CN86105477A - The X ray image-photographing device - Google Patents

The X ray image-photographing device Download PDF

Info

Publication number
CN86105477A
CN86105477A CN86105477.6A CN86105477A CN86105477A CN 86105477 A CN86105477 A CN 86105477A CN 86105477 A CN86105477 A CN 86105477A CN 86105477 A CN86105477 A CN 86105477A
Authority
CN
China
Prior art keywords
ray
collimator plate
pixel
data
intensity
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn
Application number
CN86105477.6A
Other languages
Chinese (zh)
Other versions
CN1012705B (en
Inventor
喜利元贞
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Shimadzu Corp
Original Assignee
Shimadzu Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Shimadzu Corp filed Critical Shimadzu Corp
Priority to CN 86105477 priority Critical patent/CN1012705B/en
Publication of CN86105477A publication Critical patent/CN86105477A/en
Publication of CN1012705B publication Critical patent/CN1012705B/en
Expired legal-status Critical Current

Links

Images

Abstract

The invention relates to the camera of the X ray image of two dimension such as radioscopy image.It is characterized in that, have a lot of close mutually, and the collimator plate of the aperture arranged along direction in length and breadth be contained between x-ray source and the photographic plane, make it to move along direction in length and breadth, on photographic plane, only the X ray intensity that surpasses a certain standard value (maximal value of the X ray intensity that at every turn receives with each picture element is a benchmark) is got off as the data recording of the effective X ray intensity of this picture element, then, utilize these data that the X ray image reconstruction is come out again.Effect of removing scattered x-ray of the present invention is fine.

