With Sample Or Reagent Mechanical Transport Means Patents (Class 435/287.3)
  • Patent number: 8034612
    Abstract: An apparatus and method for automated picking of animal cell colonies. A picking head comprising a plurality of hollow pins is provided. The apparatus has an integrated imager for capturing an image of adherent or non-adherent animal cell colonies held in liquid or semi-solid medium. Image processing identifies the locations of the animal cell colonies to be picked. Picking an animal cell colony is performed by aligning each of the hollow pins in turn with a target animal cell colony location, introducing the hollow pin into the medium, and aspirating the animal cell colony into the hollow pin. In the case of an adherent colony, the distal end of the pin is forced into oscillation to detach the animal cell colony prior to aspiration. The animal cell colony is dispensed into a well plate by increasing pressure in the fluid conduit.
    Type: Grant
    Filed: January 2, 2009
    Date of Patent: October 11, 2011
    Assignee: Genetix Limited
    Inventors: Stephen Richmond, Christopher Mann, Andrew Board, Yonggang Jiang
  • Patent number: 8034628
    Abstract: An on-chip packed reactor bed design is disclosed that allows for an effective exchange of packing materials such as beads at a miniaturized level. Also disclosed is a method of treating a sample within a microfluidic analysis system, comprising; providing a main channel having a trapping zone; providing a slurry of a reagent treated packing material; inducing a flow of said packing material into said trapping zone through a flow channel connected to said trapping zone to load said trapping zone and form a packed bed of said packing material; and flowing a sample containing analytes through said packed bed, said reagent treating the sample. The present invention extends the function of microfluidic analysis systems to new applications including on-chip solid phase extraction (SPE) and on-chip capillary electrochromatography (CEC). The design can be further extended to include integrated packed bed immuno- or enzyme reactors.
    Type: Grant
    Filed: July 7, 2010
    Date of Patent: October 11, 2011
    Assignee: The Governors of the University of Alberta
    Inventors: D. Jed Harrison, Richard Oleschuk, Loranelle Shultz-Lockyear, Cameron Skinner, Paul Li
  • Publication number: 20110244559
    Abstract: A fabrication method of a microfluidic circuit is provided, dispensable of mask registration, absent of deviation in mask positioning, and inexpensive in fabrication cost. The fabrication method of a microfluidic circuit has a light transmissive substrate stacked on a light absorptive substrate, and the light transmissive substrate welded with the light absorptive substrate for bonding by directing light through the light transmissive substrate. The microfluidic circuit includes a microchannel at the bottom face of the light transmissive substrate and/or at the top face of the light absorptive substrate. The method includes the step of forming, at the light transmissive substrate, a light attenuation region attenuating transmittance of light towards the microchannel when light is directed through the light transmissive substrate.
    Type: Application
    Filed: June 13, 2011
    Publication date: October 6, 2011
    Applicant: Rohm Co., Ltd.
    Inventor: Shun MOMOSE
  • Publication number: 20110244557
    Abstract: A sample analyzer comprising: a container set section in which a reagent container can be set which contains a reagent to be used in a sample analysis; a cover capable of making the container set section be in an open state and a closed state; a locking mechanism capable of permitting and prohibiting a closing of the cover; and a controller that controls the permission and prohibition of the closing of the cover by the locking mechanism. Also a non-transitory storage medium.
    Type: Application
    Filed: March 29, 2011
    Publication date: October 6, 2011
    Inventor: Yuichi Hamada
  • Patent number: 8021872
    Abstract: The present invention, provides a flow cytometry apparatus for the detection of particles from a plurality of samples comprising: means for moving a plurality of samples comprising particles from a plurality of respective source wells into a fluid flow stream; means for introducing a separation gas between each of the plurality of samples in the fluid flow stream; and means for selectively analyzing each of the plurality of samples for the particles. The present invention also provides a flow cytometry method employing such an apparatus.
    Type: Grant
    Filed: September 29, 2010
    Date of Patent: September 20, 2011
    Assignee: STC.UNM
    Inventors: Larry A Sklar, Bruce S Edwards, Frederick W Kuckuck
  • Patent number: 8021625
    Abstract: A device and method for enhancing rapid confirmatory immunological testing (“RCIT”) in chromatography strip-type rapid IVD devices useful in, for example, clinical, point-of-care, laboratory or over-the-counter settings. The device drives a flow fluid, primarily under the force of gravity alone, through a first chamber having a porous dam structure to enhance and substantially complete the first affinity binding reaction between a source of mobilizable labeled binding members and an analyte in the fluid. Flow through the dam causes a delay, mixing and trapping of the typically chemically disuniform initial fluid front so that fluid exiting the dam exhibits a more uniformly high degree of first affinity binding and decreased non-affinity binding.
    Type: Grant
    Filed: July 27, 2007
    Date of Patent: September 20, 2011
    Assignee: DNT Scientific Research, LLC
    Inventors: Naishu Wang, David F. Zhou
  • Publication number: 20110223580
    Abstract: The present invention is a sample analyzer including: a first and a second measurement unit configured to measure a sample accommodated in a sample container; a rack transport unit configured to transport each of a plurality of sample containers held in a sample rack to either the first or the second measurement unit; and a controller configured to acquire a measurement item information indicating a measurement item of each of samples accommodated in the plurality of sample containers held in the sample rack, determine a sample container to be a transport object and a measurement unit to be a transport destination of the sample container based on the acquired plurality of measurement item information, and control the rack transport unit to transport the sample container determined as the transport object to the measurement unit determined as the transport destination.
