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CN103720506A - Numerical control superconductive visual bionic instrument - Google Patents

Numerical control superconductive visual bionic instrument
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Publication number
CN103720506A
CN103720506ACN201310737820.4ACN201310737820ACN103720506ACN 103720506 ACN103720506 ACN 103720506ACN 201310737820 ACN201310737820 ACN 201310737820ACN 103720506 ACN103720506 ACN 103720506A
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CN
China
Prior art keywords
water
probe
numerical control
computer
water pump
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
CN201310737820.4A
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Chinese (zh)
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CN103720506B (en
Inventor
曹峰章
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Wuxi Dongjinhong Investment Management Co ltd
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WUXI BEIERKANG ELECTRONIC INSTITUTE
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Priority to CN201310737820.4ApriorityCriticalpatent/CN103720506B/en
Publication of CN103720506ApublicationCriticalpatent/CN103720506A/en
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Publication of CN103720506BpublicationCriticalpatent/CN103720506B/en
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Abstract

The invention relates to a numerical control superconductive visual bionic instrument. The numerical control superconductive visual bionic instrument comprises a water pump, the water pump is connected with a water storage device and is controlled by a motor, and the water pump is connected with a water way inside a probe through a water pipe. A probe body at the end of the probe stretches into a water bag, the water bag is located on a water outlet head through a locking device, and the water outlet head is provided with a water outlet hole. The probe body is connected with a computer through a probe line, and the computer is connected with a displayer. An air bag is replaced by the water bag, the numerical control superconductive visual bionic instrument can achieve the safety delivering function and can monitor whether the birth canal bleeds or not in real time, the abnormal situation can be avoided, and the reliability is high.

