samples could be compared exactly with both light and electron micrographs.

Animals↗

[Detecting respiratory syncytial virus in respiratory epithelial cells in adult patients by electron microscopy and immune electron microscopy].

In order to evaluate the value of electron microscopy (EM) in diagnosing respiratory syncytial virus (RSV) infection in adults, the exfoliated cells from nasopharynx of 97 RSV positive patients were examined by EM and the gold labelling technique for immune electron microscopy. The viral particles with RSV features were found at the surface of the exfoliated cells only in a few samples by EM, and the specific gold labelling were observed in the immune electron microscopy (IEM). The results showed that RSV is one of the causative agents for adult respiratory infection.

Adolescent↗

[Localization of the apical foramen using the newest electronic instruments: stereomicroscopy and SEM (scanning electron microscopy)].

Introduction of double impedence as new parameter in root canal length electronic measurement allowed first and second generation electronic apical localizers main problems overcoming: precision failure in presence of conducting fluids. Our study's purpose was an in vitro evaluation of two third generation instruments (Apit-Osada and Root ZX-Morita Corp.) ability in apical foramen localization using sodium hypoclorite as irrigating solution. 40 human monorooted teeth with immature apex were studied. 20 samples were measured by Apit and 20 by Root ZX; measurements were recorded when apical foramen was reached. Samples were fixed for stereomicroscope observation before and after apical 3 mm worn and prepared for SEM observation. Evaluations about each system's precision were made by calculating difference between foramen position determined by electronic localizer and its real anatomical position determined by a computed image analizing system linked to SEM. All measurements were included between a minimum value of -0.45 mm and a maximum value of 0.26 mm. Mann Whithney U test was performed to compare average values of the two sample groups but his was not meaningful (p = 0.18) showing that there is no valuable difference in accuracy between Apit and Root ZX. According to most researchers, who consider a +/- 0.5 mm error range clinically acceptable, and considering that in vitro measurements never exceded this limit value we conclude confirming both instruments' safety.

Dental Equipment↗

[A simple formula for determination of the mean electron energy in a body irradiated by fast electrons (author's transl)].

A simple formula for calculation of the mean electron energy from primary energy and depth of irradiation is derived. The formula has been verified for substances with low atomic numbers (Z less than or equal to 6) and by experiments using primary electron energies from 5 to 15 MeV and irradiation depths up to 80% of the practical range, which corresponds to mean electron energies from 2.2 to 15 MeV. For this purpose, the relative mass stopping-power ratios water/air which have been obtained using the formula together with valid standard tables (ICRU, DIN) and literature were compared with those found by absolute dosimetry by means of a graphite double extrapolation chamber (primary standard). An optimal accordance with the standard values for non-restricted mass collision stopping-power, as indicated by Berger and Seltzer, was the result (better than +0.6 to -0.05%). The verification of a formula known from literature (Harder) revealed similar results (+0.4 to -0.8%).

Air↗

Ischemic injury to mitochondrial electron transport in the aging heart: damage to the iron-sulfur protein subunit of electron transport complex III.

The aging heart sustains greater injury during ischemia and reperfusion compared to adult hearts. Aging decreases oxidative function in interfibrillar mitochondria (IFM) that reside among the myofibers, while subsarcolemmal mitochondria (SSM), located beneath the plasma membrane, remain unaltered. Aging decreases complex III activity selectively in IFM via alteration of the cytochrome c binding site. With 25 min of global ischemia, complex III activity decreases in SSM and further decreases in IFM in the aging heart. Ischemia leads to a marked decrease in the electron paramagnetic resonance signal of the iron-sulfur protein (ISP) in both SSM and IFM, despite a preserved content of ISP peptide. Thus, ischemia results in a functional decrease in the iron-sulfur center in ISP without subunit peptide loss. In the aging heart, at the onset of reperfusion, IFM contain two tandem defects in the path of electron flow through complex III, providing a likely mechanism for enhanced oxidant production and reperfusion damage.

Age Factors↗

Extending energy-filtered transmission electron microscopy (EFTEM) into three dimensions using electron tomography.

The length scales on which materials microstructures are being formed, grown, and even designed are becoming increasingly small and increasingly three-dimensional. For such complex structures two-dimensional transmission electron microscopy (TEM) analysis is often inadequate and occasionally misleading. One approach to this problem is the modification of electron tomography techniques, developed for structural biology, for use in materials science. Energy-Filtered (EF) TEM elemental distribution images approximate to true projections of structure, and, as such, can be used to reconstruct the three-dimensional distribution of chemical species. A sample holder has been modified to allow the high tilt (+/-60 degrees ) required for tomography and a semiautomatic acquisition script designed to manage energy-loss acquisition. Tilt series data sets have been acquired from two widely different experimental systems, Cr carbides in 316 stainless steel and magnetite nanocrystals in magnetotactic bacteria, demonstrating single- and multiple-element tomography. It is shown that both elemental maps and jump-ratio images are suitable for reconstruction, despite the effects of diffraction contrast in the former and thickness changes in the latter. It is concluded that the image contrast, signal, and signal-to-noise ratio (SNR) are key to the achievable reconstruction quality and, as such, the technique may be of limited value for high energy loss/small inelastic cross section edges.

