CN1861034A - Automatic physiotherapy equipment for cardiac - Google Patents
Automatic physiotherapy equipment for cardiac Download PDFInfo
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- CN1861034A CN1861034A CN 200610017948 CN200610017948A CN1861034A CN 1861034 A CN1861034 A CN 1861034A CN 200610017948 CN200610017948 CN 200610017948 CN 200610017948 A CN200610017948 A CN 200610017948A CN 1861034 A CN1861034 A CN 1861034A
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- cardiac
- physiotherapy equipment
- ventral aorta
- eccentric
- pressing
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Abstract
An automatic physiotherapeutic apparatus for preventing and treating heart diseases by alternative pressings on chest cavity and abdominal aortas is composed of a power unit, a power transmission unit with a crankshaft at the final end of its power output shaft, a chest cavity pressing unit with eccentric wheel, up-down telescopic unit and pressing hand, and an abdominal aortas pressing unit with connecting rod and pressing air bag.
Description
Technical field: the present invention relates to a kind of armarium, relate in particular to a kind of control heart disease, improve the automatic physiotherapy equipment for cardiac of myocardial function.
Background technology: along with the quickening of people's work rhythm, the increase of operating pressure, cardiopathic sickness rate is more and more higher, and age of onset is more and more younger, has pass data report, and heart disease has become the human life's of prestige association principal disease; Cardiopathic characteristics are rapid onsets, the mortality rate height, and to this, scientific worker or medical worker have invented various heart pressing devices conscientiously having studied on the heart disease pathogeny basis, so that clinically the heart patient is in time rescued.Chinese patent CN2772491Y and CN2734225Y disclose " a kind of heart pressing device " and " closed cardiac massage bed " respectively, two kinds of plant equipment all are used for clinically when rescuing the patient of sudden cardiac arrest, its chest pushed to substitute manually push the assurance rescue effect, alleviate the working strength of manually pushing and all played very big effect.For the daily heart health of heart patient push, increase the myocardial ischemia tissue supply of blood flow, be control multiple heart pathogenetic important means, and at present the heart equipment of pushing that keeps healthy be yet there are no report.
Summary of the invention: in order to solve that the heart patient lacks daily heart health exercise and the problem that causes heart disease to increase the weight of, the purpose of this invention is to provide and a kind of heart and abdominal part are alternately pushed, make heart obtain sufficient diastole and contraction exercise, improve myocardial function, the supply of blood flow of increase myocardial ischemia tissue, the multiple cardiopathic automatic physiotherapy equipment for cardiac of control.
Technical scheme of the present invention realizes in the following manner:
A kind of automatic physiotherapy equipment for cardiac, chest compression mechanism, ventral aorta pressing mechanism that it comprises actuating unit, power drive mechanism, is driven by power drive mechanism, wherein,
The output shaft end of a, power drive mechanism is a bent axle;
B, chest compression mechanism comprise slip cap on the output shaft of power drive mechanism and outside the convex direction eccentric opposite with convex direction outside the bent axle, roll with eccentric that be connected flexible up and down is provided with, the flexible lower end that is provided with is connected a ventral aorta and pushes hands up and down;
C, ventral aorta pressing mechanism comprise that connecting rod, the connecting rod lower end of hinge on bent axle connects a thoracic cavity extruding gasbag by the cylinder drive.
Described actuating unit is controlled by computerized control system, and computerized control system is connected with cardiac monitoring system.
Described up and down retractor device comprises that a Connection Card, Connection Card divide isolated two sections up and down, is provided with in the epimere that being provided with in oiling roller, the oiling roller top-portion apertures on a ball, the ball rolls with eccentric and is connected, immerses in the oiling roller down, the oiling roller lower end is connected with support bar, support bar is supported on the support spring in the Connection Card; Connection Card hypomere internal fixation is equipped with pressing lever, and the pressing lever lower end is equipped with ventral aorta and is pushed hands.
Be provided with keyway in the described eccentric axis hole, output shaft is provided with the key that is slidingly matched with strong groove, and the eccentric wheel rim is limited in one and regulates in the device of leading screw so that the left and right adjusting eccentric, and leading screw is supported on the bearing bracket stand.
Described ventral aorta is pushed hands and is connected the pressing lever lower end by an elevation and subsidence regulating device.
Described power drive mechanism comprises that also motor, the variator that is connected with motor, the shaft joint that is connected with variator, the axle sleeve that is connected with shaft joint, axle sleeve are connected with output shaft, and output shaft is terminal to be connected with bent axle by two axle sleeves.
Described leading screw end is connected with handle.
Pushing hands and ventral aorta at ventral aorta pushes subordinate side and is equipped with by press.
The pressing lever of the Connection Card of chest compression mechanism and ventral aorta pressing mechanism all passes through the limit of guiding up and down device separately.