Description

A kind of numerical control superconductive visual Bionic Instrument
Technical field
The present invention relates to technical field of medical instruments, relate in particular to a kind of superconductive visual bionic midwifery equipment.
Background technology
Practise midwifery Bionic Instrument is to utilize bionical principle, use air bag to replace fetal head that air bag is successively positioned over to cervical canal and intravaginal, gradually to airbag aeration mechanically to expand birth canal, can be used for induced labor can be used for again hastening parturition, obviously shortened stages of labor, alleviated puerpera's misery, reduced because of the force of labor difficult labour due to uterine inertia, reduced and cutd open palace productive rate and also reduced and enclose raw youngster's mortality rate; But, the air sac childbirth aid using at present also has the following disadvantages: current air sac childbirth aid can only play the effect of simple expansion birth canal, during use, probe is positioned at air bag observation birth canal situation, when air bag gassy is heaved, if puerpera is in utero hemorrhage, visual probe cannot be observed, and so can produce serious consequence.
Summary of the invention
The applicant is for the shortcoming existing in above-mentioned prior art, a kind of numerical control superconductive visual Bionic Instrument is provided, by water pocket, replaces air bag, not only can play safe practise midwifery effect and whether hemorrhagely can also monitor in birth canal in real time, appearance abnormal conditions can be found to process in time, and reliability is high.
The technical solution adopted in the present invention is as follows:
A kind of numerical control superconductive visual Bionic Instrument, comprises water pump, and water pump is connected with water receiver and by Electric Machine Control, water pump is connected with the water route in probe by water pipe; The probe body of probe end stretches in water pocket, and water pocket is lock onto on Water outlet by locking device, on Water outlet with apopore; Probe body is connected with computer by probe line, and computer connects display;
Further technical scheme is as follows:
Preferably, probe also comprises connection tube, and connection tube communicates with lumen tube and is connected with Water outlet by locking device;
Preferably, control valve is housed on water pipe, the outlet of water pump is equipped with pressure transducer, and control valve, pressure transducer and motor are all connected with computer;
Preferably, on water pipe, between pressure transducer and control valve, overflow valve is installed.
Beneficial effect of the present invention is as follows:
By water pocket, replace air bag, whether not only can play safe practise midwifery effect can also monitor in birth canal hemorrhage in real time, unusual circumstance in time, reliability is high, and control valve, overflow valve are installed in water lines, pressure transducer by computer control, control water pump and motor simultaneously, to control in real time the pressure of water-filling, make whole system reliable and stable.
Accompanying drawing explanation:
Fig. 1 is structure principle chart of the present invention.
Fig. 2 is the structural representation that the present invention pops one's head in.
The specific embodiment:
Below in conjunction with accompanying drawing, the specific embodiment of the present invention is described.
As depicted in figs. 1 and 2, the present invention includes water pump 1, water pump 1 is connected withwater receiver 3 and is controlled bymotor 2, and water pump 1 is connected with thewater route 97 in probe 9 bywater pipe 11; Theprobe body 91 of 9 ends of popping one's head in stretches inwater pocket 10,water pocket 10 is lock onto onWater outlet 92 bylocking device 93, onWater outlet 92 with apopore,motor 2 drives water pump 1 water to be filled with in thewater route 97 of probe 9 fromwater receiver 3, and then by the described apopore onWater outlet 92, enterwater pocket 10water pocket 10 is heaved, finishing using need to exitprobe body 91 andwater pocket 10 time, can, by the water inwater pocket 10 along the reversesuction water receiver 3 of former pipeline, realize recycling of water source;Probe body 91 is connected withcomputer 5 byprobe line 96,simultaneous computer 5 connectsdisplay 6, at probe, enter after puerpera's cervix uteri or intravaginal, can to cervix uteri or vagina, observe in real time bydisplay 6, especiallywater pocket 10 is filled with after water, when abnormal bleeding symptom appears in puerpera's cervix uteri or vagina, byprobe body 91, can find in time, process in time, safe and reliable; Preferably, probe 9 also comprisesconnection tube 94, andconnection tube 94 communicates withlumen tube 95 and passes throughlocking device 93 and is connected withWater outlet 92,locking device 93 can use conventional locking member, be beneficial to the dismounting ofWater outlet 92 andconnection tube 94, during use, medical worker can holdlumen tube 95 and operate; Preferably,control valve 7 is housed onwater pipe 11, the water outlet of water pump 1 is equipped with pressure transducer 4,control valve 7, pressure transducer 4 andmotor 2 are all connected withcomputer 5, bycomputer 5, can control in real time the running of water pump 1 andcontrol valve 7, pressure transducer 4, by the hydraulic pressure real-time data transmission inwater pipe 11 tocomputer 5, so forms a circularly monitoring system simultaneously, control in real time the operating condition of water pump 1 andcontrol valve 7, guarantee thatwater pipe 11 enters the pressure stability inwater pocket 10; Preferably, onwater pipe 11, between pressure transducer 4 andcontrol valve 7,overflow valve 8 is installed, can controls more accurately the hydraulic pressure inwater pipe 11, after pressure exceeds, can automatic deloading, that at more accurate scope internal control controlling the water circulation, presses is stable.
More than describing is explanation of the invention, is not the restriction to invention, and limited range of the present invention, referring to claim, within protection scope of the present invention, can be done any type of modification.

Claims (4)

CN201310737820.4A2013-12-272013-12-27A kind of numerical control superconductive visual bionic instrumentActiveCN103720506B (en)

Priority Applications (1)

Application NumberPriority DateFiling DateTitle
CN201310737820.4ACN103720506B (en)2013-12-272013-12-27A kind of numerical control superconductive visual bionic instrument

Applications Claiming Priority (1)

Application NumberPriority DateFiling DateTitle
CN201310737820.4ACN103720506B (en)2013-12-272013-12-27A kind of numerical control superconductive visual bionic instrument

Publications (2)

Publication NumberPublication Date
CN103720506Atrue CN103720506A (en)2014-04-16
CN103720506B CN103720506B (en)2016-11-16

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Cited By (5)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
CN104107082A (en)*2014-07-282014-10-22无锡市贝尔康电子研究所Superconductive visible bionic instrument capable of accurately controlling expansion of water sac
CN104127205A (en)*2014-07-282014-11-05无锡市贝尔康电子研究所Water bag double-cavity bionic probe special for midwifery
CN104622548A (en)*2015-02-102015-05-20江苏中大医疗科技有限公司Visible hydraulic piston painless bionic delivery assistance apparatus
CN104814775A (en)*2015-05-292015-08-05郑州赛福特电子设备有限公司Delivery instrument and bionic air bag diameter control method
CN110811531A (en)*2019-11-212020-02-21复旦大学附属妇产科医院 A special reproductive tract dilation device for labor induction

