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Ultrastructural observations on osteosarcoma tissue: a study of 10 cases.

Ultrastructural findings from the cellular, early osteoid regions of 10 osteosarcoma lesions are described. The characteristic features included irregularity in nuclear shape, margination of the chromatin, a large number of nucleoli, normal-sized nuclear pores, undifferentiated cells, poorly differentiated osteoblasts with scanty rough endoplasmic reticulum in annular or lamellar conformation, and malignant osteoblasts characterized by large accumulations of dilated rough endoplasmic reticulum (often in the form of huge anastomosing lakes) and by intracellular filaments. Several of the lesions demonstrated prominent giant cells, most of which were similar ultrastructurally to uninuclear tumor cells rather than to mitochondrialaden giant cells or osteoclasts. Variable amounts of primarily collagenous intercellular matrix were present. Cross-banded collagen fibers with diameters from 30-90 nm were seen as were thinner non-cross-banded fibrils 12-18 nm wide.

Bone Neoplasms↗

Lectin blot studies on proteins of Myxobolus cerebralis, the causative agent of whirling disease.

It is known that Myxobolus cerebralis antigens, both surficial and secreted, are key modulators for, or targets of, host immune system compounds. We undertook SDS-PAGE glycoprotein characterisation of M. cerebralis developmental stages isolated from infected rainbow trout and Western blot analyses using selected biotin-labelled plant lectins (GSA-I, PHA-E, SJA, GSA-II) and anti-triactinomyxon polyclonal antibodies. Glycoproteins were isolated with lectin-affinity chromatography, and prominent bands were characterised by matrix-assisted laser desorption/ionisation-mass spectrometry (MALDI/MS). We identified glycoproteins of M. cerebralis myxospores that contained carbohydrate motifs reactive with Phaseolus vulgaris erythroagglutinin (proteins 20 to 209 kDa, PHA-E), Sophora japonica agglutinin (proteins 7 to 70 kDa, SJA), Griffonia simplicifolia Agglutinin I (proteins 10 to 209 kDa, GSA-I) and G. simplicifolia Agglutinin II (proteins 5 to 40 kDa, GSA-II). Mcgp33, a glycoprotein isolated by lectin-affinity chromatography, was reactive with SJA (about 33 kDa). Antiserum produced against M. cerebralis triactinomyxons was found to have differences in the antigenicity of isolated glycoproteins from both M. cerebralis myxospores and actinospores. We also demonstrated modified antigen expression, especially involving the glycoprotein Mcgp33, in different developmental stages of M. cerebralis.

Animals↗

Fast electrotransfer of human serum proteins in their native state from polyacrylamide thin gradient gels reinforced by textiles to polyvinylidene difluoride membranes. Rapid electrotransfer from thin gradient gels reinforced by textiles.

A fast electroblotting technique of native molecules electrophoretically separated in thin (0.25 to 0.5 mm) gradient gels, onto a high capacity membrane of polyvinylidene difluoride is described. Omitting methanol during transfer, the equilibration step is avoided and the same buffer is used in electrophoresis and transfer. As the gel reinforced by fabric never swells nor shrinks, and as all the bands are blotted, the transfer matrix exactly reflects the protein pattern of the original gel. Autoradiography is enhanced and electroelution is homogeneous in all parts of the gels. Significant improvement is noticed in binding proteins of molecular weight from about 20 kDa to more than 700 kDa, as suggested by complete electroelution of all native serum components.

Blood Proteins↗

Integrins isolated from Rous sarcoma virus-transformed chicken embryo fibroblasts.

