The present invention is related to bone mineral density evaluation technology, and particularly refers to a method of bioimpedance technology to evaluate local or whole body bone mineral density.
Most of the current bone mass inspection methods are measured according to the different absorption levels of ionized radiation by bone and soft tissue. Among them, the use of dual energy X-ray absorptiometry (DXA) to express bone mineral density (BMD) by mineral mass (g/cm2) is widely accepted.
However, although the method of applying DXA to measuring BMD is accepted by everyone, because DXA measurement is expensive, and its measurement location must be implemented in a hospital or related professional institution, it cannot be applied to home health care.
In addition, each measurement of DXA takes tens of minutes. Therefore, the current method of measuring bone mineral density using DXA is costly and time-consuming, and it is not convenient to use.
The present invention has been accomplished under the circumstances in view. It is the main object of the present invention to provide a method of bioimpedance technology to evaluate local or whole body bone mineral density, which, compared with the prior art, is low in cost, fast, and convenient in use.
In order to achieve the above-mentioned purpose, a method of bioimpedance technology to evaluate local or whole body bone mineral density provided by the present invention comprises the following steps:
Step (a) Measure the resistance (R) and reactance (Xc) of a subject with a bioimpedance measuring instrument, and obtain the height of the subject.
Step (b) The bone mineral density of the subject's local or whole body is calculated by the following calculation formula:
BMD=a+b R/H+d Xc/H, where a, b, and d are weighting coefficients; R is the resistance of the subject; Xc is the reactance of the subject; H is the height of the subject.
Thereby, a method of bioimpedance technology to evaluate local or whole body bone mineral density provided by the present invention only uses a bioimpedance measuring instrument to obtain the resistance, reactance, and height of the subject, and then calculates the formula BMD=a+b R/H+d Xc/H to obtain the bone mineral density. Compared with the prior art, the present invention is low in cost, fast, and convenient in use.
In order to explain the technical features of the present invention in detail, the following is a preferred embodiment, and the descriptions are as follows in conjunction with
Step (a) Use a bioimpedance measuring instrument 20 to measure the resistance and reactance of a subject, and obtain the height of the subject.
In this preferred embodiment, the height of the subject is measured by a height rod and manually inputted into the bioimpedance measuring instrument 20, and the accuracy of the height rod is set to 0.5 cm (but not limited to this). Thereby, the height that best meets the current situation of the subject can be obtained, so as to improve the accuracy of the evaluation result of the present invention. In other preferred embodiments, the subject's height can also be directly provided by the subject, and transmitted to the bioimpedance measuring instrument 20 in an automatic and wired/wireless manner. Therefore, the selection of the bioimpedance measuring instrument 20 and the way the bioimpedance measuring instrument 20 obtains the height of the subject are not limited to the present preferred embodiment.
As shown in
In the present preferred embodiment, the bioimpedance measuring instrument 20 measures the body mineral density of the subject's body (BMDtotal), lumbar spine (BMDLS) and right upper limb (BMDright arm), a total of three parts of bone mineral density. In other preferred embodiments, it is also possible to choose to measure other parts of the subject according to needs, and to increase or decrease the measured parts of the subject according to needs.
Step (b) The bone mineral density of the subject's local or whole body is calculated by the following formula:
BMD=a+b R/H+d Xc/H, where a, b, and d are weighting coefficients; R is the resistance of the subject; Xc is the reactance of the subject; H is the height of the subject.
In the present preferred embodiment, the weighting coefficients of a, b, and d are obtained by using DXA for the whole body, lumbar spine, and right upper limb of hundreds of testers, after obtaining the average bone mineral density of the three positions. In other preferred embodiments, the weighting coefficients of a, b, and d can also be obtained after measurement by a quantitative ultrasonic inspection instrument, quantitative computed tomography, or traditional X-ray inspection. And, other parts of the tester can be selected to be measured according to the needs, and the tester's measurement parts can be increased or decreased according to the needs. Therefore, the instrument and the body parts of the tester are not limited to the present preferred embodiment.
As shown in
It can be proved that the method of bioimpedance technology to evaluate local or whole body bone mineral density provided by the present invention only uses the bioimpedance measuring instrument to obtain the resistance, reactance, and height of the subject, and the bone mineral density can be measured after calculating with the formula BMD=a+b R/H+d Xc/ii. Compared with the prior art, the present invention is low in cost, fast, and convenient in use.
Number | Date | Country | Kind |
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110107862 | Mar 2021 | TW | national |