CN108254777A - A kind of control method and device for detecting spoke amount - Google Patents
A kind of control method and device for detecting spoke amount Download PDFInfo
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- CN108254777A CN108254777A CN201810230553.4A CN201810230553A CN108254777A CN 108254777 A CN108254777 A CN 108254777A CN 201810230553 A CN201810230553 A CN 201810230553A CN 108254777 A CN108254777 A CN 108254777A
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- 238000012360 testing method Methods 0.000 claims abstract description 87
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- 238000001514 detection method Methods 0.000 claims abstract description 74
- 238000012545 processing Methods 0.000 claims abstract description 33
- 241001269238 Data Species 0.000 claims abstract description 13
- 230000001413 cellular effect Effects 0.000 claims description 3
- 230000005540 biological transmission Effects 0.000 abstract description 2
- 239000000523 sample Substances 0.000 description 8
- 238000003745 diagnosis Methods 0.000 description 7
- 239000003795 chemical substances by application Substances 0.000 description 6
- 235000003891 ferrous sulphate Nutrition 0.000 description 6
- 239000011790 ferrous sulphate Substances 0.000 description 6
- 238000007689 inspection Methods 0.000 description 6
- BAUYGSIQEAFULO-UHFFFAOYSA-L iron(2+) sulfate (anhydrous) Chemical group [Fe+2].[O-]S([O-])(=O)=O BAUYGSIQEAFULO-UHFFFAOYSA-L 0.000 description 6
- 229910000359 iron(II) sulfate Inorganic materials 0.000 description 6
- 238000005516 engineering process Methods 0.000 description 3
- 230000036541 health Effects 0.000 description 3
- 239000000463 material Substances 0.000 description 3
- 238000005259 measurement Methods 0.000 description 3
- 238000012544 monitoring process Methods 0.000 description 3
- 238000004088 simulation Methods 0.000 description 3
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- 231100000987 absorbed dose Toxicity 0.000 description 2
- 238000011161 development Methods 0.000 description 2
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- NJPPVKZQTLUDBO-UHFFFAOYSA-N novaluron Chemical compound C1=C(Cl)C(OC(F)(F)C(OC(F)(F)F)F)=CC=C1NC(=O)NC(=O)C1=C(F)C=CC=C1F NJPPVKZQTLUDBO-UHFFFAOYSA-N 0.000 description 2
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- G—PHYSICS
- G01—MEASURING; TESTING
- G01T—MEASUREMENT OF NUCLEAR OR X-RADIATION
- G01T1/00—Measuring X-radiation, gamma radiation, corpuscular radiation, or cosmic radiation
- G01T1/02—Dosimeters
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01T—MEASUREMENT OF NUCLEAR OR X-RADIATION
- G01T1/00—Measuring X-radiation, gamma radiation, corpuscular radiation, or cosmic radiation
- G01T1/02—Dosimeters
- G01T1/04—Chemical dosimeters
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Abstract
The present invention provides a kind of control methods for detecting spoke amount, are used to detect the radiation leakage of X-ray tube group, include the following steps:I. X-ray tube group to be detected is detected based on multiple dose of radiation testing cassetes, obtains multiple first detection datas;Ii. judge multiple first detection datas whether be more than first threshold, and using more than the first detection data of one or more of first threshold as the second detection data;Iii. second detection data is transmitted to processing terminal;Iv. the processing terminal is based on second detection data and obtains leakage point coordinates, it is fixed in liftable rack in a manner that center is aligned by X-ray tube group to be detected, it is detected by the multiple dose of radiation testing cassetes set on the stent, and by detection data real-time Transmission to control terminal, reach the detection result at comprehensive no dead angle, the present invention is easy to use, operation facility, highly practical, and there is high medical science to be worth.
Description
Technical field
The invention belongs to technical field of medical treatment mechanical, especially a kind of control method and device for detecting spoke amount.
