Patent classifications
G01N35/1002
Automatic pipetting device for transferring samples and/or reagents and method for transferring liquid samples and/or reagents
Aspects of the present disclosure relate to methods and devices for automatically transferring samples and/or reagents from sample vessels and/or reagent vessels into at least one receiving vessel In one example embodiment, a pipetting device is disclosed including a pipettor that is movable along a first direction and has at least one first pipetting needle that is movable along an arm of the pipettor along a second direction, substantially normal to the first direction. The pipetting needle is lowerable along a third direction into the individual vessels. In some specific embodiments, the arm of the movable pipettor has at least one second pipetting needle which, regardless of the current position of the first pipetting needle, is movable past the first pipetting needle and is lowerable into the individual vessels.
Automatic analyzer
In an automatic analyzer in which required maintenance can be executed efficiently, without omission, an operation control unit controls operations of an analysis module (ISE, AU1, AU2) including a sample vessel transport mechanism, a reagent vessel transport mechanism, a reaction vessel transport mechanism, a sample dispensing mechanism, and a reagent dispensing mechanism, and of a display unit, and analyzes a sample accommodated in a reaction vessel. The operation control unit stores a validity period for each maintenance item of the analysis module (ISE, AU1, AU2) and an execution time for each maintenance item in a memory, displays an execution time together with an identification representation of execution priority level based on the expiration dates on the display unit, rearranges the display order of the maintenance items on the basis of the execution priority level, in accordance with an operator's instruction inputted through an operation input portion.
Analyzer
An analyzer that has a simple configuration, that is inexpensive, that can improve safety, and that can inhibit proliferation of microorganisms using ultraviolet light is realized. A first electric power switch, a second electric power switch, and a third electric power switch are connected in series between an ultraviolet LED that irradiates an interior of a shared reagent storage container with ultraviolet light and a power supply that supplies electric power to the ultraviolet LED. The first electric power switch, the second electric power switch, and the third electric power switch are configured with two contact points and a connection section that connects and disconnects the two contact points. The first electric power switch is opened when a reagent storage door is opened, and the second electric power switch is opened in response to an action of extracting an ultraviolet irradiation section from a shared reagent storage container. The third electric power switch is opened when an amount of the reagent within the shared reagent storage container is equal to or smaller than a constant value. When one of the first electric power switch, the second electric power switch, and the third electric power switch is opened, supply of the electric power to the ultraviolet LED is intercepted.
Laminate fluidic circuit for a fluid cartridge
An apparatus includes a fluid reservoir and a laminate fluidic circuit positioned above the fluid reservoir. The laminate fluidic circuit includes two or more layers laminated together to define a substantially planar substrate and one or more channels defined within the substrate. The laminate fluidic circuit includes a flexible conduit defined by a portion of the substrate encompassing an extent of at least one of the channels that is partially separated or separable from the remainder of the substrate. The flexible conduit is deflectable with respect to the planar substrate toward the fluid reservoir such that the flexible conduit fluidly connects the at least one channel to the fluid reservoir.
AUTOMATIC ANALYSIS DEVICE, DISPLAY SYSTEM OF AUTOMATIC ANALYSIS DEVICE, AND DISPLAY METHOD IN AUTOMATIC ANALYSIS DEVICE
A first screen for displaying information of at least two analysis modules and a second screen for displaying information of only the specific analysis module among the analysis modules are separately displayed based on at least one piece of information among angle information of a display section, position information of the display section, and information of an operation performed on the analysis modules. Thus, the screen corresponding to a situation of an automatic analysis device can be accurately and reliably provided by a user as compared with the conventional one.
LIQUID HANDLING SYSTEM
An automated liquid handling system includes a transfer robot unit, a handling module, and a fixing unit which is coupled to a head of the robot unit and on which a pipette assembly is to be mounted, wherein the handling module is provided with a mounting part detachably mounted on the fixing unit. The fixing unit includes a body part, a fixing part hook formed at an upper portion of one side of the body part and a lower protrusion disposed at a lower portion of the one side of the body part, the mounting part includes a body, a movable hook part formed at an upper portion of one side of the body and a lower groove formed at a lower portion of the one side of the body to correspond to the lower protrusion, a catching step is formed at the lower groove, and the lower protrusion extends from the lower portion of the one side of the body part to support the catching step from below, and the movable hook part is hook-coupled to a fixing unit hook.
INTEGRATED NUCLEIC ACID PROCESSING APPARATUS
An integrated nucleic acid processing apparatus includes a first operation area, a second operation area and a separation wall. The first operation area includes multiple carrying boards for placing objects and reagents for processing nucleic acids in samples, and multiple operation modules for performing operations of nucleic acid processing. The second operation area includes two extraction regions for respectively performing nucleic acid extractions. The separation wall separates the first operation area from the second operation area and includes two openable door sheets spatially corresponding to the two extraction regions. Nucleic acid extraction plates can be moved from the first operation area to the second operation area by means of the carrying boards as the two openable door sheets are opened, and be isolated in the second operation area for performing nucleic acid extractions as the two openable door sheets are closed.
SYSTEMS AND METHODS FOR PROCESSING BIOLOGICAL SPECIMENS
Method and system for processing biological specimens. For example, the method includes loading a plurality of biological specimens on a continuous substrate at a plurality of spaced-apart locations on the continuous substrate, attaching a plurality of wells to the continuous tape substrate corresponding to the plurality of spaced-apart locations where each well surrounds a respective biological specimen on the continuous substrate, performing one or more chemical processes on the respective biological specimen contained in the each well of the plurality of wells, and analyzing results of the one or more chemical processes on the respective biological specimen contained in the each well of the plurality of wells.
LAMINATE FLUIDIC CIRCUIT FOR A FLUID CARTRIDGE
An apparatus includes a fluid reservoir and a laminate fluidic circuit positioned above the fluid reservoir. The laminate fluidic circuit includes two or more layers laminated together to define a substantially planar substrate and one or more channels defined within the substrate. The laminate fluidic circuit includes a flexible conduit defined by a portion of the substrate encompassing an extent of at least one of the channels that is partially separated or separable from the remainder of the substrate. The flexible conduit is deflectable with respect to the planar substrate toward the fluid reservoir such that the flexible conduit fluidly connects the at least one channel to the fluid reservoir.
ASSAY SYSTEM INCLUDING ASSAY APPARATUS AND HANDHELD SINGLE USE ASSAY DEVICES FOR USE THEREWITH
Assay system including assay apparatus and handheld single use assay devices for ElectroMagnetic Radiation (EMR) examination of a specimen. The assay devices include a housing, a specimen slide for elevation from an initial lowermost specimen introduction position to a final uppermost specimen examination position and a built-in liquid reagent dispensing arrangement for dispensing liquid reagent on the specimen slide. The assay apparatus automatically actuates an assay device and includes an imaging arrangement for obtaining specimen images.