CN105232003A - Fluorescence laser image detector - Google Patents

Fluorescence laser image detector Download PDF

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Publication number
CN105232003A
CN105232003A CN201510757599.8A CN201510757599A CN105232003A CN 105232003 A CN105232003 A CN 105232003A CN 201510757599 A CN201510757599 A CN 201510757599A CN 105232003 A CN105232003 A CN 105232003A
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China
Prior art keywords
laser image
fluorescence laser
camera
data wire
platform
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CN201510757599.8A
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Chinese (zh)
Inventor
邢皓
陈潇聪
李凌
谢天
刘阳
龚勤昌
敖佳琦
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Jiangxi Dafu Medical Treatment Technology Co Ltd
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Jiangxi Dafu Medical Treatment Technology Co Ltd
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Priority to CN201510757599.8A priority Critical patent/CN105232003A/en
Publication of CN105232003A publication Critical patent/CN105232003A/en
Pending legal-status Critical Current

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Abstract

The invention discloses a fluorescence laser image detector. The fluorescence laser image detector comprises a laser image detecting machine and a fluorescence laser camera which are connected through a data line or wireless communication signals; the laser image detecting machine is divided into an all-in-one machine working table, an input working table, a printing working table, a skeleton working table and a walking device from top to bottom, and the fluorescence laser camera is divided into a camera platform, a supporting platform, an adjusting platform, a power source control device and a stroke device from top to bottom. Cervix uteri image pictures under different light sources are collected through the high-definition camera, image characteristics are analyzed and compared to fast diagnose precancerous lesions of the uterine cervix, and the fluorescence laser image detector has the functions of artificial auxiliary intelligent diagnosis, data integration, data storage, data uploading and remote diagnosis.

Description

Fluorescence laser Image detection instrument
Technical field
The invention belongs to medical instruments field, relate to a kind of cancer detection instrument, be specifically related to a kind of cervical cancer laser image detector.
Background technology
Cervical cancer has generation all over the world, is one of modal tumor of human body, is the major malignant tumor of harm WomanHealth, according to statistics annual new cervical cancer patient 500,000 example in the whole world, annual new cervical cancer 130,000 example of China, death about 30,000 example.The Chinese government payes attention to the mass screening and mass treatment of cervical cancer, and the case fatality rate of the nineties in 20th century comparatively have dropped 69% the seventies, and the ground such as Beijing, Shanghai sickness rate has reached world's floor level.But China is populous, economical, culture, health care disparate development, the health and lives of women in cervical cancer still serious threat.The generation of China's cervical cancer, the feature in geographical distribution is, district occurred frequently often connects in flakes, the city of the relative district occurred frequently of each province's cervical cancer, county are also often connected to each other phenomenon; Total trend be rural area higher than city, mountain area higher than Plain.
The cervical cancer initial stage, without any symptom can there is remarkable vagina bleeding in the later stage, not only in female sex organ carcinoma, accounts for first place, and be carcinoma the most common in the various malignant tumor of women, but its sickness rate has obvious regional difference.
The generation development of cervical cancer be one by the process being gradient to sudden change, in a planned way examination, for effective prevention and early treatment's cervical cancer and precancerous lesion very crucial.The early cervical carcinoma patient that early screening finds, not only therapeutic effect is good, and quality of life is also because its range of operation is less and change, the radiotherapy time is shorter and greatly improve.Therefore the examination of cervical cancer becomes and reduces Mortality of cervix cancer, improves one of survival in women and the vital link of life quality.
In recent years, along with the develop rapidly of medical skill, the research both at home and abroad about cervical cancer prevention and control field is maked rapid progress, and screening method and means also emerge in an endless stream; The research preventing and treating each field about cervical cancer mainly concentrates on liquid basal cell, and HPV-DNA detects, electronic colposcope etc., and in developed area, these methods obtain and apply more widely, have even been applied to the examination of cervical cancer.
