CN109044526A - A kind of dual laser and laser therapeutic apparantus - Google Patents
A kind of dual laser and laser therapeutic apparantus Download PDFInfo
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- CN109044526A CN109044526A CN201810715657.4A CN201810715657A CN109044526A CN 109044526 A CN109044526 A CN 109044526A CN 201810715657 A CN201810715657 A CN 201810715657A CN 109044526 A CN109044526 A CN 109044526A
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- 230000009977 dual effect Effects 0.000 title claims abstract description 10
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- 238000005520 cutting process Methods 0.000 claims abstract description 7
- 239000000835 fiber Substances 0.000 claims description 39
- 230000008878 coupling Effects 0.000 claims description 27
- 238000010168 coupling process Methods 0.000 claims description 27
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- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 claims description 19
- 239000013078 crystal Substances 0.000 claims description 14
- 238000001514 detection method Methods 0.000 claims description 8
- 230000001681 protective effect Effects 0.000 claims description 8
- 238000000960 laser cooling Methods 0.000 claims description 7
- 238000001816 cooling Methods 0.000 claims description 5
- 206010011878 Deafness Diseases 0.000 claims description 3
- 238000012544 monitoring process Methods 0.000 claims description 3
- 210000004872 soft tissue Anatomy 0.000 abstract description 15
- 230000023597 hemostasis Effects 0.000 abstract description 7
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- 210000004204 blood vessel Anatomy 0.000 abstract description 5
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- 239000013307 optical fiber Substances 0.000 description 14
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Abstract
A kind of dual laser and laser therapeutic apparantus of the application, structure is simple, the high dual-wavelength laser therapeutic equipment of stability, the movement by movable reflecting optics in first position and the second position can switch the green laser of output high-power 532nm and the near-infrared laser of 1064nm.532nm laser meets operation for the hemostasis of Soft tissue cutting, big blood vessel and venous sinus and requires for soft tissue gasification excision, 1064nm laser, becomes the better solution of operation on soft tissue.532nm laser resonator and 1064nm laser resonator share a pumping, Q-switch and Effect of Back-Cavity Mirror and one laser are become two lasers by a movable reflecting optics, can switch output 532nm visible laser and 1064nm infrared laser respectively.
Description
Technical field
This application involves laser therapeutic apparantus field, a kind of specific length switchable fiber coupling dual laser and swash
Photo-therapeutic instrument, for the treatment and hemostasis of soft tissue disease, the especially treatment of benign prostatic hyperplasis.
Background technique
Laser technology is rapidly developed in the application of medical field in recent years, and in soft tissue field, laser will substitute electricity quickly
It is cut to the goldstandard for the treatment of.The features such as laser bleeding is few, the risk of no trauma surface infestation, and no closed pore reacts allows laser soft tissue hand
Art is gradually won in competition.
The high power laser light of wavelength 2um, such as the Ho:YAG Bladder stone of 100W and the Tm:YAG laser of 120W are in prostate
Application in hyperplasia resection operation also has certain competitiveness.It is mainly absorbed by water in the tissue, and absorptivity height leads to group
It knits and gos deep into depth as shallow, it is poor to stop blooding.Cutting tissue effect is very strong, but solidification and the poor, optical fiber that stops blooding must against function of organization
Feature leads to difficult grasp etc. of performing the operation.The near infrared light of wavelength 980nm-1470nm or so, tissue go deep into 7-10mm of depth or so,
Be conducive to stop blooding.Notification number: the patent of 102090926 B of CN is cut using the combination of multi-wavelength with the wavelength of 2um
It cuts, is stopped blooding with 1470nm wavelength.The technology is complicated, realizes that difficulty is big, system bulk is difficult to safeguard greatly, is unfavorable for new technology
Popularization.
Green laser obtains a large amount of practice for soft tissue gasification cutting in clinic, sufficiently proves it safely and effectively, phase
Than in former generation " goldstandard " " transurethral prostatectomy " TURP, side effect is almost without being expected to become and replace TURP's
" goldstandard " of new generation.Different from the light of other wavelength, green laser is in human body mainly by hemoglobin absorption, in the water of human body
It can be transmitted at a distance under environment, tissue is directly gasificated into powder and is gone out by water, not need to carry out bulk tissue crushing again.
