Multi-dimensional cell full-life-cycle multimedia information dynamic backtracking method
A technology of full life cycle, multimedia information, applied in the field of dynamic backtracking of multi-dimensional cell full life cycle multimedia information, can solve problems such as limitations
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Embodiment 1
[0024] Embodiment 1 of the present invention provides a dynamic backtracking method for multi-dimensional cell full life cycle multimedia information, such as figure 1 As shown, the method includes the following steps:
[0025] S1: Determine whether the current production step is to collect samples, start production or generate preparations. If it is sample collection, proceed to step S2. If it is to start production, proceed to step S3. If it is to generate preparations, proceed to step S4. If not, proceed to step S1. Step S5;
[0026] S2: Perform the first coding based on the name of the current preparation to obtain the first code, store the collected sample information in association with the first code and generate the first barcode, and proceed to the next production step, and at the same time send an instruction to step S6;
[0027] S3: Perform the second encoding based on the first encoding and the current step to obtain the second encoding, store the information obta...
Embodiment 2
[0034] A multi-dimensional cell full life cycle multimedia information dynamic backtracking method, different from Embodiment 1, the current production steps described in step S1 include sample collection, transportation, laboratory reception, quality inspection, start of production, and quality inspection during the experiment , warehousing / inventory transfer, application outbound / resuscitation, generation of preparations, preparation transportation, hospital reception, preparation reinfusion, and waste liquid treatment, all operations must be scanned for confirmation before each step, except for sample collection, start of production, generation After the steps other than the preparation are scanned and the operation is completed, the information obtained by scanning the code can be edited. Only after confirming the accuracy and completeness of the previous step can the current step be started to avoid problems in the preparation process.
[0035] In this embodiment, the inf...
Embodiment 3
[0038] A method for dynamic backtracking of multi-dimensional cell life cycle multimedia information, different from Embodiment 1, such as figure 2 As shown, step S2 in this embodiment includes the following steps:
[0039] S21: Generate a prefix code based on the preparation name;
[0040] S22: Perform encoding to generate a bit array, and perform secondary encoding on the primary encoding to generate an infix code;
[0041] S23: Add a connector between the prefix code and the infix code to obtain the first code, and the connector includes a space or "-".
[0042] like image 3 As shown, step S21 in this embodiment includes the following steps:
[0043] S210: Randomly generate a coding matrix, and the determinant of the coding matrix is relatively prime to 26, and the coding matrix is:
[0044]
[0045] S211: Convert the text information of the preparation name into pinyin information, and two pinyin letters form a group of letters;
[0046] S212: Convert the pinyi...
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