Background technology
As the epoch constantly improve, the continuous development of society, people’s lives level is also gradually increased, nowadays, people
The problem of most paying close attention at present, be transferred to health via having enough to eat and wear, after all the body of unsoundness, could enjoy better give birth to
Living, nowadays, have regular physical checkups heat getting used to of having become that people gradually form, and with the continuous development of medical science, passes through X
Light ray inspection just can in the case where not operating on the gem-pure operating condition for observing intracorporeal organ, to own health
Also can have at fingertips, medical diagnosis X radial equipment is the common Medical Devices that Hospitals at Present carries out medical diagnosis on disease and routine inspection,
Frequency of use is high, medical diagnosis X radial equipment in use, the body of subject close to medical diagnosis X radial equipment,
The X ray leaked from medical diagnosis X radial tube assembly is directly radiated other positions of subject's body, is particularly performing the operation
During perspective, the body of medical staff is leaked also close to medical diagnosis X radial equipment from medical diagnosis X radial tube assembly
X ray be directly radiated its body, these leakage X ray will seriously affect their health, therefore, examine medical
The test of disconnected x-ray tube component leakage rediation is particularly important, and science, the accuracy validity of test method are even more it in weight
Weight.
And the imageological examinations such as X-ray, B ultrasound, CT, MRI have become the indispensable part of clinical medicine at present, but
That these imageological examinations are to belong to radioactive inspection after all, once there is radiation leakage in equipment, caused by consequence can not
, it is expected that and the equipment of common detection spoke amount is to belong to the equipment of hand-held mostly currently on the market, hand-held will be set by tester
It is standby around x-ray pipe group around monitoring, but everybody can not to guarantee 360 ° of detections without dead angle complete, once some
Detection dead angle is missed, and is just the leakage point of radiation, then, either to the detection precision of instrument and making for instrument
It all can be by strong influence, simultaneously as the leakage of radiation, will can not also estimate the injury of human body with the service life.
Being constantly progressive and continuing to develop with medical science, it is relatively common in addition to the detection of hand-held currently on the market
Outside mode, and there is the detection mode of vehicular, substituted manually with unmanned vehicle, hold detection device along track to X-ray tube group
It is detected, but since the manufacture of unmanned vehicle is relatively expensive, and the arrangement of garage's track is required for spending detecting field in one's power
Huge human and material resources, financial resources and relatively long time cost.
And it is current, it can ensure 100% without dead angle detection and lower-cost detection spoke amount a kind of in the market
Control method and device.
Invention content
For technological deficiency of the existing technology, the object of the present invention is to provide a kind of control method for detecting spoke amount and
Device, according to an aspect of the invention, there is provided a kind of control method for detecting spoke amount, is used to detect X-ray tube group
Radiation leakage includes the following steps:I. X-ray tube group to be detected is detected based on multiple dose of radiation testing cassetes, obtained
Multiple first detection datas;Ii. judge whether multiple first detection datas are more than first threshold, and will be more than the one of first threshold
A or multiple first detection datas are as the second detection data;Iii. second detection data is transmitted to processing terminal;iv.
The processing terminal is based on second detection data and obtains leakage point coordinates.
Preferably, before the step i, include the following steps:A. stent is bent to using liftable rack as the center of circle
Semicircle shape;B. the multiple dose of radiation testing cassete is set on the bracket;C. X-ray tube group to be detected being mounted on can rise
It drops in rack, the X-ray tube group to be detected is aligned with the liftable frame central;D. the multiple radiation agent is corrected to measure
Try the distance between box and X-ray tube group to be detected.
Preferably, the form of the multiple radiant quantity testing cassete setting on the bracket is any in following manner
Kind:Left and right is cross-linked;Single connection arranged side by side;Or double connection arranged side by side.
Preferably, distance detector is provided on the multiple radiant quantity testing cassete, is used to measure each radiometer
Measure the distance of testing cassete and X-ray tube group window to be detected.
Preferably, the distance of the multiple dose of radiation testing cassete and the X-ray tube group window to be detected is at least 1
Rice.
Preferably, the multiple dose of radiation testing cassete is connect with processing terminal by following any mode:Data line
Connection;Wireless network connects;Bluetooth connection;Or data cellular networks.
According to another aspect of the present invention, a kind of control device for detecting spoke amount is provided, is used to detect X-ray tube
The radiation leakage of group, includes at least:Stent 1, multiple dose of radiation testing cassetes 2, the multiple dose of radiation testing cassete 2 are arranged on
On the stent 1.
Preferably, the multiple radiant quantity testing cassete 2 further includes distance detector 21, is used to measure each radiometer
Measure the distance of testing cassete and the X-ray tube group window to be detected.
