CN100438821C - Precision positioning device for optic wave along channel line transmission characteristic measurement - Google Patents

Precision positioning device for optic wave along channel line transmission characteristic measurement Download PDF

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Publication number
CN100438821C
CN100438821C CNB2006100691486A CN200610069148A CN100438821C CN 100438821 C CN100438821 C CN 100438821C CN B2006100691486 A CNB2006100691486 A CN B2006100691486A CN 200610069148 A CN200610069148 A CN 200610069148A CN 100438821 C CN100438821 C CN 100438821C
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China
Prior art keywords
transverse bar
displacement
transmission characteristic
line transmission
positioning device
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Expired - Fee Related
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CNB2006100691486A
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Chinese (zh)
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CN1943506A (en
Inventor
杨洪钦
谢树森
李晖
胡翔龙
王瑜华
许金森
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Fujian Normal University
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Fujian Normal University
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  • Investigating Or Analysing Materials By Optical Means (AREA)

Abstract

The invention relates to an accurate location apparatus of special measurement by light wave along channels transmission, including vernier frame of horizontal installation, said frame including longitudinal member, benchmark transverse bar integrated coupling with front end of longitudinal member, and transverse bar of displacement marking be able sliding along length direction of longitudinal member, and characterized by transverse bar of displacement marking connecting vertically with longitudinal member through a sliding connection system, and maintaining parallel with benchmark transverse bar; between transverse bar of displacement marking and sliding connection system installing location components of crossing slide; transverse bar of displacement marking and benchmark transverse bar each installing light wave irradiation fiber optic and signal collection fiber optic probe towards being tested human body.