The scheme of current China examination cervical cancer is that sensitivity and specificity are not high with conventional cell or perusal for primary dcreening operation.In addition, cervical cancer data and the image collection statistics of perfect, specification is not had in current China examination system, problem of detached island of information is serious, the repeatability of examination is not strong, the requirement that examination data are checked, analyzed feedback and epidemiological study cannot be met, set up continuable cervical cancer countermeasure system and there is certain difficulty, this constrains the effect of early examining and early controlling to a great extent, thus effectively cannot reduce the M & M of cervical cancer all sidedly.
Summary of the invention
For above-mentioned existing problem, the invention provides a kind of detector of cervical carcinoma screening technology, it is primarily of laser image machines and Fluorescence laser video camera group composition, be captured in the cervix uteri image photograph under Different Light (white light, green glow, ultraviolet light) irradiation by high-definition camera, carrying out analyses and comparison to characteristics of image can diagnose cervical cancer and precancerous lesion thereof rapidly; In addition, it also possesses human assistance intelligent diagnostics, Data Integration, data store, the function of data upload and remote diagnosis, and can for research institution provides accurate and the data survey analysis result of system.
Technical scheme of the present invention is, Fluorescence laser Image detection instrument, comprises the laser image machines and Fluorescence laser video camera that are connected by data wire or wireless communication signals.
Laser image machines is divided into all-in-one workbench, input service platform, marker's station, skeleton workbench and running gear from top to bottom.
The all-in-one workbench of laser image machines is provided with the medical all-in-one of display bracket and vertically setting, and medical all-in-one is fixed on skeleton workbench by display bracket.
Input service platform is horizontally set under medical all-in-one, comprises certificate input equipment, finger-impu system and auxiliary input device from top to down; Certificate input equipment comprises the operating board of level and identity card reader placed on it; Finger-impu system comprises keyboard and Mus mark; Auxiliary input device comprises slide rail, Keyboard supporting board and mouse supporting plate, Keyboard supporting board is placed on slide rail and horizontal slip connects, slide rail to be positioned at below operating board and to be horizontally disposed with, identity card reader is built-in with Certification of Second Generation card reader safe mode, the personally identifiable information of collection can be transferred in medical all-in-one.
Medical all-in-one comprises all-in-one machine shell, display screen, photographic head, the main frame being positioned at medical all-in-one inside, control knob and connector, and display screen is placed in front end, and photographic head is located at display screen upper end centre; Main frame comprises computer center system, hard disk and video frequency collection card; Connector comprises expansion mouth and data wire input port, and data wire input port is connected with video frequency collection card; Computer center system is connected with expansion mouth with display screen, photographic head, hard disk, control knob, video frequency collection card respectively, and video frequency collection card is directly connected with computer center system, data wire input port respectively.
Expansion mouth is USB, lays respectively at the main frame left and right sides; Control knob and data wire input port are positioned at the lower end of main frame.
Skeleton workbench, comprise the column and chassis vertically set up, column is fixed on chassis.Printer in marker's station is placed on printer supporting plate.Running gear is the castor of bottom.
Operating board, printer supporting plate are fixedly connected with column, and the back side of column is provided with handrail and data basket successively, and the input of power line is in chassis.
Fluorescence laser video camera is divided into platform for video camera, support platform, adjustment platform, power control and stroke apparatus from top to bottom.
The platform for video camera of Fluorescence laser video camera is shooting unit; Support platform is divided into horizontal support member and vertical support member, and horizontal support member comprises joint pin, lower joint pin, pressure pin and base from top to down, and vertical support member comprises bracket and column from top to down; Regulate platform to be divided into direction adjusting apparatus and Space adjustment device, be respectively swivel head and crane; Power control is the on and off switch being located at lower rod end; Stroke apparatus is roller.
Shooting unit comprises camera housing, camera housing inside is provided with LED light source combination, high-definition camera, Line Card and light source control wiring board, the rear end of camera housing is provided with small display and control panel, and the lower end of camera housing is provided with holder.LED light source combination is formed by white light, green glow and ultraviolet light three kinds of combination of light sources, and uniform ring is around the periphery of high-definition camera, and the wavelength of the ultraviolet source sent is preferably 365 ± 10nm.