Preferably, the control device of the detection spoke amount further includes X-ray tube group 3 to be detected, by X-ray tube group to be detected
3 are mounted in liftable rack 4, and the X-ray tube group 3 to be detected is aligned with 4 center of liftable rack.
Preferably, the control device of the detection spoke amount further includes processing terminal 5, and the processing terminal connects multiple respectively
Dose of radiation testing cassete 2 and liftable rack 4.
The present invention provides a kind of control method and device for detecting spoke amount, can by the way that X-ray tube group to be detected is fixed on
It on elevator platform, rotates clockwise or counterclockwise, is detected by multiple dose of radiation testing cassetes, and testing result is passed in real time
Control terminal is defeated by, reaches the detection result at comprehensive no dead angle, the configuration of the present invention is simple is easy to use, has high doctor
Treat scientific value.
Description of the drawings
Upon reading the detailed description of non-limiting embodiments with reference to the following drawings, other feature of the invention,
Objects and advantages will become more apparent upon:
Fig. 1 shows the specific embodiment of the present invention, a kind of control method flow diagram for detecting spoke amount;
Fig. 2 shows the first embodiment of the present invention, a kind of preparation flow for the control method for detecting spoke amount is shown
It is intended to;And
Fig. 3 shows another specific embodiment of the present invention, and a kind of structure for the control device for detecting spoke amount is shown
It is intended to.
Specific embodiment
In order to preferably technical scheme of the present invention be made clearly to show, the present invention is made below in conjunction with the accompanying drawings into one
Walk explanation.
Fig. 1 shows the specific embodiment of the present invention, a kind of control method schematic diagram for detecting spoke amount, specifically,
As shown in Figure 1, include the following steps:
First, S101 is entered step, X-ray tube group to be detected is detected based on multiple dose of radiation testing cassetes, is obtained
Multiple first detection datas are taken, the multiple dose of radiation testing cassete corresponds to each position in the X-ray tube group to be detected
Carry out spoke amount detection, and get multiple spoke amount detection datas, in the multiple dose of radiation testing cassete comprising at least one х-
γ radiation gauges, for the х-γ radiation gauges using the highly sensitive scintillation crystal of radiation detector as detector, reaction speed is fast,
For monitoring various radiation work place x, gamma-rays, the currently on the market special instrument of radiation dose rate and same quasi-instrument
It compares, which has broader Dose rate measurement range, and can accurately measure high energy, low energy x, gamma-rays, has good
Characteristic of energy response, this instrument can not only alarm, and can also clearly show the radiation agent magnitude for being currently located place.
In a preferred embodiment, chemical method can be used to measure in the multiple dose of radiation testing cassete, and mesh
Preceding using most wide chemical dosimeter is ferrous sulfate dosimeter, it is usually using/the saturation of the air prepared of liter sulfuric acid that rubbed by 0.4
10-3 rub/liter ferrous sulfate solution.Under actinism, Fe2+ is oxidized to Fe3+, measures the Fe3+ quantity of formation and makes
With known G (Fe3+) value, the absorbed dose of radiation of ferrous sulfate dosimeter can be measured, ferrous sulfate dosimeter can be used to measure X
The absorbed dose of radiation of ray, gamma-rays and fast electronics, dosage range are 40~400 gray(Gy)s.The maximum of ferrous sulfate dosimeter is excellent
Point is that making is simple, stability is good, suitable for mailing, therefore available for the Comparison Study of laboratory monitoring, can also be used as a kind of standard
System come correct with other dosimeters of scale, meanwhile, ferrous sulfate dosimeter can be made into variously-shaped, and institute of the present invention
The dose of radiation testing cassete used is flat, and purpose is exactly to increase detection width, can preferably increase area of detection.
Then, S102 is entered step, judges whether multiple first detection datas are more than first threshold, and will be more than the first threshold
For the first detection data of one or more of value as the second detection data, the first threshold is the radiation more than spoke amount standard
Value, in abovementioned steps, the multiple dose of radiation testing cassete is detected X-ray tube group to be detected, can form multiple inspections
Measured data, the data for by detection data being more than first threshold are set to exceeded data, i.e. second threshold, this step is judgment step,
If being not above the data of first threshold in all detection datas, terminate to detect, if there are one in all detection datas or more
A detection data is more than first threshold, then performs step S103.
