CN103860138A - Thermal sensitivity measuring method - Google Patents

Thermal sensitivity measuring method Download PDF

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Publication number
CN103860138A
CN103860138A CN201210529599.9A CN201210529599A CN103860138A CN 103860138 A CN103860138 A CN 103860138A CN 201210529599 A CN201210529599 A CN 201210529599A CN 103860138 A CN103860138 A CN 103860138A
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CN
China
Prior art keywords
heat sensitivity
know
measurement method
assigned address
sensitivity measurement
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Pending
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CN201210529599.9A
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Chinese (zh)
Inventor
俞云
杨志敏
彭桂原
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Guangdong Hospital of Traditional Chinese Medicine
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Guangdong Hospital of Traditional Chinese Medicine
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Priority to CN201210529599.9A priority Critical patent/CN103860138A/en
Publication of CN103860138A publication Critical patent/CN103860138A/en
Pending legal-status Critical Current

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Abstract

The invention provides a thermal sensitivity measuring method. The thermal sensitivity measuring method comprises switching on the power supply of a thermal sensitivity measuring instrument, setting the output current to be 0.8 milliamperes; when the tail end of the probe of the thermal sensitivity measuring instrument reaches a designated constant temperature, aligning the center of the tail end of the probe, touching a designated position and starting an automatic timing switch of the thermal sensitivity measuring instrument; measuring the thermal sensitivity of all the designated positions on the right and the left of channels and collaterals of an upper limb group and a lower limb group of a person to be measured one by one in time order and in a sequence of from hand to foot and from left to right; when the person to be measure feels heated in the designated position and reports to a detector, removing the touch between the tail end of the probe and the designated position; stopping the timing automatically and recording to the thermal sensitivity time of the designated position; summing up the thermal sensitivity values of the designated positions of the upper limb group and the lower limb group respectively, dividing the summed values by a preset numeric value, taking the obtained numbers as the cardinal numbers of the upper limb group and the lower limb number and performing channel and collateral stage judgment according to the cardinal numbers.

