Sample analysis system and sample analysis system control method
A sample analysis and control method technology, applied in the field of sample analysis system control and sample analysis system, can solve the problems of increasing equipment manufacturing cost, increasing the total length of the assembly line and the floor area, and achieving the effect of small floor space
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Embodiment 1
[0064] like figure 1 As shown, the first embodiment provided by the sample analysis system of the present invention includes a sample transfer device, a first sample analyzer 20 and a second sample analyzer 30 . The first sample analyzer 20 and the second sample analyzer 30 can be used to analyze body fluid samples (such as blood, etc.) or urine samples, etc. The first sample analyzer 20 and the second sample analyzer 30 can be the same or different, and the first sample analyzer 20 and the second sample analyzer 30 can be blood cell analyzers, special protein analyzers, or glycated hemoglobin analyzers , pusher, blood type analyzer, etc., but not limited to the above list, the user can set according to the actual situation. At least one or both of the first sample analyzer 20 or the second sample analyzer 30 are provided with a display screen, so that the operator can easily obtain the operating status of the system from the display screen, and the display screen can be touc...
Embodiment 2
[0103] On the basis of Embodiment 1, this embodiment further elaborates on the locations of the corresponding loading buffer area and unloading buffer area, as follows:
[0104] In this example, if figure 1 As shown, the first load buffer area 140 and the second load buffer area 150 are arranged adjacently, and the first load buffer area 140 and the second load buffer area 150 are located between the first unload buffer area 180 and the second unload buffer area 210 , That is, the first unloading buffer area 140, the first loading buffer area 150, the second loading buffer area 180 and the second unloading buffer area 210 are arranged in sequence along the same side of the first feeding channel 120 and the second feeding channel 130, Wherein, the first feeding channel 120 and the second feeding channel 130 are collinearly arranged adjacent to each other. The first loading buffer area 140 is located at one end of the first feeding channel 120 ; the first unloading buffer area ...
Embodiment 3
[0107] In the actual testing process, when there are special samples that need to be tested manually, such as samples without barcodes, retest samples, trace blood samples, etc., manual sample injection can be performed by triggering emergency actions. To this end, the sample transfer device also includes a first manual sample feeding device 50, see figure 2. The first manual sampling device 50 corresponds to the first feeding channel 120, the first manual sampling device 50 and the first sample analyzer 20 can be separately located on both sides of the first feeding channel 120, the first manual sampling device 50 may be located between the first loading buffer 140 and the first unloading buffer 180 , and the first manual sampling device 50 is located between the first feeding channel 120 and the transfer channel 230 . The first manual sampling device 50 may be a closed sampling device. The closed sampling device has a built-in sampling needle, the sample is picked up by t...
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