CN205598200U - Cardiopulmonary resuscitation device for emergency call - Google Patents

Cardiopulmonary resuscitation device for emergency call Download PDF

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Publication number
CN205598200U
CN205598200U CN201620275624.9U CN201620275624U CN205598200U CN 205598200 U CN205598200 U CN 205598200U CN 201620275624 U CN201620275624 U CN 201620275624U CN 205598200 U CN205598200 U CN 205598200U
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China
Prior art keywords
backing plate
patient
plate
pulmones
screw thread
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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.)
Expired - Fee Related
Application number
CN201620275624.9U
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Chinese (zh)
Inventor
苗常青
吴梦茹
梁欢
王军
刘利
王凯飞
许静
屈慧
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First Affiliated Hospital of Xian Jiaotong University
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First Affiliated Hospital of Xian Jiaotong University
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Priority to CN201620275624.9U priority Critical patent/CN205598200U/en
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Expired - Fee Related legal-status Critical Current
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Abstract

The utility model discloses a cardiopulmonary resuscitation device for emergency call, including the oxygen jar, the backing plate, the bracing piece, the recess, the head fixed band, the control valve, restriction valve, the gas -supply pipe, the cover of breathing in, the mounting panel, cavity servo motor, the lead screw, chest extrusion mechanism, the guide pillar, this cardiopulmonary resuscitation device for emergency call simple structure, delicate in design, can replace traditional artifical extrusion patient's chest and artificial respiration, the artificial work load of medical matters has not only been reduced, and exist rhythmicly when being cardiopulmonary resuscitation for the patient, and can extrude patient's chest strength and can ventilate and press to adjust, it remains the unanimity throughout to drive the extrusion force, let the patient can obtain reasonable rescue, consequently, it salvages the survival rate to have improved the patient.

