Patents Assigned to Haemonetics Corporation
  • Patent number: 8986239
    Abstract: A blood-collection system configured to permit selection of either collection and disposal of shed blood from a patient or collection and processing of shed blood for autologous transfusion back to the patient includes an automated blood-processing machine. The system may also include a blood-collection reservoir, a separation chamber, and a fluid conduit. The blood-collection reservoir may be engageable with the blood-processing machine so that the machine can identify and report the presence of blood in the reservoir. The separation chamber may also be engageable with the blood processing machine. The fluid conduit may be configured to selectively join the reservoir to the separation chamber by a quick-connect coupling.
    Type: Grant
    Filed: March 12, 2013
    Date of Patent: March 24, 2015
    Assignee: Haemonetics Corporation
    Inventor: Alec D. Bobroff
  • Patent number: 8961489
    Abstract: A container for storing donated blood plasma has a neck and an attachable locking cap. The cap may be rotatably attached to the neck. The cap and the neck are configured to lock the cap in at least one, and preferably two, rotational positions. In one position, tubes connected to the container are accessible. After the plasma has been collected and the tubes have been cut off and sealed, in the other position, the tube stubs are protected by the cap. The bottle and the cap may define structures that facilitate storing and protecting tubing wrapped longitudinally around the container, until the container is used to collect and store plasma.
    Type: Grant
    Filed: May 12, 2010
    Date of Patent: February 24, 2015
    Assignee: Haemonetics Corporation
    Inventors: Donald Schwarz, Seth Kasper, Ron Marek, Graeme Struthers
  • Patent number: 8905978
    Abstract: A medical tubing clamp includes a first member, a second member, and a hinge connecting the first and second members to form a body. The second member has a first and second wall portion extending distally toward the first member, and a shelf extending between and connecting the first and second wall portions. The first and second wall portions and the shelf define a recess. The hinge allows the first and second members to move relative to one another to transition the clamp between an open mode and a closed mode. The first member is located within the recess and supported by the shelf when in the closed mode. The hinge has a first opening configured to receive the tubing. The clamp also has a tubing closure member that deforms the tubing to prevent fluid flow through the tubing when in the closed mode.
    Type: Grant
    Filed: March 14, 2013
    Date of Patent: December 9, 2014
    Assignee: Haemonetics Corporation
    Inventor: John F. Perullo
  • Publication number: 20140266743
    Abstract: A blood-donation system and methods of usage are disclosed. The system includes a blood-donating chair configured to interoperate with various blood-processing apparatuses. The system further combines into a self-contained system all devices, communications pathways and power supplies for various powered devices employed during a blood-collecting session. The system may further interoperate with other blood-donation systems allowing for continuous monitoring of multiple blood-collecting sessions at a single user interface. According to another embodiment, in addition to interoperability, the system is further configured for upgradability, in which, various donor-station devices may be mounted and remounted.
    Type: Application
    Filed: March 15, 2013
    Publication date: September 18, 2014
    Applicant: Haemonetics Corporation
    Inventor: Gary R. Stacey
  • Patent number: 8834402
    Abstract: A method for the re-anticoagulation of platelet rich plasma in a blood apheresis system includes priming the blood apheresis system with anticoagulant, such that a volume of anticoagulant is transferred to a PRP container. The method may then transfer the anticoagulant within the PRP container to a red blood cell container, and collect a volume of platelet rich plasma within the PRP container. The platelet rich plasma may be collected in a plurality of cycles. Between collection cycles, the method may transfer a portion of the volume of anticoagulant from the red blood cell container to the PRP container.
    Type: Grant
    Filed: March 12, 2009
    Date of Patent: September 16, 2014
    Assignee: Haemonetics Corporation
    Inventors: Etienne Pagès, Michael Ragusa
  • Publication number: 20140238940
    Abstract: A reservoir for use with a blood collection system includes a housing defining a cavity and a single stage filter. The housing has an inlet for receiving fluid from a source and an outlet. The inlet is in fluid communication with the cavity. The single stage filter includes a filter membrane configured to filter the fluid entering the housing from the inlet, and a frame defining the structure of the single stage filter. The frame also supports the filter membrane within the housing, and has a wiper edge that seals against an inner wall of the housing.