These unique advantages cause this wavelength of green laser necessarily to become the optimal selection that soft tissue disease is treated.But due to not having
Dissection cannot take pathology, and for big blood vessel and venous sinus bleeding also more difficult hemostasis, therefore twin wavelength laser output becomes green and swashs
The finer selection that light operation is promoted.
The patent of patent No. US 20180078310A1, the green laser of 532nm for describing a kind of power 20W add 40W's
The combination of 980nm near-infrared laser.The power of two kinds of wavelength of combination is all relatively low, and is that two kinds of lasers are closed by optical fiber
The mode of beam, which is transferred into, treats operation optical fiber, system complex, and stability is poor, it is difficult to safeguard.
Therefore, it is necessary to a kind of structure is simple, the high dual-wavelength laser therapeutic equipment of stability can switch output high-power
The green laser of 532nm and the near-infrared laser of 1064nm.532nm laser is used for for soft tissue gasification excision, 1064nm laser
The hemostasis of Soft tissue cutting, big blood vessel and venous sinus is required with meeting operation, becomes the better solution of operation on soft tissue.
Summary of the invention
The application technical problems to be solved are to provide a kind of dual laser and laser therapeutic apparantus.
In order to solve the above-mentioned technical problem, this application provides a kind of dual laser, the laser includes pump
Pumping system, the first semi-transparent semi-reflecting lens, movable reflecting optics, frequency-doubling crystal, total reflection hysteroscope, infrared outgoing mirror, the first reflection
Mirror, the second reflecting mirror, the second semi-transparent semi-reflecting lens, fiber coupling device, the movable reflecting optics have first position and
The second position, when the movable reflecting optics are located at first position, the first wave length light of the pumping system generation
Shu Yici passes through infrared outgoing mirror after the reflection of the first semi-transparent semi-reflecting lens and movable reflecting optics, successively passes through first
Fiber coupling device is reached after the reflection of reflecting mirror and the second semi-transparent semi-reflecting lens;When the movable reflecting optics are located at second
When position, the first wave length light beam that the pumping system generates passes through frequency-doubling crystal after the reflection of the first semi-transparent semi-reflecting lens
Second wave length light beam is reflected to form by the total reflection hysteroscope, second wave length light beam passes through the first semi-transparent semi-reflecting lens, by second
Reflecting mirror reflection, passes through the second semi-transparent semi-reflecting lens, reaches fiber coupling device, first semi-transparent semi-reflecting lens and second semi-transparent
Semi-reflective mirror can reflect first wave length light beam, transmit second wave length light beam.
Preferably, the first wave length light beam is the infrared laser that wavelength is 1064nm, the second wave length light beam
It is 532nm visible laser for wavelength.
Preferably, the pumping system includes pump cavity, Q-switch and rear anti-mirror.
Preferably, the movable reflecting optics be mounted on a sliding shoe can be in first position and second
The slidably device slided between position.
The application also provides a kind of laser therapeutic apparantus, described including laser described in Claims 1 to 4 any one
Laser therapeutic apparantus further include electric power supply control system for powering to laser.
Preferably, the laser therapeutic apparantus further includes for the laser cooling system cooling to pump cavity and Q-switch.
Preferably, the laser cooling system is water flow cooling system, including water flow protective switch, and the water flow is protected
Shield switch is fed back for when laser works state issues unboiled water stream open circuit, providing signal to electric power supply control system, described
The signal cut laser that electric power supply control system is used to be fed back according to water flow protective switch is powered.
Preferably, the laser therapeutic apparantus further includes multimode energy-transmission optic fibre, the coupling in the fiber coupling device
Laser energy is coupled into the multimode energy-transmission optic fibre by eyeglass, and the laser further includes for monitoring the optical fiber
The temperature sensor of coupling device temperature, the temperature sensor are used to when the temperature of fiber coupling device be more than setting value
When, send the hair that feedback signal is issued to electric power supply control system, the electric power supply control system according to the temperature sensor
Deaf signal, cutting laser power supply.
Preferably, the laser therapeutic apparantus further includes the power detection device for detection laser realtime power, institute
The electric power supply control system stated is also used to when the power that the power detection device is surveyed is below or above the 20% of specified value,
Issue alarm.
Preferably, the laser therapeutic apparantus further includes the floor push for switched laser device output wavelength, described
Floor push includes the foot-operated control switch in left and right two for controlling first wave length light beam and the output of second wave length light beam respectively, institute
The floor push stated is connect with the electric power supply control system signal, and the electric power supply control system is used for according to floor push
The output signal control movable reflecting optics are mobile in first position or the second position.
