Patents by Inventor Kai Kolari

Kai Kolari 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).

  • Patent number: 8895292
    Abstract: A microfluidic chip device (MCD) and its use for performing miniaturized assays on magnetic microbeads (MMs) are described. The MCD is particularly useful for carrying out miniaturized transcript analysis by aiding affinity capturing (TRAC) assays, including PCR. The MCD comprises at least one reaction chamber with sealable liquid connections and at least one fluidic pillar filter in each chamber. The fluidic pillar filter comprises rods with spacings allowing MMs to pass. The sealable liquid connections feed liquid to the reaction chamber, wherein air bubbles are removed. The liquid stream contacts the MMs, which are manipulated with a magnetic rod. The liquid connections enable trapping of the MMs behind the pillar filters or in the channel, while the liquid is changed.
    Type: Grant
    Filed: April 9, 2009
    Date of Patent: November 25, 2014
    Assignee: Valtion Teknillinen Tutkimuskeskus
    Inventors: Hans Söderlund, Ari Hokkanen, Kari Kataja, Ingmar Stuns, Kai Kolari, Heli Siren, Stella Rovio, Reetta Satokari, Jan Rautio
  • Patent number: 8329476
    Abstract: A sample port includes a body equipped with an internal cavity and two plungers arranged moveably in the internal cavity, whereby the plungers can be pressed against each other in the internal cavity, in order to compress a sample. At least one of the plungers can be moved into a reactor in order to collect a sample. The sample port also includes a sample chamber, which is formed by a space remaining between the internal cavity and the plungers. At least one sample-container connection is connected in connection with the internal cavity in order to collect the sample from sample chamber. In addition, the sample port has a filter which is provided to at least either plunger for separating a liquid component of the sample from a solid component and means for leading the liquid component of the sample out of the sample chamber.
    Type: Grant
    Filed: May 21, 2010
    Date of Patent: December 11, 2012
    Assignee: Teknologian Tutkimuskeskus VTT
    Inventors: Juha-Pekka Pitkänen, Ari Hokkanen, Päivi Heimala, Jari Kauhaniemi, Kai Kolari, Pekka Savolahti, Jaana Uusitalo
  • Publication number: 20120115243
    Abstract: The invention relates to a sample port, filter, and sampling method. The sample port according to the invention comprises a body equipped with an internal cavity and two plungers arranged moveably in this, which can be pressed against each other in the internal cavity, in order to compress a sample, and at least one of which plungers can be moved into a reactor, in order to collect a sample. The sample port also comprises a sample chamber, which is formed by the space remaining between the internal cavity and the plungers, and at least one sample-container connection connected in connection with the internal cavity, in order to collect the sample from sample chamber. In addition, the sample port has filter means adapted to at least either plunger for separating the liquid component of the sample from the solid component and means for leading the liquid component of the sample out of the sample chamber.
    Type: Application
    Filed: May 21, 2010
    Publication date: May 10, 2012
    Applicant: Teknologian Tutkimuskeskus VTT
    Inventors: Juha-Pekka Pitkänen, Ari Hokkanen, Päivi Heimala, Jari Kauhaniemi, Kai Kolari, Pekka Savolahti, Jaana Uusitalo
  • Publication number: 20090269767
    Abstract: A microfluidic chip device (MCD) and its use for performing miniaturized assays on magnetic microbeads (MMs) are described. The MCD is particularly useful for carrying out miniaturized transcript analysis by aiding affinity capturing (TRAC) assays, including PCR. The MCD comprises at least one reaction chamber with sealable liquid connections and at least one fluidic pillar filter in each chamber. The fluidic pillar filter comprises rods with spacings allowing MMs to pass. The sealable liquid connections feed liquid to the reaction chamber, wherein air bubbles are removed. The liquid stream contacts the MMs, which are manipulated with a magnetic rod. The liquid connections enable trapping of the MMs behind the pillar filters or in the channel, while the liquid is changed.
    Type: Application
    Filed: April 9, 2009
    Publication date: October 29, 2009
    Applicant: c/o Valtion teknillinen tutkimuskeskus
    Inventors: Hans SODERLUND, Ari Hokkanen, Kari Kataja, Ingmar Stuns, Kai Kolari, Heli Siren, Stella Rovio, Reetta Satokari, Jari Rautio