    Type: Application
    Filed: May 7, 2014
    Publication date: August 28, 2014
    Applicant: Haemonetics Corporation
    Inventors: Donald J. Schwarz, Steve Mastroyin, Seth Kasper
  • Patent number: 8808217
    Abstract: A method and apparatus for collecting plasma reduced platelets potentially suspended in a synthetic solution from a donor. Whole blood is drawn from the donor and introduced into a separation chamber. Platelets are extracted from the separation chamber into a container, using, for example, surge (with anticoagulated plasma or a synthetic solution) or push methodologies. The remaining blood components in the separation chamber are returned back to the donor. The steps of drawing whole blood and introducing the whole blood into the separation chamber, extracting platelets from the separation chamber into the container, and returning the remaining components in the chamber back to the donor are repeated. The sequestered platelets in the container are reintroduced into the separation chamber, whereupon a plasma reduced platelet product is extracted.
    Type: Grant
    Filed: May 2, 2013
    Date of Patent: August 19, 2014
    Assignee: Haemonetics Corporation
    Inventors: Toshiyasu Ohashi, Etienne Pagès, Dominique Uhlmann, Pascal Maillard, Michael Ragusa
  • Patent number: 8808978
    Abstract: A method for washing platelets includes introducing anticoagulant into a platelet product container, drawing re-anticoagulated platelet product from the platelet product container, and introducing it into a centrifuge bowl. The centrifuge bowl separates the platelets from the supernatant in which they are suspended. The method then washes the platelets by introducing wash solution into the centrifuge bowl. As the wash solution is introduced into the bowl, it displaces the supernatant from the bowl and into a waste container. The method then introduces platelet additive solution into the centrifuge bowl, which displaces the wash solution from the centrifuge bowl and into the waste container and further wash the platelets. The method then repeatedly accelerates and decelerates the centrifuge bowl to resuspend the platelets in the platelet additive solution.
    Type: Grant
    Filed: November 15, 2010
    Date of Patent: August 19, 2014
    Assignee: Haemonetics Corporation
    Inventors: Etienne Pagès, Dominique Uhlmann, Matthew Murphy
  • Patent number: 8770249
    Abstract: Tubing sealers, whether hand held or desk mounted, heat seal liquid filled plastic tubing on command to develop sealed liquid filled easily separable segments serially attached to one another. The sealer generates a source of RF energy to heat seal the plastic tubing on placement of the tubing between a fixed jaw and a tubing compressing moveable ground jaw. The moveable ground jaw serves as a heat sink to dissipate heat and prevents a heat buildup during rapid repetitive operation of the sealer. The configuration of the moveable ground jaw coming in contact with the tubing primarily, but in combination with the degree of compression of the tubing and the RF power applied, controls both the integrity of the seal and the ease with which the sealed segments of tubing can be separated from one another.
    Type: Grant
    Filed: October 18, 2007
    Date of Patent: July 8, 2014
    Assignee: Haemonetics Corporation
    Inventors: Tulsie P. Sumeer, Douglas F. Wright, Shilpin Shah
  • Patent number: 8775209
    Abstract: Apparatus and methods are described for matching of mothers' milk to the correct baby in hospitals or other institutions where mothers' milk is expressed in advance and stored for feeding to the baby at a later time. Electronically readable indicia are used to confirm the identity of the baby, the milk units, and caregivers when the mother's milk is fed to a baby. Apparatus and methods for the collection, storage, and communication of information relevant to handling of the mother's milk are detailed such that complete audit trails are recorded and guidance to the caregiver is provided in order to ensure that all required procedures are executed properly.
