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公开(公告)号:DK3158332T3
公开(公告)日:2018-02-05
申请号:DK15730158
申请日:2015-06-19
Applicant: SPINCHIP DIAGNOSTICS AS
Inventor: BORCH STIG MORTEN , HAMSUND TORGEIR , GULLIKSEN ANJA , HOLTLUND JOSTEIN GEIR
IPC: G01N33/543
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公开(公告)号:NO20201413A1
公开(公告)日:2022-06-22
申请号:NO20201413
申请日:2020-12-21
Applicant: SPINCHIP DIAGNOSTICS AS
Inventor: BORCH STIG MORTEN , HAMSUND TORGEIR , JAHREN ROLF , STENMARK SEBASTIAN , MEYER ERIK L , KRISTIANSEN HÅVARD , STAAL ODD MARTIN , HILL STEVEN , PAUS DIDRIK , KAVLI OLE-ANDREAS
IPC: B01L3/00
Abstract: The present invention provides a processing cartridge (1) comprising a main cartridge section (2) and an actuating cartridge section (3), the main cartridge section (2) comprises a liquid reservoir chamber (4), a liquid container (5), a container piercing element (6) and a resilient container holding element (9), wherein the actuating cartridge section (3) is configured to dock with the main cartridge section (2) and comprises an actuating member (10) configured to interact with the liquid container (5) during docking; the liquid container, the piercing element (6) and the container holding element (9) are arranged in the liquid reservoir chamber (4), the liquid container is filled with a suitable processing liquid and features a pierceable dispensing side (16), and the container piercing element faces the dispensing side; the liquid container (5) is held in a first position by the container holding element, wherein the dispensing side is separated from the container piercing element; and the actuating member (10) is configured to move the liquid container from the first position to a second position during docking of the cartridge actuating section, and in the second position the dispensing side (16) is pierced by the container piercing element.
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公开(公告)号:DK3158333T3
公开(公告)日:2018-01-22
申请号:DK15730768
申请日:2015-06-19
Applicant: SPINCHIP DIAGNOSTICS AS
Inventor: BORCH STIG MORTEN , HAMSUND TORGEIR , GULLIKSEN ANJA , HOLTLUND JOSTEIN GEIR
IPC: G01N33/543
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公开(公告)号:NO20140777A1
公开(公告)日:2015-12-21
申请号:NO20140777
申请日:2014-06-19
Applicant: SPINCHIP DIAGNOSTICS AS
Inventor: BORCH STIG MORTEN , HAMSUND TORGEIR , HOLTLUND JOSTEIN GEIR , GULLIKSEN ANJA
IPC: B01L3/00 , B04B5/04 , G01N21/07 , G01N33/487 , G01N35/00
Abstract: Den foreliggende oppfinnelsen tilveiebringer en fremgangsmåte for å analysere en prøve som inneholder en analytt som skal bestemmes kvalitativt og/eller kvantitativt, omfattende et bindingstrinn og et vasketrinn, hvor bindingstrinnet omfatter: å 5 tilveiebringe kuler i stand til å binde analytten, kulene eventuelt omfattende en definert mengde med analytt-sporingsstoffenheter, og kulene har en tetthet m1; å interagere analytten med kulene analytten eventuelt interagert med et sporingsstoff enten før, i løpet av eller etter interaksjon med kulene å oppnå en struktur av pakkede kuler omfattende kvalitativt og/eller kvantitativt bestembare kule-analytt komplekser som har en tetthet 10 m2; og vasketrinnet omfatter: å dispergere de pakkede kulene i en væske som har en tetthet d > m2 og m1; og å separere væsken og kulene omfattende de kvalitativt og/eller kvantitativt bestembare kule-analytt kompleksene.
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公开(公告)号:EP3158332B1
公开(公告)日:2018-01-10
申请号:EP15730158
申请日:2015-06-19
Applicant: SPINCHIP DIAGNOSTICS AS
Inventor: BORCH STIG MORTEN , HAMSUND TORGEIR , HOLTLUND JOSTEIN GEIR , GULLIKSEN ANJA
IPC: G01N33/543
CPC classification number: G01N33/54313 , B01L3/502753 , B01L3/502761 , B01L2200/0647 , B01L2200/10 , B01L2400/0409 , B01L2400/0487 , B03D3/00 , G01N1/10 , G01N33/54333 , G01N33/54366 , G01N2001/1006 , G01N2035/0449
Abstract: The present invention provides a method of analyzing a sample containing an analyte to be qualitatively and/or quantitatively determined, comprising a binding step and a washing step, wherein the binding step comprises: interacting the analyte with beads having a density m1; obtaining a structure of packed beads comprising quantifiable bead complexes having a density m2; and the washing step comprises: dispersing the packed beads in a liquid medium having a density d>m2 and m1; and separating the liquid medium and the beads comprising the quantifiable bead complexes.
