WO2018024124A1 - 超声装置及产生机械振动的装置 - Google Patents
超声装置及产生机械振动的装置 Download PDFInfo
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- WO2018024124A1 WO2018024124A1 PCT/CN2017/094030 CN2017094030W WO2018024124A1 WO 2018024124 A1 WO2018024124 A1 WO 2018024124A1 CN 2017094030 W CN2017094030 W CN 2017094030W WO 2018024124 A1 WO2018024124 A1 WO 2018024124A1
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- elastic piece
- vibrator
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- vibration generator
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B8/00—Diagnosis using ultrasonic, sonic or infrasonic waves
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B8/00—Diagnosis using ultrasonic, sonic or infrasonic waves
- A61B8/08—Detecting organic movements or changes, e.g. tumours, cysts, swellings
- A61B8/0833—Detecting organic movements or changes, e.g. tumours, cysts, swellings involving detecting or locating foreign bodies or organic structures
- A61B8/085—Detecting organic movements or changes, e.g. tumours, cysts, swellings involving detecting or locating foreign bodies or organic structures for locating body or organic structures, e.g. tumours, calculi, blood vessels, nodules
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B8/00—Diagnosis using ultrasonic, sonic or infrasonic waves
- A61B8/42—Details of probe positioning or probe attachment to the patient
- A61B8/4272—Details of probe positioning or probe attachment to the patient involving the acoustic interface between the transducer and the tissue
- A61B8/429—Details of probe positioning or probe attachment to the patient involving the acoustic interface between the transducer and the tissue characterised by determining or monitoring the contact between the transducer and the tissue
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B8/00—Diagnosis using ultrasonic, sonic or infrasonic waves
- A61B8/44—Constructional features of the ultrasonic, sonic or infrasonic diagnostic device
- A61B8/4483—Constructional features of the ultrasonic, sonic or infrasonic diagnostic device characterised by features of the ultrasound transducer
- A61B8/4494—Constructional features of the ultrasonic, sonic or infrasonic diagnostic device characterised by features of the ultrasound transducer characterised by the arrangement of the transducer elements
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B8/00—Diagnosis using ultrasonic, sonic or infrasonic waves
- A61B8/48—Diagnostic techniques
- A61B8/485—Diagnostic techniques involving measuring strain or elastic properties
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B06—GENERATING OR TRANSMITTING MECHANICAL VIBRATIONS IN GENERAL
- B06B—METHODS OR APPARATUS FOR GENERATING OR TRANSMITTING MECHANICAL VIBRATIONS OF INFRASONIC, SONIC, OR ULTRASONIC FREQUENCY, e.g. FOR PERFORMING MECHANICAL WORK IN GENERAL
- B06B1/00—Methods or apparatus for generating mechanical vibrations of infrasonic, sonic, or ultrasonic frequency
Definitions
- the present invention relates to the field of organ detection technologies, and in particular, to an ultrasonic device and a device for generating mechanical vibration.
- Each organ of the human or animal body has a certain elasticity. If an organ has fibrotic lesions, its elasticity value will change, and the degree of elasticity corresponding to different degrees of fibrosis will be different. Therefore, by detecting the elasticity value of the organ, Therefore, the specific degree of organ fibrosis is diagnosed and symptomatic treatment is performed.
- the prior art detects the elasticity value of the human or animal body organs by taking out the living tissue of the organ by surgical operation, and then performing elastic detection on the taken living tissue, and performing treatment according to the detection result.
- the entire process of taking a living body takes a long time, and it causes wounds on the human or animal body, which inevitably increases the suffering of humans or animals. Therefore, the prior art lacks a means of detecting organ elasticity that is safe and harmless to the human or animal body.
- the invention provides an ultrasonic device and a device for generating mechanical vibration, so as to realize the purpose of detecting organ elasticity without surgical operation.
- an ultrasonic device provided by the present invention includes an ultrasonic probe and a device for generating mechanical vibration, the device for generating mechanical vibration comprising a vibration generator, a damping component and a pressure component;
- the damper assembly is fixed between the vibration generator and the pressure component, and the ultrasonic probe is connected to the pressure component; the vibration generator is configured to detect a pressure value obtained by the pressure component to reach a preset range Vibration occurs.