Avian integrins are a complex of three integral membrane glycoproteins that are thought to have a role both in anchoring the cytoskeleton to the plasma membrane and establishing linkages to the extracellular matrix. We previously demonstrated that bands 2 and 3 of integrin are phosphorylated on both tyrosine and serine residues in chicken embryo fibroblasts (CEF) transformed with Rous Sarcoma virus (RSV) and other oncogenic retroviruses. The effects of RSV transformation on integrins from chick cells are now further characterized. The major site of tyrosine phosphorylation on band 3 in RSV transformed CEF has been identified as tyrosine 788. We also demonstrate that the product of the RSV oncogene, pp60v-src, can phosphorylate integrin in vitro, at the same residue. Tryptic peptide mapping and tunicamycin treatment indicates that a previously observed 4-8 k increase in the Mr of integrins from RSV-transformed cells can be attributed to an alteration in a post-translational modification such as glycosylation. Equilibrium gel filtration assays were used to test the ability of integrins from RSV-transformed CEF to interact with talin and fibronectin. Tyrosine phosphorylated integrins showed a decreased ability to interact with both these ligands in vitro. Conversely, integrins isolated from RSV-transformed CEF metabolically labeled in the absence of phosphatase inhibitor contained only low levels of phosphotyrosine and showed an almost normal ability to interact with ligands. Competition experiments indicated that the region of integrin containing tyrosine 788 is also important for talin binding to integrins.

Animals↗

The basement membrane of bovine corneal endothelial cells in culture with beta-aminopropionitrile: biosynthesis of hexagonal lattices composed of a 160 nm dumbbell-shaped structure.

Bovine corneal endothelial cells maintained in culture produced an extracellular matrix on their basal surface. In the presence of beta-aminopropionitrile (beta-APN) (100-500 micrograms/ml), an inhibitor of cross-linking, this extracellular matrix contained hexagonal lattices of 150 nm periodicity. The lattice was composed of round densities 60 nm in diameter comprising the nodes of the lattice and rod-like structures 40 nm in thickness comprising its sides. This structure is almost identical to that of bovine Descemet's membrane in situ. The lattice was produced only in the presence of beta-APN. By freeze-etch replica and negative staining of 1 day cultures, the unit component of the lattice appeared to be a novel 160 nm long dumbbell-shaped symmetrical structure. The central rod of the dumbbell-shaped structure was 80 nm long and 20 to 50 nm in diameter with round ends (40-50 nm). In the rod 2 nm fibrillar substructures were discerned by negative staining. The rod-like central portion was resistant to trypsin digestion whereas the round ends were digested by it. Both structures disappeared after bacterial collagenase digestion. By immunoblotting the extracellular matrix contained 160kd and 180kd bands which bound anti-type IV collagen antibodies and a 140kd band which bound anti-type III collagen antibodies. The lattice area was also positively stained with these antibodies by immunoperoxidase. The findings strongly suggest that the hexagonal lattice of bovine Descemet's membranes in situ is composed of this collagenous structure.

Aminopropionitrile↗

The influence of membrane skeleton on red cell deformability, membrane material properties, and shape.

A membrane skeleton consisting of a structural matrix of spectrin, actin, and band 4.1 linked to band 3 in the fluid bilayer through ankyrin appears to be responsible for many of the material properties of the red cell membrane. In response to externally applied forces, the membrane behaves as a solid, a semisolid, or a liquid, depending on the magnitude and duration of the applied forces. Under physiologic conditions, the normal skeleton permits the red cells to undergo marked reversible deformations as a viscoelastic material. Perturbations of this skeletal assembly, as a result of molecular defects in skeletal components, lead to various altered membrane material properties and altered behavior in the circulation. The altered material properties include increased elastic shear modulus, irreversible membrane flow, or even membrane yield, resulting in cell fragmentation. These alterations in turn lead to changes in cellular deformability either as a result of increased membrane rigidity or decreased surface-area-to-volume ratio, secondary to cell fragmentation. As cellular deformability is one of the major parameters that determines red cell life span, skeletal dysfunction leading to decreases in deformability can account for increased red cell destruction in many congenital and hereditary hemolytic anemias.

Anemia, Sickle Cell↗

Association between ratio of matrix metalloproteinase-1 to tissue inhibitor of metalloproteinase-1 and local recurrence, metastasis, and survival in human chondrosarcoma.