A kind of dual laser and laser therapeutic apparantus of the application, structure is simple, and the high dual-wavelength laser of stability is controlled
Instrument is treated, the movement by movable reflecting optics in first position and the second position can switch the green of output high-power 532nm
The near-infrared laser of laser and 1064nm.532nm laser is cut for soft tissue gasification excision, 1064nm laser for soft tissue
Cut, the hemostasis of big blood vessel and venous sinus is required with meeting operation, become the better solution of operation on soft tissue.532nm laser
Resonant cavity and 1064nm laser resonator share a pumping, Q-switch and Effect of Back-Cavity Mirror, will by a movable reflecting optics
One laser becomes two lasers, can switch output 532nm visible laser and 1064nm infrared laser respectively.
Detailed description of the invention
Fig. 1 is a kind of structural schematic diagram of dual-wavelength laser therapeutic equipment of the present invention;
Fig. 2 is the structural schematic diagram of the green laser output of laser of the present invention;
Fig. 3 is the structural schematic diagram of laser infrared laser output of the present invention;
Fig. 4 is the structural schematic diagram that energy-transmission optic fibre of the present invention directly goes out light;
Fig. 5 is the structural schematic diagram that energy-transmission optic fibre side of the present invention goes out light,
Wherein: 1, laser;2, multimode energy-transmission optic fibre;3, electric power supply control system;4, laser cooling system;5, it rides and opens
It closes;6, power detection device;7, display device;8, rear anti-mirror;9, Q-switch;10, pump cavity;11, the first semi-transparent semi-reflecting lens;12,
Movable reflecting optics;13, the second reflecting mirror;14, frequency-doubling crystal;15, it is totally reflected hysteroscope;16, infrared outgoing mirror;17, second
Semi-transparent semi-reflecting lens;18, the first reflecting mirror;19, fiber coupling device;20, eyeglass is coupled.
Specific embodiment
The application is described further in the following with reference to the drawings and specific embodiments, so that those skilled in the art can be with
It more fully understands the application and can be practiced, but illustrated embodiment is not as the restriction to the application.
It as shown in Figures 2 and 3, is a kind of dual laser 1 described herein, the laser 1 includes pumping system
System, the first semi-transparent semi-reflecting lens 11, movable reflecting optics 12, frequency-doubling crystal 14, total reflection hysteroscope 15, infrared outgoing mirror 16, the
One reflecting mirror 18, the second reflecting mirror 13, the second semi-transparent semi-reflecting lens 17, fiber coupling device 19, the movable reflecting optics
12 have first position and the second position.
As shown in figure 3, when the movable reflecting optics 12 are located at first position, the pumping system generate the
One wavelength light beam successively after the reflection of the first semi-transparent semi-reflecting lens 11 and movable reflecting optics 12, passes through infrared outgoing mirror
16, fiber coupling device 19 is successively reached after the reflection of the first reflecting mirror 18 and the second semi-transparent semi-reflecting lens 17.
As shown in Fig. 2, when the movable reflecting optics 12 are located at the second position, what the pumping system generated
It is anti-by the total reflection hysteroscope 15 that first wave length light beam passes through frequency-doubling crystal 14 after the reflection of the first semi-transparent semi-reflecting lens 11
It penetrates to form second wave length light beam, second wave length light beam passes through the first semi-transparent semi-reflecting lens 11, is reflected by the second reflecting mirror 13, passes through the
Two semi-transparent semi-reflecting lens 17 reach fiber coupling device 19.
First semi-transparent semi-reflecting lens 11 and the second semi-transparent semi-reflecting lens 17 plate 45 degree of 1064nm high-reflecting films and 532nm is anti-reflection
Film can reflect first wave length light beam, transmit second wave length light beam.The first wave length light beam is that wavelength is the red of 1064nm
Outer laser, the second wave length light beam are that wavelength is 532nm visible laser.The pumping system includes that pump cavity 10, Q are opened
Close 9 and rear anti-mirror 8.The movable reflecting optics 12 be mounted on a sliding shoe can be in first position and second
The slidably device slided between position.L-type 532nm laser resonator and Z-type 1064nm laser resonator composition share one
One laser 1 is become two lasers by a movable reflecting optics 12 by pump cavity 10, Q-switch 9 and Effect of Back-Cavity Mirror
1, output 532nm visible laser and 1064nm infrared laser can be switched respectively.First reflecting mirror 18 and the second reflection
Mirror 13 is 45 degree of reflecting mirrors.