Description

Know heat sensitivity measurement method
Technical field
The present invention relates to a kind of there is better operability know heat sensitivity measurement method.
Background technology
Know heat sensitivity measurement method be Japanese red plumage good fortune soldier defend create, once, he obtained serious tonsillitis, and had high heat, cold physique, pharyngalgia, aphonia, acataposis etc.An accidental chance, he finds that left and right foot is different to hot level of sensitivity, and left foot feels very blunt to heat.Thus, he utilizes theory of channels and collaterals, has found stomach warp, finds an obvious pressure pain point in left side thigh central authorities, and after acupuncture treatment, left lower limb is warm suddenly to get up, and heat is also become to responsive, and high heat, cold physique, pharyngalgia, aphonia, if the symptoms such as acataposis are lost.Thus, he thinks, the meridians of human body spread all over whole body, in the time that disease appears in people, meridians there will be balance phenomenon, show that the symmetrical part of human body occurs that some differences are (as sense of touch, sensation blunt sensitive etc.), red Yu Shi, by checking, has confirmed the guess of oneself: in the time that disease appears in people, the difference to hot sensation of the human body left and right sides, or responsive, or blunt, after treatment, the difference of both sides can reduce, and returns to normally, knows heat sensitivity measurement method thereby formed.
But, extremely do not have a clear and definite standard at red Yu Shi for much just can being judged to be of difference of both sides, therefore do not there is actual operability.
Summary of the invention
The technical problem that the present invention mainly solves is existingly to know that heat sensitivity measurement method does not have clear and definite criterion, does not have actual operability.
In order to solve the problems of the technologies described above, the embodiment of the invention discloses one and know heat sensitivity measurement method, comprising:
The power supply of heat sensitivity measuring instrument is known in connection, output current is set as to 0.8 microampere, specify after steady temperature when knowing that the probe end of heat sensitivity measuring instrument reaches, the probe end center of circle of knowing heat sensitivity measuring instrument is aimed at and light contact finger allocation, start the automatic time switch of knowing heat sensitivity measuring instrument;
Measure respectively left and right each assigned address heat sensitivity value of measured's upper limb group and the each meridians of lower limb group, when mensuration, carry out in order, surveyed the left and right assigned address of the same name of meridians, then changed meridians, metapedes on the offensive, from left to right;
In the time that measured oneself thinks that tested specified location has burn sense, report tester, remove contacting of probe end and assigned address, know that the heat sensitivity measuring instrument while stops clocking automatically, and record the heat sensitivity time of knowing of this assigned address;
After upper limb and the each assigned address heat sensitivity of lower limb value are added respectively respectively divided by default value, the numeral of gained is as the radix of upper limb group and the each group of lower limb group, if bilateral heat sensitivity value is all higher than radix 1/3, it is the high number of bilateral, meridians belong to " reality ", if bilateral heat sensitivity value all lower than radix 1/3, is the low number of bilateral, meridians belong to " void "; Or left and right heat sensitivity value differs more than one times person, also classify as abnormal severally, belong to " reality " higher than a side of radix 1/3, lower than a side genus " void " of radix 1/3.
In a preferred embodiment of the present invention, described in know that heat sensitivity measurement method also measures the Measuring Time difference between Measuring Time difference and the left and right assigned address not of the same name of left and right assigned address of the same name.
In a preferred embodiment of the present invention, described in know that heat sensitivity measurement method also measures for observing each grouping or entirety measure the median of numerical value center.
In a preferred embodiment of the present invention, described in know that heat sensitivity measurement method also measures maximum and the variance for observing each grouping or overall numerical value departure degree.
In a preferred embodiment of the present invention, described in know heat sensitivity measurement method also measures for observing each fixed point assigned address measure response time numerical value whether have the heat-sensitive coefficients of abnormal change.
In a preferred embodiment of the present invention, described in know heat sensitivity measurement method is also measured for observing bilateral assigned address of the same name in left and right whether have the theil inequality index of the time difference of measurement.
In a preferred embodiment of the present invention, described in know that heat sensitivity measurement method also measures temperature-sensitive out-of-the way position point occurrence rate and unbalanced location point occurrence rate.
In a preferred embodiment of the present invention, by upper limb and the each assigned address heat sensitivity of lower limb value be added respectively rear respectively divided by default value be 12.