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公开(公告)号:ES2903168T3
公开(公告)日:2022-03-31
申请号:ES18799701
申请日:2018-11-05
Applicant: SPINCHIP DIAGNOSTICS AS
Inventor: TRONRUD OLE CHRISTIAN , JAHREN ROLF , STENMARK SEBASTIAN , BORCH STIG MORTEN
Abstract: Un método para controlar una posición de un punto objetivo en un resultado del procesamiento (10) con relación a un punto de enfoque de un sistema de sensor de enfoque (20) para determinar las propiedades del resultado de procesamiento (10) el cual se encuentra dentro de un cartucho (35), y donde el sistema de sensor de enfoque (20) está estacionario en una posición establecida con relación a un disco (40) que puede girar alrededor de un primer eje (45) mediante un primer motor conectado a un controlador, y donde el cartucho (35) puede girar alrededor de un segundo eje (50) mediante un segundo motor conectado a un controlador, y donde el cartucho (35) es más pequeño que el disco (40) y se coloca dentro y fuera del centro del disco (40), que comprende las siguientes etapas: a) definir un punto dentro del cartucho (35) como un punto de enfoque inicial (55) del sistema de sensor de enfoque (20), donde el punto de enfoque inicial (55) es un punto (r,θ), donde r es una fracción del radio del cartucho (35), y θ es el ángulo entre un primer punto de referencia (65) en el cartucho (35) y el punto de enfoque inicial (55); b) controlar la rotación del cartucho (35) y el disco (40) de manera que el punto de enfoque del sistema de sensor de enfoque (20) corresponda al punto de enfoque inicial (55), al determinar las posiciones angulares Φ y Θ a configurar para el cartucho (35) y el disco (40) de manera que el punto de enfoque inicial (55) del sistema de sensor de enfoque (20) corresponda al punto (r,θ) dentro del cartucho (35), donde el ángulo Θ del cartucho (35) se determina con relación al primer punto de referencia (65) en el cartucho (35), y el ángulo Φ del disco (40) se determina con relación a un segundo punto de referencia en el disco (40), caracterizado por c) comprobar si el punto de enfoque inicial (55) del sistema de sensor de enfoque (20) corresponde al punto objetivo en el resultado del procesamiento (10) mediante la captura de imágenes del resultado del procesamiento (10) en el cartucho (35) y el punto de enfoque inicial (55) dentro del cartucho, y comparar las posiciones objetivo (x, y) en las imágenes capturadas con el punto de enfoque inicial (55) del sistema de sensor de enfoque (20), y ajustar la rotación del cartucho (35) y del disco (40) de manera que el punto de enfoque del sistema de sensor de enfoque (20) corresponda al punto objetivo en el resultado del procesamiento (10), y d) detectar y examinar las señales recibidas del sistema de sensor de enfoque (20) para determinar las propiedades del resultado del procesamiento (10) en el punto objetivo en donde se escanea un área del resultado del procesamiento (10) al girar el disco (40) y el cartucho (35) a ángulos Φ y Θ de manera que el sistema de sensor de enfoque (20) se enfoque en un punto (r,θ) dentro del cartucho (35) que corresponde al punto objetivo y las propiedades del resultado del procesamiento (10) se detectan iterativamente al girar el disco (40) y el cartucho (35) en etapas para cubrir el área.
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公开(公告)号:NO343863B1
公开(公告)日:2019-06-24
申请号:NO20171776
申请日:2017-11-09
Applicant: SPINCHIP DIAGNOSTICS AS
Inventor: BORCH STIG MORTEN , HAMSUND TORGEIR , JAHREN ROLF , TRONRUD OLE CHRISTIAN , STENMARK SEBASTIAN
Abstract: Provided is a centrifuge apparatus for a processing cartridge, including a rotary plate and at least one cartridge holder, and the cartridge holder is rotatable around its centre axis and arranged off-centre the centre axis of the rotary plate and comprises an inner side wall surrounding a through-going passage, wherein the through-going passage is able to accommodate the processing cartridge; and the inner side wall includes a resilient locking assembly for interaction with at least one cooperating first abutting surface on the processing cartridge, such that the processing cartridge may be inserted into the through-going passage and releasably secured by the locking assembly; and at least one stopping element for interaction with at least one cooperating second abutting surface on the processing cartridge, the at least one stopping element being arranged to retain the processing cartridge at a desired vertical level when the cartridge is releasably secured.
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公开(公告)号:NO346147B1
公开(公告)日:2022-03-21
申请号:NO20171780
申请日:2017-11-09
Applicant: SPINCHIP DIAGNOSTICS AS
Inventor: BORCH STIG MORTEN , JAHREN ROLF , STENMARK SEBASTIAN , TRONRUD OLE CHRISTIAN
Abstract: Provided are methods and apparatuses for controlling a position of a target point on a processing result relative to a focus point of a focusing sensor system for determining properties of the processing result. The method includes the steps of determining an initial focus point of the focusing sensor system, controlling rotation of the cartridge and disc, checking whether the initial focus point of the focusing sensor system corresponds to the target point on the processing result, comparing (x, y) target positions in captured images with the initial focus point of the focusing sensor system, adjusting rotation of the cartridge and disc such that the focus point of the focusing sensor system corresponds to the target point on the processing result, and detecting and examining signals received from the focusing sensor system for determining properties of the processing result.
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公开(公告)号:DK2519354T3
公开(公告)日:2019-06-24
申请号:DK10803408
申请日:2010-12-28
Applicant: SPINCHIP DIAGNOSTICS AS
Inventor: BORCH STIG MORTEN
IPC: B01L3/00
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公开(公告)号:NO20171780A1
公开(公告)日:2019-05-10
申请号:NO20171780
申请日:2017-11-09
Applicant: SPINCHIP DIAGNOSTICS AS
Inventor: BORCH STIG MORTEN , JAHREN ROLF , STENMARK SEBASTIAN , TRONRUD OLE CHRISTIAN
Abstract: Provided are methods and apparatuses for controlling a position of a target point on a processing result relative to a focus point of a focusing sensor system for determining properties of the processing result. The method includes the steps of determining an initial focus point of the focusing sensor system, controlling rotation of the cartridge and disc, checking whether the initial focus point of the focusing sensor system corresponds to the target point on the processing result, comparing (x, y) target positions in captured images with the initial focus point of the focusing sensor system, adjusting rotation of the cartridge and disc such that the focus point of the focusing sensor system corresponds to the target point on the processing result, and detecting and examining signals received from the focusing sensor system for determining properties of the processing result.
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