Chondrosarcoma, a malignant cartilage-forming mesenchymal tumor, displays a wide range of clinical behavior that can be difficult to predict with histological analysis. Matrix metalloproteinases contribute to the processes of local invasion and metastasis by controlling the ability of a tumor to transverse tissue boundaries. The specificity of matrix metalloproteinase-1 (interstitial collagenase) for fibrillar collagen may be central to those processes. Matrix metalloproteinase-2 facilitates invasion by degradation of such basement-membrane structures as type-IV collagen. The balance between the activity of tissue inhibitors of metalloproteinase and the activity of matrix metalloproteinase determines the proteolytic activity and may, in part, determine the overall invasiveness and potential for metastasis. The measurement of the ratio of matrix metalloproteinase to tissue inhibitor of metalloproteinase may have prognostic value for determining whether individual chondrosarcomas are locally invasive or will metastasize. Furthermore, there may be a specific pattern of expression of matrix metalloproteinase and tissue inhibitor of metalloproteinase in chondrosarcomas that is related to local invasion and probability of metastasis. Sixteen paraffin-embedded archival specimens of tumors were examined. Six twenty-micrometer-thick sections were cut from each tumor, and the amounts of cDNA formed from the mRNA were determined with reverse transcription-polymerase chain reaction with use of novel primers for matrix metalloproteinase-1, matrix metalloproteinase-2, tissue inhibitor of metalloproteinase-1, and tissue inhibitor of metalloproteinase-2. The amounts of cDNA for the matrix metalloproteinases and their inhibitors were determined by chemiluminescence and band densitometry. The ratio of the amount of cDNA for matrix metalloproteinase-1 to that for its tissue inhibitor and the ratio of the amount of cDNA for matrix metalloproteinase-2 to that for its tissue inhibitor were calculated, and the results were compared with use of the Student t test, enabling log-rank analysis of Kaplan-Meier survival curves. These ratios as well as the age and gender of the patient; the grade, size, and location of the tumor; the type of adjuvant therapy; and the operative margins were examined for significance with use of stepwise logistic-regression analysis. The patients who had recurrent disease had a significantly higher (p < 0.003) ratio of matrix metalloproteinase-1 to tissue inhibitor of metalloproteinase-1 (mean, 0.939; range, 0.647 to 1.101) than the patients who were free of disease (mean, 0.703; range, 0.629 to 0.772). Moreover, there was a striking difference between the Kaplan-Meier survival curve associated with a high ratio (more than 0.8) and that associated with a low ratio (p = 0.0015). The mean ratio of matrix metalloproteinase-2 to tissue inhibitor of metalloproteinase-2 was 1.814 (range, 1.206 to 3.77) in the patients who had recurrent disease compared with 1.473 (range, 1.073 to 2.390) in those who were free of disease; this difference was not found to be significant, with the numbers available. Analysis of the survival curves indicated that a worse prognosis was associated with a high ratio, but again this relationship was not found to be significant. Regression analysis revealed that a high ratio of matrix metalloproteinase-1 to its tissue inhibitor was a moderately significant independent predictor of a poor outcome (alpha = 0.07).

Adult↗

The preparation of an enzyme associated with aflatoxin biosynthesis by affinity chromatography.

An affinity matrix for the purification of norsolorinic acid dehydrogenase, an enzyme involved in aflatoxin biosynthesis, was prepared by coupling norsolorinic acid to an agarose gel. This matrix was found to be ineffective in isolating active enzyme, and was therefore modified by methylation, using diazomethane. The methylated matrix produced a one-step purification of the enzyme from a crude homogenate, resulting in a 138-fold purification. The active isolate was found to contain one major and two minor bands upon nondenaturing electrophoresis, and all the norsolorinic acid dehydrogenase activity was associated with the major band. It was concluded that the matrix exhibited true affinity for the enzyme, and that affinity chromatography was a valuable approach to isolating other secondary metabolic enzymes involved in the biosynthesis of the aflatoxins.

Aflatoxins↗

New approaches for the reconstitution and functional assay of membrane transport proteins. Application to the anion transporter of human erythrocytes.

