Patent classifications
G01N35/0092
Pretreatment apparatus and analysis system comprising the same
A display unit of the present invention displays icons respectively for a series of process steps of a pretreatment unit and an analysis device on a setting screen. The display unit displays a first shutdown icon for a first shutdown step and a second shutdown icon for a second shutdown step in association with the icons respectively for the series of process steps, the first shutdown step being performed when the pretreatment unit and the analysis device end process steps without causing an error, the second shutdown step being performed when the pretreatment unit and the analysis device end the process steps as an error is caused while the process steps are performed. When a user selects any one of these icons, the display unit displays an input screen on the setting screen for inputting the setting information for the process step corresponding to the selected icon.
CONFIGURABLE WASH PROCESS FOR A SAMPLE ANALYZER
A configurable washing arrangement (176) washes away at least unreacted components (230, 630) of patient samples (224, 624) from a reaction cell (220, 320) with a multiple number of wash actions (206, 210, 606). The configurable washing arrangement is suitable for use with an immunoassay diagnostic system (100) and washes the reaction cell within a predetermined timed sequence (Tww). The number of the wash actions correspond with an assay type of a plurality of assay types (200, 600). The various number of wash actions may be selected without compromising overall process speed. The immunoassay diagnostic system is configured to perform the plurality of the assay types and thereby detect analytes (244, 644) in patient samples (224, 624) by at least combining each of the patient samples with at least one reagent (216, 232, 616) in the reaction cell.
MANAGEMENT DEVICE AND REQUEST METHOD
Managing reagent replacement and calibration/quality management processing for analysis devices is performed by a management device configured to manage analysis devices in a clinical laboratory having a cabinet storing a reagent used for measurement by analysis devices or a calibration/quality management sample. The management device includes a reagent detection unit configured to detect a timing to start reagent replacement preparation, based on a remaining amount of in-measurement reagents and a first preparation time required for replacing the reagent. Calibration/quality management processing preparation timing detection units are configured to detect a timing to start calibration/quality management processing preparation, based on the remaining amount of the in-measurement reagent. A notification person-in-charge determination unit notifies a laboratory technician of a request for the reagent replacement preparation or the calibration/quality management processing preparation upon receiving detection of a timing by the detection units.
Techniques for generating and performing analytical instrument test plans
Techniques and apparatus for analytical instrument management and information assessment processes are described. In one embodiment, for example, an apparatus may include at least one memory and logic coupled to the at least one memory. The logic may be configured to perform a test plan on at least one rubber material analytical instrument via accessing a test plan comprising at least one step, generating test plan results responsive to performing the test plan on the at least one rubber material analytical instrument, analyzing the test plan results, and presenting the test plan results on a plurality of graphical user interface (GUI) objects. Other embodiments are described.
System and method of monitoring tissue samples to be processed by a tissue processor
A system for monitoring tissue samples to be processed by a tissue processor for a histopathology workflow, the system including: a scanner associated with the tissue processor arranged to scan an electronic sample identifier of at least one tissue sample to be processed by the tissue processor; an input module arranged to receive tissue processor workflow data indicative of a tissue processor workflow for the at least one tissue sample to be processed by selected ones of a plurality of processing stations in the tissue processor used for processing the at least one tissue sample; a monitoring module arranged to monitor properties of the at least one tissue sample processed at each of the selected ones of the processing stations and to record the properties of the at least one tissue sample in association with the electronic sample identifier in a sample record for the tissue processor workflow; and an output module arranged to output the sample record to one or more laboratory instruments for further processing the at least one tissue sample in a histopathology workflow. A tissue processor for processing tissue samples for a histopathology workflow is also provided. A method of monitoring tissue samples to be processed by a tissue processor for a histopathology workflow is also provided.
ARRAYS OF INTEGRATED ANALYTICAL DEVICES WITH REDUCED-SCALE UNIT CELL
Arrays of integrated analytical devices are provided. The arrays are useful in the analysis of highly multiplexed optical reactions in large numbers at high densities, including biochemical reactions, such as nucleic acid sequencing reactions. In particular, the arrays provide increased efficiency of optical collection and decreased background signal as the lateral dimensions of the unit cell of devices within the array are decreased, for example as they are decreased to 2 μm, or even less.
Automated analyzer
The present invention is provided with a sample rack insertion unit 12 that is capable of holding one or more sample racks 5 having mounted therein one or more sample containers 6 accommodating a sample to be analyzed, one or more analysis devices 2, 3 for analyzing the sample accommodated in the sample containers 6, a sample rack conveyance unit 14 for conveying the sample racks 5 from the sample rack insertion unit 12 to the analysis devices 2, 3, and a control device 4 for acquiring, for each analysis device 2, 3, load information that is information expressing an operating condition of the analysis device 2, 3, and, if there is an analysis device 2, 3 for which the load information is larger than a predetermined conveyance permission value, carrying out control so as to stop the conveyance of the sample racks 5 from the sample rack insertion unit 12 to the analysis device(s) 2, 3. As a result of this configuration, it is possible to mitigate in-device sample conveyance congestion occurring as a result of the insertion of many samples and keep the sample environment and analysis processing power at high levels.
Automated analyzer
To provide an automated analyzer capable of shortening analysis time. The automated analyzer includes a vessel which contains a mixed solution of a specimen and a reagent; and a control unit which controls a first operation performed on the vessel, a second operation performed on the vessel after the first operation, and a third operation performed on a predetermined mechanism of the automated analyzer before the second operation, in which the control unit performs the first operation and the third operation in parallel. Alternatively, the automated analyzer includes a control unit which controls a first operation performed on the vessel, a second operation performed on the vessel after the first operation, and a third operation performed on a predetermined mechanism of the automated analyzer after the first operation, in which the control unit performs the second operation and the third operation in parallel.
DISTRIBUTION SYSTEM
A distribution system comprising a transport plane for distributing objects and carriers for transporting the objects. A drive system moves the carriers on the transport plane. A control system of the distribution system is configured to control the carriers to move on a planned route from a start position to a final destination position on the transport plane. The control system comprises a routing system configured to calculate the planned route for at least two carriers on the transport plane by modeling the transport plane with nodes and graphs and using a windowed hierarchical cooperative informed search algorithm. The routing system is configured to determine reserved and free time windows for each node. The routing system is configured to assign an individual reservation length to each carrier for the next move on free time windows and assigns an infinite reservation time to the node of a logical position.
COMPUTER-IMPLEMENTED LIQUID-HANDLER PROTOCOL
A server stores a set of laboratory applications to process batches of samples. The server receives, from a first lab administrator, a selection of a subset of the laboratory applications to process the batches of samples and an admin configuration for a laboratory application in the subset. The server receives configuration(s) of batch(es) to be used for running at least a portion of the subset of laboratory applications configured according to the admin configuration. The server receives, from a first scientific device, a request to run a laboratory application form the first subset to process a batch. The server provides the laboratory application(s) that are capable of being executed using the first scientific device. The server receives, from the first scientific device, a selected laboratory application. The server transmits, to the first scientific device, a signal for executing a first part of the selected laboratory application.