    Type: Application
    Filed: March 9, 2011
    Publication date: September 15, 2011
    Inventors: Keisuke Kuwano, Daigo Fukuma
  • Patent number: 8017353
    Abstract: A chemostat is described that includes a growth chamber having a plurality of compartments. Each of the compartments may be fluidly isolated from the rest of the growth chamber by one or more actuatable valves. The chemostat may also include a nutrient supply-line to supply growth medium to the growth chamber, and an output port to remove fluids from the growth chamber. Also, a method of preventing biofilm formation in a growth chamber of a chemostat is described. The method may include the steps of adding a lysis agent to a isolated portion of the growth chamber, and reuniting the isolated portion with the rest of the growth chamber.
    Type: Grant
    Filed: July 29, 2008
    Date of Patent: September 13, 2011
    Assignee: California Institute of Technology
    Inventors: Frederick Balagadde, Carl L. Hansen, Emil Kartalov, Stephen R. Quake
  • Publication number: 20110217729
    Abstract: This disclosure describes a portable device that conveniently applies cancer patient blood sample into a test strip to determine the level of the patient's metastatic circulating tumor cells. Proper use of this device provides end users with the diagnostic and prognostic information of the cancer patient, and any effect of applied therapies. The device can also be used to screen effective drugs for any known metastatic phenotype disruption.
    Type: Application
    Filed: March 8, 2010
    Publication date: September 8, 2011
    Inventor: Bin Hong
  • Patent number: 8008066
    Abstract: An automated analyzer for performing multiple diagnostic assays simultaneously includes multiple stations in which discrete aspects of the assay are performed on fluid samples contained in sample vessels. The analyzer includes stations for automatically preparing a sample, incubating the sample, preforming an analyte isolation procedure, ascertaining the presence of a target analyte, and analyzing the amount of a target analyte. An automated receptacle transporting system moves the sample vessels from one station to the next. A method for performing an automated diagnostic assay includes an automated process for isolating and amplifying a target analyte, and, in one embodiment, a method for real-time monitoring of the amplification process.
    Type: Grant
    Filed: March 10, 2006
    Date of Patent: August 30, 2011
    Assignee: Gen-Probe Incorporated
    Inventors: Gary D. Lair, Thanh N. Nguyen, Haitao Li, Florence F. Li, Byron J. Knight, Robert E. Heinz, Jerzy A. Macioszek, Christopher B. Davis, Robert F. Scalese
  • Publication number: 20110207150
    Abstract: A method and kit for assaying a cell sample for the presence of at least a threshold number of cells of a given type are disclosed. The kit includes an assay device having a sample chamber for receiving the cell sample and an elongate collection chamber containing a selected-density and/or viscosity medium and having along its length, a plurality of cell-collection regions, and particles which are capable of specific attachment to cells of the selected cell type, and which are effective, when attached to the cells, to increase the density or magnetic susceptibility of the cells. In operation, particle-bound cells and particles in the cell sample are drawn through the elongate collection chamber under the influence of a gravitational or selected centrifugal or magnetic-field force until the particle-bound cells and particles completely fill successive cell-collection regions in the collection chamber.
    Type: Application
    Filed: December 5, 2008
    Publication date: August 25, 2011
    Inventors: Frank Zaugg, Renee Tobias, Silvia McManus-Munoz, Peter Kernen, Laurence Ruiz-Taylor, Peter Wagner
  • Patent number: 8003372
    Abstract: A device for performing cell assays has at least one assay site. The site comprises a pair of stimulating electrodes and a cell confinement cavity for confining at least one cell in an extracellular fluid medium. The cell confinement cavity and the stimulating electrodes are arranged so that, in use, each cell is exposable to an electrical field generated by a potential difference applied across the stimulating electrodes. The stimulating electrodes are spaced a distance apart such that the potential difference can induce field stimulation of each cell and simultaneously be below the level that would result in electrolysis of the extracellular fluid medium.
    Type: Grant
    Filed: February 5, 2003
    Date of Patent: August 23, 2011
    Assignee: The University Court of the University of Glasgow
    Inventors: Norbert Klauke, Jonathan Mark Cooper
  • Patent number: 8003768
    Abstract: A system and method for providing 20% ethanol solutions meeting bioburden and endotoxin specifications, which provides the 20% ethanol solution in a ready-to-use form which may be dispensed directly from the container in which the solution is shipped, and which may be used in connection with storage, reuse and/or rejuvination of Protein A.
    Type: Grant
    Filed: July 5, 2006
    Date of Patent: August 23, 2011
    Assignee: Decon Labs, Inc.
    Inventor: Tim Gordon
  • Patent number: 7998748
    Abstract: The invention concerns test elements, in particular diagnostic test elements, for determining the presence or concentration of biological, medical or biologically or medically effective substances including nucleic acids, proteins, viruses, microorganisms and cells, characterized in that these test elements contain nanofibers.