High-definition camera respectively with small display and Line Card connection, light source control wiring board combines and Line Card connection with LED light source respectively, control panel and Line Card connection.
Shooting unit is fixedly connected with bracket by holder, the two ends of swivel head are connected with bracket and upper joint pin respectively, the two ends of crane are connected with upper joint pin and lower joint pin respectively, and the two ends of pressure pin are connected with lower joint pin and pillar respectively, and pillar is fixed on base; The lower end of base is roller.
Laser image machines is connected preferably by data wire with Fluorescence laser video camera, the shooting Line Card of unit is connected with the data wire input port of medical all-in-one, the data wire used is preferably HD video dedicated line, and more preferably optical fiber or shielding line.
Beneficial effect of the present invention is obvious:
(1) design concept of the present invention is advanced, especially laser image machines and the discrete setting of Fluorescence laser video camera, the all-in-one workbench be provided with separately, input service platform, marker's station, skeleton workbench and running gear; And platform for video camera, support platform, adjustment platform, power control and stroke apparatus, structure and fuction is rationally distributed, namely considers operator, considers check object again, meets ergonomics.Also there is Data Integration simultaneously, data store, the function of data retrieval and data upload, the examination that these functions are used for cervical cancer is with the obvious advantage, can solve problem of detached island of information, the personal information of person under inspection can input in medical all-in-one and preserve by the identity card reader be provided with; The examination data that collection comes by medical all-in-one carry out standardized management, and then are connected by each examination information island by cloud computing and the Internet, and these data can be got up by digging utilization further, to reach human assistance intelligent diagnostics function.
(2) testing process person under inspection not damaged, no pain, quick position is accurate, rests on a scientific basis, and without the need to using adjuvant before checking, it is convenient to check, early cancer's Detection accuracy is high.
(3) both can find precancer and cancer early stage patient by a large amount of screenings and easy, wield examination scheme, the medical expense save examination cost again, increasing examination income, significantly reduce this disease, alleviates family, burden on society; While improving interests to patient, also mitigate the burden that mechanism is born in examination.
(4) when running into knotty problem, computer connected network, realizes video calling by photographic head, realizes Long-distance Control and diagnosis.
Accompanying drawing explanation
Fig. 1 is structural representation of the present invention.
Fig. 2 is the left view of laser image machines.
Fig. 3 is the structural representation of Fluorescence laser video camera.
Fig. 4 is the front view of medical all-in-one.
Fig. 5 is the side view of medical all-in-one.
Fig. 6 is the internal structure schematic diagram of medical all-in-one.
Fig. 7 and Fig. 8 is the axonometric chart of shooting unit.
Fig. 9 is the internal structure schematic diagram of shooting unit.
Figure 10 is the front view of shooting unit.
Reference numeral: laser image machines 1, display bracket 101, medical all-in-one 102, column 103, handrail 104, data basket 105, chassis 106, castor 107, printer supporting plate 108, printer 109, slide rail 110, Keyboard supporting board 111, keyboard 112, operating board 113, power line 114, mouse supporting plate 115, mouse 116, identity card reader 117;
All-in-one machine shell 1021, display screen 1022, computer center system 1023, photographic head 1024, hard disk 1025, control knob 1026, video frequency collection card 1027, expansion mouth 1028, data wire input port 1029;
Fluorescence laser video camera 2, bracket 201, shooting unit 202, swivel head 203, upper joint pin 204, crane 205, lower joint pin 206, pressure pin 207, pillar 208, base 209, roller 210, on and off switch 211;
Camera housing 2021, small display 2022, control panel 2023, LED light source combination 2024, high-definition camera 2025, Line Card 2026, holder 2027, light source control wiring board 2028.
Detailed description of the invention
Tie with specific embodiment that the present invention is described further below.
As shown in the figure, Fluorescence laser Image detection instrument, comprises the laser image machines 1 and Fluorescence laser video camera 2 that are connected by data wire or wireless communication signals.
