Patent classifications
G01N2035/0425
APPARATUS FOR THE STORAGE AND RETRIEVAL OF LARGE VOLUMES OF TEST TUBES
There is described an apparatus for depositing and retrieving large volumes of test tubes in/from a warehouse, comprising an input/output module of a first and a second container with a plurality of test tubes, a multiple pick up device of test tubes, a single pick up device of test tubes, a first and second station for the provisional allocation of said containers and a motorized traveling lift able to carry said first and second container simultaneously on two distinct coplanar locations.
INSTRUMENT FOR ANALYZING BIOLOGICAL SAMPLES AND REAGENTS
An instrument for processing a biological sample includes a chassis. Connected to the chassis is a tape path along which a tape with a matrix of wells can be automatically advanced through the instrument, a dispensing assembly for dispensing the biological sample and a reagent into the matrix of wells of the tape to form a biological sample and reagent mixture, a sealing assembly for sealing the biological sample and reagent mixture in the tape, and an amplification and detection assembly for detecting a signal from the biological sample and reagent mixture in the matrix of wells in the tape.
STACKER CRANE WITH AN IMPROVED SLIDING MECHANISM
The present invention relates to a stacker crane (2) for transporting, inserting and picking containers of biological material test tubes in/from locations (3) of a plurality of shelves (4) of a warehouse (1) for storing containers of biological material test tubes. The stacker crane (2) is able to move the containers of biological material test tubes in the three Cartesian directions x, y and z, so as to reach the locations (3), wherein the stacker (2) comprises a first carriage (21) and a second carriage (22) able to slide independently of, and to be released from, the first carriage (21) in direction y.
LOW-VOLUME SYSTEMS FOR SAMPLE IDENTIFICATION
The invention includes low-volume systems for sample identification. The systems are designed to use multi-use consumables including but not limited to fluid containers containing large volumes of fluids. In some embodiments, the low-volume systems identify nucleic acids in samples using polymerase chain reaction (PCR).
Automated vault module
A cryogenic storage system provides automated storage and retrieval of samples in a cryogenic environment, as well as automated transfer of individual samples between cryogenic environments. Stored samples are maintained under a cryogenic temperature threshold, while also enabling access to the samples. The samples are organized and tracked by scanning a barcode of each sample. Embodiments may also comprise multiple storage vaults and provide for transfer of individual samples between the storage vaults, as well as between a storage vault and a removable cryogenic storage device.
ASSAY APPARATUSES, CONSUMABLES AND METHODS
We describe apparatuses, method, reagents, and kits for conducting assays as well as process for their preparation. They are particularly well suited for conducting automated sampling, sample preparation, and analysis in a multi-well plate assay format. For example, they may be used for automated analysis of liquid samples in a clinical point of care setting.
Sample plate and auto-sampler
The sample plate has a principal plane in which a plurality of wells is arranged. The sample plate has a plurality of through-holes each allowing a sampling needle to pass through in a region of the principal plane where the wells are not provided, and positions of the wells and positions of the through-holes are designed such that when two pieces of the sample plates are arranged up and down with a predetermined positional relationship in a state in which respective principal planes are arranged in parallel each other, the through-holes of the sample plate arranged on an upper side is arranged at positions directly above respective wells of the sample plate arranged on a lower side.
AUTOMATIC SAMPLE-CHANGING DEVICE AND METHOD FOR PARTICLE BEAM RADIATION SAMPLE
A device includes sample tray units, a sample tray transporting unit, a sample tray handling unit, and a sample tray radiation stage unit. The sample tray units are configured to load samples. The sample tray transporting unit is configured to carry a sample tray unit to a radiation room. The sample tray handling unit is between the sample tray transporting unit and the sample tray radiation stage unit, and is configured to transfer the sample tray unit on the sample tray transporting unit to the sample tray radiation stage unit or return the sample tray unit on the sample tray radiation stage unit to the sample tray transporting unit. The sample tray radiation stage unit is configured to carry the sample tray unit and move the samples to be irradiated in the sample tray unit to a particle beam radiation area to receive radiation.
Automated sample diagnostic analyzer and method for its operation
Automated analyzer (2000) comprising a housing (2010, 3010), a robotic arm comprising an end effector (2360), the end effector (2360) comprising a body (2320) rotatably connected to an articulating arm and first (2363a) and second fingers (2363b) coupled to the body (2362) and being moveable relative to each other in a first direction, each of the fingers (2363a, b) having an engagement feature (2361) projecting inwardly from each of the first and second fingers (2363a, b) and toward the other of the first and second fingers (2363a, b). The automated analyzer (2000) further comprises a shuttle platform (2030) for receiving a shuttle (2030) carrying sample containers (03), the containers carrying sample (03) to be evaluated by the analyzer (2000) and the shuttle platform (2030) comprising a jaw assembly that engages the bottom portion of the sample containers when the jaw assembly is in the closed position.
PLATE CHANGER
A plate changer that supplies a plate storing a sample to an autosampler included in an analyzer includes a storage that stores the plate, and a plate transporter that transports the plate by holding the plate, the plate transporter receiving the plate from a first plate changer provided at one side of the plate changer and also transferring the plate received from the first plate changer to a second plate changer or the autosampler provided at another side of the plate changer or transferring the plate stored in the storage to the second plate changer or the autosampler.