WO2016145605A1 - Portable smart doppler ultrasound dynamic real-time monitoring device - Google Patents

Portable smart doppler ultrasound dynamic real-time monitoring device Download PDF

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Publication number
WO2016145605A1
WO2016145605A1 PCT/CN2015/074346 CN2015074346W WO2016145605A1 WO 2016145605 A1 WO2016145605 A1 WO 2016145605A1 CN 2015074346 W CN2015074346 W CN 2015074346W WO 2016145605 A1 WO2016145605 A1 WO 2016145605A1
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Prior art keywords
host
real
time
probe
monitoring device
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PCT/CN2015/074346
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French (fr)
Chinese (zh)
Inventor
王忠堂
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王忠堂
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Priority to PCT/CN2015/074346 priority Critical patent/WO2016145605A1/en
Publication of WO2016145605A1 publication Critical patent/WO2016145605A1/en

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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B8/00Diagnosis using ultrasonic, sonic or infrasonic waves
    • A61B8/13Tomography
    • A61B8/14Echo-tomography

Definitions

  • the invention relates to a monitoring device, in particular to a portable intelligent ultrasound Doppler dynamic real-time monitoring device.
  • Hyaluronic acid or autologous fat filling is widely used in medical beauty, and the filling anatomical level of fillers such as hyaluronic acid or autologous fat affects the final cosmetic effect. If the filler is mistakenly inserted into the blood vessel, it will lead to blood vessel embolism, local tissue necrosis, blindness or nerve damage. Therefore, the operation of cosmetic surgery requires high accuracy for the doctor. If a portable detection device is used to provide the injection needle and the local anatomical level and adjacent blood vessel information in real time, the accuracy of the operation will be realized.
  • the object of the present invention is to provide a portable intelligent ultrasound Doppler dynamic real-time monitoring device, which can reduce misdiagnosis or missed diagnosis, improve diagnosis accuracy, and facilitate operation of the operator, and avoid repeated rotation of the head between the detection, the puncture site and the display.
  • the resulting fatigue is uncomfortable and saves time.
  • the solution of the present invention is:
  • a portable intelligent ultrasonic Doppler dynamic real-time monitoring device comprising a host, a finger-type miniature ultrasonic Doppler probe connected to the host through an electric optical cable, and a glasses-type information receiving/holographic image processing/voice command input/ Display device.
  • the host includes an acoustic wave transmitting/receiving system, a data storage processing system, and a wireless communication transmission system.
  • the monitoring device of the invention allows the operator to wear the finger-set micro-ultrasonic Doppler probe on the pointing finger, and move the contact surface to achieve more flexible and accurate arrival of the predetermined area, detecting the depth, the organ, the catheter or the probe.
  • Needle, injection, blood flow image, probe detection information is processed by the host, image information is transmitted wirelessly, transmitted to the receiving end, allowing others to participate in analysis and diagnosis in real time, reducing misdiagnosis or missed diagnosis, improving diagnostic accuracy, and quickly publishing diagnostic reports;
  • the glasses-type display device receives and dynamically displays the processed monitoring image in real time, and the operator's eyes focus on the detecting or puncture site, and according to the real-time moving image, the detection or puncture depth and plane are adjusted to avoid the head being repeatedly detected between the detecting portion and the puncture site and the display.
  • the fatigue caused by the rotation is uncomfortable and saves time.
  • the device hardly affects the habit of detecting, puncture and injection operation.
  • the puncture needle and the injecting layer are clearly displayed, which helps the puncture, injection and filling to the ideal part and anatomical level, and timely discovers and avoids operation errors, avoids concurrent vascular embolism and the like. disease.
  • Figure 1 is a schematic view of the structure of the present invention
  • FIG. 2 is a block diagram showing the working principle of the host of the present invention.
  • the present invention discloses a portable intelligent ultrasonic Doppler dynamic real-time monitoring device, which comprises a host 1, a finger-type micro-ultrasound probe 3 connected to the host 1 through an electrical cable 2, and A glasses type information receiving/holographic image processing/voice command entry/display device 4.
  • the host 1 includes an ultrasonic Doppler transmitting/receiving system 11 to receive information of the finger-type micro-ultrasound probe 3, a data storage processing system 12, and a wireless communication transmission system 13 to receive glasses-type information/holographic image processing/voice commands
  • the input/display device 4, the cloud server, or other terminals connected to the network transmit information.
  • the finger-type miniature ultrasonic probe 3 mainly comprises a micro-ultrasonic Doppler probe, which is worn on the operator's pointing finger 5, and the operator is more ergonomic when performing ultrasound guided puncture or needle biopsy.
  • the probe is worn on the indicator finger 5 end, contacts the body surface to move, detects the depth, the organ, the catheter or the probe, the injection object, the blood flow image of the blood vessel, the probe detection information is processed by the host, the image information is wirelessly transmitted, and transmitted to the receiving end. It can be used by others to participate in analysis and diagnosis in real time, reduce misdiagnosis or missed diagnosis, improve diagnosis accuracy, and timely release diagnostic report.
  • Glasses-type information receiving/holographic image processing/voice command input/display device 4 receives and displays the monitoring image in real time.
  • the focus of the person can focus on the detection or puncture site.
  • the detection or puncture depth and plane can be adjusted to avoid the fatigue discomfort caused by repeated detection of the head, the puncture site and the display, and save time.
  • the operator adjusts the tasks of zooming, numerical measurement, and labeling of the holographic virtual image by gestures, and accepts the instruction of the third person and the voice recording diagnosis report.
  • the device hardly affects the habit of detecting, puncture and injection operation.
  • the puncture needle and the injecting layer are clearly displayed, which helps the puncture, injection and filling to the ideal part and anatomical level, and timely discovers and avoids operation errors, avoids concurrent vascular embolism and the like. disease.