The human red blood cell anion transport protein, band 3, was isolated and reconstituted into lipid vesicles. The main feature of the new reconstitution is the replacement of native lipids and of solubilizing detergent by externally added lipids, while band 3 protein is immobilized on a gel matrix. The vesicles formed upon detergent removal and sonication are unilamellar and sealed, and band 3 protein is the major polypeptide detectable in them. The method consists of: (a) solubilization of alkali-treated red blood cell membranes by Triton X-100; (b) binding of glycophorin and band 3 protein to diethylaminoethyl (DEAE)-cellulose in Triton X-100 solution, followed by high ionic strength elution; (c) band 3 protein complexation to organomercurial Sepharose; (d) exchange of the Triton X-100 with the dialyzable detergent octylglucopyranoside, while band 3 protein is complexed to the column; (e) elution of band 3 by cysteine (5 mM) in the presence of octylglucopyranoside; (f) addition of lipids (asolectin or egg phosphatidylcholine) to the protein-detergent suspension; and (g) dialysis of the mixture against 1% bovine serum albumin to remove the detergent completely. The vesicles were assayed for anion transport capacity by a novel procedure which is based on the fluorescent substrate N-(2-aminoethylsulfonate)7-nitrobenz-2-oxa-1,3-diazole (NBD-taurine) and on anti-NBD-antibodies as quenchers of extravesicular NBD-taurine fluorescence. Efflux of NBD-taurine from vesicles was monitored in a continuous mode as a decrease in intravesicular fluorescence. The band 3-mediated flux was approx. 50% inhibitable by externally added disulfonic stilbenes, indicating the random distribution of band 3 protein in reconstituted vesicles. Both the specific transfer rate (i.e., nmol substrate/mg protein per min) of band 3 and its energy of activation (Ea) in the artificial lipid milieu were similar to those obtained with the native system. Glycophorin incorporation into this milieu had no significant effect on the associated anion transport properties.

Anion Exchange Protein 1, Erythrocyte↗

Characterisation of the rubber elongation factor from ammoniated latex by electrophoresis and mass spectrometry.

Rubber elongation factor (REF) is considered as one of the major allergens present in latex. An extraction and purification protocol for preparation of REF standards has been modified. A protein fraction was extracted from ammoniated latex sap and purified by gel filtration chromatography. The purified and concentrated proteins were separated by sodium dodecylsulfate-polyacrylamide gel electrophoresis into two major bands. These bands were further characterised by matrix-assisted laser desorption/ionisation time-of-flight and nano-electrospray ionization mass spectrometry. REF and a truncated form could be ascertained by the mass and fragmentation pattern of the tryptic peptides. In the faster migrating band an additional peptide could be identified. This peptide is also present in Hevb3 and a Mr 27000 latex allergen. Our findings indicate that conventional REF preparations as standards may contain additional allergenic proteins.

Allergens↗

Laboratory studies of the newly discovered infrared band at 4705.2 cm-1 (2.1253 micrometers) in the spectrum of Io: the tentative identification of CO2.