In a preferred embodiment of the present invention, described assigned address comprises Shaoshang, Zhong Chong, Shaochong, Shangyang, Jing-Well point Guanchon, Shaoze, Yinbai, tatun, Lidui, Zuqiaoyin, Zhiyin and the interior spring in Chinese medicine meridian acupuncture point.
Compared to prior art, of the present inventionly know that heat sensitivity measurement method has proposed concrete measuring method and decision method, has good operability.
Detailed description of the invention
To the technical scheme in the embodiment of the present invention be clearly and completely described below, obviously, described embodiment is only a part of embodiment of the present invention, instead of whole embodiment.Based on the embodiment in the present invention, those of ordinary skill in the art, not making all other embodiment that obtain under creative work prerequisite, belong to the scope of protection of the invention.
The embodiment of the invention discloses one and know heat sensitivity measurement method, described in know that heat sensitivity measurement method comprises:
The power supply of heat sensitivity measuring instrument is known in connection, output current is set as to 0.8 microampere, specify after steady temperature when knowing that the probe end of heat sensitivity measuring instrument reaches, the probe end center of circle of knowing heat sensitivity measuring instrument is aimed at and light contact finger allocation, start the automatic time switch of knowing heat sensitivity measuring instrument;
Measure respectively left and right each assigned address heat sensitivity value of measured's upper limb group and the each meridians of lower limb group, when mensuration, carry out in order, surveyed the left and right assigned address of the same name of meridians, then changed meridians, metapedes on the offensive, from left to right;
In the time that measured oneself thinks that tested specified location has burn sense, report tester, remove contacting of probe end and assigned address, know that the heat sensitivity measuring instrument while stops clocking automatically, and record the heat sensitivity time of knowing of this assigned address;
After upper limb and the each assigned address heat sensitivity of lower limb value are added respectively respectively divided by default value, the numeral of gained is as the radix of upper limb group and the each group of lower limb group, if bilateral heat sensitivity value is all higher than radix 1/3, it is the high number of bilateral, meridians belong to " reality ", if bilateral heat sensitivity value all lower than radix 1/3, is the low number of bilateral, meridians belong to " void "; Or left and right heat sensitivity value differs more than one times person, also classify as abnormal severally, belong to " reality " higher than a side of radix 1/3, lower than a side genus " void " of radix 1/3.
Wherein, upper limb and the each assigned address heat sensitivity of lower limb value are added respectively rear respectively divided by default value be 12.In addition, described in know heat sensitivity measuring instrument be Institute of Acupuncture and Moxibustion, China Academy of Chinese Medical Sciences develop know heat sensitivity measuring instrument, it replaces and burns the measuring index of number of times as red Yu Shi index to burn the length of time.
Describedly know that heat sensitivity measurement method mainly measures 9 measuring indexs, described 9 measuring indexs comprise Measuring Time difference, the median (Md) between Measuring Time difference, the left and right assigned address not of the same name of left and right assigned address of the same name, maximum (Max), variance (F), heat-sensitive coefficients (ζ), theil inequality index (η), temperature-sensitive out-of-the way position point occurrence rate (P heat), unbalanced location point occurrence rate (P weighing apparatus).Wherein, described median is used for observing each grouping or entirety to measure numerical value center, described maximum and variance are used for observing each grouping or overall numerical value departure degree, described heat-sensitive coefficients is used for observing each fixed point assigned address measurement response time numerical value whether to have abnormal change, and described theil inequality index is for observing bilateral assigned address of the same name in left and right whether have the time difference of measurement.
In addition, the described position of knowing heat sensitivity measurement method mensuration is for to measure through left and right sides assigned address 12, and described left and right sides assigned address comprises Shaoshang, Zhong Chong, Shaochong, Shangyang, Jing-Well point Guanchon, Shaoze, Yinbai, tatun, Lidui, Zuqiaoyin, Zhiyin, interior spring.Wherein, kidney channel assigned address spring, because of different from other assigned address position characteristics, change and surveys interior Zhiyin (sufficient unguiculus inner side, 0.1 cun apart from toenail angle) to replace spring.
Compared to prior art, of the present inventionly know that heat sensitivity measurement method has proposed concrete measuring method and decision method, has good operability.
The foregoing is only embodiments of the invention; not thereby limit the scope of the claims of the present invention; every equivalent structure or conversion of equivalent flow process that utilizes description of the present invention to do; or be directly or indirectly used in other relevant technical field, be all in like manner included in scope of patent protection of the present invention.

