Patents by Inventor Raimo Harju
Raimo Harju 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: 9885700Abstract: The invention relates to a method and apparatus for detecting elution of a sample from a sample substrate to incubation buffer contained in a sample well while the sample substrate is still within the well. The method comprises measuring light absorption of the contents of the sample well at a predefined wavelength or wavelength range, and determining, based on the absorption measurement, the degree of elution of the sample. According to the invention, a wavelength or wavelength range is used which is absorbed by at least one elutable component of the sample but transmitted by the sample substrate. The invention provides a reliable way of determining the degree of elution of blood samples in neonatal screening, for example.Type: GrantFiled: March 22, 2016Date of Patent: February 6, 2018Assignee: Wallac OyInventors: Ida Erling, Raimo Harju
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Patent number: 9736555Abstract: A method for cross-talk correction of intensities measured on mutually separate detection wavelength bands is presented. Each detection wavelength band relates to one of analyte-specific probe-populations contained by a sample to be analyzed. Each probe-population is capable of emitting a first signal component and a second signal component whose spectra have maxima at different wavelengths and at least the first signal component is dependent on presence of analyte detectable with that probe-population. Cross-talk corrected intensities are computed on the basis of a) the intensities measured on the detection wavelength bands, b) a value indicative of intensity occurring on an auxiliary wavelength band outside the detection wavelength bands and at least partially caused by the second signal components, and c) pre-determined cross-talk parameters.Type: GrantFiled: April 8, 2014Date of Patent: August 15, 2017Assignee: WALLAC OYInventors: Ville Petteri Laitala, Raimo Harju
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Publication number: 20160202238Abstract: The invention relates to a method and apparatus for detecting elution of a sample from a sample substrate to incubation buffer contained in a sample well while the sample substrate is still within the well. The method comprises measuring light absorption of the contents of the sample well at a predefined wavelength or wavelength range, and determining, based on the absorption measurement, the degree of elution of the sample. According to the invention, a wavelength or wavelength range is used which is absorbed by at least one elutable component of the sample but transmitted by the sample substrate. The invention provides a reliable way of determining the degree of elution of blood samples in neonatal screening, for example.Type: ApplicationFiled: March 22, 2016Publication date: July 14, 2016Applicant: Wallac OyInventors: Ida Erling, Raimo Harju
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Patent number: 9329120Abstract: The invention relates to a method and apparatus for detecting elution of a sample from a sample substrate to incubation buffer contained in a sample well while the sample substrate is still within the well. The method comprises measuring light absorption of the contents of the sample well at a predefined wavelength or wavelength range, and determining, based on the absorption measurement, the degree of elution of the sample. According to the invention, a wavelength or wavelength range is used which is absorbed by at least one elutable component of the sample but transmitted by the sample substrate. The invention provides a reliable way of determining the degree of elution of blood samples in neonatal screening, for example.Type: GrantFiled: October 1, 2009Date of Patent: May 3, 2016Assignee: Wallac OyInventors: Ida Erling, Raimo Harju
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Publication number: 20160066072Abstract: A method for cross-talk correction of intensities measured on mutually separate detection wavelength bands is presented. Each detection wavelength band relates to one of analyte-specific probe-populations contained by a sample to be analyzed. Each probe-population is capable of emitting a first signal component and a second signal component whose spectra have maxima at different wavelengths and at least the first signal component is dependent on presence of analyte detectable with that probe-population. Cross-talk corrected intensities are computed on the basis of a) the intensities measured on the detection wavelength bands, b) a value indicative of intensity occurring on an auxiliary wavelength band outside the detection wavelength bands and at least partially caused by the second signal components, and c) pre-determined cross-talk parameters.Type: ApplicationFiled: April 8, 2014Publication date: March 3, 2016Inventors: Ville Petteri LAITALA, Raimo HARJU
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Publication number: 20110034343Abstract: The invention relates to a method and apparatus for detecting elution of a sample from a sample substrate to incubation buffer contained in a sample well while the sample substrate is still within the well. The method comprises measuring light absorption of the contents of the sample well at a predefined wavelength or wavelength range, and determining, based on the absorption measurement, the degree of elution of the sample. According to the invention, a wavelength or wavelength range is used which is absorbed by at least one elutable component of the sample but transmitted by the sample substrate. The invention provides a reliable way of determining the degree of elution of blood samples in neonatal screening, for example.Type: ApplicationFiled: October 1, 2009Publication date: February 10, 2011Applicant: WALLAC OYInventors: Ida Erling, Raimo Harju
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Publication number: 20100308234Abstract: The invention concerns a measurement system and method for optical spectroscopic measurement of samples. The system comprises an illumination source for forming a primary light beam, a first tunable monochromator for spectrally filtering the primary light beam, a sample-receiving zone to which the spectrally filtered primary beam is directed for producing a secondary light beam affected by a sample in the sample receiving zone, and a second tunable monochromator for spectrally filtering the secondary light beam, and a detector for measuring the intensity of the spectrally filtered secondary beam. In particular, the system is adapted to scan a predefined wavelength range using one of the monochromators and to tune the other monochromator sequentially to one of at least two predefined separate wavelengths in order to eliminate the effect of undesired diffraction orders of the second monochromator on the measurement.Type: ApplicationFiled: January 23, 2009Publication date: December 9, 2010Applicant: Wallac OYInventors: Raimo Harju, Petri Kivelä, Jyrki Laitinen, Pauli Salmelainen, Jarkko Sarmaala