Description

The accurate positioning device of optic wave along channel line transmission characteristic measurement
Technical field
The present invention relates to a kind of accurate positioning device of optic wave along channel line transmission characteristic measurement.
Background technology
The human collateral channel system is the important component part of the theory of TCM, is the basis of tcm clinical practice diagnosis and treatment, and is accepted widely.The scholar of domestic and international different subjects has done a large amount of effort, utilize modern science means and instrument, as four electrode impedance measuring instruments, infrared thermography, infrared spectrometry analyser, and radiosiotope attempts to open the mysterious veil of acupuncture and meridian along the flow dependency etc. of sign and nuclear magnetic resonance, NMR functional imaging of meridians.Though obtained certain achievement in research, far away apart from the physical essence of meridians.Reason is the organizational structure foundation as yet of acupuncture point and channel system, and also there is big difference in the scholar of different educational circles to the understanding of the material base of meridians.How to utilize emerging organism optical and measuring technique thereof, look for another way, from new angle channel system physiological regulating control function and material base thereof are studied, particularly by extremely strict scientific experiments, the optical characteristics at passages through which vital energy circulates line and acupuncture point is measured and studied, and will be a kind of potential and powerful measure of modern meridian research.
Summary of the invention
The accurate positioning device that the purpose of this invention is to provide a kind of optic wave along channel line transmission characteristic measurement.This device is not only simple in structure, and when measuring the optical characteristics of passages through which vital energy circulates line, measuring accuracy height, easy and simple to handle.
The present invention includes along horizontally disposed vernier cursor frame, described vernier cursor frame comprises longitudinal rod, the benchmark transverse bar that is fixedly connected with the longitudinal rod leading section, and the displacement of pole length direction slippage longitudinally indicates transverse bar, it is characterized in that: displacement indicates transverse bar and is slidingly connected mechanism by one and is connected with longitudinal rod is vertical, and with benchmark transverse bar keeping parallelism.When displacement indicates the transverse bar length direction slippage of bar longitudinally, can read displacement and indicate length travel between transverse bar and the benchmark transverse bar.Secondly, displacement indicates transverse bar and is slidingly connected to be provided with between the mechanism laterally to move regulates positioning component, by regulating this assembly, can make displacement indicate transverse bar and move along horizontal cross, and can read the size of its lateral displacement.At this moment, its displacement datum is a longitudinal rod.In addition, displacement sign transverse bar and benchmark transverse bar are respectively arranged with light wave irradiation optical fiber and the signals collecting fibre-optical probe towards tested human body, to realize the measurement to optic wave along channel line transmission characteristic.
Positioner of the present invention has been guaranteed on human body passages through which vital energy circulates line or the accurate location of passages through which vital energy circulates line exterior domain light wave exposure spots and fibre-optical probe spacing, thereby guarantees that the user realizes the accurate measurement of optic wave along channel line transmission characteristic.
For the present invention can be become apparent, hereinafter special with specific embodiment, and cooperate appended graphicly, elaborate.
Description of drawings
Fig. 1 is the working state figure of accurate positioning device of the optic wave along channel line transmission characteristic measurement of embodiments of the invention.
Fig. 2 is the vertical view of accurate positioning device of the optic wave along channel line transmission characteristic measurement of embodiments of the invention.
Fig. 3 is the A-A cutaway view of Fig. 2.
Fig. 4 is the organigram of arm positioner of accurate positioning device of the optic wave along channel line transmission characteristic measurement of embodiments of the invention.
Fig. 5 is the organigram of the arm positioner of the positioner accurately measured of the optic wave along channel line transmission characteristic of embodiments of the invention.
Fig. 6 is the user mode sketch map of the accurate positioner location survey lightwave transmission characteristics on the passages through which vital energy circulates line measured of optic wave along channel line transmission characteristic of embodiments of the invention.
Fig. 7 is the user mode sketch map of the accurate positioner location survey lightwave transmission characteristics on non-passages through which vital energy circulates line measured of optic wave along channel line transmission characteristic of embodiments of the invention.
Among the figure, 1. longitudinal rod, 2. benchmark transverse bar, 3. displacement indicates transverse bar, 4. lateral adjustments screw rod, 5. light wave irradiation optical fiber, 6. signals collecting fibre-optical probe, 7. arm positioner, 8. length travel electronic displays, 9. lateral displacement rule, 10. pole, 11. three-dimensional adjustable support, 12. passages through which vital energy circulates lines, 13. lateral displacement electronic displayss, 14. knob, 15. be slidingly connected mechanism, 16. screwed holes, 17. cross slide waies, 18. nylon yarn snapping box band, 19. nylon yarn snapping ZIKOU band, 20. arms, 21. non-passages through which vital energy circulates lines.
The specific embodiment
Please refer to accompanying drawing 1, the present invention includes along horizontally disposed vernier cursor frame, described vernier cursor frame comprises longitudinal rod 1, the benchmark transverse bar 2 that is fixedly connected with the longitudinal rod leading section, and the displacement of pole length direction slippage longitudinally indicates transverse bar 3, it is characterized in that: displacement indicates transverse bar 3 and is slidingly connected mechanism and 1 vertical connection of longitudinal rod by one, and with benchmark transverse bar 2 keeping parallelisms.When displacement indicates the transverse bar 3 length direction slippage of bar 1 longitudinally, can read displacement and indicate length travel between transverse bar and the benchmark transverse bar.Secondly, displacement indicates transverse bar 3 and is slidingly connected to be provided with between the mechanism laterally to move regulates positioning component, by regulating this assembly, can make displacement indicate transverse bar and move along horizontal cross, and can read the size of its lateral displacement.At this moment, its displacement datum is a longitudinal rod.In addition, displacement sign transverse bar 3 and benchmark transverse bar 2 are respectively arranged with light wave irradiation optical fiber 5 and the signals collecting fibre-optical probe 6 towards tested human body, to realize the measurement to optic wave along channel line transmission characteristic.
Positioning component is regulated in above-mentioned laterally moving, and comprises that the cross slide way 17 that can be slidingly connected mechanism 15 relatively carries out the displacement sign transverse bar 3 of horizontal slippage and laterally is arranged in the lateral adjustments screw rod 4 that is slidingly connected mechanism 15.Lateral adjustments screw rod 4 outer ends are provided with knob 14, the intravital screwed hole 16 in connection end that its inboard screw rod and displacement indicate transverse bar 3 connection that matches.
Above-mentioned vernier cursor frame is connected in three-dimensional adjustable support 11 or has on the three-dimensional adjustable support of horizontal adjustment function through the bottom of the pole 10 of perpendicular connection, so that the installation of this positioner and debugging.
In order to prevent that the described light wave irradiation of arm optical fiber 5 and signals collecting fibre-optical probe 6 belows are equipped with arm positioner 7.The arm positioner comprises that inside is filled with the pad a of sponge, and described pad a is provided with adjustable bandage b.Be set with the nylon yarn snapping box band of longitudinally laying 18 respectively in pad a upper surface both sides, correspondence has been horizontally set with nylon yarn snapping ZIKOU band 19 between the nylon yarn snapping box band of both sides.When avoiding experiment measuring, owing to the shake of arm or move and cause experiment to produce deviation.
In order to ensure localized accuracy, longitudinal rod 1 is provided with can be with the length travel electronic displays 8 that is slidingly connected mechanism's 15 straight skiddings, simultaneously, be slidingly connected and be horizontally set with lateral displacement rule 9 in the mechanism 15, and lateral displacement rule 9 is provided with and can indicates the lateral displacement electronic displays 13 that transverse bar 3 laterally moves with displacement.
Positioners such as light wave measurement device of the present invention and displacement sign transverse bar are used, guaranteed on the passages through which vital energy circulates line and the outer light wave exposure spots of passages through which vital energy circulates line and many fibre-optical probes in the equating of corresponding optical fiber apart from strictness, finally realized accurate measurement to optic wave along channel line transmission characteristic.Simultaneously, the present invention is simple in structure, and is easy to operate.
Though the present invention discloses as above with preferred embodiment, be not in order to limiting this creation, anyly be familiar with this skill person, various changes and the retouching done in the spirit and scope that do not break away from this creation also belong to the scope of this creation.Therefore, the protection domain of this creation attached claim person of defining after looking is as the criterion.