Electrons↗

Electron transfer in cyanobacterial photosystem I: I. Physiological and spectroscopic characterization of site-directed mutants in a putative electron transfer pathway from A0 through A1 to FX.

The Photosystem I (PS I) reaction center contains two branches of nearly symmetric cofactors bound to the PsaA and PsaB heterodimer. From the x-ray crystal structure it is known that Trp697PsaA and Trp677PsaB are pi-stacked with the head group of the phylloquinones and are H-bonded to Ser692PsaA and Ser672PsaB, whereas Arg694PsaA and Arg674PsaB are involved in a H-bonded network of side groups that connects the binding environments of the phylloquinones and FX. The mutants W697FPsaA, W677FPsaB, S692CPsaA, S672CPsaB, R694APsaA, and R674APsaB were constructed and characterized. All mutants grew photoautotrophically, yet all showed diminished growth rates compared with the wild-type, especially at higher light intensities. EPR and electron nuclear double resonance (ENDOR) studies at both room temperature and in frozen solution showed that the PsaB mutants were virtually identical to the wild-type, whereas significant effects were observed in the PsaA mutants. Spin polarized transient EPR spectra of the P700+A1- radical pair show that none of the mutations causes a significant change in the orientation of the measured phylloquinone. Pulsed ENDOR spectra reveal that the W697FPsaA mutation leads to about a 5% increase in the hyperfine coupling of the methyl group on the phylloquinone ring, whereas the S692CPsaA mutation causes a similar decrease in this coupling. The changes in the methyl hyperfine coupling are also reflected in the transient EPR spectra of P700+A1- and the CW EPR spectra of photoaccumulated A1-. We conclude that: (i) the transient EPR spectra at room temperature are predominantly from radical pairs in the PsaA branch of cofactors; (ii) at low temperature the electron cycle involving P700 and A1 similarly occurs along the PsaA branch of cofactors; and (iii) mutation of amino acids in close contact with the PsaA side quinone leads to changes in the spin density distribution of the reduced quinone observed by EPR.

Binding Sites↗

The use of specific antibody in electron microscopy. II. The visualization of mercury-labeled antibody in the electron microscope.

Glycerinated chicken muscle was stained with antimyosin antibody conjugated with mercury and fluorescein. The antibody was visualized in both the electron and the fluorescence microscope by using adjacent thin and thick sections. In order to make this possible, Araldite was used as the embedding medium. The mercury was reduced to metallic mercury in the electron beam and either migrated in the section or was sublimated in the vacuum. Therefore special techniques of carbon filming had to be used to prevent this. Some nonspecific staining occurred because of the binding of mercury to available sulfhydryl groups in the tissue. The available sulfhydryl groups were blocked by pretreating the tissue with iodoacetic acid and formaldehyde. The non-specific staining which occurred after this treatment was easily removed by brief washing with a buffered solution of thioglycolic acid.

Antibodies↗

Backscattered electron imaging to visualize arterial endothelial detachment in the scanning electron microscope.

The endothelium of the central ear artery of an anesthetized rabbit was damaged by placing artery forceps on the ear over the vessel for 30 min. After removal of the forceps, blood was allowed to flow through the injured vessel for 30 min. Blood flow was then stopped, blood was washed out of the artery in situ and initial fixation with 1% glutaraldehyde was begun. Specimens of the vessel containing the damaged region were postfixed in 3% cacodylate buffered glutaraldehyde and prepared for SEM examination after methenamine silver staining or following post fixation with osmium. Backscattered electron imaging (BEI) of silver stained specimens with inverted signal polarity showed "black" endothelial nuclei similar to darkly stained nuclei of conventional light microscope slide preparations. Secondary electron imaging (SEI) of corresponding sites stained with silver also showed endothelial nuclei. An interruption of the normal pattern of nuclei indicated a detached area of endothelium where subendothelium was exposed. Platelets were observed adhering to the surface of the exposed subendothelium. Injury to the endothelium was seen more readily in silver stained preparations as voids in the nuclear pattern as compared with conventional SEI preparations, postfixed with osmium, which did not show well defined nuclei.

Animals↗

Contrasting behavior of pentafluorophenoxyacetone and pentafluorobenzyloxyacetone in electron impact and electron capture mass spectrometry.