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Publication number: 20070177149Abstract: The present invention relates generally to the field of biochemical laboratory instrumentation for different applications of measuring properties of samples on e.g. microtitration plates and corresponding sample supports. The object of the invention is achieved by providing an optical measurement instrumentation which comprises a point detector (531) for the measurement of homogeneous samples, and an image detector (591) for the measurement samples wherein the substance to be measured is inside or attached to details such as cells. The instrumentation has thus two measurement modes for the measurement of different types of samples. In measurement of details, improved measurement accuracy is obtained, as well as better insensitivity to the number and location of the details such as cells or particles within a sample.Type: ApplicationFiled: December 26, 2006Publication date: August 2, 2007Inventors: Petri Aronkyto, Raimo Harju, Ari Kuusisto, Petri Kivela, Mikko Vaisala
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Patent number: 7199879Abstract: The present invention relates generally to the field of biochemical laboratory instrumentation for different applications of measuring properties of samples on e.g. microtitration plates and corresponding sample supports. The object of the invention is achieved by providing an optical measurement instrument for photoluminescence, chemiluminescence and/or AlphaScreen measurements wherein different optical modules are used for alternative measurements. The excitation pulses for the alternative measurements are guided via two different routes to optical modules, the routes reaching the module in different angles. This way it is possible to use alternative radiation sources without optical switches and without changing the optical system. The object of the invention is further achieved by providing an additional lens in the optical module when a thermo plate is used. This way it is possible to achieve a correct optical focus in different measurement modes not depending on the use of the thermo plate.Type: GrantFiled: February 25, 2004Date of Patent: April 3, 2007Assignee: Wallac OyInventors: Raimo Harju, Janne Salonen, Hannu Turunen
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Patent number: 7023553Abstract: The present invention relates generally to the field of biochemical laboratory. More particularly the invention relates to more reliable, intelligent instrumental features of equipment used as e.g. fluorometers, photometers and luminometers. The object of the invention is achieved by providing an optical measurement instrument where a selectable optical component is identified by the measurement instrument. The instrument therefore has means for identifying an optical component by e.g. reading a code from the component. The object is also achieved by a changeable/selectable optical component such as optical module or filter for a measurement instrument, the component comprising a readable identification means. The identification comprises information on the type/properties of the optical component so that the components suitability for a selected measurement can be verified.Type: GrantFiled: September 7, 2001Date of Patent: April 4, 2006Assignee: Wallac OyInventors: Raimo Harju, Markku Varjonen
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Patent number: 6891618Abstract: The present invention relates generally to the field of biochemical laboratory. More particularly the invention relates to the improved and more accurate instrumental features of equipment used as e.g. fluorometers, photometers and luminometers. The object of the invention is achieved by providing an optical measurement instrument where there is an interface (218, 223, 233a, 233b, 238) for a changeable optical module (240), and excitation and/or emission beam is guided through an aperture of the optical module. This allows performing various types of measurements by changing an optical module without a problem lenses becoming unclean due to manual handling of the optical modules. The invention also makes possible to achieve an accurate measurement location and area within a sample.Type: GrantFiled: September 7, 2001Date of Patent: May 10, 2005Assignee: Wallac OyInventors: Raimo Harju, Christer Isaksson
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Publication number: 20050062969Abstract: The present invention relates generally to the field of biochemical laboratory instrumentation for different applications of measuring properties of samples on e.g. microtitration plates and corresponding sample supports. The object of the invention is achieved by providing an optical measurement instrument for photoluminescence, chemiluminescence and/or AplhaScreen measurements wherein different optical modules are used for alternative measurements. The excitation pulses for the alternative measurements are guided via two different routes to optical modules, the routes reaching the module in different angles. This way it is possible to use alternative radiation sources without optical switches and without changing the optical system. The object of the invention is further achieved by providing an additional lens in the optical module when a thermo plate is used. This way it is possible to achieve a correct optical focus in different measurement modes not depending on the use of the thermo plate.Type: ApplicationFiled: February 25, 2004Publication date: March 24, 2005Inventors: Raimo Harju, Janne Salonen, Hannu Turunen
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Patent number: 6842241Abstract: A method for checking the operation of a laboratory instrument used in biochemistry by means of an individual test plate (10) by comparing measured values of sample units (20, 21) placed in the wells (12) of the frame plate (11) to previously known measured values verified by a reference device. The sample unit (20) placed in the frame plate (11) of the test plate (10) is a teflon plastic cup (22) provided with an aluminum cover (23), the sample material (24) in powdery form being placed in said cup, or an optical filter (21), which is locked in place by means of a locking spring ring (25).Type: GrantFiled: September 4, 2002Date of Patent: January 11, 2005Assignee: Wallac OyInventors: Raimo Harju, Sanna Tauluvuori