    Type: Grant
    Filed: September 13, 2010
    Date of Patent: August 16, 2011
    Assignee: Roche Diagnostics Operations, Inc.
    Inventor: Herbert Harttig
  • Patent number: 7998725
    Abstract: An organ perfusion apparatus and method monitor, sustain and/or restore viability of organs and preserve organs for storage and/or transport. Other apparatus include an organ transporter, an organ cassette and an organ diagnostic device. The apparatus and methods further include a tube frame removably connected to the cassette and configured to hold a plurality of tubes in a position to be connected to tubes in the portable housing.
    Type: Grant
    Filed: April 2, 2004
    Date of Patent: August 16, 2011
    Assignee: Organ Recovery Systems
    Inventors: Douglas Schein, Lee William Travis
  • Publication number: 20110195445
    Abstract: A system for in situ monitoring within a specified environment includes a housing with an intake inserted into the environment. A plurality of pumps are included in the housing with a number of test beds, each being separately coupled to one of the number of pumps, where each of the number of test beds holds material and where each of the plurality of pumps operate to separately push fluid through a coupled test bed. An effluent storage device is disposed to receive effluent from the number of test beds.
    Type: Application
    Filed: February 8, 2010
    Publication date: August 11, 2011
    Inventor: Rolf U. Halden
  • Patent number: 7993583
    Abstract: A microfluidic array card and reader system for analyzing a sample. The microfluidic array card includes a sample loading section for loading the sample onto the microfluidic array card, a multiplicity of array windows, and a transport section or sections for transporting the sample from the sample loading section to the array windows. The microfluidic array card reader includes a housing, a receiving section for receiving the microfluidic array card, a viewing section, and a light source that directs light to the array window of the microfluidic array card and to the viewing section.
    Type: Grant
    Filed: October 6, 2009
    Date of Patent: August 9, 2011
    Assignee: Lawrence Livermore National Security, LLC
    Inventors: Lawrence Christopher Dugan, Matthew A. Coleman
  • Patent number: 7993525
    Abstract: An embodiment of the invention relates to a device for detecting an analyte in a sample. The device comprises a fluidic network and an integrated circuitry component. The fluidic network comprises a sample zone, a cleaning zone and a detection zone. The fluidic network contains a magnetic particle and/or a signal particle. A sample containing an analyte is introduced, and the analyte interacts with the magnetic particle and/or the signal particle through affinity agents. A microcoil array a mechanically movable permanent magnet is functionally coupled to the fluidic network, which are activatable to generate a magnetic field within a portion of the fluidic network, and move the magnetic particle from the sample zone to the detection zone. A detection element is present which detects optical or electrical signals from the signal particle, thus indicating the presence of the analyte.
    Type: Grant
    Filed: December 29, 2006
    Date of Patent: August 9, 2011
    Assignee: Intel Corporation
    Inventors: Xing Su, David J. Liu, Kenneth B. Swartz, Kai Wu, Mineo Yamakawa
  • Publication number: 20110189650
    Abstract: A biological particle manipulating device and method of its use. The device includes structure arranged to urge biological particles into substantially single file travel through an interrogation zone. Operable alignment structure nonexclusively include sheathed fluid flow, capillary tubes, an orifice, and fluid microchannels. One or more detector, selected from a plurality of operable such structures, may be employed to sense the presence of a biologic particle in the interrogation zone. Certain exemplary detectors may operate on the Coulter principle, or may detect a Stokes' shift, or side-scatter radiation. Discrimination structure is generally provided to categorize particles as being in one or another sub-population of a mix of biological particles that may be carried in a fluid sample, such as by cell type, size, or the like.
    Type: Application
    Filed: August 31, 2010
    Publication date: August 4, 2011
    Inventors: Harold E. Ayliffe, Curtis S. King
  • Publication number: 20110189791
    Abstract: The present invention relates to analytical methods, platforms, and devices for the rapid and efficient immunochromatic determination of one or more components in fluid samples.
    Type: Application
    Filed: November 23, 2010
    Publication date: August 4, 2011
    Applicant: ZBx Corporation
    Inventor: Qinwei Shi
  • Patent number: 7985599
    Abstract: Arrays of spin-valve elements that can be selectively activated to trap, hold, manipulate and release magnetically tagged biological and chemical particles, including molecules and polymers. The spin-valve elements that can be selectively activated and deactivated by applying a momentary applied magnetic field thereto. The spin valve element array can be used for selectively sorting and transporting magnetic particles one particle at a time within the array. As the magnetically tagged particles are held by the spin-valve elements, application of an auxiliary magnetic field can be used to apply tension or torsion to the held particles or to move, e.g. rotate, the trapped particles. The arrays of spin-valve elements can be used in a variety of applications including drug screening, nucleic acid sequencing, structural control and analysis of RNA/DNA and proteins, medical diagnosis, and magnetic particle susceptibility and size homogenization for other medical applications.
