Patents by Inventor Daniel Mueth
Daniel Mueth has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Patent number: 11422504Abstract: The invention provides a method, apparatus and system for separating blood and other types of cellular components, and can be combined with holographic optical trapping manipulation or other forms of optical tweezing. One of the exemplary methods includes providing a first flow having a plurality of blood components; providing a second flow; contacting the first flow with the second flow to provide a first separation region; and differentially sedimenting a first blood cellular component of the plurality of blood components into the second flow while concurrently maintaining a second blood cellular component of the plurality of blood components in the first flow. The second flow having the first blood cellular component is then differentially removed from the first flow having the second blood cellular component. Holographic optical traps may also be utilized in conjunction with the various flows to move selected components from one flow to another, as part of or in addition to a separation stage.Type: GrantFiled: August 27, 2021Date of Patent: August 23, 2022Assignee: ABS GLOBAL, INC.Inventors: Daniel Mueth, Joseph Plewa, Jessica Shireman, Amy Anderson, Lewis Gruber, Neil Rosenbaum
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Patent number: 11415936Abstract: The invention provides a method, apparatus and system for separating blood and other types of cellular components, and can be combined with holographic optical trapping manipulation or other forms of optical tweezing. One of the exemplary methods includes providing a first flow having a plurality of blood components; providing a second flow; contacting the first flow with the second flow to provide a first separation region; and differentially sedimenting a first blood cellular component of the plurality of blood components into the second flow while concurrently maintaining a second blood cellular component of the plurality of blood components in the first flow. The second flow having the first blood cellular component is then differentially removed from the first flow having the second blood cellular component. Holographic optical traps may also be utilized in conjunction with the various flows to move selected components from one flow to another, as part of or in addition to a separation stage.Type: GrantFiled: August 26, 2021Date of Patent: August 16, 2022Assignee: ABS GLOBAL, INC.Inventors: Daniel Mueth, Joseph Plewa, Jessica Shireman, Amy Anderson, Lewis Gruber, Neil Rosenbaum
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Patent number: 11243494Abstract: The invention, provides a method, apparatus and system for separating blood and other types of cellular components, and can be combined with holographic optical trapping manipulation or other forms of optical tweezing. One of the exemplary methods includes providing a first flow having a plurality of blood components; providing a second flow; contacting the first flow with the second flow to provide a first separation region; and differentially sedimenting a first blood cellular component of the plurality of blood components into the second flow while concurrently maintaining a second blood cellular component of the plurality of blood components in the first flow. The second flow having the first blood cellular component is then differentially removed from the first flow having the second blood cellular component. Holographic optical traps may also be utilized in conjunction with the various flows to move selected components from one flow to another, as part of or in addition to a separation stage.Type: GrantFiled: January 3, 2019Date of Patent: February 8, 2022Assignee: ABS GLOBAL, INC.Inventors: Daniel Mueth, Joseph Plewa, Jessica Shireman, Amy Anderson, Lewis Gruber, Neil Rosenbaum
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Publication number: 20210397127Abstract: The invention provides a method, apparatus and system for separating blood and other types of cellular components, and can be combined with holographic optical trapping manipulation or other forms of optical tweezing. One of the exemplary methods includes providing a first flow having a plurality of blood components; providing a second flow; contacting the first flow with the second flow to provide a first separation region; and differentially sedimenting a first blood cellular component of the plurality of blood components into the second flow while concurrently maintaining a second blood cellular component of the plurality of blood components in the first flow. The second flow having the first blood cellular component is then differentially removed from the first flow having the second blood cellular component. Holographic optical traps may also be utilized in conjunction with the various flows to move selected components from one flow to another, as part of or in addition to a separation stage.Type: ApplicationFiled: August 27, 2021Publication date: December 23, 2021Inventors: Daniel Mueth, Joseph Plewa, Jessica Shireman, Amy Anderson, Lewis Gruber, Neil Rosenbaum
