Patent classifications
G01N2201/0646
Device and associated methods for performing luminescence and fluorescence measurements of a sample
Apparatuses and methods of optically analyzing fluid within a pipette are described herein. In an embodiment, an optical reader subassembly includes a pipette having a tip, the pipette configured to aspirate a fluid sample and hold the fluid sample within the tip, a housing including a reentrant seal and an internal area, the housing configured to receive at least the tip of the pipette through the reentrant seal so that the tip of the pipette is located in a light tight manner within the internal area, a light source positioned to be in proximity to the tip of the pipette when the tip of the pipette is received by the housing, the light source configured to project light through the tip of the pipette and onto the fluid sample held within the tip, and an optical sensor configured to take a reading of the fluid sample held within the tip of the pipette without any of the fluid sample being injected from the pipette.
AUTOMATED IMMUNOANALYZER SYSTEM FOR PERFORMING DIAGNOSTIC ASSAYS FOR AUTOIMMUNE AND INFECTIOUS DISEASES
A quantitative method for diagnosing an autoimmune disease or an infectious disease comprising performing an automated diagnostic assay, comprising: incubating a capture reagent with a streptavidin-coated medium to form a solid phase complex, wherein the capture reagent is a biotinylated autoantigen or infectious disease antigen; washing the solid phase complex to remove excess capture reagent; incubating the solid phase complex with a serum sample to form an immune complex; washing the immune complex to remove any unbound sample; incubating the immune complex with a conjugate to create an immune-conjugate complex; washing the immune-conjugate complex to remove any unbound conjugate; introducing a substrate capable of generating a quantifiable response; and calibrating the response generated from introducing the substrate.
AUTOMATED IMMUNOANALYZER SYSTEM FOR PERFORMING DIAGNOSTIC ASSAYS FOR ALLERGIES AND AUTOIMMUNE DISEASES
- Mark David Van Cleve ,
- Taylor Addison Reid ,
- Linda Marie Trondle ,
- Victoria Hung ,
- Yi Luo ,
- Dennis Edwin Rieger ,
- Evan Phillip McMenamy ,
- Nanditha Raghavan ,
- Morkoah Blay Reliford ,
- Douglas John Canfield ,
- Elaine Grace Taine ,
- Edsel Lawrence Noche Sinson ,
- Scott William Vande Wetering ,
- Teri Taylor ,
- Travis Knox ,
- Fran Zylo Cuaresma Jacalne ,
- James Weston ,
- Jennifer Bao-Guey Chan ,
- Stephanie TuVi Ortega ,
- Rachel Sarah Schell ,
- Ronald Norman Diamond ,
- Steve Michael Gann ,
- Eric Darnell Hall ,
- Tae Ho Hwang ,
- John Lewis Morton ,
- Anatoly Moskalev ,
- Marinela Gombosev Stack ,
- Bruce Alan Sargeant ,
- Michelle Fredrika Forshager ,
- Vanessa Camille Chua ,
- Kylie Wilson
A quantitative method for performing an automated diagnostic assay, comprising: incubating a capture reagent with a streptavidin-coated medium to form a solid phase complex; washing the solid phase complex to remove excess capture reagent; incubating the solid phase complex with a serum sample to form an immune complex; washing the immune complex to remove any unbound sample; incubating the immune complex with a conjugate to create an immune-conjugate complex; washing the immune-conjugate complex to remove any unbound conjugate; introducing a substrate capable of generating a quantifiable response; and calibrating the response generated from introducing the substrate.
AUTOMATED IMMUNOANALYZER SYSTEM FOR PERFORMING DIAGNOSTIC ASSAYS FOR AUTOIMMUNE AND INFECTIOUS DISEASES
A quantitative method for diagnosing an autoimmune disease or an infectious disease comprising performing an automated diagnostic assay, comprising: incubating a capture reagent with a streptavidin-coated medium to form a solid phase complex, wherein the capture reagent is a biotinylated autoantigen or infectious disease antigen; washing the solid phase complex to remove excess capture reagent; incubating the solid phase complex with a serum sample to form an immune complex; washing the immune complex to remove any unbound sample; incubating the immune complex with a conjugate to create an immune-conjugate complex; washing the immune-conjugate complex to remove any unbound conjugate; introducing a substrate capable of generating a quantifiable response; and calibrating the response generated from introducing the substrate.