Description

A kind of emergency treatment device for resuscitating heart and pulmones
Technical field
This utility model relates to a kind of emergency treatment device, particularly relates to a kind of emergency treatment device for resuscitating heart and pulmones.
Background technology
The patient that heart stops generally using cardio-pulmonary resuscitation promptly to rescue when rescuing, and cardio-pulmonary resuscitation is permissible Make patient set up rapidly effective circulation and breathe, recover the blood oxygen supply of whole body, promote the extensive of brain function Multiple, prevent from increasing the weight of brain anoxia, at present for the patient that must rescue because of sudden cardiac arrest, carry out cardiopulmonary multiple The mode generally used during Soviet Union is artificial respiration and manually presses between chest, by manually with palm Big by workload with hands, and pressure cannot accurately grasp, thus cause rescuing the most proper, in view of disadvantages described above, It is necessary in fact to design a kind of emergency treatment device for resuscitating heart and pulmones.
Utility model content
Technical problem to be solved in the utility model is: provides a kind of emergency treatment device for resuscitating heart and pulmones, comes Solve to do that cardio-pulmonary resuscitation workload is big and the problem of the difficult grasp of pressure by pressing patient chest manually.
For solving above-mentioned technical problem, the technical solution of the utility model is: a kind of emergency treatment cardio-pulmonary resuscitation fills Put, including oxygen tank, backing plate, support bar, groove, head band, control valve, flow-limiting valve, gas transmission Pipe, air-suction cover, installing plate, hollow servomotor, screw mandrel, Chest compressions mechanism, guide pillar, described pad Plate square plate, and left end is inclined-plane, described support bar is positioned at backing plate rear end, described support bar and backing plate Being weldingly connected, described groove is positioned at backing plate top right-hand member, and described head band is positioned at backing plate right-hand member, Described head band is connected with backing plate close-fitting, and described control valve is positioned at the backing plate back side, described control Valve is connected with backing plate screw thread, and described control valve is connected with oxygen tank pipeline, and described flow-limiting valve is positioned at pad Back, described flow-limiting valve is connected with backing plate screw thread, and described flow-limiting valve is connected with control valve pipeline, Described appendix is positioned at flow-limiting valve right-hand member, and described appendix is connected with flow-limiting valve close-fitting, described air-breathing Cover is positioned at appendix right-hand member, and described air-suction cover is connected with appendix close-fitting, and described installing plate is through propping up Strut, described installing plate is connected with support bar screw thread, and described hollow servomotor is positioned at installing plate top, Described hollow servomotor is connected with installing plate screw thread, and described screw mandrel runs through hollow servomotor, described Screw mandrel and hollow servomotor be threaded engagement, described Chest compressions mechanism is positioned at screw mandrel bar bottom, described Chest compressions mechanism be connected with wire rod thread, described guide pillar quantity is two pieces, and described guide pillar symmetry is divided It is distributed in two ends, left and right, Chest compressions mechanism top, and described guide pillar runs through installing plate, described guide pillar and breast Portion's pressing mechanism screw thread is connected, and join sliding with installing plate of described guide pillar is connected.
Further, described Chest compressions mechanism contains connecting rod, spring, link rod, pressing plate, neonychium.
Further, described connecting rod is positioned at cylinder end, and described connecting rod is connected with cylinder screw thread.
Further, described spring is positioned at inside connecting rod, and described spring is movably connected with connecting rod.
Further, described link rod runs through connecting rod, and described link rod is positioned at spring bottom end, described connection Join sliding with connecting rod of bar is connected.
Further, described pressing plate is positioned at link rod bottom, and described pressing plate is connected with link rod screw thread.
Further, described neonychium is positioned at pressing plate lower end, and described neonychium is connected with pressing plate glue.
Compared with prior art, this emergency treatment device for resuscitating heart and pulmones, first allow patient lie low on backing plate, and The head allowing patient is in groove, and with the cervical region of head band immobilized patients, therefore can make patient Head is toward hind wing, it is simple to the trachea of patient is opened, then air-suction cover covers on the face of patient, is beaten by control valve Push And Release closes, thus realizes oxygen tank and input oxygen to patient and stop oxygen therapy, starts hollow servomotor, Hollow driven by servomotor screw mandrel constantly moves up and down, thus Chest compressions mechanism can be made with per minute Pressing 100-200 time and chest that the degree of depth is 5-6 centimeter of extruded patient, in Chest compressions, mechanism down extrudes During patient chest so that the gas of the pulmonary of patient is discharged, and can extrude heart contraction, in Chest compressions simultaneously Mechanism up moves so that cardiac dilatation, and control valve controls to open so that oxygen tank can supply to air-suction cover, Thus help patient breaths, and therefore can complete cardio-pulmonary resuscitation, by constantly extruding chest air-breathing to patient, because of This reaches constantly to do cardio-pulmonary resuscitation to patient, and this apparatus structure is simple, designs ingenious, can replace traditional people Work extruding patient chest and artificial respiration, not only reduce the workload that medical matters are artificial, and do the heart to patient Rhythm is there is, by hollow driven by servomotor Chest compressions mechanism at extruding patient chest during lung recovery Always consistent by pressure, it is to avoid the directly skin of mechanical compression injured patient and breastbone etc., allow patient Can reasonably be rescued, therefore be improve patient's rescue survival rate.
Accompanying drawing explanation
Fig. 1 is the sectional view of emergency treatment device for resuscitating heart and pulmones
Fig. 2 is the top view of emergency treatment device for resuscitating heart and pulmones
The sectional view of Tu3Shi Chest compressions mechanism
