176 research outputs found
Solid-state diffusion reaction and formation of intermetallic compounds in the nickel-zirconium system
Chemical diffusion studies in the nickel-zirconium system are investigated in the temperature range of 1046 to 1213 K employing diffusion couples of pure nickel and pure zirconium. Electron microprobe and X-ray diffraction studies have been employed to investigate the formation of different compounds and to study their layer growth kinetics in the diffusion zone. It is observed that growth of each phase is controlled by the process of volume diffusion as the layer growth obeys the parabolic law. The activation energies for interdiffusion in NiZr and NiZr2, which are the dominant phases in the diffusion zone, are 119.0 ±13.4 and 103.0 ±25.0 kJ/ mole, respectively. The formation and stability of compounds over the temperature range have been discussed on the basis of existing thermodynamic and kinetic data
Low temperature deformation behaviour of ASTM A-203D nuclear structural steel
The steel A-203D in martensitic, tempered martensitic and ferritic-pearlitic microstructural conditions, was deformed in tension at temperatures between 77 to 300 K and at a strain rate of 6.67×10-5 sec-1. The thermal component of the flow stress and the activation parameters were measured as a function of temperature. It was observed that the microstructure did not affect either the thermal part of the flow stress (σ*) or the activation parameters (V* and ΔH) and that its effect was felt only on the athermal component (σμ) of the flow stress. Further the relations of the activation parameters with stress, strain and temperature were found to be consistent with Dorn-Rajnak theory of Peierls mechanism of plastic deformation. In addition measurements of slow-bend and impact transition were also carried out for ferritic-pearlitic structure. Based on these observations, it is shown that the impact transition temperature of this structure can be emperically correlated with the thermal activation parameters
On the continuous emission spectra associated with electric discharges through flowing vapours of SnCl<SUB>2</SUB>, SnCl<SUB>4</SUB> and SiCl<SUB>4</SUB>
From the experimental conditions under which the spectra are obtained it is assumed that they are due to molecular radiation. Thermochemical and spectrascopic data enable one to illustrate the relation among the energy levels of the various systems in the formation of the multi-atomic molecules from their constituent atoms. Such simplified Franck-Condon diagrams are constructed for SnCl4(which includes SnCl2) and SiCl4. An interpretation, uniform in all cases, of the observed continuous bands in terms of the transitions among the energy levels, transitions, which of course involve a repulsive state for their final level, is suggested
Determination of the characteristic directions of lossless linear optical elements
We show that the problem of finding the primary and secondary characteristic
directions of a linear lossless optical element can be reformulated in terms of
an eigenvalue problem related to the unimodular factor of the transfer matrix
of the optical device. This formulation makes any actual computation of the
characteristic directions amenable to pre-implemented numerical routines,
thereby facilitating the decomposition of the transfer matrix into equivalent
linear retarders and rotators according to the related Poincare equivalence
theorem. The method is expected to be useful whenever the inverse problem of
reconstruction of the internal state of a transparent medium from optical data
obtained by tomographical methods is an issue.Comment: Replaced with extended version as published in JM
Accuracy and repeatability of wrist joint angles in boxing using an electromagnetic tracking system
© 2019, The Author(s). The hand-wrist region is reported as the most common injury site in boxing. Boxers are at risk due to the amount of wrist motions when impacting training equipment or their opponents, yet we know relatively little about these motions. This paper describes a new method for quantifying wrist motion in boxing using an electromagnetic tracking system. Surrogate testing procedure utilising a polyamide hand and forearm shape, and in vivo testing procedure utilising 29 elite boxers, were used to assess the accuracy and repeatability of the system. 2D kinematic analysis was used to calculate wrist angles using photogrammetry, whilst the data from the electromagnetic tracking system was processed with visual 3D software. The electromagnetic tracking system agreed with the video-based system (paired t tests) in both the surrogate ( 0.9). In the punch testing, for both repeated jab and hook shots, the electromagnetic tracking system showed good reliability (ICCs > 0.8) and substantial reliability (ICCs > 0.6) for flexion–extension and radial-ulnar deviation angles, respectively. The results indicate that wrist kinematics during punching activities can be measured using an electromagnetic tracking system
A novel role for syndecan-3 in angiogenesis.
Syndecan-3 is one of the four members of the syndecan family of heparan sulphate proteoglycans and has been shown to interact with numerous growth factors via its heparan sulphate chains. The extracellular core proteins of syndecan-1,-2 and -4 all possess adhesion regulatory motifs and we hypothesized that syndecan-3 may also possess such characteristics. Here we show that a bacterially expressed GST fusion protein consisting of the entire mature syndecan-3 ectodomain has anti-angiogenic properties and acts via modulating endothelial cell migration. This work identifies syndecan-3 as a possible therapeutic target for anti-angiogenic therapy.This work was funded by Arthritis Research-UK (Grant No. 19207) and funds from the William Harvey Research Foundation both to JRW
Specific Syndecan-1 Domains Regulate Mesenchymal Tumor Cell Adhesion, Motility and Migration
Malignant mesothelioma is an asbestos induced cancer that is difficult to diagnose.
Several studies have combined biomarkers to improve mesothelioma diagnosis, but
with moderate success, and there is a need for new mesothelioma biomarkers. The
tumour is often resistant to treatment and most patients will survive less than a year.
An indicator of patient survival is the tumours growth pattern, which in turn is
influenced by expressed proteoglycans.
In this thesis work, we aim to improve the possibilities to diagnose malignant
mesothelioma by combining biomarkers and by identifying new ones. We also
investigate tumour driving mechanisms with focus on one of these suggested
biomarkers, the cell-bound proteoglycan syndecan-1.
We were able to construct a diagnostic two-step model based on biomarkers in patient
material. By implementing a cut-off level and thereafter focusing on unresolved patients
we combined hyaluronan and N-ERC/mesothelin (paper I), which significantly increased
the diagnostic accuracy for malignant mesothelioma. To further improve diagnosis, we
used mass spectrometry to find new biomarkers. We identified and validated galectin-1,
which was excellent in discriminating mesotheliomas from adenocarcinomas (paper II).
In the same study, we were also the first to describe aldo-keto reductase 1B10 as a
novel prognostic mesothelioma biomarker.
Syndecan-1 has been indicated as a marker for carcinomas. In paper I we describe how
higher levels of syndecan-1 indicate the presence of a carcinoma over a mesothelioma.
This was verified in paper II when syndecan-1 was identified as downregulated in fluids
from mesothelioma patients compared to lung cancer patients. Paper III and paper IV
focus on this proteoglycan.
Malignant cell lines transfected with syndecan-1 and various truncated forms of
syndecan-1 affected adhesion and migration, which are key features of cancer invasion
(paper III). The results showed a domain- and cell type specific effect on the cells’
motility. Regulating syndecan-1 levels and analysing the global gene expression of
mesothelioma cells made it evident that this proteoglycan has a strong influence on
transforming growth factor β signalling and several growth factor pathways (paper IV).
Links to cell migration and proliferation were furthermore identified, along with
glycosaminoglycan modifying enzymes. These results can shed light on the complex role
of syndecan-1 in invasion and growth of malignant mesenchymal cells.
Taken together, this thesis work describes a complement to conventional mesothelioma
diagnosis and identifies novel biomarkers. Furthermore, the potential biomarker
syndecan-1 was shown to have an effect on cell motility and proliferation. These results
increase our understanding of this aggressive malignancy
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