    Type: Grant
    Filed: October 12, 2006
    Date of Patent: July 8, 2014
    Assignee: Haemonetics Corporation
    Inventor: Geof Auchinleck
  • Patent number: 8758321
    Abstract: A portable blood storage device includes an outer housing an inner housing. The outer housing defines the structure of the blood storage device. The inner housing is located within the outer housing and has an interior cavity for storing collected blood and/or blood components. The inner housing has an open top to allow access to the interior cavity. The storage device also has an inlet duct and a return duct located within the interior cavity. The inlet duct is fluidly connectable to a cooling device and brings conditioned air into the storage device when fluidly connected to the cooling device. The return duct is also fluidly connectable to the cooling device and returns exhaust air to the cooling device when fluidly connected.
    Type: Grant
    Filed: May 13, 2010
    Date of Patent: June 24, 2014
    Assignee: Haemonetics Corporation
    Inventors: Gary Stacey, Robert E. Putt, Michael R. D'Arrigo, Robert Lancelot, Timothy Olaska, Steven Portela, Frank Jason Black
  • Publication number: 20140148750
    Abstract: A blood processing device includes a venous-access device, a blood component separation device, a return line, a draw line, a first pressure sensor, a second pressure sensor, and a first pump. The first pressure sensor is located on the return line between the blood component separation device and the venous-access device, and determines a first pressure. The second pressure sensor is located on the draw line between the blood component separation device and the venous-access device, and determines a second pressure. The first pump is connected to at least one of the return line and the draw line and controls a flow rate within the connected line based on a subject access pressure determined based upon the first and second pressures.
    Type: Application
    Filed: January 29, 2014
    Publication date: May 29, 2014
    Applicant: Haemonetics Corporation
    Inventors: Etienne Pagès, Michael Ragusa
  • Publication number: 20140128239
    Abstract: A continuous flow centrifuge bowl includes a rotatable outer body, and a top and bottom core that are rotatable with the outer body. The bottom core has a wall extending proximally from a bottom wall. The proximally extending wall is radially outward from at least a portion of the top core and, together with the top core, defines a primary separation region in which initial separation of the whole blood occurs. The bowl may also have a secondary separation region located between the top core and the outer body, and a rotary seal that couples an inlet port and two outlet ports to the outer body. The inlet port may be connected to an inlet tube that extends distally into a whole blood introduction region. Additionally, one of the outlet ports may be connected to an extraction tube that extends into a region below the bottom core.
    Type: Application
    Filed: November 5, 2013
    Publication date: May 8, 2014
    Applicant: Haemonetics Corporation
    Inventors: Matthew Murphy, Dominique Uhlmann, Edward Powers, Michael Ragusa, Etienne Pagès
  • Patent number: 8702637
    Abstract: A blood processing device includes a venous-access device, a blood component separation device, a return line, a draw line, a first pressure sensor, a second pressure sensor, and a first pump. The first pressure sensor is located on the return line between the blood component separation device and the venous-access device, and determines a first pressure. The second pressure sensor is located on the draw line between the blood component separation device and the venous-access device, and determines a second pressure. The first pump is connected to at least one of the return line and the draw line and controls a flow rate within the connected line based on a subject access pressure determined based upon the first and second pressures.
    Type: Grant
    Filed: April 14, 2008
    Date of Patent: April 22, 2014
    Assignee: Haemonetics Corporation
    Inventors: Etienne Pagès, Michael Ragusa
  • Publication number: 20140100506
    Abstract: A blood processing system for collecting and exchanging blood components includes a venous-access device for drawing whole blood from a subject and returning blood components to the subject. The system may include three lines connecting the venous access device to a blood component separation device and an anticoagulant source. A blood draw line fluidly connects to the venous-access device to the blood component separation device. An anticoagulant line introduces anticoagulant into the drawn whole blood. A return line, fluidly connected to the venous-access device and the blood component separation device, returns uncollected blood component to the subject. Each line may have a pump that controls flow through the line. The blood component separation device separates the drawn blood into a first blood component and a second blood component, and may be configured to send the first blood component to a first blood component bag.