And then, S103 is entered step, second detection data is transmitted to processing terminal, the multiple dose of radiation
Testing cassete is connected with the terminal, connection mode include but not limited to data line connection, wireless network connection, bluetooth connection or
Person's data cellular networks, at the time of second detection data includes spoke amount size and corresponds to, it will be appreciated by those skilled in the art that institute
It can be unified passback after the completion of passback in real time or detection to state the second detection data and be transmitted to processing terminal, preferably real at one
It applies in example, the multiple dose of radiation testing cassete and the processing terminal are by bluetooth connection, in the process of detection spoke amount in real time
In, if wherein one or more dose of radiation testing cassetes at a time detect that spoke amount is more than first threshold, alarm is sent out,
And in real time by beyond detection data be transmitted to processing terminal, and in another change case, the multiple dose of radiation test
One small-sized processor can be set in box, for recording the detection data at each moment, it is to be detected be fully completed after, screen in advance
The data of first threshold whether are had more than in first detection data, will be more than first if there are the data more than first threshold
The second detection data that the data of threshold value are formed is transmitted to processing terminal.
Finally, S104 is entered step, the processing terminal is based on second detection data and obtains leakage point coordinates, preceding
It states in step, one or more the second detection datas more than first threshold are transmitted to place by the multiple dose of radiation testing cassete
Terminal is managed, at the time of specific radiation value is included in second detection data and is corresponded to, it will be appreciated by those skilled in the art that described
Multiple dose of radiation testing cassetes correspond to the longitudinal coordinate of the X-ray tube group to be detected, the multiple dose of radiation test respectively
Box clockwise or counterclockwise, then can reach whole inspections under the premise of the ordinate of correspondence X-ray tube group to be detected
Coverage area is surveyed, at the time of including corresponding with exceeded data in second detection data, then can determine the detection data
Specific coordinate.
A three-dimensional modeling can be formed in a preferred embodiment, in the processing terminal, by X-ray tube to be detected
In group simulation to processing terminal, each spoke is then simulated in processing terminal and measures the range that dosage examination box is detected and projects to
In the X-ray tube group to be detected of simulation, one or more is more than the second of first threshold by the multiple dose of radiation testing cassete
After testing result is transmitted to processing terminal, the processing terminal can be simulated according to transmission data in three-dimensional modeling, and with
This calculates the longitudinal coordinate of corresponding dose of radiation testing cassete and by being corresponded in the second testing result at the time of calculates
Lateral coordinates, and by two coordinate simulations to three-dimensional modeling, lock final leak area.
Fig. 2 shows the first embodiment of the present invention, a kind of preparation flow for the control method for detecting spoke amount is shown
It is intended to, specifically, as shown in Fig. 2, including the following steps:
First, S201 is entered step, stent is bent into semicircle shape by the center of circle of liftable rack, the stent should select
With some strength and there is the material of certain plasticity as stent, since it is desired that ensureing every on the circular arc that stent is formed
It is a little consistent with a distance from the liftable rack, and continues multiple dose of radiations involved in step after mounting
After testing cassete, it may influence whether distance of the stent apart from liftable rack, secondary adjustment need to be made, so the choosing of the stent
Material, which must have some strength, can carry multiple dose of radiation testing cassetes, and possess certain plasticity, convenient for liftable rack
Distance make adjustment, the stent using the liftable frame central be radius in arched door shape, true guarantor's stent any one
Distance of the point apart from the liftable rack is consistent, the pedestal lower end and the horizontal plane one of plane in the liftable rack
It causes, it is ensured that for liftable rack when clockwise or counterclockwise, X-ray tube group to be detected is all in the stent on platform
Coverage area in, the liftable rack is divided into two parts, and a part is the platform part of the liftable frame top
Point, the part is for placing X-ray tube group to be detected, and another part is the support portion of the liftable rack, which can make
Entire elevator platform raising declines, and can original place clockwise or counterclockwise, those skilled in the art understand that the stent
It can be full circle, equally be surround using liftable rack as radius circular, the stent can be divided into the stent of multi-section circular arc shape, often
It joins end to end each other between section stent, connection can be connected through a screw thread or the various ways such as plug-in connection are attached, convenient
Adjustment and replacement.
