Patents by Inventor Peter B. Howell

Peter B. Howell 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).

  • Publication number: 20090208372
    Abstract: A sheath flow system having a channel with at least one fluid transporting structure located in the top and bottom surfaces situated so as to transport the sheath fluid laterally across the channel to provide sheath fluid fully surrounding the core solution. At the point of introduction into the channel, the sheath fluid and core solutions flow side by side within the channel or the core solution may be bounded on either side by the sheath fluid. The system is functional over a broad channel size range and with liquids of high or low viscosity. The design can be readily incorporated into microfluidic chips without the need for special manufacturing protocols.
    Type: Application
    Filed: June 9, 2006
    Publication date: August 20, 2009
    Applicant: The Government of the US, as represented by the Secretary of the Navy
    Inventors: David Mott, Peter B. Howell, JR., Frances S. Ligler, Stephanie Fertig, Aron Bobrowski
  • Publication number: 20090011430
    Abstract: A device having: a laminar flow channel for liquids; two or more electrodes; a confining fluid inlet; a sample inlet; and a meter for measuring the impedance of any fluid between the electrodes. The device may have one or more specific binding sites, or it may have sheathing and unsheathing fluid transporting structures. A method of: providing the device; flowing a confining fluid and a conductive liquid that may contain cells or particles through the channel as described herein; and measuring the impedance between the electrodes.
    Type: Application
    Filed: May 9, 2008
    Publication date: January 8, 2009
    Applicant: The Government of the United States of America, as represented by the Secretary of the Navy
    Inventors: Daniel A. Ateya, Peter B. Howell, JR., Frances S. Ligler
  • Publication number: 20080221844
    Abstract: A described exemplary embodiment of the present invention includes a computational “toolbox” for the a priori design of optimized fluidic components. These components consist of a channel under low-Reynolds number, pressure-driven flow, with an arrangement of grooves cut into the top and/or bottom to generate a tailored cross-channel flow. An advection map for each feature (i.e., groove of a particular shape and orientation) predicts the lateral transport of fluid within the channel due to that feature. We show that applying these maps in sequence generates an excellent representation of the outflow distribution for complex designs that combine these basic features. The effect of the complex three-dimensional flow field can therefore be predicted without solving the governing flow equations through the composite geometry, and the resulting distribution of fluids in the channel is used to evaluate how well a component performs a specified task.
    Type: Application
    Filed: March 5, 2007
    Publication date: September 11, 2008
    Inventors: Peter B. Howell, David Mott, Joel P. Golden
  • Publication number: 20040206626
    Abstract: A method and device are provided for affinity gradient focusing for directing at least one analyte in a solution containing a pseudostationary phase and located in a channel such as a capillary or a microchannel. The method includes establishing a steady-state spatial gradient in a retention factor of the pseudostationary phase for the at least one analyte. The analyte is caused to be moved within the channel whereby the concentration of the at least one analyte changes at one or more positions along the gradient. The pseudostationary phase is charged and the analyte is either neutral or charged or alternatively, the pseudostationary phase is neutral and the analyte is charged. The device may include a fluid channel, a pseudostationary phase having a retention factor gradient, an electrical current source and a pump system for establishing the bulk flow in the solution in the channel.
    Type: Application
    Filed: June 10, 2004
    Publication date: October 21, 2004
    Inventors: David J. Ross, Peter B. Howell, Wyatt N. Vreeland