    Type: Grant
    Filed: February 13, 2007
    Date of Patent: July 26, 2011
    Assignee: The United States of America as represented by the Secretary of Commerce, The National Institute of Standards and Technology
    Inventors: John Moreland, Elizabeth Mirowski, Stephen E. Russek
  • Patent number: 7981638
    Abstract: A molecule transfer and delivery system includes a loading zone (50) for loading a targeted cargo molecule (30) on a carrier molecule (20) making use of a hybridization nature of nucleotides, and an unloading zone (40) for unloading the targeted cargo molecule from the carrier molecule making use of the strand exchange nature of the nucleotides. Towing nucleotide chains including the first single-stranded nucleotides (21) with the first length are bound to the carrier molecule, and the second single-stranded nucleotides (31) with the second length longer than the first length are bound to the targeted cargo molecule. The third single-stranded nucleotides (41) with the same length as the second single-stranded nucleotides are bound to the unloading zone.
    Type: Grant
    Filed: October 19, 2006
    Date of Patent: July 19, 2011
    Assignees: NTT DoCoMo, Inc., The University of Tokyo
    Inventors: Satoshi Hiyama, Yuki Moritani, Tatsuya Suda, Yasushi Isogawa, Kazuo Sutoh
  • Patent number: 7981696
    Abstract: Arrays of spin-valve elements that can be selectively activated to trap, hold, manipulate and release magnetically tagged biological and chemical particles, including molecules and polymers. The spin-valve elements that can be selectively activated and deactivated by applying a momentary applied magnetic field thereto. The spin valve element array can be used for selectively sorting and transporting magnetic particles one particle at a time within the array. As the magnetically tagged particles are held by the spin-valve elements, application of an auxiliary magnetic field can be used to apply tension or torsion to the held particles or to move, e.g. rotate, the trapped particles. The arrays of spin-valve elements can be used in a variety of applications including drug screening, nucleic acid sequencing, structural control and analysis of RNA/DNA and protiens, medical diagnosis, and magnetic particle susceptibility and size homogenization for other medical applications.
    Type: Grant
    Filed: February 18, 2005
    Date of Patent: July 19, 2011
    Assignee: The United States of America, as represented by the Secretary of Commerce, The National Institute of Standards and Technology
    Inventors: John Moreland, Elizabeth Mirowski, Stephen E. Russek
  • Patent number: 7981661
    Abstract: The fluidic system of the preferred embodiment includes a sheath pump to pump sheath fluid from a sheath container into an interrogation zone, a sheath volume measurement device to measure the fluid in the sheath container, a waste pump to pump the sheath fluid and a sample fluid as waste fluid from the interrogation zone into a waste container, and a waste volume measurement device to measure the fluid in the waste container. The system also includes a controller connected to the sheath pump, the waste pump, and the volume measurement devices. The sheath pump and/or the waste pump draw sample fluid from a sample container into the interrogation zone, which functions to provide a location for the fluidic system and an optical system of the flow cytometer to cooperatively facilitate the analysis of the sample fluid.
    Type: Grant
    Filed: April 17, 2007
    Date of Patent: July 19, 2011
    Assignee: Accuri Cytometers, Inc.
    Inventor: Collin A. Rich
  • Publication number: 20110151491
    Abstract: A device, system and method is disclosed in which small volume blood samples are subjected to shear forces and shear stresses between two parallel planar surfaces to which linear motion trajectories are imparted. The formation of clots or coagulation of the sample is measured from dynamic mechanical coupling which occurs between the two parallel planar surfaces. Detection of the coagulation response can be achieved through optical probing or by measurement of physical effects of the blood sample binding to the planar surfaces, and restricting movement thereof.
    Type: Application
    Filed: December 17, 2010
    Publication date: June 23, 2011
    Applicant: ENTEGRION, INC.
    Inventors: Robert Glenn Dennis, Thomas H. Fischer, Joseph Anthony DaCorta
  • Patent number: 7964413
    Abstract: An automated analyzer for performing multiple diagnostic assays simultaneously includes multiple stations in which discrete aspects of the assay are performed on fluid samples contained in sample vessels. The analyzer includes stations for automatically preparing a sample, incubating the sample, preforming an analyte isolation procedure, ascertaining the presence of a target analyte, and analyzing the amount of a target analyte. An automated receptacle transporting system moves the sample vessels from one station to the next. A method for performing an automated diagnostic assay includes an automated process for isolating and amplifying a target analyte, and, in one embodiment, a method for real-time monitoring of the amplification process.
    Type: Grant
    Filed: March 10, 2006
    Date of Patent: June 21, 2011
    Assignee: Gen-Probe Incorporated
    Inventors: Jerzy A. Macioszek, Christopher B. Davis, Gary D. Lair, Thanh N. Nguyen, Haitao Li, Florence F. Li, Byron J. Knight, Robert F. Scalese, Robert E. Heinz
  • Patent number: 7960184
    Abstract: The present invention provides an active assay method for detecting a biological analyte. According to the method, a probe molecule is immobilized on a surface. An analyte is then placed in fluidic connection with the probe molecule on the surface. A force is then applied to the analyte to move it toward the surface to facilitate contact and possibly binding of the analyte to the probe. Optionally, another force can be applied or the force can be reversed, to remove unbound or weakly bound analyte from the surface. Analyte that remains bound to the surface is then detected. The detection can include rolling or sliding beads over an analyte and/or probe on a substrate, and detecting bound beads. The present invention furthermore, provides devices, such as electrophoresis apparatuses and biochip assemblies, for carrying out the methods of the invention.