Claims (9)

1. know a heat sensitivity measurement method, it is characterized in that, comprising:
The power supply of heat sensitivity measuring instrument is known in connection, output current is set as to 0.8 microampere, specify after steady temperature when knowing that the probe end of heat sensitivity measuring instrument reaches, the probe end center of circle of knowing heat sensitivity measuring instrument is aimed at and light contact finger allocation, start the automatic time switch of knowing heat sensitivity measuring instrument;
Measure respectively left and right each assigned address heat sensitivity value of measured's upper limb group and the each meridians of lower limb group, when mensuration, carry out in order, surveyed the left and right assigned address of the same name of meridians, then changed meridians, metapedes on the offensive, from left to right;
In the time that measured oneself thinks that tested specified location has burn sense, report tester, remove contacting of probe end and assigned address, know that the heat sensitivity measuring instrument while stops clocking automatically, and record the heat sensitivity time of knowing of this assigned address;
After upper limb and the each assigned address heat sensitivity of lower limb value are added respectively respectively divided by default value, the numeral of gained is as the radix of upper limb group and the each group of lower limb group, if bilateral heat sensitivity value is all higher than radix 1/3, it is the high number of bilateral, meridians belong to " reality ", if bilateral heat sensitivity value all lower than radix 1/3, is the low number of bilateral, meridians belong to " void "; Or left and right heat sensitivity value differs more than one times person, also classify as abnormal severally, belong to " reality " higher than a side of radix 1/3, lower than a side genus " void " of radix 1/3.
2. according to claim 1ly know heat sensitivity measurement method, it is characterized in that, described in know that heat sensitivity measurement method also measures the Measuring Time difference between Measuring Time difference and the left and right assigned address not of the same name of left and right assigned address of the same name.
3. according to claim 1ly know heat sensitivity measurement method, it is characterized in that, described in know that heat sensitivity measurement method also measures for observing each grouping or entirety measure the median of numerical value center.
4. according to claim 1ly know heat sensitivity measurement method, it is characterized in that, described in know that heat sensitivity measurement method also measures maximum and the variance for observing each grouping or overall numerical value departure degree.
5. according to claim 1ly know heat sensitivity measurement method, it is characterized in that, described in know that heat sensitivity measurement method also measures response time for observing each assigned address and measure numerical value and whether exist the heat-sensitive coefficients of abnormal change.
6. according to claim 1ly know heat sensitivity measurement method, it is characterized in that, described in know heat sensitivity measurement method is also measured for observing left and right assigned address of the same name whether have the theil inequality index of the time difference of measurement.
7. according to claim 1ly know heat sensitivity measurement method, it is characterized in that, described in know that heat sensitivity measurement method also measures temperature-sensitive out-of-the way position point occurrence rate and unbalanced location point occurrence rate.
8. according to claim 1ly know heat sensitivity measurement method, it is characterized in that, by upper limb and the each assigned address heat sensitivity of lower limb value be added respectively rear respectively divided by default value be 12.
9. according to claim 1ly know heat sensitivity measurement method, it is characterized in that, described assigned address comprises Shaoshang, Zhong Chong, Shaochong, Shangyang, Jing-Well point Guanchon, Shaoze, Yinbai, tatun, Lidui, Zuqiaoyin, Zhiyin and the interior spring in Chinese medicine meridian acupuncture point.
CN201210529599.9A 2012-12-11 2012-12-11 Thermal sensitivity measuring method Pending CN103860138A (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107625634A (en) * 2017-10-13 2018-01-26 西安天巳生生物科技有限公司 Channels and collaterals quantify tester and method of testing
CN116058798A (en) * 2023-02-10 2023-05-05 樊新荣 Intelligent heat-sensitive balance difference monitor and digital health monitoring system

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN86201555U (en) * 1986-03-19 1987-04-22 周南麟 Electrothermal two-sided cutaneous acupuncture instrument
CN202146428U (en) * 2011-07-14 2012-02-22 郭栋斌 Meridian diagnosis instrument

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN86201555U (en) * 1986-03-19 1987-04-22 周南麟 Electrothermal two-sided cutaneous acupuncture instrument
CN202146428U (en) * 2011-07-14 2012-02-22 郭栋斌 Meridian diagnosis instrument

Non-Patent Citations (2)

* Cited by examiner, † Cited by third party
Title
冼益民: "《运用经络知热感度测量法探讨气虚质人群的经络体质特性》", 《广州中医药大学硕士学位论文》 *
萧友山: "《从赤羽氏法(经络诊断治疗法)的临床看经络现象》", 《中医杂志》 *

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107625634A (en) * 2017-10-13 2018-01-26 西安天巳生生物科技有限公司 Channels and collaterals quantify tester and method of testing
CN116058798A (en) * 2023-02-10 2023-05-05 樊新荣 Intelligent heat-sensitive balance difference monitor and digital health monitoring system
CN116058798B (en) * 2023-02-10 2024-04-02 樊新荣 Intelligent heat-sensitive balance difference monitor and digital health monitoring system

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Application publication date: 20140618