Dersch
Erik Dersch, Fitchburg, WI US
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20080256667 | METHOD OF MERISTEM EXCISION AND TRANSFORMATION - The present invention relates to excision of explant material comprising meristematic tissue from cotton seeds. Methods for tissue preparation, storage, transformation, and selection or identification of transformed plants are disclosed, as are transformable meristem tissues and plants produced by such methods, and apparati for tissue preparation. | 10-16-2008 |
20080280361 | PREPARATION AND USE OF PLANT EMBRYO EXPLANTS FOR TRANSFORMATION - The present invention relates to excision of explant material comprising meristematic tissue from seeds, and storage of such material prior to subsequent use in plant tissue culture and genetic transformation. Methods for tissue preparation, storage, and transformation are disclosed, as is transformable meristem tissue produced by such methods, and apparati for tissue preparation. | 11-13-2008 |
20130185830 | METHOD OF MERISTEM EXCISION AND TRANSFORMATION - The present invention relates to excision of explant material comprising meristematic tissue from cotton seeds. Methods for tissue preparation, storage, transformation, and selection or identification of transformed plants are disclosed, as are transformable meristem tissues and plants produced by such methods, and apparati for tissue preparation. | 07-18-2013 |
20150121574 | METHOD OF MERISTEM EXCISION AND TRANSFORMATION - The present invention relates to excision of explant material comprising meristematic tissue from cotton seeds. Methods for tissue preparation, storage, transformation, and selection or identification of transformed plants are disclosed, as are transformable meristem tissues and plants produced by such methods, and apparati for tissue preparation. | 04-30-2015 |
Erik D. Dersch, Fitchburg, WI US
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20130198899 | PREPARATION AND USE OF PLANT EMBRYO EXPLANTS FOR TRANSFORMATION - The present invention relates to excision of explant material comprising meristematic tissue from seeds, and storage of such material prior to subsequent use in plant tissue culture and genetic transformation. Methods for tissue preparation, storage, and transformation are disclosed, as is transformable meristem tissue produced by such methods, and apparati for tissue preparation. | 08-01-2013 |
20150184170 | PREPARATION AND USE OF PLANT EMBRYO EXPLANTS FOR TRANSFORMATION - The present invention relates to excision of explant material comprising meristematic tissue from seeds, and storage of such material prior to subsequent use in plant tissue culture and genetic transformation. Methods for tissue preparation, storage, and transformation are disclosed, as is transformable meristem tissue produced by such methods, and apparati for tissue preparation. | 07-02-2015 |
Joseph M. Dersch, Maryland Heights, MO US
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20100061057 | HOT AISLE CONTAINMENT PANEL SYSTEM AND METHOD - An air containment system includes a plurality of panel assemblies configured to be arranged in side-to-side relation to form a ceiling. In one embodiment, each panel assembly includes a flexible panel having a first end, a second opposite end, a first side and a second opposite side, a first end connector configured to secure the first end of the flexible panel to one of a rack and a wall, and a second end connector configured to secure the second end of the flexible panel to one of a rack and a wall. Other embodiments of the air containment system and related methods are further disclosed. | 03-11-2010 |
Joshua Dersch, Lynnwood, WA US
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20120127512 | BRANCH OFFICE DIRECT PRINTING - Methods and apparatus for printing by a client computer reduce network usage and print delay, while performing print configuration and management at a centralized print server. The print server controls enablement of a branch office printing mode. When the branch office printing mode is enabled, the client computer sends spooled print data directly to a selected printer in the branch office. When the branch office printing mode is disabled, the client computer sends the spooled print data to the centralized print server, and the print server routes the print data to the selected printer. The print server performs configuration and management functions for the client computer in both operating modes. The print server may enable and disable the branch office printing mode on a per queue basis. | 05-24-2012 |
Joshua A. Dersch, Lynnwood, WA US