    Type: Grant
    Filed: September 19, 2003
    Date of Patent: June 14, 2011
    Assignee: George Mason Intellectual Properties, Inc.
    Inventors: Victor Morozov, Tamara Morozova
  • Patent number: 7959861
    Abstract: Device and method for detecting the presence of known or unknown toxic agents in a fluid sample. Targets in the sample are bound to releasable receptors immobilized in a reaction region of a micro- or nano-fluidic device. The receptors are selected based on their affinity for classes of known toxic agents. The receptors are freed and the bound and unbound receptors separated based on differential electrokinetic mobilities while they travel to a detection device.
    Type: Grant
    Filed: April 14, 2008
    Date of Patent: June 14, 2011
    Assignee: STC.UNM
    Inventors: Gabriel Lopez, Linnea Ista, Steven R J Brueck, Aurelio Evangelista Lara, Mangesh Bore
  • Publication number: 20110125314
    Abstract: The present invention is directed to a method and automated unloading means for unloading a container from an apparatus. The apparatus of the present invention may include a means for automated loading, a means for automated transfer and/or a means for automated unloading of a container (e.g., a specimen container). In one embodiment, the apparatus can be an automated detection apparatus for rapid non-invasive detection of a microbial agent in a test sample. The detection system also including a heated enclosure, a holding means or rack, and/or a detection unit for monitoring and/or interrogating the specimen container to detect whether the container is positive for the presence of a microbial agent. In other embodiment, the automated instrument may include one or more, bar code readers, scanners, cameras, and/or weighing stations to aid in scanning, reading, imaging and weighing of specimen containers within the system.
    Type: Application
    Filed: May 14, 2010
    Publication date: May 26, 2011
    Applicant: BIOMERIEUX, INC.
    Inventors: Ronnie J. Robinson, Mark Joseph Fanning, Stanley Michael Philipak, Anthony Valentino, Mike Ammerman
  • Publication number: 20110124029
    Abstract: The present invention is directed to a method and automated loading mechanism for loading an apparatus. The apparatus of the present invention may include a means for automated loading, a means for automated transfer and/or a means for automated unloading of a container (e.g., a specimen container). In one embodiment, the apparatus can be an automated detection apparatus for rapid non-invasive detection of a microbial agent in a test sample. The detection system also including a heated enclosure, a holding means or rack, and/or a detection unit for monitoring and/or interrogating the specimen container to detect whether the container is positive for the presence of a microbial agent.
    Type: Application
    Filed: May 14, 2010
    Publication date: May 26, 2011
    Applicant: BIOMERIEUX, INC.
    Inventors: Richard Scott Remes, Stanley Michael Philipak, Mark Joseph Fanning, Ronnie J. Robinson, James Clement Bishop, Lawrence E. Guerra, Andrew Scherer, Anthony Valentino
  • Publication number: 20110124030
    Abstract: The present invention is directed to a method and automated loading mechanism for loading an apparatus. The apparatus of the present invention may include a means for automated loading, a means for automated transfer and/or a means for automated unloading of a container (e.g., a specimen container). In one embodiment, the apparatus can be an automated detection apparatus for rapid non-invasive detection of a microbial agent in a test sample. The detection system also including a heated enclosure, a holding means or rack, and/or a detection unit for monitoring and/or interrogating the specimen container to detect whether the container is positive for the presence of a microbial agent. In other embodiment, the automated instrument may include one or more, bar code readers, scanners, cameras, and/or weighing stations to aid in scanning, reading, imaging and weighing of specimen containers within the system.
    Type: Application
    Filed: May 14, 2010
    Publication date: May 26, 2011
    Applicant: BIOMERIEUX, INC.
    Inventors: STANLEY MICHAEL PHILIPAK, MARK JOSEPH FANNING, MIKE AMMERMAN, RON BERGOLD, ANDREW SCHERER
  • Publication number: 20110124039
    Abstract: The present invention refers to a staining process used in bacteriology able to standardize and make Gram's staining procedure easier and faster, preventing variations in its process. It further refers to an apparatus able to perform said process. The process comprises different placing steps, with different reagents and times of contact with the sample plates. The apparatus comprises peristaltic pumps to provide each reagent, sensors to indicate plate presence, switches to indicate the time the pumps were operating, a motor along with an external gear set to make the plate move for the staining processes, fan to help drying the plate after the process, buttons for starting and turning circuit on and lamps for machine in use and lack of reagent indications, as well as a reagent draining tank.
    Type: Application
    Filed: November 22, 2010
    Publication date: May 26, 2011
    Applicant: HEMOGRAM IND. COM. PRODS HOSPITALARES LTDA.