Abstract

A portable smart Doppler ultrasound dynamic real-time monitoring device, which comprises a host (1), a miniature fingertip Doppler ultrasound probe (3) connected to the host (1) via a cable (2), and a head-worn eyewear information receiver/holographic image processor/voice command recorder/display device (4). An operator wears the fingertip miniature ultrasound probe (3) on an index finger (5), which is in contact with the body surface while moving, thus implementing increased flexibility and accuracy in reaching a predetermined detection area to detect images of depth, internal organs, a catheter or probe, an injectable, blood vessels and blood flow. Information detected by the probe is processed by the host (1), image information is wirelessly transmitted to a receiving end, others are allowed to participate in analysis and diagnosis in real-time, thus increasing diagnosis accuracy. The eyewear display device (4) receives, dynamically displays in real-time, and processes monitored images, the operator only needs to focus on a part being probed or penetrated and to adjust the probing or penetration depth or plane on the basis of real-time dynamic images, thus facilitating the operator in carrying out a surgery and saving time.

Description

一种便携式智能超声多普勒动态实时监测装置Portable intelligent ultrasonic Doppler dynamic real-time monitoring device 技术领域Technical field
发明涉及一种监测装置,特别是指一种便携式智能超声多普勒动态实时监测装置。  The invention relates to a monitoring device, in particular to a portable intelligent ultrasound Doppler dynamic real-time monitoring device.
背景技术Background technique
玻尿酸或自体脂肪填充广泛用于医疗美容,玻尿酸或自体脂肪等填充物注射解剖层次错误,影响最终美容效果,填充物误入血管将导致血管栓塞、局部组织坏死、失明或神经损伤。因此,操作美容外科手术对医生的准确性要求较高,如果采用便携的探测设备实时提供注射针头与局部解剖层次及邻近血管信息,操作的准确性将可实现。Hyaluronic acid or autologous fat filling is widely used in medical beauty, and the filling anatomical level of fillers such as hyaluronic acid or autologous fat affects the final cosmetic effect. If the filler is mistakenly inserted into the blood vessel, it will lead to blood vessel embolism, local tissue necrosis, blindness or nerve damage. Therefore, the operation of cosmetic surgery requires high accuracy for the doctor. If a portable detection device is used to provide the injection needle and the local anatomical level and adjacent blood vessel information in real time, the accuracy of the operation will be realized.
传统超声多普勒设备体积庞大笨重,医院用于床旁超声导引穿刺(穿刺活检、穿刺引流、穿刺置管)、特殊部位超声探查时,携带不便。另外,操作者视线在探测、穿刺部位与显示器间反复转动,容易疲劳。无线通讯技术进步及头戴式全息眼镜的功能愈加完善,与云服务、医疗设备结合前景诱人。本案便由此产生。Traditional ultrasonic Doppler equipment is bulky and cumbersome, and it is inconvenient for hospitals to use for bedside ultrasound guided puncture (puncture biopsy, puncture drainage, puncture catheterization) and special site ultrasound exploration. In addition, the operator's line of sight repeatedly rotates between the detection, the puncture site and the display, and is prone to fatigue. The advancement of wireless communication technology and the function of head-mounted holographic glasses are becoming more and more perfect, and the prospect of combining with cloud services and medical equipment is attractive. This case will be generated.
发明内容Summary of the invention
