WO2021120214A1 - 人体生物讯息检测装置及其方法 - Google Patents

人体生物讯息检测装置及其方法 Download PDF

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Publication number
WO2021120214A1
WO2021120214A1 PCT/CN2019/127175 CN2019127175W WO2021120214A1 WO 2021120214 A1 WO2021120214 A1 WO 2021120214A1 CN 2019127175 W CN2019127175 W CN 2019127175W WO 2021120214 A1 WO2021120214 A1 WO 2021120214A1
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Prior art keywords
detection
human body
hand
foot
current
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PCT/CN2019/127175
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English (en)
French (fr)
Inventor
廖启尧
黄骏丰
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金上达科技股份有限公司
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Priority to PCT/CN2019/127175 priority Critical patent/WO2021120214A1/zh
Publication of WO2021120214A1 publication Critical patent/WO2021120214A1/zh

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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/05Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fields; Measuring using microwaves or radio waves 
    • A61B5/053Measuring electrical impedance or conductance of a portion of the body

Definitions

  • the invention relates to a human body biological information detection device and a method thereof, in particular to a human body biological information detection device and a method that are convenient to carry and detect accurately.
  • the ratio of muscle to body fat will also greatly affect the health of the human body.
  • all the machines on the market that can completely and accurately measure body fat-related data are large
  • the accuracy of small-scale machines on the market is often not accurate enough for measurement.
  • the inventor of the present invention collected relevant information, evaluated and considered from many parties, and based on years of experience in this industry, through continuous trials and modifications, he designed such a convenient port and measurement. More accurate human body biological information detection device and method.
  • the main purpose of the present invention is to use the portable detection device to improve the convenience of use, and to cooperate with the detection electrode assembly connected to the limbs to improve the accuracy of measurement.
  • a human body biological information detection device including: a portable detection device; a control component, the control component is arranged in the portable detection device; a detection current A generation part, the detection current generation part is arranged on the control assembly; a current control protection part, the current control protection part is arranged on the control assembly; a detection current receiving and processing part, the detection current receiving and processing part is arranged on the control Component; and a detection electrode assembly, the detection electrode assembly is connected to the portable detection device and connected to the control assembly, and the detection electrode assembly includes a left-hand contact connected to the portable detection device , A right-hand contact piece connected with the portable detection device, a left foot contact piece connected with the portable detection device, and a right foot contact piece connected with the portable detection device, and The detection electrode assembly is used to introduce the bio-impedance detection current generated by the detection current generation part into the human body through the limbs, and introduce the bio-impedance detection current flowing through the human body into the detection
  • the user can connect the left-hand contact, right-hand contact, left-foot contact, and right-foot contact in the detection electrode assembly to the left hand, right hand, left foot, and right foot of the subject, respectively .
  • the detection current generation part in the control assembly is used to generate a bio-impedance detection current, and the bio-impedance detection current will be controlled by the current control protection part to prevent adverse effects on the human body, and then pass through the limbs.
  • the bio-impedance detection current will be completely distributed throughout the body after entering the human body to measure the bio-impedance value everywhere in the body, and then return through the limbs of the human body
  • the detection electrode assembly, the detection electrode assembly will lead the detected bio-impedance detection current to the detection current receiving processing unit, and the detection current receiving processing unit will determine the required human body based on the bio-impedance value detected by the bio-impedance detection current Biological information, in this way, can achieve the advantages of convenient carrying and more accurate measurement.
  • Figure 1 is a perspective view of a preferred embodiment of the present invention.
  • Figure 2 is a flowchart of the steps of a preferred embodiment of the present invention.
  • Fig. 3 is a schematic diagram of contact of a preferred embodiment of the present invention.
  • Fig. 4 is a schematic diagram of clamping of a preferred embodiment of the present invention.
  • Fig. 5 is a schematic diagram of current introduction according to a preferred embodiment of the present invention.
  • Fig. 6 is a schematic diagram of current derivation according to a preferred embodiment of the present invention.
  • FIG. 7 is a schematic diagram of the display of the preferred embodiment of the present invention.
  • Fig. 8 is a perspective view of another preferred embodiment of the present invention.
  • FIG. 9 is a schematic diagram of detection of still another preferred embodiment of the present invention.
  • Fig. 10 is a three-dimensional perspective view of another preferred embodiment of the present invention.
  • FIG. 11 is a schematic diagram of detection of another preferred embodiment of the present invention.
  • Figure 12 is a flowchart of another preferred embodiment of the present invention.