We discuss over 120 laboratory experiments pertaining to the identification of the new absorption band discovered by Trafton et al. (1991) at 4705.2 cm-1 (2.1253 micrometers) in the spectrum of Io. It is shown that this band is not due to overtones or combinations of the fundamental bands associated with the molecules (or their chemical complexes) already identified on Io, namely, SO2, H2S, and H2O. Thus, this band is due to a new, previously unidentified, component of Io. Experiments also demonstrate that the band is not due to molecular H2 frozen in SO2 frosts. Since the frequency of this band is very close to the first overtone of the nu 3 asymmetric stretching mode of CO2, we have investigated the spectral behavior of CO2 under a variety of conditions appropriate for Io. The profile of the Io band is not consistent with the rotational envelope expected for single, freely rotating, gaseous CO2 under Io-like conditions. It was found that pure, solid CO2 and CO2 intimately mixed in a matrix of solid SO2 and H2S produce bands with similar widths (5-10 cm-1), but that these bands consistently fall at frequencies about 10-20 cm-1 (approximately 0.007 micrometer) lower than the Io band. CO2 in SO2 : H2S ices also produces several additional bands that are not in the Io spectra. The spectral fit improves, however, as the CO2 concentration in SO2 increases, suggesting that CO2-CO2 interactions might be involved. A series of Ar : CO2 and Kr : CO2 matrix isolation experiments, as well as laboratory work done elsewhere, show that CO2 clustering shifts the band position to higher frequencies and provides a better fit to the Io band. Various laboratory experiments have shown that gaseous CO2 molecules have a propensity to cluster between 80 and 100 K, temperatures similar to those found on the colder regions of Io. We thus tentatively identify the newly discovered Io band at 4705.2 cm-1 (2.1253 micrometers) with CO2 multimers or "clusters" on Io. Whether these clusters are buried within an SO2 frost, reside on the surface, or are in a residual, steady-state "atmospheric aerosol" population over local coldtraps is not entirely clear, although we presently favor the latter possibility. The size of these clusters is not well defined, but evidence suggests groups of more than four molecules are required. The absorption strength of the 2 nu 3 CO2 cluster overtone determined in the laboratory, in conjunction with the observed strength of the Io band, suggests that the disk-integrated abundance of CO2 is less than 1% that of the SO2. Studies of the sublimation behavior of CO2 indicate that it probably resides predominantly in the cooler areas (< 100 K) of Io. The relative constancy of the Io feature over a variety of orbital phases suggests that the polar regions may contain much of the material. Some consequences of the physical properties of CO2 under conditions pertinent to Io are discussed. The presence of CO2 clusters on Io could be verified by the detection of any one of several other infrared bands associated with the CO2 molecule, of which the strongest are the nu 3 12CO2 asymmetric stretch fundamental near 2350 cm-1 (4.25 micrometers) and the nu 2 bending mode fundamental near 660 cm-1 (15.1 micrometers). Weaker bands that may also be detectable include the nu 3 13CO2 asymmetric stretch fundamental near 2280 cm-1 (4.39 micrometers), the 2 nu 2 + nu 3 combination/overtone band near 3600 cm-1 (2.78 micrometers), and the nu 1 + nu 3 combination band near 3705 cm-1 (2.70 micrometers).

Astronomical Phenomena↗

Nuclear matrix of the lower eukaryote Physarum polycephalum and the mammalian epithelial LLC-PK1 cell line. A comprehensive investigation of different preparation procedures.

Agarose-encapsulated nuclear matrix preparations of the lower eukaryote Physarum polycephalum and the mammalian renal epithelial LLC-PK1 cell line were analyzed after various experimental protocols with respect to the protein composition. The effect of the mode of deproteinization (2 M NaCl, 0.25 M ammonium sulfate or 25 mM lithium diiodosalicylate), presence of 2-mercaptoethanol, Ca2+, Cu2+, chelating agents, the sequence of protein extraction and nuclease digestion, the use of RNase, the temperature at which the experimental manipulations were performed and the use of hypotonic or isotonic conditions was investigated. No significant differences in the final nuclear matrix composition could be observed, regardless of the experimental procedure applied. In Physarum, the major nuclear matrix proteins range over 12-70 kDa with prominent bands at 24, 31, 37 and 45 kDa; the proteins of the matrix in LLC-PK1 cells extend predominantly over 40-80 kDa. Furthermore, no essential differences in the protein composition could be observed when type I and type II nuclear matrices from the highly differentiated LLC-PK1 cell line were compared. The same was found for analogous matrix preparations of Physarum. Therefore, in both systems a distinction between type I/II matrix is questionable. Immunoblotting of the matrix preparations with a variety of antibodies against intermediate filament proteins and with antinuclear autoantibodies revealed the presence of intermediate filament proteins as components of the nuclear matrix. We conclude that the nuclear matrix represents a much more stable and reproducible structure than has been proposed so far, largely independent of changes in the preparation protocol.

Animals↗

Vector k small middle dotp approach for photonic band structures

We point out that k small middle dotp treatments of photonic band gap materials based on the usual master equation must employ not only the physical photonic band solutions of that equation, but also unphysical solutions, in order to form a complete set. Nonetheless, it is possible to construct correct k small middle dotp expressions for the group velocity and its dispersion in terms of matrix elements involving only the photonic band solutions.

Journal Article↗

Deposition and ultrastructural organization of collagen and proteoglycans in the extracellular matrix of gel-cultured fibroblasts.

