Windemuth
Andreas Windemuth, South Glastonbury, CT US
Patent application number | Description | Published |
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20090075254 | PHYSIOGENOMIC METHOD FOR PREDICTING DIABETES AND METABOLIC SYNDROMES INDUCED BY PSYCHOTROPIC DRUGS - The invention is generally directed to a physiogenomic method for predicting diabetes and metabolic syndromes induced by psychotropic drugs. In one embodiment, the invention relates to the use of genetic variants of marker genes to predict the likelihood that an individual will experience undesirable metabolic side effects as a result of the use of a drug including, but not limited to, psychotropic drugs. The invention also relates to methods predicting the likelihood of diabetes and metabolic syndromes induced by the use of drugs with undesirable metabolic side effects. | 03-19-2009 |
20110312508 | PHYSIOGENOMIC METHOD FOR PREDICTING DIABETES AND METABOLIC SYNDROMES INDUCED BY PSYCHOTROPIC DRUGS - The invention is generally directed to a physiogenomic method for predicting diabetes and metabolic syndromes induced by psychotropic drugs. In one embodiment, the invention relates to the use of genetic variants of marker genes to predict the likelihood that an individual will experience undesirable metabolic side effects as a result of the use of a drug including, but not limited to, psychotropic drugs. The invention also relates to methods predicting the likelihood of diabetes and metabolic syndromes induced by the use of drugs with undesirable metabolic side effects. | 12-22-2011 |
20130244909 | METHODS AND APPARATUS FOR CLASSIFICATION AND QUANTIFICATION OF MULTIFUNCTIONAL OBJECTS - A method may include accessing data regarding a number of events, where the events were detected by a particle detection apparatus, and identifying a number of groups in the events. Each of the groups includes two or more events, and each event includes one or more of a time stamp, a time duration, a fluorescence intensity, a scatter measurement, a radio frequency signal, a magnetic signal, a neutron scattering measurement, a light scattering measurement, an electron scattering measurement, an audio signal, an acoustic signal, a mechanical signal, an electrical resistance, a thermal property, and a width of fluorescence signal. The method may include identifying a subset of the groups as a number of objects detected by the particle detection apparatus, where each object is identified based at least in part upon one or more quantities, where each quantity is identified by or derived from the respective two or more events. | 09-19-2013 |
Andreas Windemuth, S. Glastonbury, CT US
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20090263814 | Physiogenomic Method for Predicting Metabolic and Cardiovascular Side Effects of Thiazolidinediones - Disclosed herein are genetic markers related to the efficacy and/or safety of thiazolidinedione therapy identified by a physiogenomic methodology that correlates the genetic markers with a physiological response. The genetic markers described herein were not previously associated with the efficacy and/or safety of thiazolidinedione therapy. The markers related to safety are those associated with the important side effects of BMI increase and development of edema. In one embodiment, markers related to efficacy of thiazolidinedione therapy are associated with glycosylated hemoglobin. Method of assessing an individual for markers associated with the safety and/or efficacy of thiazolidinedione therapy are described. | 10-22-2009 |
Andreas Windemuth, Belmont, MA US
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20120309651 | NUCLEIC ACID DETECTION AND QUANTIFICATION BY POST-HYBRIDIZATION LABELING AND UNIVERSAL ENCODING - The present invention provides, among other things, methods and compositions for encoding a substrate for detecting and quantifying target nucleic acids. | 12-06-2012 |
20120316082 | NUCLEIC ACID DETECTION AND QUANTIFICATION BY POST-HYBRIDIZATION LABELING AND UNIVERSAL ENCODING - The present invention provides, among other things, methods and compositions for detecting and quantifying target nucleic acids via post-hybridization labeling. | 12-13-2012 |
20130210653 | SCANNING MULTIFUNCTIONAL PARTICLES - The present invention provides, among other things, methods and systems for characterizing multifunctional objects using a flow-through device, such as, a flow cytometer. In some embodiments, an inventive method according to the present invention includes one more steps of (a) interrogating a plurality of objects (e.g., particles), wherein each individual object (e.g., particle) comprises one or more interrogation regions detectable as a sequence of events; (b) recording multiple events, wherein each individual event corresponds to each individual interrogation region detectable above a pre-determined triggering threshold; (c) grouping the recorded multiple events, and (d) characterizing the plurality of objects based on the grouped events. | 08-15-2013 |