- the damper assembly includes: a cylindrical bracket with an upper and lower opening, an upper elastic piece, a lower elastic piece, and a connecting rod;
- a lower surface of the upper elastic piece is connected to an upper end of the cylindrical bracket, and an upper surface of the upper elastic piece is connected to the pressure component;
- An upper surface of the lower elastic piece is connected to a lower end of the cylindrical bracket, and a lower surface of the lower elastic piece is connected to the vibration generator;
- the connecting rod is disposed inside the cylindrical bracket and extends along a direction of a force of the vibration generator, and two ends of the connecting rod are respectively fixed to a lower surface of the upper elastic piece and an upper surface of the lower elastic piece connection.
- the cylindrical bracket is an elastic material.
- the upper elastic piece and the lower elastic piece are rubber materials or plastics.
- the vibration generator includes:
- a vibration bracket a first vibrator and a second vibrator
- the vibrating bracket is a concave structure, and the notched arms of the concave structure are engaged with the side walls of the cylindrical bracket;
- the second vibrator is received and fixed at the bottom of the concave structure, and the second vibrator is provided with a sliding slot facing the lower elastic piece, and the extending direction of the sliding slot and the extension of the connecting rod The same direction;
- the first vibrator is received at the top of the concave structure, and the first vibrator faces the lower surface of the chute with a sliding bar, and the upper surface of the first vibrator and the lower surface of the lower elastic piece Fixed connection
- the sliding rod of the first vibrator is slidably disposed in the sliding slot of the second vibrator, so that the first vibrator slides up and down under the action of an external force.
- the sliding slot is two sliding slots symmetrically disposed on the second vibrator.
- the sliding bar is two sliding bars that cooperate with the sliding slot.
- the pressure component comprises: a pressure sensor and a sensor bracket;
- the sensor bracket is fixed at one end of the damper assembly, the pressure sensor is fixed on the sensor bracket, and the other end of the damper assembly is connected to the vibration generator.
- the sensor holder is provided with a fixing groove, and the pressure sensor is embedded in the fixing groove and protrudes from the opening plane of the fixing groove.
- the predetermined range of pressure values is 3.7N to 4.1N.
- the ultrasonic device provided by the invention is provided by connecting an ultrasonic probe and connecting with the ultrasonic probe
- the device for generating mechanical vibration is arranged as a vibration generator, a damping component and a pressure component connected in series, and the ultrasonic probe is connected with the pressure component.
- the ultrasonic probe is in contact with the skin surface corresponding to the organ to be detected, and downward pressure is applied to the skin surface.
- the pressure value detected by the pressure component reaches a preset range, an electrical signal is sent to the vibration through the external electrical signal output device.
- the damping component In order to cause the vibration generator to vibrate and drive the damping component to deform, the damping component is deformed and then reset under its own elastic force to generate a certain mechanical vibration, so that when the elasticity of the human body or animal body is detected, the device is used.
- the device can generate a certain mechanical vibration outside the organ to be tested, that is, mechanical vibration is generated outside the human body or the animal body, and does not cause any damage or injury to the human body or the animal body.
- the ultrasonic probe transmits ultrasonic waves to the organ to be tested of the human body or the animal body.
- the vibration of the device that generates the mechanical vibration is generated by the ultrasonic wave.
- the wave velocity value of the mechanical wave, the elastic value of the organ to be tested is calculated by the wave velocity value, thereby judging the degree of fibrosis of the organ to be tested, thereby realizing the purpose of performing organ elasticity detection on the surface of the human or animal skin, and overcoming The prior art requires a surgical knife to detect defects, and the entire testing process is very fast and convenient.
- the vibration generator is performed under the condition that the pressure value detected by the pressure component reaches a preset range, and the elastic reset of the damping component, the frequency of the mechanical vibration wave generated by the device is stable, and the accuracy of the elastic detection result is obtained. A guarantee is provided.
- the invention provides a device for generating mechanical vibration, comprising a vibration generator, a damping component and a pressure component;
- the damper assembly is fixed between the vibration generator and the pressure component; the vibration generator is configured to vibrate when a pressure value detected by the pressure component reaches a preset range.
- the device for generating mechanical vibration provides a vibration signal, a damping component and a pressure component connected in sequence, and when the pressure value detected by the pressure component reaches a preset range, an electrical signal is sent through the external electrical signal output device to
- the vibration generator is used to vibrate the vibration generator, and the damping component is deformed. After the deformation of the damping component is deformed, it is reset under the action of its own elastic force to generate a certain mechanical vibration, thereby detecting the elasticity of the human body or the animal body.