Claims (6)

1. the accurate positioning device of an optic wave along channel line transmission characteristic measurement, comprise along horizontally disposed vernier cursor frame, described vernier cursor frame comprises longitudinal rod, the benchmark transverse bar that is fixedly connected with the longitudinal rod leading section, and the displacement of pole length direction slippage longitudinally indicates transverse bar, it is characterized in that: described displacement sign transverse bar is slidingly connected mechanism by one and connects with longitudinal rod is vertical, and with benchmark transverse bar keeping parallelism, described displacement indicates transverse bar and regulates positioning component with being slidingly connected to be provided with between the mechanism laterally to move, and described displacement sign transverse bar and benchmark transverse bar are respectively arranged with vertically downward light wave irradiation optical fiber and the signals collecting fibre-optical probe towards tested human body.
2. the accurate positioning device of optic wave along channel line transmission characteristic measurement according to claim 1, it is characterized in that: described vernier cursor frame is connected in three-dimensional adjustable support or has on the three-dimensional adjustable support of horizontal adjustment function through the bottom of the pole of perpendicular connection.
3. the accurate positioning device of optic wave along channel line transmission characteristic measurement according to claim 1 and 2 is characterized in that: be equipped with the arm positioner below described light wave irradiation optical fiber and the signals collecting fibre-optical probe.
4. the accurate positioning device of optic wave along channel line transmission characteristic measurement according to claim 3, it is characterized in that: described arm positioner comprises that inside is filled with the pad of sponge (a), and described pad is provided with adjustable bandage (b).
5. the accurate positioning device of optic wave along channel line transmission characteristic measurement according to claim 4, it is characterized in that: described pad (a) upper surface both sides are set with the nylon yarn snapping box band of longitudinally laying respectively, and correspondence has been horizontally set with nylon yarn snapping ZIKOU band between the nylon yarn snapping box band of both sides.
6. the accurate positioning device of optic wave along channel line transmission characteristic measurement according to claim 1 and 2, it is characterized in that: described longitudinal rod is provided with can be with the length travel electronic displays that is slidingly connected mechanism's straight skidding, described being slidingly connected has been horizontally set with the lateral displacement rule in the mechanism, described lateral displacement rule is provided with and can indicates the lateral displacement electronic displays that transverse bar laterally moves with displacement.
CNB2006100691486A 2006-10-08 2006-10-08 Precision positioning device for optic wave along channel line transmission characteristic measurement Expired - Fee Related CN100438821C (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CNB2006100691486A CN100438821C (en) 2006-10-08 2006-10-08 Precision positioning device for optic wave along channel line transmission characteristic measurement

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CNB2006100691486A CN100438821C (en) 2006-10-08 2006-10-08 Precision positioning device for optic wave along channel line transmission characteristic measurement

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CN1943506A CN1943506A (en) 2007-04-11
CN100438821C true CN100438821C (en) 2008-12-03

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Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN86108801A (en) * 1986-12-24 1987-10-21 罗福国 Articular active function meter
US6192735B1 (en) * 1997-12-17 2001-02-27 Nihon Kohden Corporation Three-dimensional position calibrator
CN2877562Y (en) * 2006-08-12 2007-03-14 福建师范大学 Accurate positioning device for via Jingmo optical wave transmission character measurement

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN86108801A (en) * 1986-12-24 1987-10-21 罗福国 Articular active function meter
US6192735B1 (en) * 1997-12-17 2001-02-27 Nihon Kohden Corporation Three-dimensional position calibrator
CN2877562Y (en) * 2006-08-12 2007-03-14 福建师范大学 Accurate positioning device for via Jingmo optical wave transmission character measurement

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