Fluorescence laser video camera 2 is divided into platform for video camera, support platform, adjustment platform, power control and stroke apparatus from top to bottom.
The platform for video camera of Fluorescence laser video camera 2 is shooting unit 202; Support platform is divided into horizontal support member and vertical support member, and horizontal support member comprises joint pin 204, lower joint pin 206, pressure pin 207 and base 209 from top to down, and vertical support member comprises bracket 201 and column 208 from top to down; Regulate platform to be divided into direction adjusting apparatus and Space adjustment device, be respectively swivel head 203 and crane 205; Power control is the on and off switch 211 being located at pillar 208 lower end; Stroke apparatus is roller 210.
Shooting unit 202 comprises camera housing 2021, camera housing 2021 inside is provided with LED light source combination 2024, high-definition camera 2025, Line Card 2026 and light source control wiring board 2028, the rear end of camera housing 2021 is provided with small display 2022 and control panel 2023, the lower end of camera housing 2021 is provided with holder 2027, and shooting unit 202 is fixedly connected with bracket 201 by holder 2027.High-definition camera 2025 respectively with small display 2022 and Line Card 2026 connection, light source control wiring board 2028 combines 2024 and Line Card 2026 connection respectively with LED light source.Control panel 2023 and Line Card 2026 connection.
LED light source combination 2024 adopts private-use class light emitting diode, formed by white light, green glow and ultraviolet light three kinds of combination of light sources, uniform ring is around the periphery of high-definition camera 2025, can launch white light, green glow and ultraviolet light in same direction and equably, the wavelength of the ultraviolet source sent is preferably 365 ± 10nm.Light source control wiring board 2028 and LED light source combine 2024 connections, and light source control wiring board 2028 is for giving light source power supply and regulating light intensity weak.
Lens in high-definition camera 2025 adopt high material to be thoroughly made, when three kinds of light sources---after white light, green glow and ultraviolet light irradiate cervix uteri respectively, can gather without cervix uteri image clearly under light source.
Control panel 2023 is provided with adjustment button, accurately can control the parameter of high-definition camera 2025 and the parameter of LED light source combination 2024; And can need to regulate the focal length of high-definition camera 2025, image acquisition area and definition etc. according to the situation of patient, use white light, green glow and ultraviolet light also convertiblely and regulate the energy of respective sources, wavelength and luminous power etc.
The image file that high-definition camera 2025 collects can be transferred on small display 2022 in real time by circuit; Staff can obtain cervix uteri detected image in real time and intuitively.
Shooting unit 202 is fixed on bracket 201, the two ends of swivel head 203 are connected with bracket 201 and upper joint pin 204 respectively, the two ends of crane 205 are connected with upper joint pin 204 and lower joint pin 206 respectively, the two ends of pressure pin 207 are connected with lower joint pin 206 and pillar 208 respectively, and pillar 208 is fixed on base 209; The lower end of base 209 is roller 210.
Direction and the angle of shooting unit 202 can be regulated by swivel head 203, the height of shooting unit 202 can be regulated by crane 205, the position of Fluorescence laser video camera can be regulated by roller 210, the power on/off of the present embodiment can be controlled by and off switch 211.Not only be convenient to dismantle, move, settle and transport, and when detecting the cervix uteri of patient, be convenient to health care worker according to different practical situations to the operation of the present embodiment, use and control, as can mobile device freely, the direction of conversion video camera, angle and height etc.
Laser image machines 1 is divided into all-in-one workbench, input service platform, marker's station, skeleton workbench and running gear from top to bottom.
The all-in-one workbench of laser image machines 1 is provided with the medical all-in-one 102 of display bracket 101 and vertically setting, and medical all-in-one 102 is fixed on skeleton workbench by display bracket 101.