    Inventor: Eduardo Luiz Resende de Castro
  • Publication number: 20110124028
    Abstract: A method and automated apparatus for rapid non-invasive detection of a microbial agent in a test sample is described herein. The apparatus may include one or more means for automated loading, automated transfer and/or automated unloading of a specimen container. The apparatus also includes a detection system for receiving a detection container, e.g., container or vial, containing a biological sample and culture media. The detection system may also include one or more heated sources, holding structures or racks, and/or a detection unit for monitoring and/or interrogating the specimen container to detect whether the container is positive for the presence of a microbial agent therein. In other embodiment, the automated instrument may include one or more, bar code readers, scanners, cameras, and/or weighing stations to aid in scanning, reading, imaging and weighing of specimen containers within the system.
    Type: Application
    Filed: May 14, 2010
    Publication date: May 26, 2011
    Applicant: BIOMERIEUX, INC.
    Inventors: RONNIE J. ROBINSON, MARK JOSEPH FANNING, STANLEY MICHAEL PHILIPAK, RICHARD SCOTT REMES, JAMES CLEMENT BISHOP, GARY W. SOMMER, LAWRENCE E. GUERRA, MICHAEL A. HERRON
  • Publication number: 20110124096
    Abstract: The present invention is directed to a method and container locator means for moving a container among one or more work-flow stations within an apparatus. The apparatus of the present invention may include a means for automated loading, a means for automated transfer and/or a means for automated unloading of a container (e.g., a specimen container). In one embodiment, the apparatus can be an automated detection apparatus for rapid non-invasive detection of a microbial agent in a test sample. The detection system also including a heated enclosure, a holding means or rack, and/or a detection unit for monitoring and/or interrogating the specimen container to detect whether the container is positive for the presence of a microbial agent. In other embodiment, the automated instrument may include one or more, bar code readers, scanners, cameras, and/or weighing stations to aid in scanning, reading, imaging and weighing of specimen containers within the system.
    Type: Application
    Filed: May 14, 2010
    Publication date: May 26, 2011
    Applicant: BIOMERIEUX, INC.
    Inventors: Stanley Michael Philipak, Mark Joseph Fanning, Mike Ammerman, Ron Bergold, Andrew Scherer, Anthony Valentino
  • Publication number: 20110124037
    Abstract: The method comprises an automated removal of cells and/or cell colonies from a cell culture whilst executing a first detection step for selecting cells and/or cell colonies with reference to corporeal and/or physical parameters and detecting position data and storing the detected position data of the selected cells and/or cell colonies in a position database. In order to be able to select special cells and/or cell colonies having special properties from the detected cells and/or cell colonies, at least one second detection step for detecting at least one further parameter of the cells and/or cell colonies is then executed, comparative data from the data of the first and second detection step are created, cells and/or cell colonies are selected with reference to the comparative data and the position data from the position database are transferred to a harvesting unit.
    Type: Application
    Filed: September 20, 2007
    Publication date: May 26, 2011
    Applicant: AVISO GmbH
    Inventors: Rafael Backhaus, Jens Eberhardt, Marco Meinhard, Gerd Bornmann
  • Patent number: 7947509
    Abstract: The invention relates to optoelectronic systems for detecting one or more target particles. The system includes a reaction chamber, a specimen collector, an optical detector, and a reservoir containing cells, each of the cells having receptors which are present on the surface of each cell and are specific for the target particle to be detected, where binding of the target particle to the receptors directly or indirectly activates a reporter molecule, thereby producing a measurable optical signal.
    Type: Grant
    Filed: May 7, 2007
    Date of Patent: May 24, 2011
    Assignee: Massachusetts Institute of Technology
    Inventors: James Douglas Harper, Richard Hart Mathews, Bernadette Johnson, Martha Susan Petrovick, Ann Rundell, Frances Ellen Nargi, Timothy Stephens, Linda Marie Mendenhall, Mark Alexander Hollis, Albert M. Young, Todd H. Rider, Eric David Schwoebel, Trina Rae Vian
  • Patent number: 7947485
    Abstract: Devices and methods for detecting the constituent parts of biological polymers are disclosed. A molecular analysis device comprises a molecule sensor and a molecule guide. The molecule sensor comprises a single electron transistor including a first terminal, a second terminal, and a nanogap or at least one quantum dot positioned between the first terminal and the second terminal. A nitrogenous material disposed on the at least one quantum dot is configured for an interaction with an identifiable configuration of a molecule. The molecule sensor develops an electronic effect responsive to the interaction. The molecule guide is configured for guiding at least a portion of the molecule substantially near the molecule sensor to enable the interaction.
    Type: Grant
    Filed: June 3, 2005
    Date of Patent: May 24, 2011
    Assignee: Hewlett-Packard Development Company, L.P.
    Inventors: Wei Wu, Zhiyong Li, Shih-Yuan Wang, Philip J. Kuekes
  • Patent number: 7943397
    Abstract: The enumeration of cells in fluids by flow cytometry is widely used across many disciplines such as assessment of leukocyte subsets in different bodily fluids or of bacterial contamination in environmental samples, food products and bodily fluids. For many applications the cost, size and complexity of the instruments prevents wider use, for example, CD4 analysis in HIV monitoring in resource-poor countries. The novel device, methods and algorithms disclosed herein largely overcome these limitations. Briefly, all cells in a biological sample are fluorescently labeled, but only the target cells are also magnetically labeled. The labeled sample, in a chamber or cuvet, is placed between two wedge-shaped magnets to selectively move the magnetically labeled cells to the observation surface of the cuvet. An LED illuminates the cells and a CCD camera captures the images of the fluorescent light emitted by the target cells.