Towards the goal of finding new ketone electrophores suitable as molecular labels for electrophoric release tags, pentafluorophenoxyacetone (1) and pentafluorobenzyloxyacetone (2) were prepared. Both ketones were evaluated by electron capture (EC) and electron impact (EI) modes of mass spectrometry (MS). By EC-MS, 1 nearly gave a single ion (as desired), whereas 2 gave many ions. This behavior was completely reversed in EI-MS. To account for certain ion fragments in the EC mass spectrum of 2, an anion radical McLafferty-type rearrangement and loss of a carbene neutral were postulated. Electron impact of 1 gave an abundant ion at m/z 117 (C5F3+), which was suggested to be a diyne cation.

Acetone↗

Synthesis, characterization, and electronic structure of Ba5In4Bi5: an acentric and one-electron deficient phase.

The new ternary phase Ba(5)In(4)Bi(5) was synthesized by direct reaction of the corresponding elements at high temperature. It crystallizes in a noncentrosymmetric space group and represents a new structure type (tetragonal, P4nc with a=10.620(2) and c=9.009(2) A, Z=2). The structure is built of interconnected heteroatomic clusters of In(4)Bi(5), square pyramids with In(4)-bases and four exo-bonded bismuth atoms (bond to the In atoms). According to Wade's rule the compound is electron-deficient with one electron per cluster, that is, [In(4)Bi(5)](10-) instead of the expected [In(4)Bi(5)](11-) for a closed-shell species. The clusters are discussed also in light of the known heteroatomic deltahedral clusters with the same composition but different charge, [In(4)Bi(5)](3-). Band structure calculations on the new compound suggest substantial participation of barium in the overall bonding of the structure that "accounts" for the electron shortage

Journal Article↗

Wave functions derived from experiment. V. Investigation of electron densities, electrostatic potentials, and electron localization functions for noncentrosymmetric crystals.

The constrained Hartree-Fock method using experimental X-ray diffraction data is extended and applied to the case of noncentrosymmetric molecular crystals. A new way to estimate the errors in derived properties as a derivative with respect to added Gaussian noise is also described. Three molecular crystals are examined: ammonia [NH(3)], urea [CO(NH(2))(2)], and alloxan [(CO)(4)(NH)(2)]. The energetic and electrical properties of these molecules in the crystalline state are presented. In all cases, an enhancement of the dipole moment is observed upon application of the experimental constraint. It is found that the phases of the structure factors are robustly determined by the constrained Hartree-Fock model, even in the presence of simulated noise. Plots of the electron density, electrostatic potential, and the electron localization function for the molecules in the crystal are displayed. In general, relative to the Hartree-Fock model, there is a depletion of charge around hydrogen atoms and lone pair regions, and a build-up of charge within the molecular framework near nuclei, directed along the bonds. The electron localization function plots reveal an increase in the pair density between vicinal hydrogen atoms.

Journal Article↗

[Electronic health professional cards as indispensable elements of the upcoming health telematics infrastructure. Interactions with electronic patient data cards].

The German law for the modernization of statutory health care defines a functional framework for the upcoming telematics infrastructure in health care based on electronic health professional cards, electronic patient data cards and the necessary information, communication and security infrastructure. The currently ongoing discussion for the implementation is strongly influenced by diverse particulate interests often hindering systematic development. This article presents the fundamental technical mechanisms usable for a stepwise and expandable solution. The interdependence of the components is illustrated using the example of the ATG concept for an electronic patient record. These facts call for a stepwise implementation of telematic infrastructure based on the presented mechanisms.

Computer Communication Networks↗

Structural characterization of the GM1 ganglioside by infrared multiphoton dissociation, electron capture dissociation, and electron detachment dissociation electrospray ionization FT-ICR MS/MS.

Gangliosides play important biological roles and structural characterization of both the carbohydrate and the lipid moieties is important. The FT-ICR MS/MS techniques of electron capture dissociation (ECD), electron detachment dissociation (EDD), and infrared multiphoton dissociation (IRMPD) provide extensive fragmentation of the protonated and deprotonated GM1 ganglioside. ECD provides extensive structural information, including identification of both halves of the ceramide and cleavage of the acetyl moiety of the N-acetylated sugars. IRMPD provides similar glycan fragmentation but no cleavage of the acetyl moiety. Cleavage between the fatty acid and the long-chain base of the ceramide moiety is seen in negative-ion IRMPD but not in positive-ion IRMPD of GM1. Furthermore, this extent of fragmentation requires a range of laser powers, whereas all information is available from a single ECD experiment. However, stepwise fragmentation by IRMPD may be used to map the relative labilities for a series of cleavages. EDD provides the alternative of electron-induced fragmentation for negative ions with extensive fragmentation, but suffers from low efficiency as well as complication of data analysis by frequent loss of hydrogen atoms. We also show that analysis of MS/MS data for glycolipids is greatly simplified by classification of product ion masses to specific regions of the ganglioside based solely on mass defect graphical analysis.

Animals↗