Oxygen tank 1, backing plate 2, support bar 3, groove 4, head band 5, control valve 6, flow-limiting valve 7, Appendix 8, air-suction cover 9, installing plate 10, hollow servomotor 11, screw mandrel 12, Chest compressions mechanism 13, Guide pillar 14, connecting rod 1301, spring 1302, link rod 1303, pressing plate 1304, neonychium 1305
Following detailed description of the invention will further illustrate in conjunction with above-mentioned accompanying drawing.
Detailed description of the invention
Hereinafter, multiple specific detail is elaborated, in order to provide constituting the general of described embodiment basis The thorough understanding read.But, it will be apparent to those skilled in the art that described embodiment is permissible Put into practice in the case of some or all in not having these specific detail.In other cases, do not have Specifically describe well-known process step.
As shown in Figure 1, Figure 2, Figure 3 shows, a kind of emergency treatment device for resuscitating heart and pulmones, including oxygen tank 1, backing plate 2, support bar 3, groove 4, head band 5, control valve 6, flow-limiting valve 7, appendix 8, air-suction cover 9, Installing plate 10, hollow servomotor 11, screw mandrel 12, Chest compressions mechanism 13, guide pillar 14, connecting rod 1301, Spring 1302, link rod 1303, pressing plate 1304, neonychium 1305, described backing plate 2 square plate, and left End is inclined-plane, and described support bar 3 is positioned at backing plate 2 rear end, and described support bar 3 welds phase with backing plate 2 Even, described groove 4 is positioned at backing plate 2 top right-hand member, and described head band 5 is positioned at backing plate 2 right-hand member, Described head band 5 is connected with backing plate 2 close-fitting, and described control valve 6 is positioned at backing plate 2 back side, institute The control valve 6 stated is connected with backing plate 2 screw thread, and described control valve 6 is connected with oxygen tank 1 pipeline, institute The flow-limiting valve 7 stated is positioned at backing plate 2 back side, and described flow-limiting valve 7 is connected with backing plate 2 screw thread, and described Flow-limiting valve 7 is connected with control valve 6 pipeline, and described appendix 8 is positioned at flow-limiting valve 7 right-hand member, and described is defeated Trachea 8 is connected with flow-limiting valve 7 close-fitting, and described air-suction cover 9 is positioned at appendix 8 right-hand member, described air-breathing Cover 9 is connected with appendix 8 close-fitting, and described installing plate 10 is through support bar 3, described installing plate 10 Being connected with support bar 3 screw thread, described hollow servomotor 11 is positioned at installing plate 10 top, described in Empty servomotor 11 is connected with installing plate 10 screw thread, and described screw mandrel 12 runs through hollow servomotor 11, institute The screw mandrel 12 stated is threaded engagement with hollow servomotor 11, and described Chest compressions mechanism 13 is positioned at screw mandrel 12 Bottom, described Chest compressions mechanism 13 is connected with screw mandrel 12 screw thread, and described Chest compressions mechanism 13 wraps Connecting rod 1301, spring 1302, link rod 1303, pressing plate 1304, neonychium 1305, described company are contained Extension bar 1301 is positioned at cylinder 12 bottom, and described connecting rod 1301 is connected with cylinder 12 screw thread, described It is internal that spring 1302 is positioned at connecting rod 1301, and described spring 1302 is movably connected with connecting rod 1301, Described link rod 1303 runs through connecting rod 1301, and described link rod 1303 is positioned at spring 1302 bottom, institute Join sliding with connecting rod 1301 of the link rod 1303 stated is connected, and described pressing plate 1304 is positioned at link rod 1303 bottom, Described pressing plate 1304 is connected with link rod 1303 screw thread, and described neonychium 1305 is positioned at pressing plate 1304 times End, described neonychium 1305 is connected with pressing plate 1304 glue, this emergency treatment device for resuscitating heart and pulmones, first Allow patient lie low on backing plate 2, and allow the head of patient be in groove 4, and solid with head band 5 Determine the cervical region of patient, patient's head therefore can be made toward hind wing, it is simple to the trachea of patient is opened, then by air-suction cover 10 faces covering on patient, are opened by control valve 6 and close, thus realize oxygen tank 1 and input to patient Oxygen and stopping oxygen therapy, start hollow servomotor 11, and hollow servomotor 11 drives screw mandrel 12 to continue not Disconnected move up and down, thus Chest compressions mechanism 13 can be made with pressing per minute 100-200 time and the degree of depth as 5-6 The chest of centimeter of extruded patient so that the gas of the pulmonary of patient is discharged, and can extrude heart contraction simultaneously, when When Chest compressions mechanism 13 moves to least significant end, when Chest compressions mechanism 13 down extrudes patient chest, The gas making the pulmonary of patient is discharged, and can extrude heart contraction simultaneously, up transport in Chest compressions mechanism 13 Dynamic so that cardiac dilatation, control valve 6 is opened so that oxygen tank can supply to air-suction cover, thus helped patient Air-breathing, therefore can complete cardio-pulmonary resuscitation, by constantly extruding chest air-breathing to patient, therefore reach constantly to Patient does cardio-pulmonary resuscitation, when Chest compressions mechanism 13 extrudes patient chest, is first pressing plate 1304 and trouble Person contacts, under the effect of spring 1302 so that link rod 1303 is toward connecting rod 1301 internal motion, protection Padding 1305 materials is polyurethane, can avoid skin and the breastbone etc. of direct mechanical compression injured patient, two Patient is played cushioning effect by individual aspect, prevents Chest compressions mechanism 13 from directly impacting the chest of patient, thus Reaching to play a protective role patient, wherein support bar 3 is that installing plate 10 is played installation effect, installing plate 10 is that hollow servomotor 11 plays fixation, and flow-limiting valve 7 is to control oxygen tank 1 to air-suction cover 9 Throughput, can prevent air-flow excessive and the pulmonary of patient that injures, appendix 8 be play to air-suction cover 9 defeated The effect of gas, guide pillar 14 is that Chest compressions mechanism 3 is played guide effect.
This utility model is not limited to above-mentioned specific embodiment, and those of ordinary skill in the art is from above-mentioned Design is set out, and without performing creative labour, all conversion made, all falls within guarantor of the present utility model Within the scope of protecting.

