IP Library Granted Patent US 11,754,580
Granted Patent B2
US 11,754,580 · App. 16/232,290 · Granted Sep 12, 2023

Sample measurement method and sample measurement device

Inventors: Shunsuke Ariyoshi (Kobe, JP); Tsuyoshi Fukuzaki (Kobe, JP); Masaki Shiba (Kobe, JP)
Assignee: SYSMEX CORPORATION
G01N35/1009G01N33/491G01N33/4905G01N33/86G01N35/1004G01N35/1011G01N21/76G01N35/1079G01N2021/825G01N2035/0097G01N2035/00277G01N2035/00495G01N2035/1025
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Quick Facts
Patent No.
US 11,754,580
App. No.
16/232,290
Granted
Sep 12, 2023
Kind
B2
Abstract

A sample measurement method of performing first measurement for a blood coagulation test and second measurement for a test different from the blood coagulation test includes: dispensing a sample for use in the first measurement into a first container from a sample container; dispensing the sample for use in the second measurement into a second container different from the first container from the sample container from which the sample for use in the first measurement has been dispensed; performing the first measurement based on the sample dispensed into the first container; and performing the second measurement based on the sample dispensed into the second container.

Claims (53)

1. A sample measurement device comprising:

a first measurement section configured to perform a first measurement for a blood coagulation test;

a second measurement section configured to perform a second measurement for a test different from the blood coagulation test;

a dispensing mechanism unit configured to dispense plasma from a sample container, which contains plasma, a buffy coat, and red blood cells, using a nozzle, the dispensing mechanism unit including the nozzle configured to aspirate and discharge the plasma and a drive section for lifting and lowering the nozzle, the sample measurement device; and

a controller configured to:

cause the dispensing mechanism unit to lower the nozzle to aspirate the plasma for use in the first measurement from the sample container by lowering the nozzle to a first position in the sample container;

lift the nozzle holding the aspirated plasma, discharge the plasma from the sample container into a first container for use in the blood coagulation test;

cause the dispensing mechanism unit to lower the nozzle to aspirate the plasma for use in the second measurement from the sample container by lowering the nozzle to a second position lower than the first position in the same sample container;

dispense the plasma for use in the second measurement from the sample container into a second container different from the first container, and

wherein dispensing comprises the lowering of the nozzle to aspirate the plasma for use in the first measurement from the sample container by the lowered nozzle, lifting the nozzle holding the aspirated plasma, and discharging the plasma into the first container, before dispensing plasma for use in the second measurement.

2. The sample measurement device according to claim 1 , further comprising

a memory that stores a lowering amount of the nozzle, wherein

the controller drives the drive section according to the lowering amount stored in the memory to lower the nozzle by a predetermined amount from a liquid surface of the sample.

3. The sample measurement device according to claim 2 , wherein

the drive section is a stepping motor,

the memory stores the number of pulses corresponding to the lowering amount, and

the controller drives the drive section according to the number of pulses stored in the memory to lower the nozzle by the predetermined amount from the liquid surface of the sample.

4. The sample measurement device according to claim 1 , further comprising

a sensor that senses that a tip of the nozzle comes into contact with a liquid surface, wherein

the controller controls the dispensing mechanism unit to lower, after the sensor senses that the tip of the nozzle comes into contact with a liquid surface of the sample, the nozzle by a predetermined amount from the liquid surface of the sample.

5. A sample measurement method of performing first measurement for a blood coagulation test and second measurement for a test different from the blood coagulation test, comprising:

providing a dispensing mechanism unit including a nozzle for dispensing plasma from a sample container, which contains plasma separated from whole blood by centrifugation, wherein a buffy coat is formed between a plasma region and a red blood cell region in the sample container;

dispensing, from the sample container, plasma for use in the first measurement into a first container;

dispensing, from the sample container, plasma for use in the second measurement into a second container different from the first container;

performing the first measurement based on the plasma dispensed into the first container; and

performing the second measurement based on the plasma dispensed into the second container;

wherein dispensing plasma for use in the first measurement for the blood coagulation test is performed through a nozzle positioned at a first position in the sample container and before dispensing plasma for use in the second measurement for the test different from the blood coagulation test, and

wherein dispensing plasma for use in the first measurement comprises a first aspiration operation and dispensing plasma for use in the second measurement comprises a second aspiration operation through the nozzle at a second position lower than the first position.

6. The sample measurement method according to claim 5 , further comprising

centrifuging whole blood in the sample container to separate the plasma region from the red blood cell region with the buffy coat therebetween.

7. The sample measurement method according to claim 5 , wherein

aspirating the sample from the sample container through the nozzle in the first dispense operation comprises aspirating the sample from the sample container through the nozzle with a tip of the nozzle positioned above a central position of the plasma region in the sample container.

8. The sample measurement method according to claim 5 , wherein

performing the first dispense operation comprises lowering the nozzle by a predetermined amount from a liquid surface of the plasma region in the sample container and aspirating the sample from the sample container by using the lowered nozzle, and

performing the second dispense operation comprises lowering the nozzle by a predetermined amount from the liquid surface of the plasma region in the sample container and aspirating the sample from the sample container by using the lowered nozzle.

9. The sample measurement method according to claim 8 , wherein

the lowering of the nozzle by the predetermined amount from the liquid surface of the plasma region in the sample container in one of the first dispense operation and the second dispense operation comprises lowering the nozzle by the predetermined amount from the liquid surface of the plasma region in the sample container by driving a drive section that lifts and lowers the nozzle according to a lowering amount stored in a memory.

10. The sample measurement method according to claim 8 , wherein

the lowering of the nozzle by the predetermined amount from the liquid surface of the plasma region in the sample container in one of the first dispense operation and the second dispense operation comprises lowering the nozzle by the predetermined amount from the liquid surface of the plasma region in the sample container after a sensor senses that a tip of the nozzle comes into contact with the liquid surface of the plasma region.

11. The sample measurement method according to claim 5 , wherein

the nozzle comprises a first nozzle used for the first dispense operation and a second nozzle used for the second dispense operation.

12. The sample measurement method according to claim 5 , wherein

the same nozzle is used to dispense the sample for use in the first measurement and to dispense the sample for use in the second measurement.

13. The sample measurement method according to claim 5 , further comprising

cleaning, with a cleaning liquid, inner and outer peripheral surfaces of at least a part of the nozzle with which the sample has come into contact.

14. The sample measurement method according to claim 5 , wherein

the sample container is a blood collection tube.

15. The sample measurement method according to claim 5 , wherein

the second measurement is measurement for an immunological test.

16. The sample measurement method according to claim 15 , further comprising

performing BF separation to separate a liquid component from a test substance in the sample dispensed into the second container.

17. The sample measurement method according to claim 5 , wherein

the second measurement is measurement for a biochemical test.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 26, 2018
From: ARIYOSHI, SHUNSUKE; FUKUZAKI, TSUYOSHI; SHIBA, MASAKI
To: SYSMEX CORPORATION
Reel/Frame 047852/0286 →
Priority Claims (1)
JP 2017-253156 · Dec 28, 2017 · national
Continuity (1)
Related Publication 20190204349A1 · Jul 4, 2019