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Publication number: 20210389723Abstract: The invention provides a method, apparatus and system for separating blood and other types of cellular components, and can be combined with holographic optical trapping manipulation or other forms of optical tweezing. One of the exemplary methods includes providing a first flow having a plurality of blood components; providing a second flow; contacting the first flow with the second flow to provide a first separation region; and differentially sedimenting a first blood cellular component of the plurality of blood components into the second flow while concurrently maintaining a second blood cellular component of the plurality of blood components in the first flow. The second flow having the first blood cellular component is then differentially removed from the first flow having the second blood cellular component. Holographic optical traps may also be utilized in conjunction with the various flows to move selected components from one flow to another, as part of or in addition to a separation stage.Type: ApplicationFiled: August 26, 2021Publication date: December 16, 2021Inventors: Daniel Mueth, Joseph Plewa, Jessica Shireman, Amy Anderson, Lewis Gruber, Neil Rosenbaum
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Patent number: 11182574Abstract: Embodiments herein describe a system that includes a scanner that captures images of a package. The scanner processes the image to identify a destination for the package. For example, the scanner may transmit bar code data identified in the image to an inventory tracking system which issues commands to an item-sortation machine for routing the package to its destination. The images of the package captured by the scanner may include private information that is not needed or used to determine the destination of the package. To protect private information in the package, the scanner assigns an obfuscated ID to the package which the scanner, inventory tracking system, and item-sortation machine can use to pass messages corresponding to the package. After processing the image to identify the destination (e.g., data encoded in a bar code), the scanner can erase the image.Type: GrantFiled: March 9, 2018Date of Patent: November 23, 2021Assignee: Amazon Technologies, Inc.Inventors: Karl Eric Schrader, Daniel Muething, Jie Zheng
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Patent number: 11104469Abstract: Disclosed are various embodiments for systems and methods for calibrating a label applicator for improved accuracy and/or precision on moving objects. In one example, a system may be configured to receive a height of a package on a conveyor path prior to the package reaching a label applicator. The system can be configured to determine a predicted tamp time for the package based on the height. The predicted tamp time can represent an estimated period of time for a tamp head to apply a label on the package. The system also can instruct a controller operating a label applicator to activate the tamp head for the package based on the predicted tamp time. The system can receive an actual tamp time from the controller after the label has been applied to the package and update the modeling coefficient based on a tamp time error.Type: GrantFiled: December 4, 2019Date of Patent: August 31, 2021Assignee: Amazon Technologies, Inc.Inventors: Daniel Muething, Richa Rastogi, Keith C. Tate, Anand Harshad Doshi, John Kevin Robinson, Mahmoud Abugharbieh
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Patent number: 10943205Abstract: Systems and methods for generating labels are described. A label having particular format and content can be affixed to a parcel depending upon its. Barcodes can be positioned adjacent to one or more of the borders of the label. If, during a shipping workflow, one or more of the barcodes cannot be detected, it can be assumed that the label is damaged or obstructed.Type: GrantFiled: June 29, 2016Date of Patent: March 9, 2021Assignee: AMAZON TECHNOLOGIES, INC.Inventors: Eric Edens, Andrea Frank, Mercia Elizabeth Howard, Daniel Muething
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Publication number: 20190390164Abstract: The present invention provides novel methods of cell staining, such as bovine sperm, using electroporation or osmolality treatments at viability-enhancing temperatures. Furthermore, methods of highly efficient cell sorting that are especially suitable in sorting bovine sperm using novel cell staining procedures are also provided.Type: ApplicationFiled: September 5, 2019Publication date: December 26, 2019Inventors: Amy L. Morjal, Christopher R. Knutson, Daniel Mueth, Joseph Plewa, Evan Tanner
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Publication number: 20190137931Abstract: The invention, provides a method, apparatus and system for separating blood and other types of cellular components, and can be combined with holographic optical trapping manipulation or other forms of optical tweezing. One of the exemplary methods includes providing a first flow having a plurality of blood components; providing a second flow; contacting the first flow with the second flow to provide a first separation region; and differentially sedimenting a first blood cellular component of the plurality of blood components into the second flow while concurrently maintaining a second blood cellular component of the plurality of blood components in the first flow. The second flow having the first blood cellular component is then differentially removed from the first flow having the second blood cellular component.Type: ApplicationFiled: January 3, 2019Publication date: May 9, 2019Inventors: Daniel Mueth, Joseph Plewa, Jessica Shireman, Amy Anderson, Lewis Gruber, Neil Rosenbaum
