Iron-deficiency anemia diagnosis system based on blood routine examination data, electronic equipment and storage medium

A technology of iron deficiency anemia and diagnosis system, which is applied in the field of iron deficiency anemia diagnosis system, can solve the problems of high detection cost, high cost, and many inspection items, and achieve the goal of prolonging detection time, increasing detection cost, and simplifying the diagnosis process Effect

Pending Publication Date: 2022-07-19
LANZHOU UNIVERSITY
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

It is necessary to comprehensively judge the results of various inspections to make a diagnosis. There are many inspection items, high cost, invasive operations such as bone marrow puncture, iron metabolism indicators and bone biopsy report TAT time is long, so the diagnosis efficiency is low
In addition, the most common types of microcytic hypochromic anemia are iron deficiency anemia and thalassemia, both of which involve the reduction of MCV, MCH, and MCHC, so the type of anemia cannot be judged by the results of simple blood routine testing
At present, the results of routine blood tests cannot directly judge the hematopoietic capacity of the bone marrow. The reticulocyte count, which is relatively expensive for a single test, is needed to assist in the judgment.
At present, there are many diagnostic patents on thalassemia and hemolytic anemia. For example, patent CN110632326A discloses a characteristic protein marker composition and its diagnostic products for mass spectrometry diagnosis of thalassemia; Characteristic protein spectrum model and its application; patent CN101529249A discloses tools and methods for diagnosing hemolytic anemia; and for the patent of iron deficiency anemia, only one ferritin detection reagent for early diagnosis of iron deficiency anemia was retrieved strip and test kit (CN212111449U), and no other diagnostic kit for diagnosing iron deficiency anemia

Method used

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  • Iron-deficiency anemia diagnosis system based on blood routine examination data, electronic equipment and storage medium
  • Iron-deficiency anemia diagnosis system based on blood routine examination data, electronic equipment and storage medium
  • Iron-deficiency anemia diagnosis system based on blood routine examination data, electronic equipment and storage medium

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Embodiment 1

[0024] Embodiment 1. A diagnostic system for iron deficiency anemia based on routine blood test data

[0025] The present invention provides an iron-deficiency anemia diagnosis system based on blood routine test data, and the system includes:

[0026] (1) Data acquisition module: used to acquire the data of various indicators of blood routine and preprocess;

[0027] (2) Data processing module: adopt the calculation method of the red blood cell-hemoglobin deviation degree to process the data of each index of the blood routine to be measured;

[0028] The erythrocyte-hemoglobin deviation is calculated by the following formula, and the formula is:

[0029] RHD=RBC-(Hb / 3*0.1)

[0030] Among them, RHD is the red blood cell-hemoglobin deviation;

[0031] RBC is the number of red blood cells;

[0032] Hb is the amount of hemoglobin.

[0033] (3) Model building module: an interval judgment model for establishing the relationship between the reference range of the data processing...

Embodiment 2

[0041] Example 2, data analysis

[0042] The collected blood routine index data is divided into the blood routine index data of patients with clinically diagnosed iron deficiency anemia and the index data of non-iron deficiency anemia patients. The obtained blood routine index data is processed, and the following formula is used to calculate the red blood cells. - Hemoglobin deviation, the formula is:

[0043] RHD=RBC-(Hb / 3*0.1)

[0044] Among them, RHD is the red blood cell-hemoglobin deviation;

[0045] RBC is the number of red blood cells;

[0046] Hb is the hemoglobin value.

[0047] The RHD reference range was selected from the healthy population with no obvious abnormal blood test indicators and normal RBC and Hb tests, 105 males and 105 females, aged 18 to 60 years old. The range is: -0.68~0.14; the reference range of the female RHD threshold is: -0.49~0.41; it means that the female RHD>0.41 means 95% may be IDA; the male RHD>0.14 means that 95% may be IDA. See Table...

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Abstract

The invention relates to the field of clinical examination medicine, and particularly provides an iron-deficiency anemia diagnosis system based on blood routine examination data, which comprises: (1) a data acquisition module; (2) a data processing module: processing the to-be-detected index data by adopting an equation, and calculating the erythrocyte-hemoglobin deviation degree; the equation is as follows: RHD = RBC-(Hb / 3 * 0.1), wherein RHD is the erythrocyte-hemoglobin deviation degree; rBC is a red blood cell value; hb is a hemoglobin value; (3) a model building module; (4) a result judgment module; the system can directly process blood routine index data and obtain a result, assists in diagnosing iron-deficiency anemia, and has the advantages of high result accuracy and short time consumption. The diagnosis system disclosed by the invention can also be used for evaluating the myelohyperplasia state; the method provides a data basis for clinical bone marrow state research, and has guiding significance.

Description

technical field [0001] The invention relates to the field of clinical laboratory medicine, in particular to an iron-deficiency anemia diagnosis system, electronic equipment and storage medium based on blood routine test data. Background technique [0002] Iron deficiency anemia (IDA) is a common anemia caused by the lack of iron in the body that affects the synthesis of hemoglobin. This anemia is characterized by the lack of stainable iron in the bone marrow, liver, spleen and other tissues Concentration and serum transferrin saturation were decreased. General manifestations include pale skin, easy fatigue, dizziness, tinnitus, memory loss, palpitations, insomnia, loss of appetite, etc. Children and adolescents are prone to anemia. The WHO report pointed out that anemia affects 1.62 billion people worldwide, equivalent to 24.8% of the world's population, and the prevalence of anemia in school-age children is 25.4%. [0003] Generally speaking, there is a parallel relation...

Claims

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Application Information

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IPC IPC(8): G16H50/20G06F16/242G01N33/72
CPCG16H50/20G06F16/242G01N33/721
Inventor 刘蓓安淑娟高建业刘馨雨马海珍成娟李洋
Owner LANZHOU UNIVERSITY
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