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20120307288 | PRINTING USING A PLATFORM-INDEPENDENT DRIVER - In one or more embodiments, a print server can publish, to client devices, capabilities and configurations of one or more print devices utilizing a device-independent “personality.” Client devices can then use an associated device-independent print driver to select print job settings and record print job content for a particular print job, in a device-independent format, that is then to be sent to the print server. The print server can then process the device-independent format that describes the print job, and convert the print job into a print device-specific format that can be consumed by a particular specific print device. In at least some embodiments, the client device can cause a print job to be printed on a print device, via a print server, without downloading, utilizing or otherwise accessing a print driver that is specific to the print device. | 12-06-2012 |
Joshua A. Dersch, Redmond, WA US
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20080301548 | METHOD AND SYSTEM FOR LAYING OUT PAGINATED CONTENT FOR VIEWING - CONTINUATION - A method and system in a document viewing control for laying out an invisible page grid based on various criteria, including whether the pages of a document are fixed, contain reflowable content, whether the fixed pages are all the same size, and where the user has actively focused a page when a new layout needs to be generated, which may be anytime a user changes the number of pages to display. Upon such a change, a mechanism determines page sizes based on whether the focused page has flow or fixed content. A layout mechanism computes the grid based on the number of pages (columns) to display across. For documents with mixed-sized and/or mixed flow and fixed pages, rows of the grid are determined from the active page to the start of the document, and from the active page's row to the end of the document. The grid provides consistent viewing results. | 12-04-2008 |
Lisa Dersch, Braunschweig DE
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20150309038 | METHOD AND DEVICE FOR MARKING ISOTOPES - The present invention relates to an isotope labeling chamber for labeling metabolites in an organism, comprising a reactor chamber ( | 10-29-2015 |
Roland Dersch, Marburg DE
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20090130301 | APPARATUS AND METHOD FOR PRODUCING ELECTRICALLY CONDUCTING NANOSTRUCTURES BY MEANS OF ELECTROSPINNING - Apparatus and method for producing electrically conducting nanostructures by means of electrospinning, the apparatus having at least a substrate holder ( | 05-21-2009 |
20110293846 | METHOD FOR COATING TARGET SURFACES IN THE FORM OF DIELECTRIC SUBSTANCES OR FERROELECTRIC CRYSTALS - The invention relates to supports consisting of nanoscalar polymer fibres, polymer tubes or hollow fibres for the application and targeted and/or delayed release of ingredients, in particular, agricultural active ingredients. The invention also relates to a method and a device for the production of supports of this type in a charged or empty state. The method and device use electrospinning technology. | 12-01-2011 |
20110300251 | DEVICE FOR THE EXECUTION OF THE OUTPUT OF NANOSCALED POLYMER FIBERS - Carriers for the production and targeted and/or delayed release, particularly of agricultural active substances, as well as a method for the output and a device for the production of such carriers in a loaded or unloaded state are proposed. The method and the device use the technology of electrospinning. | 12-08-2011 |
20110300383 | NANOSCALED POLYMER FIBERS - The invention relates to supports consisting of nanoscalar polymer fibres, polymer tubes or hollow fibres for the application and targeted and/or delayed release of ingredients, in particular, agricultural active ingredients. The invention also relates to a method and a device for the production of supports of this type in a charged or empty state. The method and device use electrospinning technology. | 12-08-2011 |
Rolf Dersch, Neustadt DE
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20080262145 | Aqueous Coating Composition With Low Voc Content - The present invention aqueous coating compositions comprising | 10-23-2008 |
20080275165 | Aqueous Binder Composition - The present invention relates to an aqueous binder composition comprising | 11-06-2008 |
20100267886 | USE OF HIGHLY BRANCHED POLYMERS IN POLYMER DISPERSIONS FOR GLOSS COLOURS - The present invention relates to a method of producing coatings with increased gloss, to aqueous coating materials for such a method, and to the use of highly branched polymers as an additive for aqueous polymer dispersions for coating materials that lead to coatings having increased gloss. | 10-21-2010 |
20100286325 | LOW-VOC AQUEOUS HYBRID BINDERS - The present invention relates to aqueous binder compositions obtainable by emulsion polymerization of | 11-11-2010 |
20110144258 | USE OF AQUEOUS HYBRID BINDERS FOR GLOSS PAINTS - The present invention relates to the use of aqueous hybrid binders for producing coating compositions, more particularly in high-gloss coating materials (high-gloss paints), and also to a process for their preparation with low residual monomer content. | 06-16-2011 |