Description

The invention relates to the camera of the X ray image of two dimension such as radioscopy image.
In the middle of the photography of two-dimensional x-ray image, because scattered x-ray can make the contrast of image reduce, the sharpness of influence image, so, must eliminate scattered x-ray.
For this reason, adopt the aperture plate shape collimating apparatus that is approximately 0.5mm at interval to be used as the collimator that X-ray radiography is used before.But the elimination effect of scattered x-ray is undesirable.In addition, as eliminating the effective device of scattered x-ray, can use the X ray camera that broad X ray is constrained in the interior fan type beam of flat beam or be constrained to thin-line-shaped microminiature beam.But the X ray of x-ray source radiation is to be transmitted in the broad solid angle, and this device has only utilized the X ray in the wherein extremely limited narrow and small solid angle to photograph, so the utilization factor of X ray is low, the time that photography needs is long.
In the above-mentioned method of using collimator before, or do not make the utilization factor of X ray fall too lowly but the elimination effect of scattered x-ray is bad; The elimination of scattered x-ray is effective and utilization factor X ray is very low, exist the two conflicting relation like this, the purpose of this invention is to provide a kind of utilization factor of X ray that neither makes and fall too lowly, can eliminate the X ray image-photographing device of scattered x-ray influence again effectively.
The device that the present invention adopts is: have a lot of close mutually, and be contained between the photographic plane of x-ray source along the collimator plate of the aperture of direction arrangement in length and breadth, make it to move along direction in length and breadth, on photographic plane, only the X ray intensity that surpasses a certain standard value (maximal value of the X ray intensity that at every turn receives with each picture element is a benchmark) is got off as the data recording of the effective X ray intensity of this picture element, then, utilize these data that the X ray image reconstruction is come out again.
The 1st figure represents the structural drawing of an embodiment of apparatus of the present invention; The 2nd figure is the front elevation of collimator plate among this embodiment, the 3rd figure is the curve map that the X ray intensity data changed when a pixel scanned at every turn on the picture of the foregoing description, the 4th figure is a key diagram of explaining the principle of the invention, and the 5th figure is the curve map of the X ray Strength Changes of any on the mobile caused picture of collimating apparatus aperture.
In the 4th figure, S is an x-ray source, and C is a collimator plate of the present invention, the aperture h that only drawn on the figure, the object that B is videotaped; I is a photographic plane.The X ray intensity level at a picture element P place on the photographic plane is certain, by the object decision that is videotaped.Now, consider not have the ideal situation of scattered x-ray earlier, if move collimator plate C, at this moment shown in the 5th figure a, can see by the hole h on the collimator plate from the P point whole x-ray source during, the X ray intensity at picture element P place is certain, when the part that does not have the hole on the collimated device plate of x-ray source is blocked fully, the X ray intensity vanishing at picture element P place, therefore, the X ray intensity at this place is trapezoidal variation.But, in fact have scattered x-ray to exist, so real situation of change is the 5th figure b.Therefore,, just be defined as the standard of selection with the l on the 5th figure b,, so, just can eliminate the influence of scattered x-ray basically fully if only the X ray intensity that surpasses l just be can be regarded as the valid data of the X ray intensity of P for the P point.
The 1st figure represents one embodiment of the present of invention.S is an x-ray source, and C is a collimator plate of the present invention, and the object that B is videotaped, K are pickup systems.In this embodiment, pickup system is made of X ray picture image intensifier II and gamma camera VD.
The 2nd figure is the front elevation of collimator plate C, and a is the situation that aperture h arranges by go dish grid, and b is the situation of aperture h by interlacing dislocation cross arrangement.The diameter of aperture h is about 1mm, the minimum distance of adjacent aperture is about 10mm, collimator plate is made with plumbous, thickness is about 1mm, be clipped in aluminium sheet or mould between the plate, make it to remain tabular, rely on the drive unit Dr of the 1st figure, make it when along continuous straight runs is reciprocating, move in vertical direction again.No matter reciprocating scope or the scope that vertically moves all design to such an extent that be a bit larger tham distance nearest between aperture h, making with the x-ray source is the seamlessly inswept photographic plane of the projection of aperture h on photographic plane at center.
In the pickup system K of the 1st figure, II is an image intensifier, and the X ray image on the photographic plane is transformed to optical image on the face, then, utilizes lens L that optical image is focused on the sensitive surface of camera tube VD.CPU is the computing machine of control usefulness, and digital form is adopted in the scanning on the camera tube VD, and the prescribed level sweep trace is made up of 1024 points, and inswept 1024 horizontal scanning lines just resolve into 1024 * 1024 picture elements to the X ray image.Picture on the camera tube VD scanned repeatedly by 1/30 second cycle.The picture intelligence of camera tube output is stored into video memory M and goes up and each pixel corresponding address through the A/D conversion.CPU this scan certain picture element picture intelligence intensity data greater than among the storer M with this picture element corresponding address remembered current before data the time, CPU just only makes the data of this address into the data of current scanning.Like this, when CPU predicts collimator plate C along traverse motion, the regulation that has been along the longitudinal movement apart from the time, just stop the top course of work.At this moment, the data of the last memory of video memory M are exactly to have eliminated the picture data of the X ray image of scattered x-ray influence.
The 3rd figure represents that a certain pixel on the camera tube scans the variation of the picture intelligence of output at every turn, according to the course of work of the foregoing description, selects maximal value, as the X ray intensity of this picture element from the variation of this output.
For the control mode of CPU, can also this circulation be carried out after the several times repeatedly the above-mentioned course of work as a circulation, just can obtain the mean value of the maximum picture intelligence of the each round-robin of this picture element.In addition, also can adopt following mode.Use the 1st and the 2 two video memory, beginning, earlier without collimator plate, run-down X ray image is recorded at this moment picture intelligence in the 1st storer, as raw data.
Then, again collimator plate is inserted, made it mobile.The standard 1 that each picture element is selected according to the data regulation of the 1st storer for this picture element, if obtained surpassing the picture intelligence of l standard, is just imported it the corresponding address of the 2nd storer.
In the above-described embodiments, what pickup system used is image intensifier and gamma camera, and still, so long as can become picture segmentation pixel and each pixel is adopted the mode of data processing, the present invention be suitable for any pickup system.
According to top said structure, the present invention uses the collimater plate of aperture by two-dimensional arrangements, eliminated the impact of scattered x-ray object face by means of aperture, so, compare with the device that uses fan type beam or microminiature beam, basically all utilized simultaneously from x-ray source and be radiated X ray in the wide solid angle, therefore, the utilization rate height of X ray, in addition, because the effect of scattered x-ray is in the outside of collimater plate aperture projection at the face of elephant, mobile collimater plate makes being projected on the image planes none and sweeping time with omitting of aperture, processes by data and manages, only adopt near the data that resemble each picture element on the face when being positioned on this picture element the center of above-mentioned aperture projection, thereby eliminated the impact of scattered x-ray, so the effect of eliminating the scattered x-ray impact is also very high.