- a certain mechanical vibration can be generated outside the organ to be tested, that is, mechanical vibration is generated outside the human body or the animal body, without causing any damage or injury to the human body or the animal body, so that It is very convenient to use; and since the vibration generator is carried out under the condition that the pressure value detected by the pressure component reaches a preset range, and the elastic reset of the damping component, the frequency of the mechanical vibration wave generated by the device is stable, and the elastic detection is The accuracy of the results provides a guarantee.
- FIG. 1 is a schematic structural view of an apparatus for generating mechanical vibration in an ultrasonic device according to an embodiment of the present invention
- Figure 2 is a schematic cross-sectional view showing the apparatus for generating mechanical vibration of Figure 1 in an initial state
- Fig. 3 is a schematic cross-sectional view showing the instantaneous vibration of the apparatus for generating mechanical vibration of Fig. 1.
- Embodiment 1 is a diagrammatic representation of Embodiment 1:
- FIG. 1 is a schematic structural diagram of an apparatus for generating mechanical vibration in an ultrasonic device according to an embodiment of the present invention.
- Fig. 2 is a schematic cross-sectional view showing the apparatus for generating mechanical vibration of Fig. 1 in an initial state.
- Fig. 3 is a schematic cross-sectional view showing the instantaneous vibration of the apparatus for generating mechanical vibration of Fig. 1.
- the present embodiment provides an ultrasonic device including an ultrasonic probe (not shown) and a device for generating mechanical vibration.
- the device for generating mechanical vibration includes a vibration generator 1, a damper assembly 2, and a pressure assembly 3.
- the damping component 2 is fixed between the vibration generator 1 and the pressure component 3, and the ultrasonic probe is connected to the pressure component 3.
- the vibration generator 1 is used to generate vibration when the pressure value detected by the pressure component 3 reaches a preset range.
- the ultrasonic probe of the ultrasonic device is contacted with the surface of the skin corresponding to the position of the body or the animal body to be tested, and downward pressure is applied to the surface of the skin.
- the external electric signal output device sends an electric signal to the vibration generator 1 to cause the vibration generator 1 to vibrate, and the vibration generator 1 drives the damper assembly 2 to deform.
- the damper assembly 2 is reset under the action of its own elastic force, and a certain Mechanical vibration, that is, mechanical vibration generated outside the organ to be detected.
- a certain Mechanical vibration that is, mechanical vibration generated outside the organ to be detected.
- the wave velocity value of the mechanical wave is detected by the ultrasonic wave.
- the wave velocity value calculates the elasticity value of the organ to be detected, and determines the degree of fibrosis of the organ to be detected based on the elasticity value.
- the pressure value required to measure the elasticity of the organ in the human or animal body is different, only when the pressure applied to an organ is in the corresponding pressure of the organ.
- the test results are accurate when the value is within the range. Therefore, for different organs to be tested, it is necessary to preset a range of pressure values required for the organ, and the pressure component applied to the organ to be tested is detected by the pressure component 3 to ensure that the pressure value applied to the organ is set. Within the scope, thus ensuring the accuracy of the test results.
- the preset range of the pressure value is 3.7N to 4.1N. For example, when the pressure value detected by the pressure component 3 is 3.9N, the vibration generator 1 vibrates.
- the preset range of pressure values can be set according to different organs.
- the ultrasonic vibration probe and the device for generating mechanical vibration connected to the ultrasonic probe are arranged, and the device for generating mechanical vibration is set as a vibration generator, a damping component and a pressure component which are sequentially connected, and the ultrasonic probe and the pressure are applied.
- Component connection When detecting, the ultrasonic probe is in contact with the skin surface corresponding to the organ to be detected, and downward pressure is applied to the skin surface.
- the pressure value detected by the pressure component reaches a preset range, an electrical signal is sent to the vibration through the external electrical signal output device.
- the damping component In order to cause the vibration generator to vibrate and drive the damping component to deform, the damping component is deformed and then reset under its own elastic force to generate a certain mechanical vibration, so that when the elasticity of the human body or animal body is detected, the device is used.
- the device can generate a certain mechanical vibration outside the organ to be tested, that is, mechanical vibration is generated outside the human body or the animal body, and does not cause any damage or injury to the human body or the animal body.
- the ultrasonic probe transmits ultrasonic waves to the organ to be tested of the human body or the animal body.
- the vibration of the device that generates the mechanical vibration is generated by the ultrasonic wave.
