Sample analysis system, and input device, output device, and region configuration method thereof
A technology of input and output, regional configuration, applied in the field of medical devices, can solve the problems of regional capacity waste, excessive time and energy, unreasonable configuration of put/recovery capacity, etc., to achieve the effect of improving efficiency
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Embodiment 1
[0065] Embodiment 1, for the sample input device:
[0066]The input area of the sample input device 20 can be configured into sub-areas of at least two attributes. The configuration includes the configuration of the attributes and capacity of the sub-areas, and the sub-areas of the same attribute are only used to place samples of the same attribute. After the sample is scanned by the scanning device, the processor 70 can obtain the identification information of the sample, but the information carried (associated) in the identification information is limited, and usually the identification information only includes the sample number, sample type, and sample source information. The processor 70 may not be able to know what kind of processing (pre-processing) is performed on the sample before loading, for example, it is impossible to know whether the sample is a blood cell sample, a biochemical immune sample, or a hemagglutination sample. Processor 70 may also not know how comp...
Embodiment 2
[0108] Embodiment 2, for the sample output device:
[0109] In this embodiment, the recovery area of the sample output device is simulated, and the sample output device includes a recovery area for placing the output samples. The recycling area can be configured as sub-areas of at least two attributes. The configuration includes the configuration of the attributes of the sub-areas and their capacity, and the sub-areas of the same attribute are used to place samples of the same attribute.
[0110] Such as Figure 7 As shown, in this embodiment, the method for the processor 70 to configure the area of the sample output device 30 includes the following steps:
[0111] In step 1', the processor 70 at least acquires sample flow data within a preset time period. In this embodiment, the sample flow data is historical sample flow data.
[0112] Step 2', the processor 70 obtains multiple recycling area simulation configurations of the recycling area, and the recycling area simul...
Embodiment 3
[0150] Embodiment 3, for the sample input and output device:
[0151] This embodiment simulates the area of the sample input and output device 60 , which is equivalent to the combination of the first embodiment and the second embodiment. The sample input and output device includes: a putting area for placing input samples and a recycling area for placing output samples; the putting area includes at least one sub-area, and the recycling area includes at least one sub-area. Such as Figure 12 As shown, in this embodiment, the method for the processor 70 to configure the area of the sample input and output device includes the following steps:
[0152] In step 50, the processor 70 acquires at least historical sample flow data within a preset time period.
[0153] Step 60, the processor 70 divides each sub-area into different capacity ratios, for example, divides the sub-areas of the put-in area and the sub-area of the recovery area by analogy, and divides each sub-area int...
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