Kirkegaard
Daniel Schlichting Kirkegaard, Fredericia DK
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20150375462 | SYSTEM AND METHOD FOR THE MANUFACTURE OF AN ARTICLE - A method of manufacturing a fibre-composite article is described, wherein a layer of fibre material is applied from a layup head to a mould along a layup path. The angle at which the fibre material is dispensed from the layup head is rotated relative to the angle of orientation of the layup path, to minimise the effects of gravity on the alignment of the fibre layer in the mould. The fibre-composite article is preferably a section of a blade for a wind turbine. | 12-31-2015 |
Jeppe Funk Kirkegaard, Herning DK
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20140140854 | WIND TURBINE BLADE WITH A BLADE ATTACHMENT - A wind turbine blade with a blade attachment is provided. A tip end of the wind turbine blade is connected with the blade attachment by a glue-interface. The glue-interface is arranged between the tip end of the blade and the blade attachment. The glue-interface is arranged in a circumferential manner in view to the tip end of the blade and in view to the blade attachment. The blade attachment includes a core with a surface, while the core is surrounded by this surface. | 05-22-2014 |
Jon Kirkegaard, Dallas, TX US
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20100262581 | Order commitment method and system - An order commitment method and system are described. The method includes the steps of identifying services and data capable of supporting an order commitment, and mapping the services to enable synchronized on-demand queries. The mapping step includes determining relationships among the services and the data and maintaining the relationships, wherein links are established to create fulfillment information. The method also includes using the fulfillment information to generate the order commitment. | 10-14-2010 |
Karla A. Kirkegaard, Palo Alto, CA US
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20140056929 | IMMUNOMODULATION BY CONTROLLING INTERFERON-GAMMA LEVELS WITH THE LONG NON-CODING RNA NeST - Compositions and methods of modulating an immune response by controlling levels of interferon-gamma (IFN-γ) production by leukocytes are disclosed. Adjustment of IFN-γ levels is achieved by increasing or decreasing the activity of NeST (nettoie | 02-27-2014 |
Knud J. Kirkegaard, San Jose, CA US
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20140025709 | CONCURRENT INSERTION OF ELEMENTS INTO DATA STRUCTURES - A method of adding an element to a data structure may include atomically associating the element with the data structure if the element is not associated with the data structure. The element may be prepared for insertion into a location in the data structure. The method may also include atomically inserting the element into the location in the data structure if another element has not been inserted into the location. | 01-23-2014 |
Leslie Kirkegaard, Ijamsville, MD US
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20090246804 | Immuno gold lateral flow assay - A chromatographic specific binding assay strip device, comprising: a non-permeable platform strip; a permeable membrane testing strip positioned on top of said non-permeable platform strip, with the testing strip comprising at least one capture reagent site containing a capture reagent for at least one specific analyte, a sample receiving pad positioned on top of and at a proximal end of the non-permeable platform strip, with the sample receiving pad having contact with a proximal end of said permeable membrane testing strip, a reservoir pad positioned on top of and at a distal end of said non-permeable membrane testing strip, with the reservoir pad having contact with a proximal end of said permeable membrane test strip; a supporting strip attached to and extending from the proximal end of said non-permeable platform strip; and a conjugate pad positioned on said supporting strip, said conjugate pad comprising a semi-permeable membrane containing a colorant conjugate. The semi-permeable membrane acts as a barrier between the conjugate pad and the sample receiving pad, regulating the flow through the semi-permeable membrane and overall flow of the assay. By dipping the conjugate pad into a sample solution, there will be increased binding between the analyte in the sample and the conjugate (preferably colloidal gold), thereby giving improved results on the lateral flow assay. | 10-01-2009 |
20110091906 | Immuno gold lateral flow assay - A chromatographic specific binding assay strip device, comprising: a non-permeable platform strip; a permeable membrane testing strip positioned on top of said non-permeable platform strip, with the testing strip comprising at least one capture reagent site containing a capture reagent for at least one specific analyte, a sample receiving pad positioned on top of and at a proximal end of the non-permeable platform strip, with the sample receiving pad having contact with a proximal end of said permeable membrane testing strip, a reservoir pad positioned on top of and at a distal end of said non-permeable membrane testing strip, with the reservoir pad having contact with a proximal end of said permeable membrane test strip; a supporting strip attached to and extending from the proximal end of said non-permeable platform strip; and a conjugate pad positioned on said supporting strip, said conjugate pad comprising a semi-permeable membrane containing a colorant conjugate. The semi-permeable membrane acts as a barrier between the conjugate pad and the sample receiving pad, regulating the flow through the semi-permeable membrane and overall flow of the assay By dipping the conjugate pad into a sample solution, there will be increased binding between the analyte in the sample and the conjugate (preferably colloidal gold), thereby giving improved results on the lateral flow assay. | 04-21-2011 |
Leslie Kirkegaard, Gaithersburg, MD US
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20130068040 | Rapid analyte collection and testing device - A rapid analyte collection and testing device, said device comprising a) a casing, said casing having) a first casing section, said first casing section containing an encapsulated buffer section containing a buffer, and asecond casing section, said second casing section comprising a window on a side of said second section, a complementary mechanism for attachment to said first casing section, an opening at a proximal end of said second casing section; and a non permeable platform strip positioned lengthwise within and extending beyond the second casing section. The non-permeable platform further contains a swab, said swab positioned at the distal end of said non-permeable platform strip, a lateral flow assay positioned downstream from said swab, and a tag, positioned upstream from the capture reagent site. | 03-21-2013 |
Rasmus Kirkegaard, Holstebro DK
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20100155042 | TEMPERATURE-STABLE CAST IRON ALLOY AND USE OF SAID ALLOY - A description is given of a temperature-stable cast-iron alloy having high wear resistance at temperatures between 500 and 900° C. The alloy is characterized in that it has the following composition expressed in weight percentages: chromium: 15.0-20.0%, carbon: 1.0-2.0%, manganese: 0.8-1.2%, silicon: 1.2-1.5%, nickel: 1.5-2.5%, balance iron and unavoidable metallic and non-metallic contaminants where the non-metallic contaminants comprise nitrogen, oxygen, phosphorous and sulphur. Hereby is obtained a cast-iron alloy which has a higher wear resistance and a reduced tendency to form the undesirable sigma phase when heated to temperatures between 500 and 900° C. as compared to the known allows. | 06-24-2010 |