- the wave velocity value of the mechanical wave, the elastic value of the organ to be tested is calculated by the wave velocity value, thereby judging the degree of fibrosis of the organ to be tested, thereby realizing the purpose of performing organ elasticity detection on the surface of the human or animal skin, and overcoming The prior art requires a surgical knife to detect defects, and the entire testing process is very fast and convenient.
- the vibration generator is performed under the condition that the pressure value detected by the pressure component reaches a preset range, and the elastic reset of the damping component, the frequency of the mechanical vibration wave generated by the device is stable, and the accuracy of the elastic detection result is obtained. A guarantee is provided.
- the damper assembly 2 includes: a cylindrical bracket 21 that is open at the top and bottom, an upper elastic piece 22, a lower elastic piece 23, and a connecting rod (not shown).
- the lower surface of the upper elastic piece 22 is connected to the upper end of the cylindrical holder 21, and the upper surface of the upper elastic piece 22 is connected to the pressure unit 3.
- the upper surface of the lower elastic piece 23 is connected to the lower end of the cylindrical holder 21, and the lower surface of the lower elastic piece 23 is connected to the vibration generator 1.
- a connecting rod (not shown) is disposed inside the cylindrical bracket 21 and extends in the direction of the force of the vibration generator 1, and both ends of the connecting rod are fixedly connected to the lower surface of the upper elastic piece 22 and the upper surface of the lower elastic piece 23, respectively.
- the cylindrical bracket 21 can be made of an elastic material
- the upper elastic piece 22 and the lower elastic piece 23 can be made of rubber or plastic.
- the vibration generator 1 specifically includes a vibration bracket 11 , a first vibrator 12 , and a second vibrator 13 .
- the vibrating bracket 11 has a concave structure, and the notched arms of the concave structure are engaged with the side walls of the cylindrical bracket 21.
- the second vibrator 13 is received and fixed on the bottom of the concave structure, and the second vibrator 13 is provided with a sliding slot 131 facing the lower elastic piece 23, and the extending direction of the sliding slot 131 and the extension of the connecting rod (not shown) The same direction.
- the first vibrator 12 is received at the top of the concave structure, and the lower surface of the first vibrator 12 facing the chute 131 is provided with a slide bar 121, and the upper surface of the first vibrator 12 is fixedly coupled to the lower surface of the lower elastic piece 23.
- the slide bar 121 of the first vibrator 12 is disposed in the chute 131 of the second vibrator 13 so that the first vibrator 12 slides up and down under the action of an external force.
- the first vibrator 12 is connected to an external electrical signal output device, and the electrical signal output device outputs an electrical signal, so that the first vibrator 12 can slide upward along the chute 131, where the upward direction refers to the damper assembly 2 direction.
- the sliding slot 131 is two sliding slots 131 symmetrically disposed on the second vibrator 13
- the sliding bar 121 is two sliding bars that cooperate with the sliding slot 131
- the chute and the slide bar are set to two.
- the specific number of the chute and the slide bar is not limited, and the specific number thereof can be set according to actual use requirements.
- the first vibrator 12 and the second vibrator 13 in this embodiment may be a motor or other components capable of generating vibration, which is not limited by the present invention.
- the pressure component 3 specifically includes a sensor bracket 31 and a pressure sensor 32.
- the sensor bracket 31 is fixed at one end of the damper assembly 2
- the pressure sensor 32 is fixed on the sensor bracket 31, and the other end of the damper assembly 2 is connected to the vibration generator 1.
- a fixing groove 311 is disposed on the sensor bracket 31, and the pressure sensor 32 is embedded in the fixing groove 311, and the top of the pressure sensor 32 protrudes from the opening plane of the fixing groove 311. It is also possible to provide a boss 312 on the lower surface of the sensor holder 31, and the upper elastic piece 22 may be provided in an annular structure, and the boss 312 may penetrate into the annular center of the upper elastic piece 22 to match the engagement.
- the ultrasonic device of the present embodiment is further described below by a specific process of detecting the elasticity of the organ of the human or animal body:
- An ultrasonic probe is mounted on the front end of the pressure sensor 32, and the ultrasonic probe contacts the skin surface of the human body or the animal body to be detected at a position corresponding to the organ.
- the device is then subjected to downward pressure by the device of the present embodiment, and the pressure sensor 32 detects the specific action on the skin surface.