Claims (1)

  1. The X ray image-photographing device is characterised in that: collimator plate is contained between x-ray source and the photographic plane, and the aperture by two-dimensional arrangements is arranged on the collimator plate.Have and to make above-mentioned collimator plate move that none sweeps the function of time whole photographic plane so as to reaching the projection of aperture on photographic plane that make on the collimator plate with omitting, and photographic plane is divided into pixel and detects the function of the incident X-rays intensity on each pixel, and have data processing equipment.During mobile above-mentioned collimator plate, detect the incident X-rays intensity of above-mentioned each pixel repeatedly, each pixel is selected the data that surpass near standard value maximal value or maximal value, set X ray intensity from the data of above-mentioned detected repeatedly X ray intensity as this pixel.
CN 86105477 1986-08-25 1986-08-25 X-ray image-photographing device Expired CN1012705B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 86105477 CN1012705B (en) 1986-08-25 1986-08-25 X-ray image-photographing device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 86105477 CN1012705B (en) 1986-08-25 1986-08-25 X-ray image-photographing device

Publications (2)

Publication Number Publication Date
CN86105477A true CN86105477A (en) 1988-03-09
CN1012705B CN1012705B (en) 1991-05-29

Family

ID=4802859

Family Applications (1)

Application Number Title Priority Date Filing Date
CN 86105477 Expired CN1012705B (en) 1986-08-25 1986-08-25 X-ray image-photographing device

Country Status (1)

Country Link
CN (1) CN1012705B (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1315435C (en) * 2004-07-23 2007-05-16 于红林 Car carried medical digital X-ray unit
CN100338527C (en) * 2003-06-09 2007-09-19 佳能株式会社 Image processing method and apparatus and x-ray imaging apparatus
WO2013075648A1 (en) * 2011-11-25 2013-05-30 Mu Zhiping Collimating device for emission tomography

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN100338527C (en) * 2003-06-09 2007-09-19 佳能株式会社 Image processing method and apparatus and x-ray imaging apparatus
CN1315435C (en) * 2004-07-23 2007-05-16 于红林 Car carried medical digital X-ray unit
WO2013075648A1 (en) * 2011-11-25 2013-05-30 Mu Zhiping Collimating device for emission tomography

Also Published As

Publication number Publication date
CN1012705B (en) 1991-05-29

Similar Documents

Publication Publication Date Title
US10895731B2 (en) Method and apparatus for imaging a sample using a microscope scanner
CN100582657C (en) Three-dimensional microcosmic appearance inclined scanning method and apparatus
US20020012450A1 (en) Image processing apparatus and method
EP1189017B1 (en) Displacement sensor
CN104038740B (en) Method and device for shielding privacy region of PTZ (Pan/Tilt/Zoom) surveillance camera
CN1496711A (en) Continuous scanning RAD chromatorgraphy X-ray lighting combination system and method
US11539898B2 (en) Method and apparatus for imaging a sample using a microscope scanner
CN1830207A (en) Projector and method of projecting projection image
CN100442140C (en) Method for realizing high resolution degree three-dimensional imaging by projector producing translation surface fringe
KR890000632B1 (en) Radio photographing apparatus
CN107771058B (en) Gap resolution of linear detector array
CN86105477A (en) The X ray image-photographing device
JPS6310764B2 (en)
CN110836647B (en) Three-dimensional scanning system
US20040213380A1 (en) Method and apparatus for slot scanning digital radiography
KR890000308B1 (en) X-ray imaging device
JPH071240B2 (en) X-ray image pickup device
CN114104894B (en) Multi-parameter detection method for quality of elevator guide rail
JPH076772B2 (en) Cross-sectional area and volume measuring device
EP0920192A2 (en) Method of shading correction for shuttle scanning devices
CN86105366A (en) Camera head
JPS60103876A (en) Inputting device of picture
US20220405890A1 (en) Apparatus and method for noise reduction from a multi-view image
CN202815784U (en) Super-large breadth display contact fusion interaction system
JP2589837B2 (en) Processing area determination method for focus condition detection

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C13 Decision
C14 Grant of patent or utility model
C19 Lapse of patent right due to non-payment of the annual fee