  • FIG. 13 is a schematic diagram of impedance of another preferred embodiment of the present invention.
  • Portable detection device 1, 1a, control components, 11, 11c, detection current generation unit, 111, 111c, detection current reception processing unit, 112, 112c, current control protection unit, 113, hand auxiliary fixture, 12 , 5a, 5b, display, 13, 13a, detection electrode assembly, 2, left-hand contact, 21, 21a, right-hand contact, 22, 22a, left-foot contact, 23, 23a, right-foot contact, 24, 24a, foot fixture, 3, 3a, 3b, human body, 4, 4c, left hand, A, right hand, B, left foot, C, right foot, D.
  • a portable detection device 1 is provided.
  • control component 11 provided in the portable detection device 1.
  • the control component 11 is a circuit board provided in the portable detection device 1, and the control component 11 will have a detection current generating unit 111 , A detection current receiving and processing unit 112, and a current control and protection unit 113;
  • the auxiliary hand fixing members 12 in this embodiment are hand cushions provided on both sides of the portable detection device 1;
  • a detection electrode assembly 2 connected to the portable detection device 1.
  • the detection electrode assembly 2 is connected to the control assembly 11 in the portable detection device 1, and the detection electrode assembly 2 includes a holding contact set in one of the The left-hand contact piece 21 on the piece 12 and connected to the portable detection device 1, a right-hand contact piece 22 arranged on the other holding contact piece 12 and connected to the portable detection device 1, and a right-hand contact piece 22 connected to the portable detection device 1.
  • the left-hand contact piece 21, the right-hand contact piece 22, and the left-foot contact piece 23 of this embodiment , And the right foot contact piece 24 are metal sheets that can conduct current, and the left foot contact piece 23 and the right foot contact piece 24 are respectively arranged on a foot fixing piece 3, and the foot fixing piece 3 uses a clip as Examples; and
  • a flat screen connected to the portable detection device 1 is taken as an example.
  • the detection method of the human body biological information detection device of the present invention is:
  • a left-hand contact, a right-hand contact, a left-foot contact, and a right-foot contact are respectively contacted with the left hand, right hand, left foot, and right foot of the human body;
  • a control component in the portable detection device controls a detection current generating part to generate a bio-impedance detection current, and a current control and protection part restricts the current flow of the bio-impedance current;
  • the bioimpedance detection current will enter the human body through the limbs of the human body through the detection electrode assembly;
  • the detected bio-impedance detection current will be introduced into a detection current receiving and processing part on the control assembly through the detection electrode assembly;
  • the detection current receiving and processing unit is the bioimpedance value of various parts of the human body detected by the bioimpedance detection current to calculate the required biological information of the human body.
  • the user can hold both hands on the holding contact 12 of the portable detection device 1, and let the left hand A contact the left hand contact 21 and the right hand B contact the right hand contact 22, and then use the foot fixing part 3 Clamp on the left foot C and right foot D of the human body 4 respectively, and use the foot fixing part 3 to fix the left foot contact piece 23 and the right foot contact piece 24 respectively to touch the left foot C and right foot D of the human body 4
  • the foot fixing part 3 can be used to completely fix the left foot contact piece 23 and the right foot contact piece 24 on the left side of the human body 4.
  • the hand since the hand has a holding function, it can be directly held at the holding contact 12 on the portable detection device 1, and the portable detection device 1 can also be held.
  • the left-hand contact piece 21 and the right-hand contact piece 22 can be completely attached to the left hand A and the right hand B, thereby connecting the left-hand contact piece 21, the right-hand contact piece 22, the left foot contact piece 23, and the right foot contact piece 24
  • the foot fixing member 3 is clamped to the ankle of the human body 4 respectively
  • the foot contact machine can be used to touch the human body more completely, because in contrast, the thickness of the skin at the ankle is thinner than the thickness of the skin at the sole of the foot. Therefore, it is easier to introduce current into the human body.
  • the control component 11 generates a bio-impedance detection current through the detection current generation unit 111 (the power source is not limited, it can be used by internally installed batteries or connected to an external power source), and the bio-impedance detection current will enter the human body. Therefore, it is necessary to limit the upper limit of the current by the current control protection part to prevent excessive current from causing adverse effects on the human body.