    Type: Grant
    Filed: July 30, 2004
    Date of Patent: May 17, 2011
    Assignee: Veridex, LLC
    Inventors: Arjan Tibbe, Jan Greve, Dhanesh Gohel, Erik Droog, Leon W. M. M. Terstappen
  • Publication number: 20110111443
    Abstract: To provide an autoanalyzer for analyzing a sugar chain contained in a biological sample, in particular, serum. Namely, it is intended to provide a method of analyzing a sugar chain in a sample, which comprises the following steps: A) the sugar chain-releasing step of releasing the sugar chain in the sample; B) the detection sample-preparing step of preparing the released sugar chain for detection; and, in the case of conducting mass spectrometry using a plate, C) the step of forming a plate for the mass spectrometry having the captured sugar chain dotted thereon which comprises the step of providing the tagged sugar chain sample solution obtained in the step B) on a collection plate; and, if required, the step of conducting an operation in a solid phase support-enclosed plate to form the plate for mass spectrometry; and D) the step of analyzing the sugar chain to be assayed.
    Type: Application
    Filed: October 3, 2008
    Publication date: May 12, 2011
    Applicants: NATIONAL UNIVERSITY CORPORATION HOKKAIDO UNIVERSITY, SYSTEM INSTRUMENTS CO., LTD., SHIONOGI & CO., LTD.
    Inventors: Shinichiro Nishimura, Yasuro Shinohara, Yoshiaki Miura, Hiroshi Yamazaki, Michio Horiuchi, Hiroaki Motoki, Toshiharu Kuroda, Yoko Kita, Mika Nakano
  • Publication number: 20110111392
    Abstract: A method and apparatus for determining the concentration of an analyte in a sample is provided. This method involves combining enhanced chemiluminescence with microchip capillary electrophoresis or microchip liquid chromatography.
    Type: Application
    Filed: April 21, 2008
    Publication date: May 12, 2011
    Applicant: HONEYWELL INTERNATIONAL INC.
    Inventors: Tao Pan, Zhenhong Sun, Wendy Wang, Xuanbin Liu
  • Publication number: 20110104742
    Abstract: The invention provides an integrated sequential sample preparation system using a sequential centrifuge for preparing samples for analysis. Methods of more efficiently preparing discrete samples sequentially for subsequent analysis are also provided. The apparatus and methods for sequentially preparing discrete samples provide improved operating efficiencies over conventional preparation processes that use batch centrifugation systems. Such advantages include reducing dwell time, increasing system throughput, reducing sample preparation system footprint, and improving precision of the analytical process. The integrated sequential preparation system with the integrated sequential centrifuge further provides the capability of handling critical or STAT samples without compromising the operating efficiencies achieved by preparing discrete samples in a sequential manner.
    Type: Application
    Filed: March 10, 2009
    Publication date: May 5, 2011
    Inventors: William Alan Fox, Charles L. Carrico, JR.
  • Patent number: 7932081
    Abstract: An automated analyzer for performing multiple diagnostic assays simultaneously includes multiple stations in which discrete aspects of the assay are performed on fluid samples contained in sample vessels. The analyzer includes stations for automatically preparing a sample, incubating the sample, preforming an analyte isolation procedure, ascertaining the presence of a target analyte, and analyzing the amount of a target analyte. An automated receptacle transporting system moves the sample vessels from one station to the next. A method for performing an automated diagnostic assay includes an automated process for isolating and amplifying a target analyte, and, in one embodiment, a method for real-time monitoring of the amplification process.
    Type: Grant
    Filed: March 10, 2006
    Date of Patent: April 26, 2011
    Assignee: Gen-Probe Incorporated
    Inventors: Gary D. Lair, Thanh N. Nguyen, Haitao Li, Florence F. Li, Byron J. Knight, Robert E. Heinz, Jerzy A. Macioszek, Christopher B. Davis, Robert F. Scalese
  • Patent number: 7927867
    Abstract: The current invention is directed towards a device that useful for studying cell migration. It is preferred that the device is configured to study stem cell, particularly hematopoetic stem/precursor cell homing. The device allows for detailed analysis of the various phases of the multiphase homing process. There are also provided herein, novel methods of using the device, including, but not limited to, dissection of the homing process under microenvironmental conditions mimicking healthy conditions, diseased conditions, inflammatory conditions, drug treatment conditions and experimental conditions.
    Type: Grant
    Filed: March 31, 2006
    Date of Patent: April 19, 2011
    Assignee: Cascade Life Sciences, Inc.