In a preferred embodiment, the liftable rack is connected with the processing terminal, and by the processing
Liftable rack described in terminal control, in the operating condition, the processing terminal send out instruction to the liftable rack, make it
Up and down or clockwise, rotate counterclockwise, and control its velocity of rotation, when in rotation process, the multiple radiation agent measures
When examination box at a time detects that spoke amount is more than first threshold, the processing terminal sends out stopping to the liftable rack and turns
Dynamic instruction, and carry out back rotation more than the position of first threshold in spoke amount, to determine the most accurate exceeded point of spoke amount.
Then, S202 is entered step, the multiple dose of radiation testing cassete is set on the bracket, the stent both sides
Multiple buckling grooves or screw thread are set, the multiple cards set with the stent both sides are also provided on the multiple dose of radiation detection box
The buckling groove or screw thread that access slot or screw thread are adapted, it will be appreciated by those skilled in the art that the multiple radiant quantity testing cassete is set
Form on the bracket is any one of following manner:Left and right is cross-linked;Single connection arranged side by side;It is or double arranged side by side
Connection, purpose is also for increase area of detection, it is ensured that the precision of detection.
And then, S203 is entered step, X-ray tube group to be detected is mounted in liftable rack, the X to be detected is penetrated
Spool group is aligned with the liftable frame central, and one or more buckling grooves are set on the platform of the liftable frame top
Or screw thread, correspondingly, the equally setting of the bottom of the X-ray tube group to be detected therewith adaptable one or more buckling grooves or
Screw rod, after the X-ray tube group to be detected is mounted in the liftable rack, the spiral shell in the X-ray tube group to be detected
Bar passes through the platform of the liftable rack, is locked on the screw rod of mesa base with nut, makes the X ray to be detected
Liftable rack is fixed described in Guan Zuyu.
In a preferred embodiment, one or more suctions can also be set on the platform in the liftable rack
Disk, when the X-ray tube group to be detected, which is mounted on the liftable framework platform, gives birth to, the bottom of the X-ray tube group to be detected
The air in the sucker on the liftable framework platform is squeezed away in portion, and the X-ray tube group to be detected is made tightly to adsorb in institute
On the platform for stating liftable rack, it can equally reach fixed effect.
Further, since the liftable rack is that original place rotates clockwise or counterclockwise, each spoke of circle center distance
The distance for penetrating dosage testing cassete is constant, so, the center of the X-ray tube group to be detected should be with the liftable rack
Center is to it, to ensure that distance of the X-ray tube group to be detected apart from each dose of radiation testing cassete is equal, art technology
Personnel understand, can in liftable frame central trepanning, the X-ray tube group bottom centre to be detected set one with it is described can
The screw rod that elevator platform center opening is adapted, then locks the two, you can ensure the X-ray tube group to be detected with it is described
The center alignment of liftable rack.
In a preferred embodiment, can also on the platform of the liftable rack using center as starting point around
Edge draws mark line, and at the center of the X-ray tube group to be detected, for starting point, edge draws mark line around accordingly, when
When the X-ray tube group to be detected is placed in the liftable rack, the center line coincidence on four direction can ensure institute
X-ray tube group to be detected is stated to be aligned with the liftable frame central.
Finally, enter step S204, correct between the multiple dose of radiation testing cassete and X-ray tube group to be detected away from
From it will be appreciated by those skilled in the art that the optimum distance of detection spoke amount is 1 meter, so must assure that the multiple radiation agent measures
It is 1 meter to try box and the distance of the X-ray tube group to be detected, and distance measurement is provided on the multiple radiant quantity testing cassete
Device can be infrared probe, be used to measuring each radiant quantity testing cassete and the X-ray tube group window to be detected away from
From, when distance is less than 1 meter or more than 1 meter, infrared probe then sends out alarm, when exactly 1 meter of distance, then all clear,
The distance for ensuring each dose of radiation testing cassete and X-ray tube group window to be detected is exactly 1 meter.
In a preferred embodiment, can mounting distance detection device be on the multiple dose of radiation testing cassete
Distance examination radar, for measuring the distance of each radiant quantity testing cassete and the X-ray tube group window to be detected, when distance less than
1 meter or during more than 1 meter, distance test radar then sends out alarm, when exactly 1 meter of distance, then all clear, it is ensured that each
Dose of radiation testing cassete and the distance of X-ray tube group window to be detected are exactly 1 meter.