  • the bioimpedance detection current adjusted by the current control protection part will pass through the detection electrode assembly 2
  • the limbs enter the human body 4, so that they will be evenly distributed throughout the human body 4, passing through all parts of the human body 4 completely, thereby measuring the bioimpedance value of each part of the human body 4, and then returning to the detection electrode assembly from the limbs
  • the detection electrode assembly 2 will introduce the measured bioimpedance detection current into the detection current receiving processing unit 112, so that a complete loop can be formed in the human body 4, thereby measuring the human body 4 more accurately
  • the bio-impedance value of each part, and the detection current receiving and processing unit 112 can calculate the required biological information of the human body from the bio-impedance value, such as body fat, visceral fat, and muscle mass, and display the measured information on the display On item 13, if it shows [body fat: XX% visceral fat: XX% muscle mass: XX%], it can even calculate the health status of the human body 4 with this human biological information, such as whether there is
  • the display element 13a is a display screen provided on the portable detection device 1a, so that the user can directly fix the left-hand contact element 21a and the right-hand contact element 22a on the left hand A and the right hand B through the hand auxiliary fixing element 5a , To make the fixing effect more stable to improve the convenience of use.
  • FIG. 10 Please refer to FIG. 10 at the same time. It can be clearly seen from the figure that this embodiment is similar to the above-mentioned embodiment, and only the hand auxiliary fixing member 5b and the foot fixing member 3b of this embodiment are provided with devil felt As an example, it means that the types of the auxiliary hand fixing member 5b and the foot fixing member 3b are not limited.
  • Steps to take take a portable detection device connected to a detection electrode assembly;
  • connection step contact a left-hand contact piece, a right-hand contact piece, a left-foot contact piece, and a right-foot contact piece in the detection electrode assembly to the left hand, right hand, left foot, and right foot of the human body, respectively on;
  • each first bioimpedance current will enter the human body through one of the limbs of the human body through the detection electrode assembly;
  • Impedance comparison step the detection current receiving and processing unit compares the bioimpedance values of various parts of the human body detected by each first bioimpedance detection current, thereby calculating the required biological information of the human body;
  • (h) Re-detection step the control component will control the detection current generating unit to generate a plurality of second bio-impedance detection currents with different frequencies from the first bio-impedance detection current, and introduce the second bio-impedance detection current into the person through the limbs After the detection is performed in the body, it is then led back to the detection current receiving and processing unit to perform a comparison operation.
  • the detection current generation unit 111c of this embodiment first generates a plurality of first bioimpedance detection currents, and enters the human body 4c through one of the limbs of the human body 4c, and then enters the human body 4c through another limb of the human body 4c. In one limb, the detection current is led back into the receiving processing unit 112c, whereby the comparison action is performed through the different impedance values generated by the different entry points and the derived points, so as to obtain more complete human biological information.
  • the impedance value of the left hand A connected to the right foot D is defined as the AD impedance value
  • the impedance value of the left hand A connected to the right hand B is defined as the AB impedance value
  • the impedance value of the left hand A connected to the left foot C is defined as The impedance value of AC impedance
  • the impedance value of the right hand B connected to the left foot C is defined as the BC impedance value
  • the impedance value of the right hand B connected to the right foot D is defined as the BD impedance value
  • the AD impedance value of the connected hands and feet compare the AD impedance value of the connected hands and feet with the BC impedance value to match the organs and muscles through which the AD impedance value and the BC impedance each pass. Yes, to get the proportion.
  • the AD impedance value is greater than the BC impedance value. It is possible that the muscle mass of the left hand A is greater than the muscle mass of the right hand B, or the proportion of visceral fat is different. Use this cross-comparison method , You can completely get the proportion of the body's muscle, fat, and internal organs, so as to achieve a more accurate measurement effect.
  • the detection current generation unit 111c will generate a second bioimpedance detection current with a complex frequency different from the first bioimpedance detection current, and the second bioimpedance detection current is different from the first bioimpedance detection current.
  • the same measurement method of the detection current is used to measure the AD impedance value, AB impedance value, AC impedance value, BC impedance value, BD impedance value, and CD impedance value through the second bio-impedance detection current. It is found through experiments that different impedance values will be generated when currents of different frequencies are used to pass through the water.
  • the impedance value calculated by the second biological impedance detection current of different frequencies can be compared with the first biological impedance.
  • the impedance value calculated by the impedance detection current is used for the comparison action.