Automated immunoanalyzer system for performing diagnostic assays for allergies and autoimmune diseases
- Mark David Van Cleve ,
- Taylor Addison Reid ,
- Linda Marie Trondle ,
- Victoria Hung ,
- Yi Luo ,
- Dennis Edwin Rieger ,
- Evan Phillip McMenamy ,
- Nanditha Raghavan ,
- Morkoah Blay Reliford ,
- Douglas John Canfield ,
- Elaine Grace Taine ,
- Edsel Lawrence Noche Sinson ,
- Scott William Vande Wetering ,
- Teri Taylor ,
- Travis Knox ,
- Fran Zylo Cuaresma Jacalne ,
- James Weston ,
- Jennifer Bao-Guey Chan ,
- Stephanie TuVi Ortega ,
- Rachel Sarah Schell ,
- Ronald Norman Diamond ,
- Steve Michael Gann ,
- Eric Darnell Hall ,
- Tae Ho Hwang ,
- John Lewis Morton ,
- Anatoly Moskalev ,
- Marinela Gombosev Stack ,
- Bruce Alan Sargeant ,
- Michelle Fredrika Forshager ,
- Vanessa Camille Chua ,
- Kylie Wilson
A quantitative method for performing an automated diagnostic assay, comprising: incubating a capture reagent with a streptavidin-coated medium to form a solid phase complex; washing the solid phase complex to remove excess capture reagent; incubating the solid phase complex with a serum sample to form an immune complex; washing the immune complex to remove any unbound sample; incubating the immune complex with a conjugate to create an immune-conjugate complex; washing the immune-conjugate complex to remove any unbound conjugate; introducing a substrate capable of generating a quantifiable response; and calibrating the response generated from introducing the substrate.
Automated immunoanalyzer system for performing diagnostic assays for autoimmune and infectious diseases
A quantitative method for diagnosing an autoimmune disease or an infectious disease comprising performing an automated diagnostic assay, comprising: incubating a capture reagent with a streptavidin-coated medium to form a solid phase complex, wherein the capture reagent is a biotinylated autoantigen or infectious disease antigen; washing the solid phase complex to remove excess capture reagent; incubating the solid phase complex with a serum sample to form an immune complex; washing the immune complex to remove any unbound sample; incubating the immune complex with a conjugate to create an immune-conjugate complex; washing the immune-conjugate complex to remove any unbound conjugate; introducing a substrate capable of generating a quantifiable response; and calibrating the response generated from introducing the substrate.
Automated immunoanalyzer system for performing diagnostic assays for autoimmune and infectious diseases
A quantitative method for diagnosing an autoimmune disease or an infectious disease comprising performing an automated diagnostic assay, comprising: incubating a capture reagent with a streptavidin-coated medium to form a solid phase complex, wherein the capture reagent is a biotinylated autoantigen or infectious disease antigen; washing the solid phase complex to remove excess capture reagent; incubating the solid phase complex with a serum sample to form an immune complex; washing the immune complex to remove any unbound sample; incubating the immune complex with a conjugate to create an immune-conjugate complex; washing the immune-conjugate complex to remove any unbound conjugate; introducing a substrate capable of generating a quantifiable response; and calibrating the response generated from introducing the substrate.
Methods for producing seed corn for use in growing corn plants, using combine harvesters
Combine harvesters are provided for use in harvesting seed corn from corn plants in fields. In connection therewith, a method for producing such seed corn from the corn plants, for use in growing subsequent corn plants, includes measuring a moisture content of corn kernels on ears of the corn plants in the field and removing, by one of the combine harvesters, the ears of corn from the corn plants when the moisture content satisfies a threshold moisture content. The method then includes separating the corn kernels from cobs of the ears of corn onboard the combine harvester and collecting the separated corn kernels for use as seed corn, whereby one or more subsequent corn plants can be grown from the collected corn kernels.