    Inventor: Sophia K Khaldoyanidi
  • Patent number: 7927495
    Abstract: A device (10) is described for automatically separating solid and liquid phases of a suspension (78) and for purifying magnetic microparticles (76) loaded with organic, e.g., biological or biochemical substances. The device includes a process area (12) with devices, which move in a cyclic manner for transporting the magnetic microparticles (76) in the x-direction. A first guide (14) is used for supplying sample containers (P) in the x-direction and second guides (18) are used for supplying reagent containers (R) in the y-direction to the process area (12). The second guides (18) in the y-direction extend at an angle (?) of 30 to 150 ° to the x-direction. A carrier element (24), including carrier plates (24a, 24b, 24c) can be moved back and forth in the x-direction and can be lifted and lowered in the z-direction.
    Type: Grant
    Filed: January 4, 2005
    Date of Patent: April 19, 2011
    Assignee: Qiagen Instruments AG
    Inventor: Konstantin Lutze
  • Publication number: 20110076684
    Abstract: An apparatus is disclosed for acquiring, detecting, and, optionally, analyzing cells in a biological liquid, which apparatus has a microfluidic system. In at least one embodiment, the apparatus includes at least one microfluidic channel having a small cross-section which is completely or partially coated with cell-specific binding molecules and which has no flow obstacles dividing the fluid flow; at least one apparatus for generating a steady and alterable liquid flow through the microfluidic channel, and optionally at least one apparatus for analyzing the genetic information of the cell.
    Type: Application
    Filed: September 13, 2010
    Publication date: March 31, 2011
    Inventors: Alexander FREY, Karsten Hiltawsky, Daniel Sickert
  • Publication number: 20110076755
    Abstract: A sample preparation apparatus comprising: a storage chamber that can store therein a liquid sample including an analysis target to be analyzed; a concentrated sample storage chamber that is provided to communicate with the storage chamber and that stores therein concentrated liquid having an analysis target having a higher concentration than that of the liquid sample; and an analysis target transportation section for transporting the analysis target included in the liquid sample stored in the storage chamber to the concentrated sample storage chamber. A cell analyzer is also disclosed.
    Type: Application
    Filed: September 29, 2010
    Publication date: March 31, 2011
    Applicant: SYSMEX CORPORATION
    Inventors: Ryuichiro EBI, Koki Tajima
  • Publication number: 20110070606
    Abstract: Systems and methods analyzing body fluids contain cells including blood, bone marrow, urine, vaginal tissue, epithelial tissue, tumors, semen, and spittle are disclosed. The systems and methods utilize an improved technique for applying a monolayer of cells to a slide and generating a substantially uniform distribution of cells on the slide. Additionally aspects of the invention also relate to systems and method for utilizing multi-color microscopy for improving the quality of images captured by a light receiving device.
    Type: Application
    Filed: April 27, 2010
    Publication date: March 24, 2011
    Applicant: Constitution Medical, Inc.
    Inventors: James Winkelman, Milenko Tanasijevic, David Zahniser, James Linder
  • Publication number: 20110071039
    Abstract: A flexible diagnostic workstation comprises is equipped to read label information on well strips of loaded well plates and on loaded reagent kit holders, automatically perform the pre-analytical steps of an immuno-assay which consists of a sequence of operations in accordance with scheduled test requirements for each microwell, read the results according to either a standard singleplex ELISA or multiplex test format as indicated by the well strip label, and report the results.
    Type: Application
    Filed: July 24, 2009
    Publication date: March 24, 2011
    Inventors: Vijay Kumar, William J. Maggio, Gregory E. Lowe, Kishore S. Malyavantham
  • Publication number: 20110045517
    Abstract: A toxic material detection apparatus includes a sample collection portion including a sample inlet and a sample concentrator adapted to concentrate an environmental sample on a substrate. A sample distributing system transfers portions of the substrate to a color sensor and an ion mobility spectrometer for simultaneously analysis and toxin detection, particularly cholinesterase inhibitor detection. Optionally, a portion of the substrate may be directed to an archive for possible analysis at a later time. Reagents utilized include the enzyme acetylcholinesterase (AChE), and the reactants acetylthiocholine iodide (ATCI) and 5,5?-dithio-bis-(2-nitrobenzoic acid) (DTB). A data management unit provides for near-real-time analysis of the samples in under 5 minutes. Simultaneous “hits” by both analysis methods indicate the presence of a cholinesterase inhibitor.
    Type: Application
    Filed: November 6, 2008
    Publication date: February 24, 2011
    Applicant: BATTELLE MEMORIAL INSTITUTE
    Inventors: Tricia L Derringer, Matthew J Shaw, Rodney S Black, Trevor Petrel, Fred Moore, Laurence Slivon, David N Clark, Tom Danison
  • Patent number: RE42315
    Abstract: The present invention provides a nanostructured device comprising a substrate including nanotroughs therein; and a lipid bilayer suspended on or supported in the substrate. A separation method is also provided comprising the steps of supporting or suspending a lipid bilayer on a substrate; wherein the substrate comprises nanostructures and wherein the lipid bilayer comprises at least one membrane associated biomolecule; and applying a driving force to the lipid bilayer to separate the membrane associated biomolecule from the lipid bilayer and to drive the membrane associated biomolecule into the nanostructures.
    Type: Grant
    Filed: July 5, 2007
    Date of Patent: May 3, 2011
    Assignee: STC.UNM
    Inventors: Gabriel P. Lopez, Steven R. J. Brueck, Linnea K. Ista