  • the AD impedance values detected by the current with frequency of 1k, 5k, 50k, 250k, and 500k are Z1, Z2, Z3, Z4, and Z5
  • the impedance value of the AD impedance value is Y1 to Y5
  • the impedance value of the AC impedance value is X1 to X5
  • the impedance value of the BC impedance value is W1 to W5
  • the impedance value of the BD impedance value is V1 to V5
  • the impedance values of the CD impedance value are U1 to U5 respectively, to perform the comparison action, according to the impedance value difference caused by different frequencies, to derive the proportion of water in the human body 4c, to reinforce the overall volume The accuracy of the test.

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Abstract

一种人体生物讯息检测装置及其方法,包括一可携式检测装置(1,1a),可携式检测装置(1,1a)内设有一控制组件(11,11c),控制组件(11,11c)上设有一检测电流产生部(111,111c)、一检测电流接收处理部(112,112c)、及一电流控制保护部(113),且可携式检测装置(1,1a)上连接有一检测电极组件(2),检测电极组件(2)包括有一左手接触件(21,21a)、一右手接触件(22,22a)、一左脚接触件(23,23a)、及一右脚接触件(24,24a),借此,使用者可将检测电极组件(2)连接于人体(4,4c)的四肢上,并将检测电流产生部(111,111c)产生的生物阻抗检测电流导入人体(4,4c)内,来检测人体(4,4c)内的生物阻抗值,借此得到所需的人体生物讯息,并达到方便携带以及检测准确的优势。

Description

人体生物讯息检测装置及其方法 技术领域
本发明涉及一种人体生物讯息检测装置及其方法,尤指一种方便携带并且检测准确的人体生物讯息检测装置及其方法。
背景技术
由于健身观念的普及,人们除了旧有的胖瘦观念之外,也逐渐开始关心身体内的脂肪与肌肉比例,因为即使两个身高体重完全相等的两个人,也会因为体内脂肪与肌肉的比例不相同,而形成不同的体态及健康状况,例如有的人看似不胖,但由于身体内肌肉比例相当低并且脂肪的比例偏高,反而健康状况较一般人还差。
并且影响健康状况的因素除了肌肉与体内脂肪的比例外,内脏脂肪所占的比例也会大幅影响人体的健康状况,目前市面上能够完整并准确量测体脂肪相关数据的机台,都为大型的机台,而一般市面上的小型机台于量测时的准确度却往往不够准确。
如何解决上述现有技术的问题与缺失,即为本发明的申请人与从事此行业的相关厂商所亟欲研究改善的方向。
发明内容
本发明的发明人有鉴于上述缺失,乃搜集相关资料,经由多方评估及考虑,并以从事于此行业累积的多年经验,经由不断试作及修改,始设计出此种方便携带并且量测上更加准确的人体生物讯息检测装置及其方法。
本发明的主要目的在于:利用可携式检测装置方便携带的效果,来提升使用上的方便性,并配合连接四肢的检测电极组件来提升量测时的准确性。
为达成上述目的,本发明采用的技术方案为:一种人体生物讯息检测装置, 包括:一可携式检测装置;一控制组件,该控制组件设于该可携式检测装置内;一检测电流产生部,该检测电流产生部设于该控制组件上;一电流控制保护部,该电流控制保护部设于该控制组件上;一检测电流接收处理部,该检测电流接收处理部设于该控制组件上;及一检测电极组件,该检测电极组件连接于该可携式检测装置上并与该控制组件相连接,且该检测电极组件包括有一与该可携式检测装置相连接的左手接触件、一与该可携式检测装置相连接的右手接触件、一与该可携式检测装置相连接的左脚接触件、及一与该可携式检测装置相连接的右脚接触件,且该检测电极组件供将该检测电流产生部所产生的生物阻抗检测电流经由四肢分别导入人体内,并将流通过该人体后的生物阻抗检测电流导入该检测电流接收处理部中,以供使检测电流接收处理部进行交叉比对。