Fig. 3 shows another specific embodiment of the present invention, and a kind of structure for the control device for detecting spoke amount is shown
It is intended to, it will be appreciated by those skilled in the art that the present invention provides a kind of control device for detecting spoke amount, to realize in Fig. 1 to Fig. 2
The specific implementation method, includes at least:Stent 1, multiple dose of radiation testing cassetes 2, it will be appreciated by those skilled in the art that described
For the metal that stent should select to have some strength as stent, the stent is in semicircle by radius of the liftable frame central
Shape, really the distance for protecting stent any point apart from the liftable rack is consistent, the pedestal lower end and the liftable
The horizontal plane of plane is consistent in rack, it is ensured that when clockwise or counterclockwise, X to be detected is penetrated liftable rack on platform
For spool group all in the coverage area of the stent, the multiple dose of radiation testing cassete can be by physical method or chemical method
Control method make, according to different detection demands, select the dose of radiation testing cassete made by different control methods, this
Dose of radiation testing cassete used in invention is flat, and purpose is exactly to increase detection width, can preferably increase inspection
Survey area.
Further, the multiple dose of radiation testing cassete 2 is arranged on the stent 1, and the stent both sides setting is more
A buckling groove or screw thread, be also provided on the multiple dose of radiation detection box multiple buckling grooves for being set with the stent both sides or
The buckling groove or screw rod that screw thread is adapted, and in another type of attachment, the dose of radiation testing cassete is on the bracket
Arrangement can also be that side by side or single-row arrangement, purpose is also for increasing area of detection, it is ensured that the precision of detection.
Further, the multiple radiant quantity testing cassete 2 further includes distance detector 21, is used to measure each radiation
The distance of metrology and measurement box and the X-ray tube group window to be detected, the distance detector can be infrared probe or away from
From detection radar, the infrared probe can be embedded in the dose of radiation testing cassete, the infrared probe direction and institute
The test of dose of radiation testing cassete is stated towards unanimously, the infrared probe can also be hangs over the dose of radiation testing cassete outside
Side, the infrared probe is consistent towards the test direction with the dose of radiation testing cassete, and in another kind in form, it is described
Distance detector can be distance test radar, correspondingly, the distance test radar can be embedded in the radiation agent
It measures in testing cassete, the distance test radar towards the test with the dose of radiation testing cassete towards unanimously, survey by the distance
Examination radar can also be the side for hanging over the dose of radiation testing cassete outside, the distance test radar direction and the radiation agent
The test of testing cassete is measured towards unanimously.
Further, the control device of the detection spoke amount further includes X-ray tube group 3 to be detected, by X-ray tube to be detected
Group 3 is mounted in liftable rack 4, and the X-ray tube group 3 to be detected is aligned with 4 center of liftable rack, can risen
Frame central trepanning is dropped, one and the liftable frame central trepanning are set in the X-ray tube group bottom centre to be detected
Adaptable screw rod, then locks the two, you can ensures the center of the X-ray tube group to be detected and the liftable rack
Alignment, can also using center as starting point, edge draws mark line around on the platform of the liftable rack, exist accordingly
Edge draws mark line around for starting point at the center of the X-ray tube group to be detected, by sucker by the X ray to be detected
Liftable rack described in Guan Zuyu connects, when the X-ray tube group to be detected is placed in the liftable rack, four sides
Upward center line coincidence can ensure that the X-ray tube group to be detected is aligned with the liftable frame central.
Further, the control device of the detection spoke amount further includes processing terminal 5, and the processing terminal connects more respectively
A dose of radiation testing cassete 2 and liftable rack 4, each dose of radiation testing cassete pass through data line, wireless data or bluetooth etc.
A variety of types of attachment are connect with the processing terminal, and exceeded, the processing judge whether to leakage point by processing terminal
Terminal can also connect liftable rack, and control the liftable rack, correspondingly, the processing terminal and the liftable machine
Frame can be attached by diversified forms such as data line, wireless data or bluetooths, the processing terminal can also by data line,
A variety of types of attachment such as wireless data or bluetooth are attached with the infrared probe on the multiple dose of radiation testing cassete, are used for
Mark the specific location of the exceeded leak point of spoke amount.
Specific embodiments of the present invention are described above.It is to be appreciated that the invention is not limited in above-mentioned
Particular implementation, those skilled in the art can make various deformations or amendments within the scope of the claims, this not shadow
Ring the substantive content of the present invention.