- a pressure value when the pressure value reaches a preset range, an electrical signal is sent to the vibration generator 1 through the external electrical signal output device, so that the first vibrator 12 and the second vibrator 13 of the vibration generator generate a misaligned movement, specifically
- the external electrical signal output device is electrically connected to the first vibrator 12. When the first vibrator 12 receives the electrical signal, the first vibrator 12 moves upward along the chute 131.
- the first The vibrator 12 is moved upward to give an upward force to the lower elastic piece 23, so that the lower elastic piece 23 is deformed, that is, the lower elastic piece 23 is bent toward the pressure sensor, and at the same time, the two ends of the connecting rod are fixedly connected to the upper elastic piece 22 and the lower side, respectively.
- the connecting rod drives the upper elastic piece 22 to deform under the upward force of the lower elastic piece 23, so that the pressure sensor 32 and the ultrasonic probe in contact with the skin press down the skin due to the elastic force of the upper elastic piece 22 and the lower elastic piece 23 itself.
- the upper elastic piece 22 and the lower elastic piece 23 are reset by their own elastic force, that is, the upper elastic piece 22 and the lower elastic piece 23 are moved downward, that is, the sliding bar of the first vibrator 12 is along the second vibration.
- the chute 13 is moved downward until the lower elastic piece 22 and elastic piece 23 returns to the initial state. Thereby, a certain mechanical vibration is generated outside the organ to be tested, and a mechanical wave of a certain frequency is generated.
- the ultrasonic probe emits ultrasonic waves to the organ of the human body or the animal body.
- the ultrasonic wave Since the ultrasonic wave propagates far faster than the mechanical wave, the ultrasonic wave detects the wave velocity value of the mechanical wave generated by the ultrasonic wave, and calculates the elastic value of the organ according to the wave velocity value of the mechanical wave, thereby Determine the degree of fibrosis of the organ in the human body and animal body. Moreover, the first vibrator vibrates under the condition that the pressure value detected by the pressure sensor reaches a preset range, and the mechanical wave generated on the organ to be tested is a mechanical wave of a stable frequency due to the elastic reset function of the upper and lower shrapnel itself, and the mechanical wave The waveform is more accurate and guarantees the accuracy of the elastic test results.
- Embodiment 2 is a diagrammatic representation of Embodiment 1:
- This embodiment provides a device for generating mechanical vibration, including a vibration generator 1, a damping assembly 2, and a pressure assembly 3.
- the damper assembly 2 is fixed between the vibration generator 1 and the pressure assembly 3, and the vibration generator 1 is used to vibrate when the pressure value detected by the pressure assembly 3 reaches a preset range.
- the device for generating mechanical vibration provided by the embodiment is the same as the device for generating mechanical vibration in the ultrasonic device provided in the first embodiment, and the same technical effects can be achieved, and will not be further described herein.
- the device for generating mechanical vibration of the embodiment has a pressure value detected by the pressure component reaching a preset range by providing a vibration generator, a damping component, and a pressure component connected in sequence.
- the vibration generator vibrates and drives the damping component to deform. After the damping component is deformed, it is reset under its own elastic force to generate a certain mechanical vibration. Therefore, when the elasticity of the human body or animal body is detected, the device can be used to generate a certain mechanical vibration outside the organ to be tested.
- a certain mechanical vibration can be generated outside the body to be tested of the human or animal body, without causing any damage or injury to the human body or the animal body, and the use is very convenient;
- the generator is carried out under the condition that the pressure value detected by the pressure component reaches a preset range, and the frequency of the mechanical vibration wave generated by the device is stabilized by the elastic reset of the damping component, thereby ensuring the accuracy of the elastic detection result.