Input service platform is horizontally set under medical all-in-one 102, comprises certificate input equipment, finger-impu system and auxiliary input device from top to down; Certificate input equipment is made up of the operating board 113 of level and identity card reader 117 placed on it; Finger-impu system includes keyboard 112 and mouse 116; Auxiliary input device comprises slide rail 110, Keyboard supporting board 111 and mouse supporting plate 115, Keyboard supporting board 111 is placed on slide rail 110 and horizontal slip connects, slide rail 110 to be positioned at below operating board 113 and to be horizontally disposed with, the inner of sliding rail rack upwards with bottom operating board 113 is connected, sliding rail rack body horizontally outward extends, and slide rail 110 is arranged on sliding rail rack; Keyboard 112 is placed on Keyboard supporting board 111, and mouse 116 is placed on mouse supporting plate 115.
Medical all-in-one 102 comprises all-in-one machine shell 1021, view screen device, main frame, control knob 1026 and connector, view screen device comprises display screen 1022 and photographic head 1024, display screen 1022 is placed in front end, and photographic head 1024 is located at display screen 1022 upper end centre; Main frame is positioned at the inside of medical all-in-one 102, comprises computer center system 1023, hard disk 1025 and video frequency collection card 1027; Connector comprises expansion mouth 1028 and data wire input port 1029, and data wire input port 1029 is connected with video frequency collection card 1027; Computer center system 1023 is respectively with display screen 1022, photographic head 1024, hard disk 1025, control knob 1026, video frequency collection card 1027 with expand mouth 1028 and be connected, and video frequency collection card 1027 is directly connected with computer center system 1023, data wire input port 1029 respectively.
Expansion mouth 1028 is USB, lays respectively at the main frame left and right sides; Control knob 1026 and data wire input port 1029 are positioned at the lower end of main frame.
Identity card reader 117 is as identity card identifier, be built-in with Certification of Second Generation card reader safe mode, permitted by Ministry of Public Security's certification, meet Chinese second generation identity card arrangement for reading standard Card Reader distance > 5cm, card reading speed " 1.5 seconds, the personally identifiable information of collection can be transferred in medical all-in-one 102, after computer center system 1023 carries out analyzing and processing, display screen 1022 can demonstrate personally identifiable information.
Skeleton workbench, comprise the column 103 and chassis 106 vertically set up, column 103 is fixed on chassis 106.Printer 109 in marker's station is placed on printer supporting plate 108.Running gear is the castor 107 of bottom.
Operating board 113, printer supporting plate 108 are fixedly connected with column 103, and the back side of column 103 is provided with handrail 104 and data basket 105 successively, and the input of power line 114 is in chassis 106.Data basket 105 can place the photo information etc. of papery data or printing.
Laser image machines 1 is connected preferably by data wire with Fluorescence laser video camera 2, namely medical all-in-one 102 is connected by data wire with shooting unit 202, data wire connecting interface wiring board 2026 and data wire input port 1029, data wire is preferably HD video dedicated line, and more preferably optical fiber or shielding line.
When carrying out examination to cervical cancer, laser image machines 1 and Fluorescence laser video camera 2 are used in combination, after identity card reader 117 identifies person under inspection's identity card, by Fluorescence laser video camera 2 transmitting white, green glow and ultraviolet light and the cervix uteri image photograph gathered under corresponding reflected light, image file is analogue signal or digital signal in the internal conversion of shooting unit 202, is preferably converted to digital signal and can reduces the quantization error produced in transformation process.Signal is sent on video frequency collection card 1027, and video frequency collection card 1027 acquired signal imports computer center system 1023 again into.Computer center system 1023 pairs of characteristics of image are analyzed, and demonstrate image report by display screen 1022; Health care worker prints image report by printer 109, and health care worker compares can diagnose cervical cancer and precancerous lesion thereof rapidly characteristics of image.
Expansion mouth 1028 is as USB, and can insert the mobile storage disc being equipped with case information, computer center system 1023 pairs of case informations make corresponding analysis.
When running into knotty problem, medical all-in-one 102 by data upload, also can transmit teledata by networking, realizes Long-distance Control and diagnosis, realizes video calling by photographic head 1024 and display screen 1022.