借由上述的结构,用户可将检测电极组件中的左手接触件、右手接触件、左脚接触件、及右脚接触件分别连接于待测者的左手、右手、左脚、及右脚上,再利用控制组件中的检测电流产生部产生出一生物阻抗检测电流,且此生物阻抗检测电流会经由电流控制保护部进行电流量的控制,以防止对人体造成不良的影响,再经由四肢处进入待测者的体内,由于是由四肢处进入,因此生物阻抗检测电流进入人体内后会完整分布于人体的各处,以量测身体各处的生物阻抗值,再经由人体的四肢处返回检测电极组件,检测电极组件则会将检测后的生物阻抗检测电流导入检测电流接收处理部中,检测电流接收处理部则会根据生物阻抗检测电流所检测到的生物阻抗值来判断出所需要的人体生物讯息,如此即可达到方便携带以及量测更加准确的优点。
借由上述技术,可针对现有体脂量测机台无法携带或量测不够准确的问题点加以突破,达到上述优点的实用进步性。
附图说明
图1为本发明较佳实施例的立体透视图。
图2为本发明较佳实施例的步骤流程图。
图3为本发明较佳实施例的接触示意图。
图4为本发明较佳实施例的夹持示意图。
图5为本发明较佳实施例的电流导入示意图。
图6为本发明较佳实施例的电流导出示意图。
图7为本发明较佳实施例的显示示意图。
图8为本发明再一较佳实施例的立体透视图。
图9为本发明再一较佳实施例的检测示意图。
图10为本发明又一较佳实施例的立体透视图。
图11为本发明另一较佳实施例的检测示意图。
图12为本发明另一较佳实施例的步骤流程图。
图13为本发明另一较佳实施例的阻抗示意图。
可携式检测装置、1、1a,控制组件、11、11c,检测电流产生部、111、111c,检测电流接收处理部、112、112c,电流控制保护部、113,手部辅助固定件、12、5a、5b,显示件、13、13a,检测电极组件、2,左手接触件、21、21a,右手接触件、22、22a,左脚接触件、23、23a,右脚接触件、24、24a,脚部固定件、3、3a、3b,人体、4、4c,左手、A,右手、B,左脚、C,右脚、D。
具体实施方式
为达成上述目的及功效,本发明所采用的技术手段及构造,通过附图就本发明较佳实施例详加说明其特征与功能如下,以利完全了解。
请参阅图1至7所示,由图中可清楚看出本发明包括:
一可携式检测装置1;
一设于可携式检测装置1中的控制组件11,控制组件11于本实施例中为设置于可携式检测装置1中的电路板,并且控制组件11中会具有一检测电流产生部111、一检测电流接收处理部112、及一电流控制保护部113;
复数个设于可携式检测装置1上的手部辅助固定件12,本实施例的手部辅助固定件12为设置于可携式检测装置1两侧上的手靠垫;
一连接于可携式检测装置1上的检测电极组件2,检测电极组件2会与可携式检测装置1中的控制组件11相连接,而检测电极组件2包括有一设于其中一握持接触件12上并与可携式检测装置1相连接的左手接触件21、一设于另一握持接触件12上并与可携式检测装置1相连接的右手接触件22、一与可携式检测装置1相连接的左脚接触件23、及一与可携式检测装置1相连接的右脚接触件24,本实施例的左手接触件21、右手接触件22、左脚接触件23、及右脚接触件24皆为可导通电流的金属片,且左脚接触件23及右脚接触件24则分别设于一脚部固定件3上,而脚部固定件3以夹子作为举例;及
一连接于可携式检测装置1上的显示件13,本实施例以与可携式检测装置1相连接的平板屏幕作为举例。
借由上述的说明,已可了解本技术之结构,而依据这个结构的对应配合,即可达到方便携带以及检测效果更加准确的优势,而详细的解说将于下述说明。
本发明的人体生物讯息检测装置的检测方法为:
(a)取一连接有一检测电极组件的可携式检测装置;
(b)将该检测电极组件中的一左手接触件、一右手接触件、一左脚接触 件、及一右脚接触件分别接触于人体的左手、右手、左脚、及右脚上;
(c)该可携式检测装置中的一控制组件即会控制一检测电流产生部产生一生物阻抗检测电流,并通过一电流控制保护部限制该生物阻抗电流的电流流量;
