Streltsov
Alexander Streltsov, Chandler, AZ US
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20100186449 | HERMETICALLY SEALED GLASS PACKAGE AND METHOD OF FABRICATION - A hermetically sealed glass package and method for manufacturing the hermetically sealed glass package are described herein using an OLED display as an example. In one embodiment, the hermetically sealed glass package is manufactured by providing a first substrate plate and a second substrate plate. The second substrate contains at least one transition or rare earth metal such as iron, copper, vanadium, manganese, cobalt, nickel, chromium, neodymium and/or cerium. A sensitive thin-film device that needs protection is deposited onto the first substrate plate. A laser is then used to heat the doped second substrate plate in a manner that causes a portion of it to swell and form a hermetic seal that connects the first substrate plate to the second substrate plate and also protects the thin film device. The second substrate plate is doped with at least one transition metal such that when the laser interacts with it there is an absorption of light from the laser in the second substrate plate, which leads to the formation of the hermetic seal while avoiding thermal damage to the thin-film device. Another embodiment of the hermetically sealed glass package and a method for manufacturing that hermetically sealed glass package are also described herein. | 07-29-2010 |
Alexander Streltsov, Corming, NY US
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20080290077 | Separation of transparent glasses and systems and methods therefor - Disclosed are systems and methods for cutting one or more glass sheets. A system is provided comprising a first mirror having a first reflective surface and a second reflective surface that is spaced from and opposes the first reflective surface to define a cavity between the mirrors. An aperture can be defined in the first mirror. Furthermore, a laser beam can be provided that is configured to emit a beam through the aperture into the cavity. Beams reflected in the cavity, in one aspect, define a common focus point through which the glass sheet can be translated to cause the cutting of the glass sheets. A means for translating the glass sheet through the cavity is provided, in one aspect. | 11-27-2008 |
Victor Streltsov, Victoria AU
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20090148438 | Binding Moieties Based on Shark Ignar Domains - The present invention relates to immunoglobulin new antigen receptors (IgNARs) from fish and uses thereof. In particular, the present invention relates to modified IgNAR variable domains and to domains from members of the immunoglobulin superfamily that have been modified to include structural features derived from IgNAR variable domains. | 06-11-2009 |
Victor Streltsov, Templestowe AU
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20120003214 | Binding Moieties Based On Shark IgNAR Domains - The present invention relates to immunoglobulin new antigen receptors (IgNARs) from fish and uses thereof. In particular, the present invention relates to modified IgNAR variable domains and to domains from members of the immunoglobulin superfamily that have been modified to include structural features derived from IgNAR variable domains. | 01-05-2012 |
Victor Anatolievich Streltsov, Victoria AU
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20110269938 | AMYLOID-BETA PEPTIDE CRYSTAL STRUCTURE - The invention relates provides a novel crystal structure of the fibrillogenic part of amyloid β-peptide (Aβ). More specifically the crystal structure is Aβ-IgNAR and, accordingly the present invention also relates to selecting and/or designing compounds that modulate amyloid β-peptide (Aβ) activity using techniques such as in silico screening and crystal soaking experiments. The invention further relates to compounds and methods for inhibiting interaction between amyloid β-peptide (Aβ) monomers, more particularly, inhibiting or disrupting amyloid β-peptide (Aβ) oligomer formation and toxic activity. | 11-03-2011 |
Victor Anatolievich Streltsov, Templestowe AU
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20140039155 | AMYLOID-BETA PEPTIDE CRYSTAL STRUCTURE - The invention relates provides a novel crystal structure of the fibrillogenic part of amyloid β-peptide (Aβ). More specifically the crystal structure is Aβ-IgNAR and, accordingly the present invention also relates to selecting and/or designing compounds that modulate amyloid β-peptide (Aβ) activity using techniques such as in silico screening and crystal soaking experiments. The invention further relates to compounds and methods for inhibiting interaction between amyloid β-peptide (Aβ) monomers, more particularly, inhibiting or disrupting amyloid β-peptide (Aβ) oligomer formation and toxic activity. | 02-06-2014 |