The present embodiment also has Data Integration, data store, the function of data retrieval and data upload, the examination that these functions are used for cervical cancer is with the obvious advantage, can solve problem of detached island of information, the personal information of person under inspection can input in medical all-in-one 102 and preserve by the identity card reader 117 be provided with; The examination data that collection comes by medical all-in-one 102 carry out standardized management, and then are connected by each examination information island by cloud computing and the Internet, and these data can be got up by digging utilization further, to reach human assistance intelligent diagnostics function.In addition, integrated and precious clinical data can be obtained efficiently more comprehensively, obtain data statistics accurately, be convenient to expert and researcher obtains case-data comprehensively and accurately, there is provided the data base of system for research institution and and then draw science, have the research report of foundation and report of feasibility, for diseases prevention and treatment work of carrying out further from now on lays the foundation.
The main configuration parameter of the present embodiment illustrates:
(1) configuration parameter of display screen 1022
Interface inputs: DVI-D, Dispayport
Show Color: 16.7M
(2) configuration parameter of high-definition camera 2025
Pixel: 2,100,000
Zoom ratio: 30 Zoom Lens, 12 times of digital zooms
Image resolution ratio: 1080P (900TVL)
Minimal illumination: 0.1lx(1/30)
(3) identity card reader 117: built-in Certification of Second Generation security module by card readers
CPU:24M8bit high-performance processor
Memorizer: 64KB sheet carries Flash, 4KB sheet carries RAM
(4) software parameter
Image acquisition: 1920*1080
Image model: white light, green glow and fluoroscopic image
Graphical analysis: color analysis under fluoroscopic image
Telecommunication: equipment and equipment, equipment and server host realize video and speech communication
Remote diagnosis: equipment realizes Long-distance Control to equipment or server host to equipment, by remote software diagnosed SARS case
Data upload is downloaded: case data upload onto the server, and provide the information such as certain region cervical cancer pathogenesis rate, age level distribution for government
Image, light source are proofreaded: proofread light source and video camera during start
Camera control: realize software control camera parameters, the function such as Scalable, Focussing
(5) configuration parameter of video frequency collection card 1027
Video input: 1920x1080p60Hz
(6) combination of light sources: white light, green glow, ultraviolet light combine, and brightness is adjustable
Ultraviolet source, wavelength---365 ± 10nm, luminous power---0 ~ 100mw
(7) communication modes: support wired RJ45, wireless Internet access IEEE802.11b/g/n.

Claims (10)

1. a Fluorescence laser Image detection instrument, comprise laser image machines (1) and Fluorescence laser video camera (2), both are connected by data wire or wireless communication signals, it is characterized in that, laser image machines (1) is divided into all-in-one workbench, input service platform, marker's station, skeleton workbench and running gear from top to bottom, and Fluorescence laser video camera (2) is divided into platform for video camera, support platform, adjustment platform, power control and stroke apparatus from top to bottom.
2. a kind of Fluorescence laser Image detection instrument as claimed in claim 1, it is characterized in that, the medical all-in-one (102) that described all-in-one workbench is provided with display bracket (101) and vertically arranges, medical all-in-one (102) is fixed on skeleton workbench by display bracket (101);
Input service platform is horizontally set under medical all-in-one (102), comprises certificate input equipment, finger-impu system and auxiliary input device from top to down; Certificate input equipment comprises operating board (113) and the identity card reader placed on it (117) of level; Finger-impu system comprises keyboard (112) and mouse (116); Auxiliary input device comprises slide rail (110), Keyboard supporting board (111) and mouse supporting plate (115), Keyboard supporting board (111) is placed on slide rail (110) and horizontal slip connects, slide rail (110) is positioned at operating board (113) below and is horizontally disposed with, keyboard (112) is placed on Keyboard supporting board (111), and mouse (116) is placed on mouse supporting plate (115);
Skeleton workbench, comprises the column (103) and chassis (106) vertically set up;
Printer (109) in marker's station is placed on printer supporting plate (108).
3. a kind of Fluorescence laser Image detection instrument as claimed in claim 2, it is characterized in that, described operating board (113), printer supporting plate (108) are fixedly connected with column (103), the back side of column (103) is provided with handrail (104) and data basket (105) successively, and the input of power line (114) is in chassis (106).