(d)该生物阻抗检测电流即会通过该检测电极组件经由人体的四肢进入人体内;
(e)该生物阻抗检测电流进入人体后,会完整分布并经过于人体内各处后,再经由人体的四肢导回该检测电极组件中,以于人体内形成一完整的回路来进行检测动作;
(f)而检测后的生物阻抗检测电流会经由该检测电极组件导入该控制组件上的一检测电流接收处理部中;及
(g)该检测电流接收处理部即通过该生物阻抗检测电流所检测到的人体各处的生物阻抗值,以计算出所需的人体生物信息。
使用者能将双手握持于可携式检测装置1的握持接触件12上,并让左手A接触到左手接触件21以及右手B接触到右手接触件22上,再利用脚部固定件3分别夹持于人体4的左脚C及右脚D上,同时利用脚部固定件3将左脚接触件23及右脚接触件24分别固定碰触于人体4的左脚C及右脚D上,由于一般人的脚较不容易控制,无法像手一样做到握持的动作,所以可利用脚部固定件3完整的将左脚接触件23及右脚接触件24固定于人体4的左脚C及右脚D上,而由于手部具有握持的功能,因此可直接握持于可携式检测装置1上的握持接触件12处,还能提住可携式检测装置1,如此就能完整的将左手接触件21及右手接触件22贴合于左手A及右手B上,借此将左手接触件21、右手接触件22、左脚接触件23、及右脚接触件24完整的碰触到人体 4的左手A、右手B、左脚C、及右脚D上,以提升检测时的准确度,并且本实施例将脚部固定件3分别夹持于人体4的脚踝上,相异现有的体脂量测机台利用脚底接触机台的方式,能够更完整的接触碰触到人体,因为相比之下,脚踝处的皮肤厚度薄于脚底处的皮肤厚度,因此能够更容易的将电流导入人体内。
之后控制组件11会通过检测电流产生部111产生一生物阻抗检测电流(其电力来源并不设限,可经由内部装设电池或连接外部电源来使用),并由于生物阻抗检测电流会进入人体之中,因此需通过电流控制保护部进行电流上限值的限制,以防止电流过大而对人体造成不良的影响,经电流控制保护部调整后之生物阻抗检测电流则会经由检测电极组件2经由四肢进入人体4内,如此会均匀的分布于人体4的各处,以完整的通过人体4的各个部位,借此量测人体4各部位的生物阻抗值,再由四肢处回到检测电极组件2处,检测电极组件2则会将量测后的生物阻抗检测电流导入检测电流接收处理部112中,如此即可于人体4内形成一完整的回路,借此更加准确的量测出人体4各部位的生物阻抗值,而检测电流接收处理部112能经由此生物阻抗值计算出所需的人体生物讯息,如体内脂肪、内脏脂肪、及肌肉质量,并会将测得的信息显示于显示件13上,如显示【体内脂肪:XX%内脏脂肪:XX%肌肉质量:XX%】,甚至还可配合此人体生物讯息计算出人体4的健康状况,如是否有慢性病、及充血性心衰竭,以让用户能观察到相关讯息,借此达到方便携带以及量测更加准确的优势。
再请同时配合参阅图8及9所示,由图中可清楚看出,本实施例与上述实施例为大同小异,仅于本实施例中,将手部辅助固定件5a设为与脚部固定件3a相同之夹子,并分别将左手接触件21a及右手接触件22a分别手部辅助固定件5a上,而左脚接触件23a及右脚接触件24a同样分别设置于一 脚部固定件3a上,并且显示件13a为设置于可携式检测装置1a上的显示屏幕,借此让用户能直接透过手部辅助固定件5a将左手接触件21a及右手接触件22a固定于左手A及右手B上,使其固定效果更加稳固,以提升使用上的方便性。
再请同时配合参阅图10所示,由图中可清楚看出,本实施例与上述实施例为大同小异,仅让本实施例的手部辅助固定件5b及脚部固定件3b以具有魔鬼毡的绑带作为举例,借此表示手部辅助固定件5b及脚部固定件3b的种类并不设限。
再请同时配合参阅图11至13所示,由图中可清楚看出,本实施例的人体生物讯息检测装置的检测方法为:
(a)取用步骤:取一连接有一检测电极组件的可携式检测装置;
(b)连接步骤:将该检测电极组件中的一左手接触件、一右手接触件、一左脚接触件、及一右脚接触件分别接触于人体的左手、右手、左脚、及右脚上;
(c)电流产生步骤:该可携式检测装置中的一控制组件即会控制一检测电流产生部产生复数个第一生物阻抗检测电流,并通过一电流控制保护部限制各第一生物阻抗检测电流的电流流量;
(d)电流导入步骤:各第一生物阻抗电流即会通过该检测电极组件经由人体四肢的其中一肢进入人体内;