Human skin fibroblasts were cultivated within the three-dimensional space of polymerized alginate and collagen, respectively. The in vitro synthesis of collagens and proteoglycans was measured during the first 3 days of culture, and the deposition as well as the ultrastructural organization of newly synthesized extracellular matrix components were examined by electron microscopy. The amount of collagens and proteoglycans synthesized by fibroblasts, embedded in calcium alginate gels as well as in collagen lattices, was lowered as compared to monolayer cultures. Furthermore, it was found that collagen synthesis was reduced to a greater extent in alginate gels than in collagen lattices. On the contrary, total proteoglycan biosynthesis was similarly reduced either in alginate gels or in collagen lattices. At the end of a 3-day-culture period, filamentous material as well as cross-striated banded structures were found extracellularly in the alginate gel. According to their periodicity, their banding pattern, their association with polyanionic matrix components and their sensitivity towards glycosaminoglycan-degrading enzymes we could distinguish (1) sheets of amorphous non-banded material consisting of irregularly arranged filaments and containing dermatan sulfate-rich proteoglycans (type I structures), (2) sheets of long-spacing fibrils consisting of parallel orientated filaments and containing chondroitin sulfate-rich proteoglycans (= zebra bodies; type II structures), and (3) fibrillar structures with a complex banding pattern different from that of native collagen fibrils (type III structures). In fibroblasts cultured in collagen lattices, we only sporadically found depositions which are identified as type I structures. Using indirect immunoelectron microscopy and monospecific polyclonal antibodies, we localized type VI collagen in type I structures and type II structures. Type III structures can be identified as type I collagen derived as becomes obvious by comparison with segment long spacing crystallites of type I collagen.

Alginates↗

Characterisation of corneal fibrotic wound repair at the LASIK flap margin.

AIM: To characterise temporal changes in corneal wound repair at the LASIK flap margin. METHODS: 18 rabbits received monocular LASIK and were evaluated during 6 months using slit lamp and in vivo confocal microscopy. In three corneas, the exposed stroma was stained with DTAF. At various time points, corneas were processed for histology and stained for nuclei, f-actin, ED-A fibronectin, alpha-smooth muscle actin, TGF-beta1, TGF-beta2, TGF-beta receptor II, and CTGF. RESULTS: At day 1, leucocytes migrated from the conjunctival vessels into the cornea. Near the limbus, the leucocytes were organised in long chains stretching towards the flap edge. From day 4, elongated fibroblasts migrated from the periphery to align in a circumferential band (approximately 250 microm wide) next to the flap edge. The lateral extension of this stromal band was delimited by the incisional gap in the epithelial basement membrane. TGF-beta1, TGF-beta2, TGF-beta receptor II, and CTGF were expressed in the band from day 2. Myofibroblasts were identified at week 3 and over time a 50 microm thick layer of fibrotic matrix was deposited. Concurrently, the peripheral circumferential band became narrower (width decreasing to 33% (SD 7%) at 4 months; n = 5) and showed an increased organisation with a gradual decline in reflectivity. At all time points, keratocytes within and below the flap remained quiescent and only minimal fibrosis developed at the interface. CONCLUSIONS: Fibrotic wound repair following LASIK is restricted to a narrow band peripheral to the corneal flap edge. The lateral extension of the fibrosis is sharply delimited by the incisional gap in the epithelial basement membrane. The fibrotic wound healing at the LASIK flap margin is associated with myofibroblast transformation and wound contraction and involves a TGF-beta signalling pathway.

Actins↗

The physical and infrared spectral properties of CO2 in astrophysical ice analogs.