本发明的目的是提供一种便携式智能超声多普勒动态实时监测装置,具有减少误诊或漏诊,提高诊断准确性,以及便于操作者实施手术,避免头部在探测、穿刺部位与显示器间反复转动造成的疲劳不适,节约时间。The object of the present invention is to provide a portable intelligent ultrasound Doppler dynamic real-time monitoring device, which can reduce misdiagnosis or missed diagnosis, improve diagnosis accuracy, and facilitate operation of the operator, and avoid repeated rotation of the head between the detection, the puncture site and the display. The resulting fatigue is uncomfortable and saves time.
为实现上述目的,本发明的解决方案是:To achieve the above object, the solution of the present invention is:
一种便携式智能超声多普勒动态实时监测装置,其包括一主机、一与主机通过电光缆连接的指套式微型超声多普勒探头,以及眼镜式信息接收/全息图像处理/语音指令录入/显示装置。A portable intelligent ultrasonic Doppler dynamic real-time monitoring device, comprising a host, a finger-type miniature ultrasonic Doppler probe connected to the host through an electric optical cable, and a glasses-type information receiving/holographic image processing/voice command input/ Display device.
所述主机包括声波发射/接受系统、数据存储处理系统、无线通讯传输系统。The host includes an acoustic wave transmitting/receiving system, a data storage processing system, and a wireless communication transmission system.
采用上述方案后,本发明的监测装置令操作者将指套式微型超声多普勒探头佩戴于指示手指,接触体表移动,实现更灵活准确到达预定区域,探测深度、脏器、导管或探针、注射物、血管血流图像,探头探测信息经主机处理,图像信息无线传输,传输至接收端,可供他人实时参与分析诊断,减少误诊或漏诊,提高诊断准确性,快速发布诊断报告;眼镜式显示装置接收并实时动态显示处理监测图像,操作者目光专注于探测或穿刺部位即可,依据实时动态图像,调整探测或穿刺深度、平面,避免头部在探测、穿刺部位与显示器间反复转动造成的疲劳不适,节约时间。该装置几乎不影响探测、穿刺、注射操作的习惯,穿刺针、注射物层次清晰显示,有助于穿刺、注射填充到理想部位及解剖层次,同时及时发现并避免操作错误,避免血管栓塞等并发症。After adopting the above solution, the monitoring device of the invention allows the operator to wear the finger-set micro-ultrasonic Doppler probe on the pointing finger, and move the contact surface to achieve more flexible and accurate arrival of the predetermined area, detecting the depth, the organ, the catheter or the probe. Needle, injection, blood flow image, probe detection information is processed by the host, image information is transmitted wirelessly, transmitted to the receiving end, allowing others to participate in analysis and diagnosis in real time, reducing misdiagnosis or missed diagnosis, improving diagnostic accuracy, and quickly publishing diagnostic reports; The glasses-type display device receives and dynamically displays the processed monitoring image in real time, and the operator's eyes focus on the detecting or puncture site, and according to the real-time moving image, the detection or puncture depth and plane are adjusted to avoid the head being repeatedly detected between the detecting portion and the puncture site and the display. The fatigue caused by the rotation is uncomfortable and saves time. The device hardly affects the habit of detecting, puncture and injection operation. The puncture needle and the injecting layer are clearly displayed, which helps the puncture, injection and filling to the ideal part and anatomical level, and timely discovers and avoids operation errors, avoids concurrent vascular embolism and the like. disease.
附图说明DRAWINGS
图1为本发明的结构示意图;Figure 1 is a schematic view of the structure of the present invention;
图2为本发明主机的工作原理框图。2 is a block diagram showing the working principle of the host of the present invention.
具体实施方式detailed description
以下结合附图对本发明的具体实施方式进行详细说明:The specific embodiments of the present invention are described in detail below with reference to the accompanying drawings:
如图1、2所示,本发明揭示了一种便携式智能超声多普勒动态实时监测装置,其包括一主机1、一与主机1通过电光缆2连接的指套式微型超声探头3,以及一眼镜式信息接收/全息图像处理/语音指令录入/显示装置4。所述主机1包括超声波多普勒发射/接受系统11以接收指套式微型超声探头3的信息、数据存储处理系统12、以及无线通讯传输系统13向眼镜式信息接收/全息图像处理/语音指令录入/显示装置4、云服务器或联网其他终端发送信息。As shown in FIG. 1 and FIG. 2, the present invention discloses a portable intelligent ultrasonic Doppler dynamic real-time monitoring device, which comprises a host 1, a finger-type micro-ultrasound probe 3 connected to the host 1 through an electrical cable 2, and A glasses type information receiving/holographic image processing/voice command entry/display device 4. The host 1 includes an ultrasonic Doppler transmitting/receiving system 11 to receive information of the finger-type micro-ultrasound probe 3, a data storage processing system 12, and a wireless communication transmission system 13 to receive glasses-type information/holographic image processing/voice commands The input/display device 4, the cloud server, or other terminals connected to the network transmit information.
本发明在实施时,指套式微型超声探头3主要包括微型超声多普勒探头,该探头佩戴于操作者指示手指5上,操作者进行超声导引穿刺或穿刺活检时,更符合人体工学原则,探头佩戴于指示手指5端,接触体表移动,探测深度、脏器、导管或探针、注射物、血管血流图像,探头探测信息经主机处理,图像信息无线传输,传输至接收端,可供他人实时参与分析诊断,减少误诊或漏诊,提高诊断准确性,及时快速发布诊断报告,眼镜式信息接收/全息图像处理/语音指令录入/显示装置4接收并实时动态显示处理监测图像,操作者目光专注于探测或穿刺部位即可,依据实时动态图像,调整探测或穿刺深度、平面,避免头部在探测、穿刺部位与显示器间反复转动造成的疲劳不适,节约时间。操作者另外手指通过手势调整全息虚拟图像的缩放、数值测量、标注等任务,接受第三人的指令、语音录入诊断报告。该装置几乎不影响探测、穿刺、注射操作的习惯,穿刺针、注射物层次清晰显示,有助于穿刺、注射填充到理想部位及解剖层次,同时及时发现并避免操作错误,避免血管栓塞等并发症。In the implementation of the present invention, the finger-type miniature ultrasonic probe 3 mainly comprises a micro-ultrasonic Doppler probe, which is worn on the operator's pointing finger 5, and the operator is more ergonomic when performing ultrasound guided puncture or needle biopsy. The probe is worn on the indicator finger 5 end, contacts the body surface to move, detects the depth, the organ, the catheter or the probe, the injection object, the blood flow image of the blood vessel, the probe detection information is processed by the host, the image information is wirelessly transmitted, and transmitted to the receiving end. It can be used by others to participate in analysis and diagnosis in real time, reduce misdiagnosis or missed diagnosis, improve diagnosis accuracy, and timely release diagnostic report. Glasses-type information receiving/holographic image processing/voice command input/display device 4 receives and displays the monitoring image in real time. The focus of the person can focus on the detection or puncture site. According to the real-time dynamic image, the detection or puncture depth and plane can be adjusted to avoid the fatigue discomfort caused by repeated detection of the head, the puncture site and the display, and save time. The operator adjusts the tasks of zooming, numerical measurement, and labeling of the holographic virtual image by gestures, and accepts the instruction of the third person and the voice recording diagnosis report. The device hardly affects the habit of detecting, puncture and injection operation. The puncture needle and the injecting layer are clearly displayed, which helps the puncture, injection and filling to the ideal part and anatomical level, and timely discovers and avoids operation errors, avoids concurrent vascular embolism and the like. disease.
以上所述,仅是本发明实施例而已,并非对本发明的技术范围作任何限制,故凡是依据本发明的技术实质对以上实施例所作的任何细微修改、等同变化与修饰,均仍属于本发明技术方案的范围内。The above is only the embodiment of the present invention, and is not intended to limit the technical scope of the present invention. Therefore, any minor modifications, equivalent changes and modifications made to the above embodiments in accordance with the technical spirit of the present invention still belong to the present invention. Within the scope of the technical solution.