20110237736 | AQUEOUS BINDER COMPOSITION COMPRISING OLIGOMERS - The present invention relates to an aqueous binder composition comprising: | 09-29-2011 |
20130172483 | USE OF AQUEOUS POLYMER DISPERSIONS FOR IMPROVING RESISTANCE TO CHEMICAL INFLUENCES - Coating compositions containing an aqueous polymer dispersion having improved resistance toward chemicals. The aqueous polymer dispersion is prepared by polymerizing a first composition containing at least one ethylenically unsaturated group (monomers) by radical aqueous emulsion polymerization and then, in the presence of a product mixture from the previous polymerization, polymerizing a second composition containing at least one ethylenically unsaturated group (monomers) by radical aqueous emulsion polymerization. The coating compositions are such that the difference between a glass transition temperature of a polymer prepared from the first polymerization and a glass transition temperature of a polymer prepared from the second polymerization is at least 50° C. | 07-04-2013 |
20140107249 | AQUEOUS EMULSION POLYMERS, THEIR PREPARATION AND USE - The present invention provides aqueous emulsion polymers comprising | 04-17-2014 |
Ronald Dersch, Marburg DE
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20080213590 | Invention Concerning Agricultural Active Substances - The invention relates to supports consisting of nanoscalar polymer fibres, polymer tubes or hollow fibres for the application and targeted and/or delayed release of ingredients, in particular, agricultural active ingredients. The invention also relates to a method and a device for the production of supports of this type in a charged or empty state. The method and device use electrospinning technology. | 09-04-2008 |
20120083037 | Non-Viral Transfection Agent - The invention relates to a non-viral transfection agent comprising polymer/nucleic acid complexes and nanofibers, wherein the polymer/nucleic acid complexes are composed of at least one nucleic acid and at least one cationic polymer. The nanofibers carry the polymer/nucleic acid complexes, wherein the non-viral transfection agent is advantageously produced by means of electrospinning. The cationic polymer is favorably a polyimine or polyethyleneimine and can be modified with one or more hydrophilic polymers coupled thereto. It can also be advantageous to couple the cationic polymer with one or more carbohydrates and/or with a receptor-specific ligand. The nucleic acid is a DNA or an RNA, or a DNA or RNA derivative, advantageously a therapeutically active nucleic acid. The nanofibers are composed of biodegradable, biocompatible polymers. The nanofibers or the entire transfection agent can be provided with a polymer coating. A method for producing a non-viral transfection agent comprises the following steps: providing the polymer/nucleic acid complex, producing a spinning solution containing the polymer/nucleic acid complexes, and electrospinning. | 04-05-2012 |
Uwe Dersch, Dresden DE
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20080318139 | Mask Blank, Photomask and Method of Manufacturing a Photomask - Mask blanks of the invention include an absorber layer, an anti-reflective layer disposed over the absorber layer, and a hard mask layer disposed over the anti-reflective layer. The absorber layer is absorbent at an exposure wavelength and is reflective at an inspection wavelength. The inspection wavelength is greater than or equal to the exposure wavelength. The anti-reflective layer is not reflective at the inspection wavelength. None of the main constituents of the hard mask layer has an atomic number greater than 41. The mask blank may be a reflective EUVL mask blank or a transparent mask blank. | 12-25-2008 |
Volker Dersch, Gruenberg DE
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20120125521 | ULTRASONIC HOT SEALING METHOD WITH REGULATION OF SEALING PRESSURE - The invention relates to a method for generating a welding force and/or a welding pressure for a welding jaw, in particular a welding jaw of a cross-sealing station of a vertical tubular bag machine, in which the sealing force or a sealing parameter, which correlates with the sealing force, in particular the sealing pressure or the drive power of the drive, is predetermined by a control unit during the sealing time, such that the sealing force runs along a sealing force curve within the sealing time, such that the sealing force curve has a first relative sealing force maximum with a sealing force and at least one second relative sealing force maximum with a sealing force, such that the sealing force at the first sealing force maximum is higher than the sealing force at the second sealing force maximum. | 05-24-2012 |
20140000758 | Dispensing Device For A Flowable Product | 01-02-2014 |
Wolfgang Dersch, Ingelheim DE
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20110118471 | METHOD FOR PRODUCING AN INTERMEDIATE PRODUCT OF DABIGATRAN ETEXILATE - The invention relates to a process for preparing the compound of formula 1 | 05-19-2011 |