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Patent number: 10216144Abstract: The invention provides a method, apparatus and system for separating blood and other types of cellular components, and can be combined with holographic optical trapping manipulation or other forms of optical tweezing. One of the exemplary methods includes providing a first flow having a plurality of blood components; providing a second flow; contacting the first flow with the second flow to provide a first separation region; and differentially sedimenting a first blood cellular component of the plurality of blood components into the second flow while concurrently maintaining a second blood cellular component of the plurality of blood components in the first flow. The second flow having the first blood cellular component is then differentially removed from the first flow having the second blood cellular component. Holographic optical traps may also be utilized in conjunction with the various flows to move selected components from one flow to another, as part of or in addition to a separation stage.Type: GrantFiled: April 15, 2016Date of Patent: February 26, 2019Assignee: Premium Genetics (UK) LTDInventors: Daniel Mueth, Joseph Plewa, Jessica Shireman, Amy Anderson, Lewis Gruber, Neil Rosenbaum
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Patent number: 9977401Abstract: The invention provides a method, apparatus and system for separating blood and other types of cellular components, and can be combined with holographic optical trapping manipulation or other forms of optical tweezing. One of the exemplary methods includes providing a first flow having a plurality of blood components; providing a second flow; contacting the first flow with the second flow to provide a first separation region; and differentially sedimenting a first blood cellular component of the plurality of blood components into the second flow while concurrently maintaining a second blood cellular component of the plurality of blood components in the first flow. The second flow having the first blood cellular component is then differentially removed from the first flow having the second blood cellular component. Holographic optical traps may also be utilized in conjunction with the various flows to move selected components from one flow to another, as part of or in addition to a separation stage.Type: GrantFiled: April 15, 2016Date of Patent: May 22, 2018Assignee: PREMIUM GENETICS (UK) LTD.Inventors: Daniel Mueth, Joseph Plewa, Jessica Shireman, Amy Anderson, Lewis Gruber, Neil Rosenbaum
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Publication number: 20170204370Abstract: The present invention provides novel methods of cell staining, such as bovine sperm, using electroporation or osmolality treatments at viability-enhancing temperatures. Furthermore, methods of highly efficient cell sorting that are especially suitable in sorting bovine sperm using novel cell staining procedures are also provided.Type: ApplicationFiled: March 31, 2017Publication date: July 20, 2017Inventors: Amy L. Morjal, Christopher R. Knutson, Daniel Mueth, Joseph Plewa, Evan Tanner
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Publication number: 20170016879Abstract: The present invention provides novel methods of cell staining, such as bovine sperm, using electroporation or osmolality treatments at viability-enhancing temperatures. Furthermore, methods of highly efficient cell sorting that are especially suitable in sorting bovine sperm using novel cell staining procedures are also provided.Type: ApplicationFiled: September 26, 2016Publication date: January 19, 2017Inventors: Amy L. Morjal, Christopher R. Knutson, Daniel Mueth, Joseph Plewa, Evan Tanner
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Publication number: 20160299120Abstract: The invention provides a method, apparatus and system for separating blood and other types of cellular components, and can be combined with holographic optical trapping manipulation or other forms of optical tweezing. One of the exemplary methods includes providing a first flow having a plurality of blood components; providing a second flow; contacting the first flow with the second flow to provide a first separation region; and differentially sedimenting a first blood cellular component of the plurality of blood components into the second flow while concurrently maintaining a second blood cellular component of the plurality of blood components in the first flow. The second flow having the first blood cellular component is then differentially removed from the first flow having the second blood cellular component. Holographic optical traps may also be utilized in conjunction with the various flows to move selected components from one flow to another, as part of or in addition to a separation stage.Type: ApplicationFiled: April 15, 2016Publication date: October 13, 2016Inventors: Daniel Mueth, Joseph Plewa, Jessica Shireman, Amy Anderson, Lewis Gruber, Neil Rosenbaum
