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公开(公告)号:US12130299B2
公开(公告)日:2024-10-29
申请号:US17611655
申请日:2020-04-07
发明人: Christian Babel
IPC分类号: G01N35/00
CPC分类号: G01N35/00722 , G01N2035/00306 , G01N2035/00534 , G01N2035/00891
摘要: The invention is concerned with improvements in the technical field of laboratory devices. To this end, what is proposed, inter alia, is a laboratory device (1) that has, on its housing (2), at least one coupling interface (3) and at least one mating coupling interface (4) compatible with the coupling interface (3). The coupling interface (3) and the mating coupling interface (4) are configured to transfer power and/or to transfer information.
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2.
公开(公告)号:US20240353436A1
公开(公告)日:2024-10-24
申请号:US18291975
申请日:2022-05-24
发明人: Mayuko GOTO , Akihiro IGUCHI , Chie YABUTANI
IPC分类号: G01N35/00
CPC分类号: G01N35/00722 , G01N2035/0091
摘要: The present invention provides an autonomous analysis device with which an operator can easily associate and confirm a reaction course and an illness. The device comprises an analysis unit for analyzing a sample, an operation unit for receiving an operation from an operator, a control unit for controlling the analysis unit on the basis of an input from the operation unit and computing measurement data using a measurement value acquired from the analysis unit, and a display unit for displaying the measurement data computed by the control unit, wherein the control unit causes the display unit to display not only measurement reaction course information that is based on the measurement data of the sample being analyzed, but also reference reaction course information that is designated by the operation unit from among items of reference reaction course information classified in advance for each illness.
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公开(公告)号:US12123885B2
公开(公告)日:2024-10-22
申请号:US17272702
申请日:2019-10-11
CPC分类号: G01N35/00722 , G01N35/02 , G01N2035/0091
摘要: Provided is a technique for increasing discriminating ability, preventing human error, and improving efficiency of discrimination in a discrimination operation for extracting a sample satisfying a specific condition from among a plurality of samples. A sample discrimination system according to the present disclosure is provided with a plurality of sample retaining devices for retaining samples, and a sample information query device for querying a sample retaining device that matches predetermined query information from among the plurality of sample retaining devices. The sample information query device has a query information input unit for inputting of predetermined query information, and a query information transmission unit for transmitting predetermined query information to the sample retaining devices. The sample retaining devices are each characterized by having a storage unit for storing sample information, a comparison unit for comparing predetermined query information and sample information, and a first display unit for outputting the result of comparison by the comparison unit.
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公开(公告)号:US20240319216A1
公开(公告)日:2024-09-26
申请号:US18575366
申请日:2022-05-30
发明人: Kanoh SHIMIZU
CPC分类号: G01N35/00722 , G01N35/025 , G01N2035/0091
摘要: To reliably prevent an analysis using a problematic reagent. In order to implement this, an automatic analyzer according to the disclosure includes: a reagent placement unit in which a reagent container containing a reagent is placed; a processor configured to process reagent information related to the reagent; a memory configured to store the reagent information; and a display device configured to display the reagent information. The processor causes the display device to display a GUI screen configured to allow setting of usability of both a reagent placed in the reagent placement unit and a reagent not placed in the reagent placement unit, and causes the memory to store information received from the GUI screen and related to the usability of the reagent (see FIG. 3).
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公开(公告)号:US12038449B2
公开(公告)日:2024-07-16
申请号:US17273423
申请日:2019-11-13
发明人: Marina Nakai , Tatsuki Takakura , Shunsuke Sasaki , Kenta Imai
CPC分类号: G01N35/00722 , G06F3/14 , G06T7/0002 , H04N23/57 , G01N2035/00891
摘要: Provided is an automatic analyzer in which user work is in conjunction with apparatus driving and operation of a user even in complicated maintenance work is simplified. The automatic analyzer includes a measurement device 2 and a control device 3. The control device controls the measurement device. The control device includes an input unit 32 that receives a start instruction of maintenance work by a user, a control unit 31 that controls an apparatus to perform a predetermined first processing in accordance with input, a driving unit that performs driving in accordance with processing of the control unit, a display unit 33 that displays a second processing to be performed by the user in conjunction with the first processing after the first processing is terminated by the driving unit. The control device sequentially guides maintenance work of the user by performing the first processing or the second processing after the displayed second processing is executed by the user.