4. a kind of Fluorescence laser Image detection instrument as claimed in claim 2, it is characterized in that, described medical all-in-one (102) comprises all-in-one machine shell (1021), view screen device, main frame, control knob (1026) and connector, view screen device comprises display screen (1022) and photographic head (1024), display screen (1022) is placed in front end, and photographic head (1024) is located at display screen (1022) upper end centre; Main frame is positioned at the inside of medical all-in-one (102), comprises computer center system (1023), hard disk (1025) and video frequency collection card (1027); Connector comprises expansion mouth (1028) and data wire input port (1029), and data wire input port (1029) are connected with video frequency collection card (1027); Computer center system (1023) is respectively with display screen (1022), photographic head (1024), hard disk (1025), control knob (1026), video frequency collection card (1027) with expand mouth (1028) and be connected, and video frequency collection card (1027) is directly connected with computer center system (1023), data wire input port (1029) respectively.
5. a kind of Fluorescence laser Image detection instrument as claimed in claim 4, is characterized in that, described expansion mouth (1028) lays respectively at the main frame left and right sides for USB; Control knob (1026) and data wire input port (1029) are positioned at the lower end of main frame.
6. a kind of Fluorescence laser Image detection instrument as claimed in claim 1, is characterized in that, the platform for video camera of described Fluorescence laser video camera (2) is shooting unit (202); Support platform is divided into horizontal support member and vertical support member, horizontal support member comprises joint pin (204), lower joint pin (206), pressure pin (207) and base (209) from top to down, and vertical support member comprises bracket (201) and column (208) from top to down; Regulate platform to be divided into direction adjusting apparatus and Space adjustment device, be respectively swivel head (203) and crane (205); Power control is for being located at the on and off switch (211) of pillar (208) lower end; Stroke apparatus is roller (210); Shooting unit (202) is fixedly connected with bracket (201);
The two ends of swivel head (203) are connected with bracket (201) and upper joint pin (204) respectively, the two ends of crane (205) are connected with upper joint pin (204) and lower joint pin (206) respectively, the two ends of pressure pin (207) are connected with lower joint pin (206) and pillar (208) respectively, and pillar (208) is fixed on base (209); The lower end of base (209) is roller (210).
7. a kind of Fluorescence laser Image detection instrument as claimed in claim 6, it is characterized in that, described shooting unit (202) comprises camera housing (2021), camera housing (2021) inside is provided with LED light source combination (2024), high-definition camera (2025), Line Card (2026) and light source control wiring board (2028), the rear end of camera housing (2021) is provided with small display (2022) and control panel (2023), the lower end of camera housing (2021) is provided with holder (2027), shooting unit (202) is fixedly connected with bracket (201) by holder (2027), LED light source combination (2024) is formed by white light, green glow and ultraviolet light three kinds of combination of light sources, high-definition camera (2025) respectively with small display (2022) and Line Card (2026) connection, light source control wiring board (2028) combines (2024) and Line Card (2026) connection respectively with LED light source, control panel (2023) and Line Card (2026) connection, Line Card (2026) is connected with data wire input port (1029) by data wire,
LED light source combination (2024) uniform ring is around the periphery of high-definition camera (2025).
8. a kind of Fluorescence laser Image detection instrument as claimed in claim 7, it is characterized in that, laser image machines (1) is connected by data wire with Fluorescence laser video camera (2), data wire connects the data wire input port (1029) of medical all-in-one (102) and the Line Card (2026) of shooting unit (202), and data wire is HD video dedicated line.
9. a kind of Fluorescence laser Image detection instrument as claimed in claim 8, it is characterized in that, described HD video dedicated line is optical fiber or shielding line.
10. a kind of Fluorescence laser Image detection instrument as claimed in claim 7, is characterized in that, the wavelength of the ultraviolet source of described LED light source combination (2024) is 365 ± 10nm.
CN201510757599.8A 2015-11-10 2015-11-10 Fluorescence laser image detector Pending CN105232003A (en)

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