The frequency-doubling crystal 14 is lbo crystal or ktp crystal, and shg efficiency is controlled by way of Temperature Matching, temperature
Degree control precision is ± 0.1 degree Celsius.The pump cavity 10 is profile pump, can be continuous semiconductor pumping, can also
To be lamp pumping.Its laser medium can be Nd:YAG, be also possible to Nd:YLF or Nd:YVO4.The diameter of crystal bar from
2mm -10mm, doping concentration is from 0.5%--1.2%, and in order to improve beam quality, crystal can be made two end face concave-concaves
1mCC directly uses bonded crystals, wherein doping length depends on the distribution length of pump light.
The two-way laser shares the adjustment method of a fiber coupling device 19, in the green laser output mode of 532nm
Under, the second reflecting mirror 13 is first adjusted, 532nm laser is adjusted to 19 central location of fiber coupling device, then finely tune fiber coupling
The coupling eyeglass 20 of device 19 inputs the laser of 532nm from the center of optical fiber;Fixed locking 13 He of the second reflecting mirror after mixing up
Eyeglass 20 is coupled, switches to 1064nm output mode, then adjust the first reflecting mirror 18, the laser of 1064nm is adjusted and enters optical fiber
Coupler center, then the second reflecting mirror 13 is finely tuned, it is exported by the laser energy that optical fiber obtains optimal 1064nm.
As shown in Figure 1, being a kind of laser therapeutic apparantus of the application, including laser 1, the confession for powering to laser 1
Electric control system 3, laser cooling system 4, multimode energy-transmission optic fibre 2, power detection for being cooled down to pump cavity 10 and Q-switch 9
Device 6, floor push 5, display device 7.
The laser cooling system 4 is water flow cooling system, including water flow protective switch, the water flow protective switch
For when 1 working condition of laser issues unboiled water stream open circuit, providing signal feedback to electric power supply control system 3.
The signal cut laser 1 that the electric power supply control system 3 is used to be fed back according to water flow protective switch is powered.It is all
Out-put supply is direct current supply, the ultrasound-driven including Q-switch 9, the direct current supply of pump cavity 10, the temperature control of lbo crystal
System, the control etc. of mobile eyeglass.Power supply and control system (3) further include signal processing and the alarm to each sensor, such as water
Detect signal, Current Voltage monitor signals in real time, light energy feedback signal, Coordinated Control Signal, optical fiber sensor temperature letter in road
Number etc..
Laser energy is coupled into the multimode and passes energy light by the coupling eyeglass 20 in the fiber coupling device 19
Fibre 2, the laser 1 further include the temperature sensor for monitoring 19 temperature of fiber coupling device, the temperature
Sensor is spent to be used to send feedback signal to electric power supply control system 3, institute when the temperature of fiber coupling device 19 is more than setting value
The electric power supply control system 3 stated sends out signal deaf according to what the temperature sensor issued, and cutting laser 1 is powered.Described is more
Mould energy-transmission optic fibre 2 is made of step-index multimode quartz energy-transmission optic fibre, core diameter 62.5-1200um, and cladding diameter is
125-1250um.In surgical procedure, laser energy is conducted to human lesion position by optical fiber, is treated, the lesion
Mainly soft tissue disease.
The power that the electric power supply control system 3 is also used to be surveyed when the power detection device 6 is below or above rule
Definite value 20% when, issue alarm.The floor push 5 includes that control first wave length light beam and second wave length light beam are defeated respectively
The foot-operated control switch in left and right two out, the floor push 5 is connect with 3 signal of electric power supply control system, described
Electric power supply control system 3 be used for according to the output signal of the floor push 5 control movable reflecting optics 12 at first
It sets or the second position is mobile.
As shown in Figures 4 and 5, the output end of the multimode energy-transmission optic fibre 2, can be and directly export along shaft axis of optic fibre, can also
To be the lateral output to form an angle with shaft axis of optic fibre.When optical fiber directly exports, optical fiber output end face and axis are at 90 degree
Angle.When optical fiber laterally exports, optical fiber output end face and axis are in angle of 45 degrees.
