Instrument and process for the automated processing of liquid samples
US-9134332-B2 · Sep 15, 2015 · US
US10379130B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10379130-B2 |
| Application number | US-201615193990-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jun 27, 2016 |
| Priority date | Jun 26, 2015 |
| Publication date | Aug 13, 2019 |
| Grant date | Aug 13, 2019 |
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A diagnostic analyzer includes a first sample process path, a second sample processing path, and a reaction vessel exchanger device. The first sample process path includes an incubation track operable to move reaction vessels along the first sample process path. The second sample process path includes a processing track, disposed below the first sample process path, which is operable to move reaction vessels along the second sample process path. The reaction vessel exchanger device is configured to transfer the reaction vessels from the first sample processing path to the second sample processing path.
Opening claim text (preview).
The invention claimed is: 1. A diagnostic analyzer comprising: a first sample process path having an incubation track operable to move reaction vessels along the first sample process path; a second sample process path having a processing track disposed below the first sample process path and operable to move reaction vessels along the second sample process path; a reaction vessel exchanger device operable to transfer the reaction vessels from the first sample process path to the second sample process path; a pipetting device operable to pipette reagents or samples into the reaction vessels held by the incubation track; and at least one detection device operable to take readings of the samples contained in the reaction vessels; wherein the reaction vessel exchanger device comprises a rotation member operable to rotate the reaction vessels, as they are held by the incubation track, from a first orientation to a second orientation; the incubation track comprises a plurality of incubation track slots operable to hold the reaction vessels, and the processing track comprises a plurality of processing track slots operable to hold the reaction vessels, the plurality of processing track slots disposed directly below the plurality of incubation track slots in vertical alignment; and the incubation track slots and the reaction vessels are sized so that when the reaction vessels are disposed in the first orientation within the incubation track slots the reaction vessels will be held by the incubation track, and when the reaction vessels are disposed in the second orientation within the incubation track slots the reaction vessels will pass through the incubation track slots into the processing track slots. 2. The diagnostic analyzer of claim 1 wherein the processing track is operable to move the reaction vessels, with the samples disposed in them, to the at least one detection device. 3. The diagnostic analyzer of claim 1 wherein the incubation track and the processing track each separately comprise a continuous linear belt-like track disposed around pulleys. 4. The diagnostic analyzer of claim 3 wherein a first longitudinal axis of the first sample process path is disposed perpendicular to a second longitudinal axis of the second sample process path. 5. The diagnostic analyzer of claim 1 wherein the rotation member comprises an open-ended shaft having opposed slots, the opposed slots sized to allow the reaction vessels to pass through the opposed slots, an inner shaft wall of the open-ended shaft being sized to abut against the reaction vessels. 6. The diagnostic analyzer of claim 1 wherein the reaction vessel exchanger device further comprises a reaction vessel moving device operable to contact and support the reaction vessels and move them through the incubation track slots into the processing track slots. 7. The diagnostic analyzer of claim 6 wherein the reaction vessel moving device comprises a flexible member sized to fit over and against the reaction vessels. 8. The diagnostic analyzer of claim 1 further comprising a dampening device disposed below the processing track slots which is operable to dampen movement of the reaction vessels as they move into the processing track slots.
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