Sanna
Sanna Arpiainen, Espoo FI
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20080220159 | Capillary transport of nanoparticles or microparticles to form an ordered structure - The present invention relates to a method of forming an ordered structure of nanoparticles or microparticles in a well utilizing capillary action. We have discovered that it is possible to achieve capillary transport of particles also by means of uncovered capillary channels that abut on a controlled atmosphere and provided a method of forming an ordered structure of particles in a well by bringing the particles into the well through a capillary channel that is partly defined by a controlled atmosphere. | 09-11-2008 |
Sanna FilÉn, Kirkkonummi FI
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20160102343 | STRAND-INVASION BASED DNA AMPLIFICATION METHOD - A method for detecting toxigenic | 04-14-2016 |
Sanna Haavisto, Kotka FI
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20140255660 | PROTECTIVE MATERIAL AND USE OF SAME - The invention relates to a protective material ( | 09-11-2014 |
Sanna Kaivosaari, Nummela FI
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20100087493 | METHOD FOR IMPROVING THE PHARMACOKINETICS OF DRUGS METABOLIZED BY UGT2B10 - A method for modifying the pharmacokinetics of a pharmacologically active agent that undergoes direct N-glucuronidation by UDP-glucuronosyltransferase isoenzyme UGT2B10 in a human subject comprising administering an effective amount of an UGT2B10 modulator to said human subject. A method for identifying compounds which are directly metabolized by UGT2B10 or which act as UGT2B10 modulators is also disclosed. | 04-08-2010 |
Sanna Lehti, Mikkell FR
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20090277007 | METHOD AND APPARATUSES FOR PRINTING AND PRINTED PRODUCT - The invention concerns a method for forming a conductive pattern on an insulating substrate and a related apparatus. In the method, particle-type conductive matter is transferred onto a surface of the substrate and the particle-type conductive matter is at least partially sintered at elevated temperature and pressure in order to convert the particle-formed pattern into a continuously conducting pattern affixed to the substrate. According to the invention, the conductive matter is transferred in the form of a predefined pattern, and the sintering is carried out by using a nip comprising two opposing nip members between which the substrate is fed. The method provides an efficient way of making high-resolution conductor structures at low temperatures. | 11-12-2009 |
Sanna Tolle-Sander, North Potomac, MD US
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20100016333 | Once-a-day (RNA-Polymerase Inhibiting or phenazine) - dihydropteroate synthase inhibiting - dihydrofolate reductase inhibiting antibiotic pharmaceutical product, formulation thereof, and use thereof in treating infection caused by Methicillin-Resistant Staphylococcus aureus - Disclosed are once-a-day antibiotic products for treating Methicillin-Resistant | 01-21-2010 |
Sanna Uusivirta, Vantaa FI
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20120219957 | METHOD OF PREPARING A REACTION MIXTURE AND RELATED PRODUCTS - The invention relates to a method of preparing a reaction mixture for Polymerase Chain Reaction (PCR) assay and a solution set for PCR. The method comprises providing a sample solution comprising a biological sample to be amplified in said PCR assay and first colorant providing the solution a first color, providing a reagent solution comprising at least one other substance required for performing said assay and second colorant providing the solution a second color different from the first color, and mixing the sample solution and the first reagent solution for providing a mixed solution to be subjected to the PCR process, the mixed solution having, due to said first and second colorants, a third color different from the first and second colors. The invention significantly aids in pipetting PCR assays. | 08-30-2012 |
20140178880 | METHOD OF PREPARING A REACTION MIXTURE AND RELATED PRODUCTS - The invention relates to a method of preparing a reaction mixture for Polymerase Chain Reaction (PCR) assay and a solution set for PCR. The method comprises providing a sample solution comprising a biological sample to be amplified in said PCR assay and first colorant providing the solution a first color, providing a reagent solution comprising at least one other substance required for performing said assay and second colorant providing the solution a second color different from the first color, and mixing the sample solution and the first reagent solution for providing a mixed solution to be subjected to the PCR process, the mixed solution having, due to said first and second colorants, a third color different from the first and second colors. The invention significantly aids in pipetting PCR assays. | 06-26-2014 |
Sanna Valkonen, Augsburg DE
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20140030540 | METHOD FOR PRODUCING A BINDER COMPOSITION, A BINDER COMPOSITION, AN ADHESIVE COMPOSITION, A LAYERED COMPOSITE STRUCTURE, AND USES OF THE BINDER COMPOSITION AND THE ADHESIVE COMPOSITION - The invention relates to a method for producing a binder composition, wherein the method comprises the following steps: (i) forming an aqueous composition comprising reactant components including lignin, a polymerizable substance and a crosslinking agent in the presence of a catalyst; (ii) cooking the formed composition until the composition has a viscosity, which corresponds to 45-95% of a predetermined viscosity value of the final binder composition; (iii) adding tannin as a reactant component to the composition; and (iv) cooking the composition at a temperature of 60-95° C. for polymerizing the reactant components until a binder composition with a predetermined viscosity value is formed. | 01-30-2014 |
20140249271 | METHOD FOR INCREASING THE REACTIVITY OF LIGNIN - The present invention relates to a method for increasing the reactivity of lignin, wherein the method comprises the following steps: a) forming, under heating at a temperature of 30-70° C., an aqueous dispersion comprising alkali and lignin, wherein the alkali comprises a hydroxide of an alkali metal; and b) heating the dispersion formed in step a) at a temperature of 50-95° C. for producing alkalated lignin. | 09-04-2014 |
Sanna Vesti, Madrid ES
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20150349538 | ACTIVE RECTIFIER FOR EFFICIENT WIRELESS POWER TRANSFER - Methods, devices, and integrated circuits are disclosed for efficiently receiving a wireless power transfer. In one example, a device configured for receiving a wireless power transfer includes an active rectifier, rectifier input nodes, and a controller. The controller is operatively coupled to the active rectifier and configured to control the active rectifier to modify the impedance at the rectifier input nodes. | 12-03-2015 |