Both laboratory measurements and theory indicate that CO2 should be a common component in interstellar ices. We show that the exact band position, width, and profile of the solid-state 12CO2 infrared bands near 3705, 3600, 2340, and 660 cm-1 (2.70, 2.78, 4.27, and 15.2 micrometers) and the 13CO2 band near 2280 cm-1 (4.39 micrometers) are dependent on the matrix in which the CO2 is frozen. Measurements of these bands in astronomical spectra can be used to determine column densities of solid-state CO2 and provide important information on the physical conditions present in the ice grains of which the CO2 is a part. Depending on the composition of the ice, the CO2 asymmetric stretching band was observed to vary from 2328.7 to 2346.0 cm-1 and have full widths at half-maxima (FWHMs) ranging from 4.7 to 29.9 cm-1. The other CO2 bands showed similar variations. Both position and width are also concentration dependent. Absorption coefficients were determined for the five CO2 bands. These were found to be temperature independent for CO2 in CO and CO2 matrices but varied slightly with temperature for CO2 in H2O-rich ices. For all five bands this variation was found to be less than 15% from 10 to 150 K, the temperature at which H2O ice sublimes. A number of parameters associated with the physical behavior of CO2 in CO2- and H2O-rich ices were also determined. The CO2-CO2 surface binding energy in pure CO2 ices is found to be (delta Hs/k) = 2690 +/- 50 K. CO2-H2O and CO-H2O surface binding energies were determined to be (delta Hs/k) = 2860 +/- 200 K and 1740 +/- 100 K, respectively. Under our experimental conditions, CO2 condenses in measurable quantities into H2O-rich ices at temperatures up to 100 K, only slightly higher than the temperature at which pure CO2 condenses. Once frozen into an H2O-rich ice, the subsequent loss of CO2 upon warming is highly dependent on concentration. For ices with H2O/CO2 > 20, the CO is physically trapped within the H2O lattice, and little CO2 is lost until the sublimation temperature of the H2O matrix is reached. In contrast, in ices having H2O/CO2 < 5, the CO2 remains only to temperatures of about 90 K. Above this point the CO2 readily diffuses out of the H2O matrix. These results suggest that two different forms of H2O lattice are produced. The implications of these data for cometary models and our understanding of cometary formation are considered.

Astronomical Phenomena↗

Microstructure controlled shear band pattern formation and enhanced plasticity of bulk metallic glasses containing in situ formed ductile phase dendrite dispersions

Results are presented for a ductile metal reinforced bulk metallic glass matrix composite based on glass forming compositions in the Zr-Ti-Cu-Ni-Be system. Primary dendrite growth and solute partitioning in the molten state yields a microstructure consisting of a ductile crystalline Ti-Zr-Nb beta phase, with bcc structure, in a Zr-Ti-Nb-Cu-Ni-Be bulk metallic glass matrix. Under unconstrained mechanical loading organized shear band patterns develop throughout the sample. This results in a dramatic increase in the plastic strain to failure, impact resistance, and toughness of the metallic glass.

Journal Article↗

Topography of clonidine-induced electroencephalographic changes evaluated by principal component analysis.

BACKGROUND: Principal component analysis is a multivariate statistical technique to facilitate the evaluation of complex data dimensions. In this study, principle component analysis was used to reduce the large number of variables from multichannel electroencephalographic recordings to a few components describing changes of spatial brain electric activity after intravenous clonidine. METHODS: Seven healthy volunteers (age, 26 +/- 3 [SD] yr) were included in a double-blind crossover study with intravenous clonidine (1.5 and 3.0 microg/kg). A spontaneous electroencephalogram was recorded by 26 leads and quantified by standard fast Fourier transformation in the delta, theta, alpha, and beta bands. Principle component analysis derived from a correlation matrix calculated between all electroencephalographic leads (26 x 26 leads) separately within each classic frequency band. The basic application level of principle component analysis resulted in components representing clusters of electrodes positions that were differently affected by clonidine. Subjective criteria of drowsiness and anxiety were rated by visual analog scales. RESULTS: Topography of clonidine-induced electroencephalographic changes could be attributed to two independent spatial components in each classic frequency band, explaining at least 85% of total variance. The most prominent effects of clonidine were increases in the delta band over centroparietooiccipital areas and decreases in the alpha band over parietooccipital regions. Clonidine administration resulted in subjective drowsiness. CONCLUSIONS: Data from the current study supported the fact that spatial principle component analysis is a useful multivariate statistical procedure to evaluate significant signal changes from multichannel electroencephalographic recordings and to describe the topography of the effects. The clonidine-related changes seen here were most probably results of its sedative effects.

Adult↗