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公开(公告)号:US11965900B2
公开(公告)日:2024-04-23
申请号:US16186449
申请日:2018-11-09
发明人: Vivianna Day , Jeremy W. Jarrett , Shiva K. Ramini , Barbara R. Maurer , Michael I. Larkin , Stephen C. Minne
IPC分类号: G01N35/00
CPC分类号: G01N35/00722 , G01N35/00623 , G01N2035/0091
摘要: The present disclosure describes a method, a system, and a computer program product of indicating a status of an analytical instrument on a screen of the analytical instrument. In an embodiment, the method, the system, and the computer program product include receiving data from an analytical instrument monitoring a liquid sample, segmenting the received data into data segments for at least two characteristics of at least one of the instrument, the sample, and an operating environment of the instrument, analyzing each of the data segments for the at least two characteristics, retrieving threshold values for the at least two characteristics from a computer data source, calculating at least one status of at least one of the instrument, the sample, and the operating environment, with respect to the analyzed data segments and the threshold values, and displaying the at least one status on a display of the instrument.
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公开(公告)号:US20240060870A1
公开(公告)日:2024-02-22
申请号:US18448739
申请日:2023-08-11
申请人: Sysmex Corporation
发明人: Takashi Karino , Hideki Hirayama
CPC分类号: G01N15/1431 , G01N35/00722 , G01N2035/00891
摘要: Disclosed is an information processing method to be executed by a computer, for analysis performed by a flow cytometer capable of acquiring a test result through a test using an antibody reagent, the information processing method including: acquiring a first test result obtained through a first test performed by the flow cytometer with respect to a first specimen of a subject; acquiring a second test result obtained through a second test different from the first test with respect to a second specimen of the subject; and displaying the first test result and the second test result in association with each other.
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公开(公告)号:US20240053316A1
公开(公告)日:2024-02-15
申请号:US18233278
申请日:2023-08-11
申请人: The STG Group, LLC
发明人: Sheila V. Slaton
CPC分类号: G01N33/0063 , H02J50/10 , G01N33/0006 , G01N35/00722 , G01N2035/0091 , G01N2035/009
摘要: A system and method for monitoring air quality while providing charging capabilities to electronic devices is provided. The system generally comprises a charging device, at least one sensor, output device, processor, processor operably connected to the at least one sensor and output device, and non-transitory computer-readable medium coupled to the processor and having instructions stored thereon. Other embodiments may further comprise a computing device having a user interface, which may be used by a user to input user data into the system as well as view environmental data measured by the system. The system is designed to collect environmental data via the at least one sensor and determine whether air quality has become hazardous to the health of a user. In particular, the system is designed to monitor for hazardous gasses, such as carbon monoxide and ozone, and particulate matter, such as lead and arsenic.
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公开(公告)号:US11796477B2
公开(公告)日:2023-10-24
申请号:US16044897
申请日:2018-07-25
IPC分类号: G01N21/66 , G01N35/00 , G01N27/327 , G01N27/416 , G01N35/10
CPC分类号: G01N21/66 , G01N27/3277 , G01N27/4163 , G01N35/00623 , G01N35/00722 , G01N35/1004 , G01N2035/00891
摘要: Described is an electrochemiluminescence method of detecting an analyte in a liquid sample using a measuring cell having a working electrode for detecting the analyte using an electrochemiluminescence measurement cycle, involving
a. carrying out the measurement cycle in a calibration process using a liquid sample without analyte and performing a first electrochemical impedance spectroscopy, EIS, at a given point of the measurement cycle, the first EIS being performed using the working electrode,
b. carrying out the measurement cycle in an analysis process using the liquid sample containing the analyte and performing a second EIS at the given point of the measurement cycle, the second EIS being performed using the working electrode,
c. comparing the result of the first EIS and the second EIS,
providing an indication indicating if the comparison results show a deviation between the first EIS and the second EIS exceed a predefined threshold.-
公开(公告)号:US11733252B2
公开(公告)日:2023-08-22
申请号:US18071392
申请日:2022-11-29
申请人: Poppy Health, Inc.
发明人: Sam D. Molyneux , Elizabeth Caley , Daniela Bezdan , Ricardo Vidal , Nathan Volman , Tae Joon Yi , Kevin Slavin
CPC分类号: G01N35/00693 , A61L9/14 , A61L9/20 , C12Q1/6888 , G01N1/2202 , G01N1/2273 , G01N21/6486 , G01N33/0006 , G01N33/0075 , G01N35/00712 , G01N35/00722 , G08B21/02 , A61L2209/111 , G01N2001/2223 , G01N2035/00891
摘要: One variation of a method includes, during a calibration period: triggering collection of an initial bioaerosol sample by an air sampler located in an environment; and triggering dispensation of a tracer test load by a dispenser located in the environment; accessing a detected barcode level of a barcode detected in the initial bioaerosol sample; accessing a true barcode level of the barcode contained in the tracer test load; and deriving a calibration factor for the environment based on a difference between the detected barcode level and the true barcode level. The method further includes, during a live period succeeding the calibration period: triggering collection of a first bioaerosol sample by the air sampler; accessing a detected pathogen level of a pathogen detected in the first bioaerosol sample; and interpreting a predicted pathogen level of the pathogen in the environment based on the detected pathogen level and the calibration factor.
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