(e)电流检测步骤:各第一生物阻抗检测电流进入人体后,会完整分布并经过于人体内各处后,再经由相异进入时的另一肢处导回该检测电极组件中,以于人体内形成一完整的回路来进行检测动作;
(f)电流导回步骤:而检测后的第一生物阻抗检测电流会经由该检测电极组件导入该控制组件上的一检测电流接收处理部中;
(g)阻抗比对步骤:该检测电流接收处理部即将各第一生物阻抗检测电流所检测到的人体各处的生物阻抗值进行比对动作,借此计算出所需的人体生物信息;及
(h)再次检测步骤:该控制组件会控制检测电流产生部产生复数个与第一生物阻抗检测电流频率相异的第二生物阻抗检测电流,并将该第二生物阻抗检测电流经由四肢导入人体内进行检测后,再导回检测电流接收处理部进行比对动作。
由上述内容可得知,本实施例的检测电流产生部111c会先产生复数的第一生物阻抗检测电流,并经由人体4c四肢中的其中一肢进入人体4c内,再由另一相异的一肢中导回检测电流接收处理部112c中,借此通过不同的进入点与导出点所产生的不同阻抗值来进行比对动作,以得到更加完整的人体生物信息。
例如,将第一生物阻抗检测电流由左手A进入后人体后,会再由右脚D处导回检测电流接收处理部112c中。借此得到一左手A连通右脚D的阻抗值,再由右手B处导入第一生物阻抗检测电流,并经由左脚C处导回,即可得到一右手B导通左脚C的阻抗值,以此类推,而本实施例将左手A连通右脚D之阻抗值界定为AD阻抗值、左手A连通右手B之阻抗值界定为AB阻抗值、左手A连通左脚C的阻抗值界定为AC阻抗值、右手B连通左脚C的阻抗值界定为BC阻抗值、右手B连通右脚D之阻抗值界定为BD阻抗值、及左脚C连通右脚D之阻抗值界定为CD阻抗值,即可将不同的阻抗值进行比对的动作,例如同样将连通手脚的AD阻抗值与BC阻抗值进行比对,以配合AD阻抗值与B C阻抗各自会通过的器官、肌肉来做交叉比对,借此得出所占的比例,例如AD阻抗值大于BC阻抗值,则可能左手A肌肉质量大于右手B肌肉质量、或内脏脂肪所占的比例不同,并利用此种交叉比对的方式,即可完整的得出人体的肌肉、脂肪、及内脏所占的比例,借此达到更加准确的量测效果。
且于本实施例中,当第一生物阻抗检测电流检测完毕后,检测电流产生部111c会再产生复数频率与第一生物阻抗检测电流不同的第二生物阻抗检测电流,并与第一生物阻抗检测电流相同的量测方式,以通过第二生物阻抗检测电流量测出AD阻抗值、AB阻抗值、AC阻抗值、BC阻抗值、BD阻抗值、及CD阻抗值,由于人体4c内具有大量的水,并且经实验得出,当使用不同频率的电流通过水时,会产生不同阻抗值,如此即可借由不同频率的第二生物阻抗检测电流所计算出的阻抗值,与第一生物阻抗检测电流所计算出的阻抗值来进行比对动作,如利用频率为1k、5k、50k、250k、及500k的电流所检测出的AD阻抗值分别为Z1、Z2、Z3、Z4、及Z5、AD阻抗值的阻抗值分别为Y1至Y5、AC阻抗值的阻抗值分别为X1至X5、BC阻抗值的阻抗值分别为W1至W5、BD阻抗值的阻抗值分别为V1至V5、及CD阻抗值的阻抗值分别为U1至U5,借此来进行比对的动作,以根据不同频率所造成的阻抗值差异,借此推导出人体4c中水所占的比例,来再次加强整体量测的准确性。
以上所述仅为本发明的较佳实施例而已,非因此即局限本发明的专利范围,故举凡运用本发明说明书及附图内容所为的简易修饰及等效结构变化,均应同理包括于本发明的专利范围内,合予陈明。

Claims (10)

  1. 一种人体生物讯息检测装置,其特征在于,包括:
    一可携式检测装置;
    一控制组件,该控制组件设于该可携式检测装置内;
    一检测电流产生部,该检测电流产生部设于该控制组件上;
    一电流控制保护部,该电流控制保护部设于该控制组件上;
    一检测电流接收处理部,该检测电流接收处理部设于该控制组件上;及
    一检测电极组件,该检测电极组件连接于该可携式检测装置上并与该控制组件相连接,且该检测电极组件包括有一与该可携式检测装置相连接的左手接触件、一与该可携式检测装置相连接的右手接触件、一与该可携式检测装置相连接的左脚接触件、及一与该可携式检测装置相连接的右脚接触件,且该检测电极组件供将该检测电流产生部所产生的生物阻抗检测电流经由四肢分别导入人体内,并将流通过该人体后的生物阻抗检测电流导入该检测电流接收处理部中,以供使检测电流接收处理部进行交叉比对。