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Patent number: 6822741Abstract: The present invention relates generally to the field of biochemical laboratory. More particularly the invention relates to the improved and more efficient instrumental features of equipment used as e.g. fluorometers, photometers and luminometers. The object of the invention is achieved by providing an optical measurement instrument where there is an interface (218, 223, 233a, 233b, 238) for a changeable optical module (240), the interface being adapted for at least one excitation beam and at least two emission beams. This allows performing various types of measurements by changing an optical module. The change of module and related parameters can be performed automatically controlled by software. It is also possible to easily upgrade the instrument for new types of measurements by just providing the instrument with a new optical module and the related software.Type: GrantFiled: September 7, 2001Date of Patent: November 23, 2004Assignee: Wallac OyInventors: Petri Aronkytö, Raimo Harju, Asko Myllynpää
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Publication number: 20030117628Abstract: The present invention relates generally to the field of biochemical laboratory. More particularly the invention relates to more reliable, intelligent instrumental features of equipment used as e.g. fluorometers, photometers and luminometers. The object of the invention is achieved by providing an optical measurement instrument where a selectable optical component is identified by the measurement instrument. The instrument therefore has means for identifying an optical component by e.g. reading a code from the component. The object is also achieved by a changeable/selectable optical component such as optical module or filter for a measurement instrument, the component comprising a readable identification means. The identification comprises information on the type/properties of the optical component so that the components suitability for a selected measurement can be verified.Type: ApplicationFiled: September 7, 2001Publication date: June 26, 2003Inventors: Raimo Harju, Markku Varjonen
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Publication number: 20030086085Abstract: A method for checking the operation of a laboratory instrument used in biochemistry by means of an individual test plate (10) by comparing measured values of sample units (20, 21) placed in the wells (12) of the frame plate (11) to previously known measured values verified by a reference device. The sample unit (20) placed in the frame plate (11) of the test plate (10) is a teflon plastic cup (22) provided with an aluminum cover (23), the sample material (24) in powdery form being placed in said cup, or an optical filter (21), which is locked in place by means of a locking spring ring (25).Type: ApplicationFiled: September 4, 2002Publication date: May 8, 2003Inventors: Raimo Harju, Sanna Tauluvuori
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Publication number: 20030048446Abstract: The present invention relates generally to the field of biochemical laboratory. More particularly the invention relates to the improved and more efficient instrumental features of equipment used as e.g. fluorometers, photometers and luminometers. The object of the invention is achieved by providing an optical measurement instrument where there is an interface (218, 223, 233a, 233b, 238) for a changeable optical module (240), the interface being adapted for at least one excitation beam and at least two emission beams. This allows performing various types of measurements by changing an optical module. The change of module and related parameters can be performed automatically controlled by software. It is also possible to easily upgrade the instrument for new types of measurements by just providing the instrument with a new optical module and the related software.Type: ApplicationFiled: September 7, 2001Publication date: March 13, 2003Inventors: Petri Aronkyto, Raimo Harju, Asko Myllynpaa
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Publication number: 20030048447Abstract: The present invention relates generally to the field of biochemical laboratory. More particularly the invention relates to the improved and more accurate instrumental features of equipment used as e.g. fluorometers, photometers and luminometers. The object of the invention is achieved by providing an optical measurement instrument where there is an interface (218, 223, 233a, 233b, 238) for a changeable optical module (240), and excitation and/or emission beam is guided through an aperture of the optical module. This allows performing various types of measurements by changing an optical module without a problem lenses becoming unclean due to manual handling of the optical modules. The invention also makes possible to achieve an accurate measurement location and area within a sample.Type: ApplicationFiled: September 7, 2001Publication date: March 13, 2003Inventors: Raimo Harju, Christer Isaksson
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Patent number: 6377346Abstract: An imaging device for biochemical or medical samples, the pulse mode light source of which incorporates flash lamps and a rotating mirror in an inclined position, the said mirror reflecting the light emitted by each flash lamp in turn along the same optical path to the sample. The flash lamps are switched on alternately in phases and synchronised with the rotating mirror and the emission light chopper, which comprises two rotating discs. The turning mirror directs the light at the sample from above and/or below, in which case a double-acting transparent scattering plate can be used.Type: GrantFiled: September 17, 1999Date of Patent: April 23, 2002Assignee: Wallac OyInventors: Mikko Väisälä, Jarmo Nurmi, Jarmo Korpi, Raimo Harju
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Patent number: 6042785Abstract: A compact optical instrument for performing various laboratory measurements utilizing different technologies of spectroscopy, i.e., photoluminescence, absorption and chemical luminescence, from liquid and solid samples. The measuring head of the instrument includes a continuous wave lamp unit (cw-lamp unit), a photometric detector unit and an emission unit and further includes an optomechanical coupling unit having at least one movable or replaceable mirror for allowing the optical path of the measurement or optimizing the optical path of the measurement. A controller including electronics and computer interface are also provided.Type: GrantFiled: April 22, 1997Date of Patent: March 28, 2000Assignee: Wallac OyInventor: Raimo Harju