Claims (2)

1、一种便携式智能超声多普勒动态实时监测装置,其特征在于:其包括一主机、一与主机通过电光缆连接的指套式微型超声多普勒探头,以及一眼镜式信息接收/全息图像处理/语音指令录入/显示装置。 A portable intelligent ultrasound Doppler dynamic real-time monitoring device, comprising: a host, a finger-type micro-ultrasonic Doppler probe connected to the host through an electrical cable, and a glasses-type information receiving/holographic Image processing / voice command entry / display device.
2、如权利要求1所述的一种便携式智能超声多普勒动态实时监测装置,其特征在于:所述主机包括声波发射/接受系统、数据处理系统、无线通讯传输系统。2. A portable intelligent ultrasound Doppler dynamic real-time monitoring device according to claim 1, wherein said host comprises an acoustic wave transmitting/receiving system, a data processing system, and a wireless communication transmission system.
PCT/CN2015/074346 2015-03-17 2015-03-17 Portable smart doppler ultrasound dynamic real-time monitoring device WO2016145605A1 (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US10905773B2 (en) 2012-10-11 2021-02-02 Uti Limited Partnership Methods and compositions for treating multiple sclerosis and related disorders
US10988516B2 (en) 2012-03-26 2021-04-27 Uti Limited Partnership Methods and compositions for treating inflammation
US11338024B2 (en) 2013-11-04 2022-05-24 Uti Limited Partnership Methods and compositions for sustained immunotherapy

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2001286475A (en) * 2000-04-07 2001-10-16 Hitachi Medical Corp Ultrasonic probe
CN1750787A (en) * 2003-02-14 2006-03-22 伊西康内外科公司 Fingertip ultrasound medical instrument
US7128720B2 (en) * 2003-06-30 2006-10-31 Ethicon, Inc. Ultrasonic finger probe
CN201320186Y (en) * 2009-01-09 2009-10-07 深圳市威尔德医疗电子股份有限公司 Portable B ultrasonic apparatus
CN102389598A (en) * 2011-11-04 2012-03-28 山东省塑料研究开发中心 Spectacle type visual ultrasonic-assisted transfusion mirror
CN202859314U (en) * 2012-10-30 2013-04-10 华南理工大学 Real-time wireless surgical navigation device based on ultrasonic waves

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2001286475A (en) * 2000-04-07 2001-10-16 Hitachi Medical Corp Ultrasonic probe
CN1750787A (en) * 2003-02-14 2006-03-22 伊西康内外科公司 Fingertip ultrasound medical instrument
US7128720B2 (en) * 2003-06-30 2006-10-31 Ethicon, Inc. Ultrasonic finger probe
CN201320186Y (en) * 2009-01-09 2009-10-07 深圳市威尔德医疗电子股份有限公司 Portable B ultrasonic apparatus
CN102389598A (en) * 2011-11-04 2012-03-28 山东省塑料研究开发中心 Spectacle type visual ultrasonic-assisted transfusion mirror
CN202859314U (en) * 2012-10-30 2013-04-10 华南理工大学 Real-time wireless surgical navigation device based on ultrasonic waves

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US10988516B2 (en) 2012-03-26 2021-04-27 Uti Limited Partnership Methods and compositions for treating inflammation
US10905773B2 (en) 2012-10-11 2021-02-02 Uti Limited Partnership Methods and compositions for treating multiple sclerosis and related disorders
US11338024B2 (en) 2013-11-04 2022-05-24 Uti Limited Partnership Methods and compositions for sustained immunotherapy

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