In one embodiment, the laser 1, output wavelength are 532nm and 1064nm, frequency 10--15KHz
With CW mode, pulsewidth is 100ns -200ns, and maximum average power is respectively 200W and 120W, for human body soft tissue disease
Treatment and hemostasis.
The application method of laser therapeutic apparantus described herein is as follows:
During surgical, a floor push 5 is slammed, therapeutic equipment exports the laser of a wavelength, steps on other one
A floor push 5, signal metering-in control system, control system issue the mobile movable reflecting optics 12 of control signal, are switched to
The laser of another wavelength exports.Two kinds of laser export respectively, can not step on two kinds of two floor push 5 while output simultaneously
The laser of wavelength.Exposed two control switches cover hides, and prevents from malfunctioning.The display device 7 is tangible aobvious
Show.After therapeutic equipment booting, patient needs to be adjusted to the power of needs by adjusting control button in display device 7 according to operation
Size is performed the operation.Display device 7 shows the laser energy of operating time length and accumulative output simultaneously, postoperative convenient for doctor
Analysis.When system is alarmed, 7 display alarm information details of display device, convenient for feedback maintenance after sale.In surgical procedure,
Laser energy is conducted to human lesion position by optical fiber, is treated, the lesion is mainly soft tissue disease.Described
The output end of multimode energy-transmission optic fibre 2 can be before shaft axis of optic fibre to output, be also possible to form an angle with shaft axis of optic fibre
Lateral output.Doctor needs to select the way of output according to actual operation situation.
A kind of dual laser 1 and laser therapeutic apparantus of the application, structure is simple, and the high dual-wavelength laser of stability is controlled
Instrument is treated, the movement by movable reflecting optics 12 in first position and the second position can switch output high-power 532nm's
The near-infrared laser of green laser and 1064nm.532nm laser is cut for soft tissue gasification excision, 1064nm laser for soft tissue
Cut, the hemostasis of big blood vessel and venous sinus is required with meeting operation, become the better solution of operation on soft tissue.532nm laser
Resonant cavity and 1064nm laser resonator share a pumping, Q-switch 9 and Effect of Back-Cavity Mirror, by a movable reflecting optics 12,
One laser 1 is become into two lasers 1, output 532nm visible laser and 1064nm infrared laser can be switched respectively.
Embodiment described above is only the preferred embodiment lifted to absolutely prove the application, the protection model of the application
It encloses without being limited thereto.Those skilled in the art made equivalent substitute or transformation on the basis of the application, in the application
Protection scope within.The protection scope of the application is subject to claims.
Claims (10)
1. a kind of dual laser, which is characterized in that the laser include pumping system, the first semi-transparent semi-reflecting lens, can
Flexible mirror piece, frequency-doubling crystal, total reflection hysteroscope, infrared outgoing mirror, the first reflecting mirror, the second reflecting mirror, second semi-transparent half
Anti- mirror, fiber coupling device,
The movable reflecting optics have first position and the second position,
When the movable reflecting optics are located at first position, the first wave length light beam that the pumping system generates is successively
After the reflection of the first semi-transparent semi-reflecting lens and movable reflecting optics, infrared outgoing mirror is passed through, successively passes through the first reflecting mirror
Fiber coupling device is reached after reflection with the second semi-transparent semi-reflecting lens;
When the movable reflecting optics are located at the second position, the first wave length light beam that the pumping system generates passes through
Frequency-doubling crystal is passed through after the reflection of first semi-transparent semi-reflecting lens, and second wave length light beam is reflected to form by the total reflection hysteroscope, second
Wavelength light beam passes through the first semi-transparent semi-reflecting lens, is reflected by the second reflecting mirror, and the second semi-transparent semi-reflecting lens are passed through, and reaches fiber coupling dress
It sets,
First semi-transparent semi-reflecting lens and the second semi-transparent semi-reflecting lens can reflect first wave length light beam, transmit second wave length light
Beam.
2. laser as described in claim 1, which is characterized in that the first wave length light beam is that wavelength is the red of 1064nm
Outer laser, the second wave length light beam are that wavelength is 532nm visible laser.
3. laser as described in claim 1, which is characterized in that the pumping system includes pump cavity, Q-switch and rear anti-
Mirror.
4. laser as described in claim 1, which is characterized in that the movable reflecting optics are to be mounted on a sliding
The slidably device that can be slided between the first position and the second position on block.