Claims (7)

1. an emergency treatment device for resuscitating heart and pulmones, it is characterised in that include oxygen tank, backing plate, support bar, recessed Groove, head band, control valve, flow-limiting valve, appendix, air-suction cover, installing plate, hollow servomotor, Screw mandrel, Chest compressions mechanism, guide pillar, described backing plate square plate, and left end are inclined-plane, described support Bar is positioned at backing plate rear end, and described support bar is weldingly connected with backing plate, and described groove is positioned at backing plate top right End, described head band is positioned at backing plate right-hand member, and described head band is connected with backing plate close-fitting, institute The control valve stated is positioned at the backing plate back side, and described control valve is connected with backing plate screw thread, and described control valve with Oxygen tank pipeline is connected, and described flow-limiting valve is positioned at the backing plate back side, and described flow-limiting valve is connected with backing plate screw thread, And described flow-limiting valve is connected with control valve pipeline, described appendix is positioned at flow-limiting valve right-hand member, and described is defeated Trachea is connected with flow-limiting valve close-fitting, and described air-suction cover is positioned at appendix right-hand member, described air-suction cover and gas transmission Pipe close-fitting is connected, and described installing plate is connected through support bar, described installing plate with support bar screw thread, Described hollow servomotor is positioned at installing plate top, and described hollow servomotor is connected with installing plate screw thread, Described screw mandrel runs through hollow servomotor, and described screw mandrel is threaded engagement with hollow servomotor, described Chest compressions mechanism is positioned at screw mandrel bar bottom, and described Chest compressions mechanism is connected with wire rod thread, described Guide pillar quantity is two pieces, and described guide pillar is symmetrically distributed in two ends, left and right, Chest compressions mechanism top, and described Guide pillar run through installing plate, described guide pillar is connected with Chest compressions mechanism screw thread, and described guide pillar and peace Dress plate cunning is joined connected.
2. a kind of emergency treatment device for resuscitating heart and pulmones as claimed in claim 1, it is characterised in that described chest Pressing mechanism contains connecting rod, spring, link rod, pressing plate, neonychium.
3. a kind of emergency treatment device for resuscitating heart and pulmones as claimed in claim 2, it is characterised in that described connection Bar is positioned at cylinder end, and described connecting rod is connected with cylinder screw thread.
4. a kind of emergency treatment device for resuscitating heart and pulmones as claimed in claim 3, it is characterised in that described spring Being positioned at inside connecting rod, described spring is movably connected with connecting rod.
5. a kind of emergency treatment device for resuscitating heart and pulmones as claimed in claim 4, it is characterised in that described link rod Running through connecting rod, and described link rod is positioned at spring bottom end, join sliding with connecting rod of described link rod is connected.
6. a kind of emergency treatment device for resuscitating heart and pulmones as claimed in claim 5, it is characterised in that described pressing plate Being positioned at link rod bottom, described pressing plate is connected with link rod screw thread.
7. a kind of emergency treatment device for resuscitating heart and pulmones as claimed in claim 6, it is characterised in that described protection Pad is positioned at pressing plate lower end, and described neonychium is connected with pressing plate glue.
CN201620275624.9U 2016-04-05 2016-04-05 Cardiopulmonary resuscitation device for emergency call Expired - Fee Related CN205598200U (en)