    Type: Application
    Filed: December 10, 2013
    Publication date: April 10, 2014
    Applicant: Haemonetics Corporation
    Inventors: Etienne Pagès, Michael Ragusa
  • Patent number: 8647289
    Abstract: A blood processing device includes a venous-access device, a blood component separation device, a return line, a draw line, a first pressure sensor, a second pressure sensor, and a first pump. The first pressure sensor is located on the return line between the blood component separation device and the venous-access device, and determines a first pressure. The second pressure sensor is located on the draw line between the blood component separation device and the venous-access device, and determines a second pressure. The first pump is connected to at least one of the return line and the draw line and controls a flow rate within the connected line based on a subject access pressure determined based upon the first and second pressures.
    Type: Grant
    Filed: March 31, 2011
    Date of Patent: February 11, 2014
    Assignee: Haemonetics Corporation
    Inventors: Etienne Pagès, Michael Ragusa
  • Publication number: 20140039373
    Abstract: An apparatus for separating whole blood includes an access device for drawing whole blood from a source, a blood component separation device, a draw line, a draw pump, and a controller. The blood component separation device separates the drawn whole blood into a first blood component and a second blood component. The draw line fluidly connects the access device and the blood component separation device, and the draw pump draws whole blood from the source through the access device and draw line and into the blood component separation device. The controller controls fluid flow through the apparatus and operation of the draw pump. The controller also monitors the total volume of whole blood drawn from the source and the total volume of first blood component collected. The controller stops the draw pump when the first of a target whole blood volume is withdrawn or a target volume of first blood component is collected.
    Type: Application
    Filed: October 4, 2013
    Publication date: February 6, 2014
    Applicant: Haemonetics Corporation
    Inventors: Michael Ragusa, Shiven Ruparel, Dominique Uhlmann
  • Patent number: 8640738
    Abstract: An improved tubing device, preferably for use in the medical industry is provided. The tubing device provides a seamless transport path by using the tubing itself as the transport means without any other internally wetted parts, or connections, to provide a substantial reduction in the number of fluid contact components, and eliminate the need for cutting tubes into segments to be later bonded via tubing connectors. This can reduce the risk of contamination of the transported materials and can also reduce the use of chemicals such as adhesives and bonding agents.
    Type: Grant
    Filed: July 13, 2009
    Date of Patent: February 4, 2014
    Assignee: Haemonetics Corporation
    Inventors: Majid Zia, Anthony J. Angelo, Craig M. Wilson
  • Patent number: 8628671
    Abstract: A reservoir for use with a blood collection system includes a housing, a pre-filter, and a spring mechanism. The housing defines a cavity and has an inlet for receiving fluid from a source. The pre-filter is located within the cavity, removes particulates contained within the fluid, and allows the fluid to pass through the pre-filter. The spring mechanism is connected to the pre-filter and allows the pre-filter to travel within the cavity as the pre-filter collects particulates.
    Type: Grant
    Filed: March 13, 2012
    Date of Patent: January 14, 2014
    Assignee: Haemonetics Corporation
    Inventors: Jonathan Eagle, Donald J. Schwarz, Seth Kasper, Steve Mastroyin
  • Patent number: RE45315
    Abstract: A whole blood collection system includes an automated pump/control unit and an accompanying disposable blood set. When combined and connected to a source of anticoagulant, these elements allow automatic priming of the blood set with anticoagulant and automatic collection of anticoagulated blood product according to three different collection modes. The unit's pump and the blood set are specially designed to cooperate during the collection process to assure that the collected product has a precise blood to anticoagulant ratio. During the collection procedure, the pump/control unit automatically collects data relating to the procedure. Additional data specifically identifying components of the blood set, such as the blood collection bag, along with identification data on the donor's registration form may be scanned into the pump/controller unit by a scanner associated with the unit; this facilitates positive sample identification and tracking.
    Type: Grant
    Filed: June 10, 2004
    Date of Patent: December 30, 2014
    Assignee: Haemonetics Corporation
    Inventors: Ronald O. Gilcher, Jacques Chammas, Joseph M. Medberry, Gary R. Stacey