  2. 如权利要求1所述的人体生物讯息检测装置,其特征在于,该左手接触件及该右手接触件分别设于一手部辅助固定件上,以经由该手部辅助固定件将该左手接触件及该右手接触件分别完整接触于该人体的左手及右手上。
  3. 如权利要求1所述的人体生物讯息检测装置,其特征在于,该左脚接触件及该右脚接触件分别设于至少一脚部固定件上,供经由该脚部固定件将该左脚接触件及该右脚接触件分别固定碰触于该人体的左脚及右脚上。
  4. 如权利要求1所述的人体生物讯息检测装置,其特征在于,该可携式检测装置连接有一显示件。
  5. 一种人体生物讯息检测装置的检测方法,其特征在于,步骤包括:
    (a)取一连接有一检测电极组件的可携式检测装置;
    (b)将该检测电极组件中的一左手接触件、一右手接触件、一左脚接触件、及一右脚接触件分别接触于人体的左手、右手、左脚、及右脚上;
    (c)该可携式检测装置中的一控制组件会控制一检测电流产生部产生一生物阻抗检测电流,并通过一电流控制保护部限制该生物阻抗电流的电流流量;
    (d)该生物阻抗检测电流即会通过该检测电极组件经由人体的四肢进入人体内;
    (e)该生物阻抗检测电流进入人体后,会完整分布并经过于人体内各处后,再经由人体的四肢导回该检测电极组件中,以于人体内形成一完整的回路来进行检测动作;
    (f)而检测后的生物阻抗检测电流会经由该检测电极组件导入该控制组件上的一检测电流接收处理部中;及
    (g)该检测电流接收处理部即通过该生物阻抗检测电流所检测到的人体各处的生物阻抗值,以计算出所需的人体生物信息。
  6. 如权利要求5所述的人体生物讯息检测装置的检测方法,其特征在于,该左手接触件及该右手接触件分别设于一手部辅助固定件上,以经由该手部辅助固定件将该左手接触件及该右手接触件分别完整接触于该人体的左手及右手上。
  7. 如权利要求5所述的人体生物讯息检测装置的检测方法,其特征在于,该左脚接触件及该右脚接触件分别设于至少一脚部固定件上,供经由该脚部固定件将该左脚接触件及该右脚接触件分别固定碰触于该人体的左脚及右脚上。
  8. 一种人体生物讯息检测装置的检测方法,其特征在于,步骤包括:
    (a)取一连接有一检测电极组件的可携式检测装置;
    (b)将该检测电极组件中的一左手接触件、一右手接触件、一左脚接触件、及一右脚接触件分别接触于人体的左手、右手、左脚、及右脚上;
    (c)该可携式检测装置中的一控制组件即会控制一检测电流产生部产生复数个第一生物阻抗检测电流,并通过一电流控制保护部限制各第一生物阻抗检测电流的电流流量;
    (d)各第一生物阻抗电流即会通过该检测电极组件经由人体四肢的其中一肢进入人体内;
    (e)各第一生物阻抗检测电流进入人体后,会完整分布并经过于人体内各处后,再经由相异进入时的另一肢处导回该检测电极组件中,以于人体内形成一完整的回路来进行检测动作;
    (f)而检测后的第一生物阻抗检测电流会经由该检测电极组件导入该控制组件上的一检测电流接收处理部中;
    (g)该检测电流接收处理部将各第一生物阻抗检测电流所检测到的人体各处的生物阻抗值进行比对动作,借此计算出所需的人体生物信息;及
    (h)该控制组件会控制检测电流产生部产生复数个与第一生物阻抗检测电流频率相异的第二生物阻抗检测电流,并将该第二生物阻抗检测电流经由四肢导入人体内进行检测后,再导回检测电流接收处理部进行比对动作。
  9. 如权利要求8所述的人体生物讯息检测装置的检测方法,其特征在于,该左手接触件及该右手接触件分别设于一手部辅助固定件上,以经由该手部辅助固定件将该左手接触件及该右手接触件分别完整接触于该人体的左手及右手上。
  10. 如权利要求8所述的人体生物讯息检测装置的检测方法,其特征在于,该左脚接触件及该右脚接触件分别设于至少一脚部固定件上,供经由该脚部固定件将该左脚接触件及该右脚接触件分别固定碰触于该人体的左脚及右脚上。
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CN109965876A (zh) * 2017-12-27 2019-07-05 殷巴迪股份有限公司 利用夹钳电极的身体成份测量

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