5. a kind of laser therapeutic apparantus, which is characterized in that including laser described in Claims 1 to 4 any one, described swashs
Photo-therapeutic instrument further includes the electric power supply control system for powering to laser.
6. laser therapeutic apparantus as claimed in claim 5, which is characterized in that the laser therapeutic apparantus further includes for pumping
The laser cooling system of chamber and Q-switch cooling.
7. laser therapeutic apparantus as claimed in claim 6, which is characterized in that the laser cooling system is water flow cooling system
System, including water flow protective switch, the water flow protective switch are used for when laser works state issues unboiled water stream open circuit, give
Signal feedback is used for the signal cut fed back according to water flow protective switch to electric power supply control system, the electric power supply control system out
Laser power supply.
8. laser therapeutic apparantus as claimed in claim 6, which is characterized in that the laser therapeutic apparantus further includes that multimode passes energy light
Fibre, laser energy is coupled into the multimode energy-transmission optic fibre by the coupling eyeglass in the fiber coupling device, described
Laser further includes the temperature sensor for monitoring the fiber coupling device temperature, and the temperature sensor is for working as
When the temperature of fiber coupling device is more than setting value, feedback signal is sent to electric power supply control system, the electric power supply control system
Send out signal deaf according to what the temperature sensor issued, cutting laser power supply.
9. laser therapeutic apparantus as claimed in claim 6, which is characterized in that the laser therapeutic apparantus further includes sharp for detecting
The power detection device of light device realtime power, what the electric power supply control system was also used to be surveyed when the power detection device
When power is below or above the 20% of specified value, alarm is issued.
10. laser therapeutic apparantus as claimed in claim 6, which is characterized in that the laser therapeutic apparantus further includes for switching
The floor push of laser output wavelength, the floor push include controlling first wave length light beam and second wave length light beam respectively
The foot-operated control switch in left and right two of output, the floor push is connect with the electric power supply control system signal, described
Electric power supply control system be used for according to the output signal of the floor push control movable reflecting optics in first position or
The second position is mobile.
Priority Applications (3)
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CN201810715657.4A CN109044526B (en) | 2018-07-03 | 2018-07-03 | Dual wavelength laser and laser therapeutic instrument |
GB2014567.8A GB2586364B (en) | 2018-07-03 | 2018-08-06 | Dual-wavelength laser and laser therapeutic apparatus |
PCT/CN2018/098898 WO2020006800A1 (en) | 2018-07-03 | 2018-08-06 | Dual-wavelength laser and laser therapeutic apparatus |
Applications Claiming Priority (1)
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CN201810715657.4A CN109044526B (en) | 2018-07-03 | 2018-07-03 | Dual wavelength laser and laser therapeutic instrument |
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CN109044526A true CN109044526A (en) | 2018-12-21 |
CN109044526B CN109044526B (en) | 2024-05-07 |
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CN201810715657.4A Active CN109044526B (en) | 2018-07-03 | 2018-07-03 | Dual wavelength laser and laser therapeutic instrument |
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CN (1) | CN109044526B (en) |
GB (1) | GB2586364B (en) |
WO (1) | WO2020006800A1 (en) |
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CN109568806A (en) * | 2019-01-23 | 2019-04-05 | 北京特安电源科技有限公司 | Working laser is the multifunctional semi-conductor laser dentistry therapy instrument of dual wavelength |
CN112886387A (en) * | 2021-02-01 | 2021-06-01 | 武汉锐科光纤激光技术股份有限公司 | Light path adjusting structure and light path adjusting system |
CN114632268A (en) * | 2022-03-18 | 2022-06-17 | 温州眼视光国际创新中心 | Two-dimensional adjustable optical double-lens holder |
CN117805970A (en) * | 2024-02-27 | 2024-04-02 | 中国科学院苏州生物医学工程技术研究所 | Light beam integration device |
Families Citing this family (1)
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CN115425509B (en) * | 2022-11-03 | 2023-03-24 | 山东省科学院激光研究所 | Short pulse laser and laser equipment based on V-shaped dynamic stable cavity design |
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Also Published As
Publication number | Publication date |
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GB202014567D0 (en) | 2020-10-28 |
GB2586364A (en) | 2021-02-17 |
WO2020006800A1 (en) | 2020-01-09 |
GB2586364B (en) | 2022-05-04 |
CN109044526B (en) | 2024-05-07 |
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