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Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106726310A (en) * 2017-02-04 2017-05-31 李玉华 A kind of emergency department's resuscitation buoyant apparatus
CN107243101A (en) * 2017-07-20 2017-10-13 苏州欧米尼医药有限公司 The automatic injection apparatus of medicine quantitative aerosol
CN107854302A (en) * 2017-10-25 2018-03-30 丁继来 A kind of CPR pressing and respiratory auxiliary system for first aid respirator
JP2018126483A (en) * 2017-02-06 2018-08-16 コ−ケンメディカル株式会社 Automatic cardiopulmonary resuscitator
CN109893423A (en) * 2019-04-28 2019-06-18 杨林亭 One kind being used for Cardiological cardiopulmonary resuscitation device
CN110680716A (en) * 2019-10-04 2020-01-14 深圳市龙岗中心医院 First-aid external cardiac resuscitation device and application thereof
CN113101065A (en) * 2021-04-14 2021-07-13 李晓真 Clinical heart failure patient's first aid device of intracardiac branch of academic or vocational study
CN113101180A (en) * 2021-04-13 2021-07-13 山东大学齐鲁医院(青岛) Portable emergency extrusion device for cardiology department

Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106726310A (en) * 2017-02-04 2017-05-31 李玉华 A kind of emergency department's resuscitation buoyant apparatus
JP2018126483A (en) * 2017-02-06 2018-08-16 コ−ケンメディカル株式会社 Automatic cardiopulmonary resuscitator
CN107243101A (en) * 2017-07-20 2017-10-13 苏州欧米尼医药有限公司 The automatic injection apparatus of medicine quantitative aerosol
CN107854302A (en) * 2017-10-25 2018-03-30 丁继来 A kind of CPR pressing and respiratory auxiliary system for first aid respirator
CN107854302B (en) * 2017-10-25 2019-09-27 青岛悟空智联医疗科技有限公司 A kind of CPR pressing and respiratory auxiliary system for first aid respirator
CN109893423A (en) * 2019-04-28 2019-06-18 杨林亭 One kind being used for Cardiological cardiopulmonary resuscitation device
CN110680716A (en) * 2019-10-04 2020-01-14 深圳市龙岗中心医院 First-aid external cardiac resuscitation device and application thereof
CN113101180A (en) * 2021-04-13 2021-07-13 山东大学齐鲁医院(青岛) Portable emergency extrusion device for cardiology department
CN113101065A (en) * 2021-04-14 2021-07-13 李晓真 Clinical heart failure patient's first aid device of intracardiac branch of academic or vocational study

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GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20160928

Termination date: 20180405