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Abstract
Description
Claims (10)
- 一种超声装置,其特征在于,包括超声波探头和产生机械振动的装置,所述产生机械振动的装置包括振动发生器、阻尼组件和压力组件;所述阻尼组件固定在所述振动发生器与所述压力组件之间,所述超声波探头与所述压力组件连接;所述振动发生器用于在所述压力组件检测得到的压力值达到预设范围时发生振动。
- 根据权利要求1所述的超声装置,其特征在于,所述阻尼组件包括:上下开口的筒状支架、上弹片、下弹片以及连杆;所述上弹片的下表面与所述筒状支架的上端连接,且所述上弹片的上表面与所述压力组件连接;所述下弹片的上表面与所述筒状支架的下端连接,且所述下弹片的下表面与所述振动发生器连接;所述连杆设置在所述筒状支架内部并沿所述振动发生器的作用力方向延伸,所述连杆的两端分别与所述上弹片的下表面以及所述下弹片的上表面固定连接。
- 根据权利要求2所述的超声装置,其特征在于,所述筒状支架为弹性材料。
- 根据权利要求2所述的超声装置,其特征在于,所述上弹片和下弹片为橡胶材料或者塑料。
- 根据权利要求2~4中任一项所述的超声装置,其特征在于,所述振动发生器,包括:振动支架、第一振子和第二振子;所述振动支架为凹形结构,所述凹形结构的槽口两臂与所述筒状支架的侧壁接合;所述第二振子容纳固定在所述凹形结构的底部,且所述第二振子上设有面向所述下弹片开设的滑槽,且所述滑槽的延伸方向与所述连杆的延伸方向相同;所述第一振子容纳在所述凹形结构的顶部,且所述第一振子面向所述滑槽的下表面设有滑杆,所述第一振子的上表面与所述下弹片的下表 面固定连接;所述第一振子的滑杆滑设在所述第二振子的滑槽中,以便所述第一振子在外力作用下上下滑动。
- 根据权利要求5所述的超声装置,其特征在于,所述滑槽为对称设置在所述第二振子上的两个滑槽,相应的,所述滑杆为与所述滑槽相配合的两个滑杆。
- 根据权利要求1~4中任一项所述的超声装置,其特征在于,所述压力组件包括:压力传感器和传感器支架;所述传感器支架固定在所述阻尼组件的一端,所述压力传感器固定在所述传感器支架上,所述阻尼组件的另一端与所述振动发生器连接。
- 根据权利要求7所述的超声装置,其特征在于,所述传感器支架上设有固定凹槽,所述压力传感器嵌设在所述固定凹槽中且突出于所述固定凹槽的开口平面。
- 根据权利要求1~4中任一项所述的超声装置,其特征在于,所述压力值的预设范围为3.7N~4.1N。
- 一种产生机械振动的装置,其特征在于,包括振动发生器、阻尼组件和压力组件;所述阻尼组件固定在所述振动发生器与所述压力组件之间;所述振动发生器用于在所述压力组件检测得到的压力值达到预设范围时发生振动。
Priority Applications (11)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
AU2017305286A AU2017305286B2 (en) | 2016-08-04 | 2017-07-24 | Ultrasonic device and device for generating mechanical vibration |
EP17836306.5A EP3415094B1 (en) | 2016-08-04 | 2017-07-24 | Ultrasonic device and device for generating mechanical vibration |
RU2019105737A RU2717205C1 (ru) | 2016-08-04 | 2017-07-24 | Ультразвуковое устройство и устройство для генерации механических колебаний |
JP2018555542A JP6737898B2 (ja) | 2016-08-04 | 2017-07-24 | 超音波装置及び機械的振動発生装置 |
ES17836306T ES2927190T3 (es) | 2016-08-04 | 2017-07-24 | Dispositivo ultrasónico y dispositivo para generar vibraciones mecánicas |
MX2018011737A MX2018011737A (es) | 2016-08-04 | 2017-07-24 | Dispositivo ultrasonico y dispositivo para generar vibraciones mecanicas. |
CA3016581A CA3016581C (en) | 2016-08-04 | 2017-07-24 | Ultrasonic device and device for generating mechanical vibration |
KR1020197006355A KR102235743B1 (ko) | 2016-08-04 | 2017-07-24 | 초음파 장치 및 기계적 진동 생성 장치 |
BR112018072304-5A BR112018072304B1 (pt) | 2016-08-04 | 2017-07-24 | Dispositivo ultrassônico |
US16/120,180 US11090028B2 (en) | 2016-08-04 | 2018-08-31 | Ultrasonic device and device for generating mechanical vibration |
ZA2018/05986A ZA201805986B (en) | 2016-08-04 | 2018-09-06 | Ultrasonic device and device for generating mechanical vibration |
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
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CN201610634360.6 | 2016-08-04 | ||
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CN106264605B (zh) | 2016-08-04 | 2020-10-09 | 无锡海斯凯尔医学技术有限公司 | 超声装置及产生机械振动的装置 |