Claims (10)
1. a kind of control method for detecting spoke amount is used to detect the radiation leakage of X-ray tube group, which is characterized in that including such as
Lower step:
I. X-ray tube group to be detected is detected based on multiple dose of radiation testing cassetes, obtains multiple first detection datas;
Ii. judge whether multiple first detection datas are more than first threshold, and will be more than the one or more first of first threshold
Detection data is as the second detection data;
Iii. second detection data is transmitted to processing terminal;
Iv. the processing terminal is based on second detection data and obtains leakage point coordinates.
2. control method according to claim 1, which is characterized in that before the step i, include the following steps:
A. stent is bent into semicircle shape using liftable rack as the center of circle;
B. the multiple dose of radiation testing cassete is set on the bracket;
C. X-ray tube group to be detected is mounted in liftable rack, the X-ray tube group to be detected and the liftable rack
Center is aligned;
D. the distance between the multiple dose of radiation testing cassete and X-ray tube group to be detected are corrected.
3. control method according to claim 2, which is characterized in that the multiple radiant quantity testing cassete is arranged on described
Form on stent is any one of following manner:
Left and right is cross-linked;
Single connection arranged side by side;Or
Double connection arranged side by side.
4. control method according to claim 2, which is characterized in that be provided on the multiple radiant quantity testing cassete away from
From detection device, it is used to measure the distance of each radiant quantity testing cassete and X-ray tube group window to be detected.
5. control method according to claim 4, which is characterized in that the multiple dose of radiation testing cassete with it is described to be checked
The distance for surveying X-ray tube group window is at least 1 meter.
6. control method according to claim 1, which is characterized in that the multiple dose of radiation testing cassete and processing terminal
It is connected by following any mode:
Data line connects;
Wireless network connects;
Bluetooth connection;Or
Data cellular networks.
7. a kind of control device for detecting spoke amount is used to detect the radiation leakage of X-ray tube group, which is characterized in that at least wrap
It includes:Stent (1), multiple dose of radiation testing cassetes (2), the multiple dose of radiation testing cassete (2) are arranged on the stent (1)
On.
8. control device according to claim 7, which is characterized in that the multiple radiant quantity testing cassete (2) further includes
Distance detector (21) is used to measure the distance of each radiant quantity testing cassete and the X-ray tube group window to be detected.
9. control device according to claim 8, which is characterized in that the control device of the detection spoke amount further includes to be checked
Survey X-ray tube group (3), by X-ray tube group (3) to be detected in liftable rack (4), the X-ray tube group to be detected
(3) it is aligned with liftable rack (4) center.
10. control device according to claim 9, which is characterized in that the control device of the detection spoke amount further includes place
Terminal (5) is managed, the processing terminal connects multiple dose of radiation testing cassetes (2) and liftable rack (4) respectively.
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN113791560A (en) * | 2021-09-15 | 2021-12-14 | 珠海丽珠试剂股份有限公司 | Safety control method and device for irradiation equipment |
Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN200984237Y (en) * | 2006-09-25 | 2007-12-05 | 西门子(中国)有限公司 | Patient touch-proof device of the medical equipment |
WO2011116830A1 (en) * | 2010-03-26 | 2011-09-29 | Brainlab Ag | Controlling a process of monitoring the position of a patient during a radiation treatment |
CN102798880A (en) * | 2012-08-14 | 2012-11-28 | 公安部第三研究所 | Device and method for detecting leakage dose rate of X-ray security detection equipment |
-
2018
- 2018-03-20 CN CN201810230553.4A patent/CN108254777A/en active Pending
Patent Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN200984237Y (en) * | 2006-09-25 | 2007-12-05 | 西门子(中国)有限公司 | Patient touch-proof device of the medical equipment |
WO2011116830A1 (en) * | 2010-03-26 | 2011-09-29 | Brainlab Ag | Controlling a process of monitoring the position of a patient during a radiation treatment |
CN102798880A (en) * | 2012-08-14 | 2012-11-28 | 公安部第三研究所 | Device and method for detecting leakage dose rate of X-ray security detection equipment |
Non-Patent Citations (1)
Title |
---|
王博: "医用诊断X射线管组件泄露辐射测试方法" * |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113791560A (en) * | 2021-09-15 | 2021-12-14 | 珠海丽珠试剂股份有限公司 | Safety control method and device for irradiation equipment |
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