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11.
Angelov  I. Zirath  H. 《Electronics letters》1992,28(2):140-142
A new large signal model for HEMTs, capable of modelling the current-voltage characteristic and its derivatives, including the characteristic transconductance peak, is described. Model parameter extraction is straightforward and is made for a submicrometre gatelength delta -doped pseudomorphic HEMT. Measured and modelled DC and S-parameters are compared.<>  相似文献   
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An adeno-associated virus (AAV) vector, expressing genes for human tyrosine hydroxylase (TH) and aromatic amino acid decarboxylase (AADC), demonstrated significantly increased production of dopamine in 293 (human embryonic kidney) cells. This bicistronic vector was used to transduce striatal cells of six asymptomatic but dopamine-depleted monkeys which had been treated with the neurotoxin MPTP. Striatal cells were immunoreactive for the vector-encoded TH after stereotactic injection for periods up to 134 days, with biochemical effects consistent with dopamine biosynthetic enzyme expression. A subsequent experiment was carried out in six more severely depleted and parkinsonian monkeys. Several TH/aadc-treated monkeys showed elevated levels of dopamine near injection tracts after 2.5 months. Two monkeys that received a beta-galactosidase expressing vector showed no change in striatal dopamine. Behavioral changes could not be statistically related to the vector treatment groups. Toxicity was limited to transient fever in several animals and severe hyperactivity in one animal in the first days after injection with no associated histological evidence of inflammation. This study shows the successful transfection of primate neurons over a period up to 2.5 months with suggestive evidence of biochemical phenotypic effects and without significant toxicity. While supporting the idea of an in vivo gene therapy for Parkinson's disease, more consistent and longer lasting biochemical and behavioral effects will be necessary to establish the feasibility of this appraoch in a primate model of parkinsonism.  相似文献   
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A messenger-independent ser/thr casein kinase, p45 casein kinase (p45 CK), was purified to homogeneity from bovine brain. The enzyme is specific for ATP with a Km value of 3.50 microM, one of the lowest values identified for protein kinases, p45 casein kinase is active over broad NaCl concentrations from 30 to 300 mM. The enzyme activity is inhibited by polylysine, spermine, transition metal ions, ADP, and AMP. The kinase completely lost its activity in the presence of 1 mM p-chloromercuric benzoate in a reaction that is reversed by 1 mM dithiothreitol. The enzyme prefers serine over threonine in its substrate bradykinin, the Vmax/Km ratio for the serine peptide (RPPGFSPFR) being 7.5-fold higher than for the threonine analog (RPPGFTPFR). Assays, performed by utilizing synthetic peptides, suggest that p45 CK prefers serine/threonine residues with a proline residue immediately carboxy-terminal to the site of phosphorylation. Distinction between p45 CK and other protein kinases found to contain a proline residue within their substrate recognition sites can be made based on phosphorylation site specificity and chromatographic and biochemical behavior. It is concluded that p45 CK is a proline-directed protein kinase recognizing the sequence X-Ser/Thr-Pro-X or Ser/Thr-Pro-X.  相似文献   
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The possibility for a direct preparation of ionic potassium—coal adduct is shown, from finely ground low-volatile bituminous coal (89.2% C) and metallic potassium with stirring at 120 °C and a vacuum of 13 mPa. The treatment of the adduct dispersed in THF with CH3l results in reductive methylation of the coal, similar to that of the ‘coal anion’, obtained in THF during its interaction with potassium—naphthalene.  相似文献   
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This letter presents the design and characterization of a 220 GHz microstrip single-chip receiver monolithic microwave integrated circuit (MMIC) with an integrated antenna in a 0.1 mum GaAs metamorphic high electron mobility transistor technology. The receiver MMIC consists of a novel slot-square substrate lens feed antenna, a three-stage low noise amplifier, and a sub-harmonically pumped resistive mixer. The receiver MMIC is mounted on a 12 mm silicon substrate lens which focuses the radiation from the calibration loads to the on-chip antenna through an opening in the backside metallization of the MMIC. The double sideband noise figure of this quasioptical receiver is as low as 8.4 dB (1750 K) at 220 GHz including the losses in the antenna and in the lens. To the best of the authors' knowledge, this work demonstrates the highest integration level versus operating frequency for a MMIC ever published, regardless of technology.  相似文献   
17.
Lipids and lipopolymers self-assembled into biocompatible nano- and mesostructured functional materials offer many potential applications in medicine and diagnostics. In this Account, we demonstrate how high-resolution structural investigations of bicontinuous cubic templates made from lyotropic thermosensitive liquid-crystalline (LC) materials have initiated the development of innovative lipidopolymeric self-assembled nanocarriers. Such structures have tunable nanochannel sizes, morphologies, and hierarchical inner organizations and provide potential vehicles for the predictable loading and release of therapeutic proteins, peptides, or nucleic acids. This Account shows that structural studies of swelling of bicontinuous cubic lipid/water phases are essential for overcoming the nanoscale constraints for encapsulation of large therapeutic molecules in multicompartment lipid carriers. For the systems described here, we have employed time-resolved small-angle X-ray scattering (SAXS) and high-resolution freeze-fracture electronic microscopy (FF-EM) to study the morphology and the dynamic topological transitions of these nanostructured multicomponent amphiphilic assemblies. Quasi-elastic light scattering and circular dichroism spectroscopy can provide additional information at the nanoscale about the behavior of lipid/protein self-assemblies under conditions that approximate physiological hydration. We wanted to generalize these findings to control the stability and the hydration of the water nanochannels in liquid-crystalline lipid nanovehicles and confine therapeutic biomolecules within these structures. Therefore we analyzed the influence of amphiphilic and soluble additives (e.g. poly(ethylene glycol)monooleate (MO-PEG), octyl glucoside (OG), proteins) on the nanochannels' size in a diamond (D)-type bicontinuous cubic phase of the lipid glycerol monooleate (MO). At body temperature, we can stabilize long-living swollen states, corresponding to a diamond cubic phase with large water channels. Time-resolved X-ray diffraction (XRD) scans allowed us to detect metastable intermediate and coexisting structures and monitor the temperature-induced phase sequences of mixed systems containing glycerol monooleate, a soluble protein macromolecule, and an interfacial curvature modulating agent. These observed states correspond to the stages of the growth of the nanofluidic channel network. With the application of a thermal stimulus, the system becomes progressively more ordered into a double-diamond cubic lattice formed by a bicontinuous lipid membrane. High-resolution freeze-fracture electronic microscopy indicates that nanodomains are induced by the inclusion of proteins into nanopockets of the supramolecular cubosomic assemblies. These results contribute to the understanding of the structure and dynamics of functionalized self-assembled lipid nanosystems during stimuli-triggered LC phase transformations.  相似文献   
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Silicon ion implantation effects on the optical and photoluminescence (PL) properties of polymethyl–methacrylate (PMMA) have been studied. Low-energy ion implantation (E = 30–50 keV) was carried out over a range of different ion fluences (D = 1013–1017 cm?2). Visible PL and optical transmission spectra in the range (330–800 nm) have been measured. The existing visible range PL emission in the unimplanted PMMA samples is clearly affected by the Si+ ion implantation and the observed modification effect of photoluminescence enhancement (PLE) is essentially dependent on the implantation fluence. For certain fluences, dependent on the ion energy, the overall amplitude of the PL emission has a several times (~5 times) increase. Optical absorption also gradually increases with the fluence.  相似文献   
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