ES2833934T3 (es) | 2017-03-27 | 2021-06-16 | Echosens | Dispositivo y procedimiento para medir las propiedades viscoelásticas de un medio viscoelástico |
CN109318585B (zh) * | 2018-11-06 | 2021-01-29 | 常德金鹏印务有限公司 | 一种手持式油墨粘度控制器 |
CN110329308B (zh) * | 2019-06-20 | 2022-06-21 | 北京全路通信信号研究设计院集团有限公司 | 一种轨道断裂检查方法及系统 |
CN113939232B (zh) * | 2020-05-14 | 2024-06-28 | 深圳迈瑞生物医疗电子股份有限公司 | 一种超声成像设备及方法 |
CN111973226B (zh) * | 2020-09-14 | 2024-07-12 | 西安交通大学医学院第一附属医院 | 一种超声探头的压力检测器、压力检测方法及装置 |
WO2024147878A1 (en) * | 2023-01-03 | 2024-07-11 | Leadermed Group Us Corporation | Ultrasound fat cavitation equipment and method of using the same |
Citations (7)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN201408181Y (zh) * | 2009-03-26 | 2010-02-17 | 天津市电力公司 | 具有圆拱形楔块的压力管道弯头超声波探头 |
DE102009022187A1 (de) * | 2009-05-20 | 2010-11-25 | Valeo Schalter Und Sensoren Gmbh | Ultraschallsensor und/oder Ultraschallwandler in einem geschlossenen Gehäuse und ein Herstellungsverfahren |
CN103006267A (zh) * | 2012-12-28 | 2013-04-03 | 汕头市超声仪器研究所有限公司 | 用于弹性成像的机械式压力感应超声探头 |
CN103720490A (zh) * | 2013-12-31 | 2014-04-16 | 无锡海斯凯尔医学技术有限公司 | 一种瞬时弹性检测装置 |
CN105395218A (zh) * | 2015-11-10 | 2016-03-16 | 中国科学院声学研究所 | 超声弹性成像系统及方法 |
CN106264605A (zh) * | 2016-08-04 | 2017-01-04 | 无锡海斯凯尔医学技术有限公司 | 超声装置及产生机械振动的装置 |
CN206303913U (zh) * | 2016-08-04 | 2017-07-07 | 无锡海斯凯尔医学技术有限公司 | 超声装置及产生机械振动的装置 |
Family Cites Families (23)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
YU47190B (sh) * | 1988-02-19 | 1995-01-31 | Institut Za Opštu I Fizičku Hemiju | Uredjaj za neinvazivno akustičko ispitivanje elastičnosti mekih bioloških materijala |
GB2232487B (en) | 1989-06-09 | 1993-08-04 | Shimizu Construction Co Ltd | Ultrasonic measuring apparatus including a high-damping probe |
IL116784A (en) * | 1996-01-16 | 2000-01-31 | Hadasit Med Res Service | Device for examining viscoelasticity of a living or artificial tissue |
JP4189840B2 (ja) * | 2003-10-20 | 2008-12-03 | 独立行政法人産業技術総合研究所 | 超音波を利用した軟組織の粘弾性推定装置およびプログラム |
US8454518B2 (en) * | 2006-01-31 | 2013-06-04 | Panasonic Corporation | Ultrasonic probe |
JP4981023B2 (ja) * | 2006-03-02 | 2012-07-18 | 株式会社日立メディコ | 自動圧迫装置及び同装置を用いた超音波診断装置 |
JP4283858B2 (ja) * | 2007-03-29 | 2009-06-24 | 東海ゴム工業株式会社 | 防振マウント組立体 |
KR20100055677A (ko) * | 2008-11-18 | 2010-05-27 | 주식회사 메디슨 | 접촉식 물질 특성 측정 장치 |
WO2010143555A1 (ja) * | 2009-06-11 | 2010-12-16 | 株式会社 日立メディコ | 加振ユニット、超音波探触子、及び超音波診断装置 |
CN101699280B (zh) | 2009-10-15 | 2011-08-17 | 北京索瑞特医学技术有限公司 | 超声无损检测粘弹性介质弹性的方法及其装置 |
US9456800B2 (en) * | 2009-12-18 | 2016-10-04 | Massachusetts Institute Of Technology | Ultrasound scanning system |
CN101869490B (zh) * | 2010-06-01 | 2011-11-30 | 深圳市一体医疗科技股份有限公司 | 一种振荡装置及应用该振荡装置的检测系统 |
KR20120068613A (ko) * | 2010-12-17 | 2012-06-27 | 삼성전기주식회사 | 압전 액추에이터 |