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Publication number: 20160299469Abstract: The invention provides a method, apparatus and system for separating blood and other types of cellular components, and can be combined with holographic optical trapping manipulation or other forms of optical tweezing. One of the exemplary methods includes providing a first flow having a plurality of blood components; providing a second flow; contacting the first flow with the second flow to provide a first separation region; and differentially sedimenting a first blood cellular component of the plurality of blood components into the second flow while concurrently maintaining a second blood cellular component of the plurality of blood components in the first flow. The second flow having the first blood cellular component is then differentially removed from the first flow having the second blood cellular component. Holographic optical traps may also be utilized in conjunction with the various flows to move selected components from one flow to another, as part of or in addition to a separation stage.Type: ApplicationFiled: April 15, 2016Publication date: October 13, 2016Inventors: Daniel Mueth, Joseph Plewa, Jessica Shireman, Amy Anderson, Lewis Gruber, Neil Rosenbaum
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Patent number: 9453849Abstract: The present invention provides novel methods of cell staining, such as bovine sperm, using electroporation or osmolality treatments at viability-enhancing temperatures. Furthermore, methods of highly efficient cell sorting that are especially suitable in sorting bovine sperm using novel cell staining procedures are also provided.Type: GrantFiled: February 11, 2009Date of Patent: September 27, 2016Assignee: PREMIUM GENETICS (UK) LIMITEDInventors: Amy L. Anderson, Christopher R. Knutson, Daniel Mueth, Joseph Plewa, Evan Tanner
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Patent number: 9335295Abstract: The invention provides a method, apparatus and system for separating blood and other types of cellular components, and can be combined with holographic optical trapping manipulation or other forms of optical tweezing. One of the exemplary methods includes providing a first flow having a plurality of blood components; providing a second flow; contacting the first flow with the second flow to provide a first separation region; and differentially sedimenting a first blood cellular component of the plurality of blood components into the second flow while concurrently maintaining a second blood cellular component of the plurality of blood components in the first flow. The second flow having the first blood cellular component is then differentially removed from the first flow having the second blood cellular component. Holographic optical traps may also be utilized in conjunction with the various flows to move selected components from one flow to another, as part of or in addition to a separation stage.Type: GrantFiled: August 19, 2015Date of Patent: May 10, 2016Assignee: Premium Genetics (UK) LTDInventors: Daniel Mueth, Joseph Plewa, Jessica Shireman, Amy Anderson, Lewis Gruber, Neil Rosenbaum
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Publication number: 20160047777Abstract: The invention provides a method, apparatus and system for separating blood and other types of cellular components, and can be combined with holographic optical trapping manipulation or other forms of optical tweezing. One of the exemplary methods includes providing a first flow having a plurality of blood components; providing a second flow; contacting the first flow with the second flow to provide a first separation region; and differentially sedimenting a first blood cellular component of the plurality of blood components into the second flow while concurrently maintaining a second blood cellular component of the plurality of blood components in the first flow. The second flow having the first blood cellular component is then differentially removed from the first flow having the second blood cellular component. Holographic optical traps may also be utilized in conjunction with the various flows to move selected components from one flow to another, as part of or in addition to a separation stage.Type: ApplicationFiled: August 19, 2015Publication date: February 18, 2016Applicant: PREMIUM GENETICS (UK) LTD.Inventors: Daniel MUETH, Joseph PLEWA, Jessica SHIREMAN, Amy ANDERSON, Lewis GRUBER, Neil ROSENBAUM
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Patent number: RE46992Abstract: Apparatus for sorting and orienting sperm cells has a pair or walls in confronting relationship forming a flow chamber having inlet, a downstream outlet, and intermediate detector region. The inlet receives first and second spaced apart streams of input fluid and a third stream of sample fluid containing the cells to be sorted. The first and second streams have respective flow rates relative to third stream, such that the third stream is constricted forming a relatively narrow sample stream, so that the cells are oriented parallel to the walls. A detector detects desired cells and a sorter downstream of the detector for sorting the desired cells from the stream.Type: GrantFiled: October 3, 2016Date of Patent: August 14, 2018Assignee: PREMIUM GENETICS (UK) LTDInventors: Daniel Mueth, Amy L. Morjal, Christopher R. Knutson, Joseph Plewa