Citations (6)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US5222485A (en)*1990-09-171993-06-29Ravinder JerathUltrasound labor monitoring method and apparatus
JPH11164838A (en)*1997-12-021999-06-22Yoshihiko EndoParturition promoting balloon
US20020010441A1 (en)*1997-04-152002-01-24Wilhelm HorkelDelivery preparation and facilitation device and preparatory gymnastics
CN202505460U (en)*2012-04-052012-10-31乔娜Novel water bag labor induction instrument
CN202776502U (en)*2012-07-252013-03-13无锡中大影像科技有限公司Digital-control superconducting visible bionic midwifery instrument
CN203647444U (en)*2013-12-272014-06-18无锡市贝尔康电子研究所Numerically-controlled superconductive visual bionic instrument

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US5222485A (en)*1990-09-171993-06-29Ravinder JerathUltrasound labor monitoring method and apparatus
US20020010441A1 (en)*1997-04-152002-01-24Wilhelm HorkelDelivery preparation and facilitation device and preparatory gymnastics
JPH11164838A (en)*1997-12-021999-06-22Yoshihiko EndoParturition promoting balloon
CN202505460U (en)*2012-04-052012-10-31乔娜Novel water bag labor induction instrument
CN202776502U (en)*2012-07-252013-03-13无锡中大影像科技有限公司Digital-control superconducting visible bionic midwifery instrument
CN203647444U (en)*2013-12-272014-06-18无锡市贝尔康电子研究所Numerically-controlled superconductive visual bionic instrument

Cited By (6)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
CN104107082A (en)*2014-07-282014-10-22无锡市贝尔康电子研究所Superconductive visible bionic instrument capable of accurately controlling expansion of water sac
CN104127205A (en)*2014-07-282014-11-05无锡市贝尔康电子研究所Water bag double-cavity bionic probe special for midwifery
CN104622548A (en)*2015-02-102015-05-20江苏中大医疗科技有限公司Visible hydraulic piston painless bionic delivery assistance apparatus
CN104814775A (en)*2015-05-292015-08-05郑州赛福特电子设备有限公司Delivery instrument and bionic air bag diameter control method
CN110811531A (en)*2019-11-212020-02-21复旦大学附属妇产科医院 A special reproductive tract dilation device for labor induction
CN110811531B (en)*2019-11-212022-04-12复旦大学附属妇产科医院 A special reproductive tract dilation device for labor induction

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DateCodeTitleDescription
C06Publication
PB01Publication
C10Entry into substantive examination
SE01Entry into force of request for substantive examination
C14Grant of patent or utility model
GR01Patent grant
TR01Transfer of patent right

Effective date of registration:20200304

Address after:No. 155, Chunhui Road, Xishan Economic Development Zone, Wuxi City, Jiangsu Province

Patentee after:WUXI ZHONGDA IMAGE TECHNOLOGY Co.,Ltd.

Address before:214000 Jiangsu city of Wuxi province Chunhui road in Xishan District of Xishan Economic Development Zone No. 155

Patentee before:WUXI BEIERKANG ELECTRONIC INSTITUTE

TR01Transfer of patent right
TR01Transfer of patent right

Effective date of registration:20220708

Address after:214000 No. 22 dongdongtang Dongyuan Road, Xishan District, Wuxi City, Jiangsu Province

Patentee after:Wuxi dongjinhong Investment Management Co.,Ltd.

Address before:No.155 Chunhui Road, Xishan Economic Development Zone, Wuxi City, Jiangsu Province, 214000

Patentee before:WUXI ZHONGDA IMAGE TECHNOLOGY Co.,Ltd.

TR01Transfer of patent right
PE01Entry into force of the registration of the contract for pledge of patent right

Denomination of invention:A CNC superconducting visual bionic instrument

Granted publication date:20161116

Pledgee:Wuxi Xishan sub branch of Bank of China Ltd.

Pledgor:Wuxi dongjinhong Investment Management Co.,Ltd.

Registration number:Y2024980015704

PE01Entry into force of the registration of the contract for pledge of patent right

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