US20120316407A1 (en) | 2011-06-12 | 2012-12-13 | Anthony Brian W | Sonographer fatigue monitoring |
US9615815B2 (en) * | 2012-09-28 | 2017-04-11 | Clemson University Research Foundation | Devices that cooperate with ultrasound probes for muscoskeletal evaluations and related systems and methods |
CN203000987U (zh) * | 2012-12-28 | 2013-06-19 | 汕头市超声仪器研究所有限公司 | 用于弹性成像的压力感应超声探头 |
CN103006268B (zh) * | 2012-12-28 | 2014-06-04 | 汕头市超声仪器研究所有限公司 | 用于弹性成像的电机式自动超声探头 |
KR101561681B1 (ko) * | 2013-10-17 | 2015-10-22 | 알피니언메디칼시스템 주식회사 | 진동 발생 기능을 갖는 초음파 프로브 및 이를 포함하는 초음파 진단장치 |
CN105640593B (zh) * | 2014-11-18 | 2019-05-28 | 爱科森股份有限公司 | 一种用于测量粘弹性介质的弹性测量装置 |
CN204439256U (zh) * | 2015-03-02 | 2015-07-01 | 西安科技大学 | 一种地下工程物理相似模拟实验用锚杆测力计 |
CN204439255U (zh) * | 2015-03-23 | 2015-07-01 | 南通昌荣机电有限公司 | 一种带有弹性件的补偿式振弦传感器 |
CN105067180B (zh) * | 2015-08-04 | 2018-01-12 | 深圳市仕浦电气有限公司 | 用于注射泵阻塞压力的检测装置及方法 |
WO2019133888A2 (en) | 2017-12-28 | 2019-07-04 | Massachusetts Intitute Of Technology | Ultrasound scanning system |
-
2016
- 2016-08-04 CN CN201610634360.6A patent/CN106264605B/zh active Active
-
2017
- 2017-07-24 AU AU2017305286A patent/AU2017305286B2/en active Active
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-
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Patent Citations (7)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN201408181Y (zh) * | 2009-03-26 | 2010-02-17 | 天津市电力公司 | 具有圆拱形楔块的压力管道弯头超声波探头 |
DE102009022187A1 (de) * | 2009-05-20 | 2010-11-25 | Valeo Schalter Und Sensoren Gmbh | Ultraschallsensor und/oder Ultraschallwandler in einem geschlossenen Gehäuse und ein Herstellungsverfahren |
CN103006267A (zh) * | 2012-12-28 | 2013-04-03 | 汕头市超声仪器研究所有限公司 | 用于弹性成像的机械式压力感应超声探头 |
CN103720490A (zh) * | 2013-12-31 | 2014-04-16 | 无锡海斯凯尔医学技术有限公司 | 一种瞬时弹性检测装置 |
CN105395218A (zh) * | 2015-11-10 | 2016-03-16 | 中国科学院声学研究所 | 超声弹性成像系统及方法 |
CN106264605A (zh) * | 2016-08-04 | 2017-01-04 | 无锡海斯凯尔医学技术有限公司 | 超声装置及产生机械振动的装置 |
CN206303913U (zh) * | 2016-08-04 | 2017-07-07 | 无锡海斯凯尔医学技术有限公司 | 超声装置及产生机械振动的装置 |
Non-Patent Citations (1)
Title |
---|
See also references of EP3415094A4 * |
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AU2017305286B2 (en) | 2019-08-29 |
CN106264605A (zh) | 2017-01-04 |
ZA201805986B (en) | 2021-08-25 |
CN106264605B (zh) | 2020-10-09 |
CA3016581C (en) | 2021-03-23 |
RU2717205C1 (ru) | 2020-03-18 |
AU2017305286A1 (en) | 2018-09-27 |
MX2018011737A (es) | 2019-01-10 |
EP3415094B1 (en) | 2022-09-07 |
EP3415094A1 (en) | 2018-12-19 |
BR112018072304A2 (pt) | 2019-02-12 |
CA3016581A1 (en) | 2018-02-08 |
JP6737898B2 (ja) | 2020-08-12 |
JP2019513502A (ja) | 2019-05-30 |
KR20190033611A (ko) | 2019-03-29 |
US20180368808A1 (en) | 2018-12-27 |
US11090028B2 (en) | 2021-08-17 |
KR102235743B1 (ko) | 2021-04-01 |
ES2927190T3 (es) | 2022-11-03 |
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