The present invention is according to the mediate a settlement anti-rich method of abdominal part pressurization and designing of the heart pump mechanics that nineteen sixty is examined great writer (Kouwenhoven), its principle is: when the enclosed closed cardiac massage, the heart that is clipped between breastbone and the spinal column that can make in a flash of subduing is squeezed, force the blood in the heart to be discharged, the effect of valve in addition makes blood flow to tremulous pulse; When pushing releasing, heart owing to heart, valnllae vasorum membrane structure characteristics, sucks back into ventricular chamber venous blood again by self elastic return diastole original state, pushes once more, and heart is arranged blood once more to Arterial system.So continuously rhythmically push effective circulation and can set up.The koff of Shandong is right in thoracic cavity pump mechanics and thinks: when pushing outside the breast, intrathoracic pressure raises suddenly, and aorta, left ventricle, large vein and esophagus pressure are basic identical.Because wall of vein is thinner than arterial wall, pressed sunkenly at the large vein of porch, thoracic cavity, the jugular vein lobe can stop blood reflux in addition.And tremulous pulse to the anti-angiogenic drag that withers greater than vein, and arterial lumen is less relatively, and equivalent blood can produce bigger drag in tremulous pulse, thereby arterial lumen keeps open when cardiac compression, so blood can only flow forward from tremulous pulse when cardiac compression, can not backflow to vein; Extruding is when loosening, and intrathoracic pressure can reduce to zero, so wall of vein pressurized not, and tube chamber is open, and blood can return heart from vein; When arterial blood was returned heart, because aortic valve stops that blood can not return heart, part can flow into heart nutrient vessel, i.e. coronary artery from coronary ostium.In the anti-rich method of abdominal part pressurization, think: at chest compression " relaxing period ", push ventral aorta, can increase the intrinsic pressure of ascending aorta, push the forward direction that improves blood and flow and when chest compression, stop abdominal part, the blood transport that will have new fresh oxygen is to whole body, especially main organs.
Good effect of the present invention is:
By alternately pushing to torso model and ventral aorta, make heart body obtain maximum and sufficient exercise, cardiac function is improved and recover, strengthen and improve the blood flow momentum, and the blood transport that will have new fresh oxygen arrives whole body, especially heart organ is played effective preventive and therapeutic effect, reduce the probability of death of sudden cardiac arrest.Improve the function of each organ pipe of human body, prolong cardiac's life-span.
Description of drawings:
Fig. 1 is a perspective view of the present invention
Fig. 2 is the plan structure sketch map of Fig. 1
Fig. 3 is the flexible up and down structural representation that is provided with of chest compression of the present invention mechanism.
The specific embodiment:
Below in conjunction with accompanying drawing the present invention is described in further detail:
By Fig. 1, Fig. 2 as can be seen: the chest compression mechanism, the ventral aorta pressing mechanism that the present invention includes actuating unit, power drive mechanism, drive by power drive mechanism, wherein:
B, chest compression mechanism comprise slip cap on the output shaft 2 of power drive mechanism outer convex direction and bent axle 2 outside convex direction roll to anti-eccentric 3, with eccentric that be connected flexible up and down is provided with, the flexible lower end that is provided with is installed a ventral aorta and pushed hands 10 up and down;
C, ventral aorta pressing mechanism comprise that the connecting rod 15, connecting rod 15 lower ends that are connected on the bent axle 12 connect a thoracic cavity extruding gasbag 16 by the cylinder drive.
Be it can also be seen that by Fig. 2, Fig. 3: flexible up and down the setting comprises isolated two sections up and down of Connection Cards 8, Connection Card 8 minutes, is provided with in the epimere that being provided with in the hole at oiling roller 5, oiling roller 5 tops on a ball 4, the ball 4 rolls with eccentric 3 and is connected, immerses in the oiling roller down, the oiling roller lower end is connected with skill strut 24, skill strut 24 is supported on the support spring 7 in the Connection Card; Connection Card 8 hypomere internal fixation are equipped with pressing lever 9, and pressing lever 9 lower ends are fixedly connected with ventral aorta and push hands 10.
As seen from Figure 2: be provided with keyway in the axis hole of eccentric 3, output shaft 2 is provided with the key 23 that is slidingly matched with strong groove, eccentric 3 is slidingly matched by keyway and key with output shaft 2 and is connected as a single entity, eccentric 3 wheel rims are limited in one and regulate in the device of leading screw so that the left and right adjusting eccentric, and leading screw is supported on the bearing bracket stand 6.
Be it can also be seen that by Fig. 1: ventral aorta is pushed hands 10 and is connected pressing lever 9 lower ends by an elevation and subsidence regulating device 11.
Be it can also be seen that by Fig. 1, Fig. 2: actuating unit also comprises motor 18, the variator 1 that is connected with motor, the shaft joint 19 that is connected with variator, the axle sleeve 20 that is connected with shaft joint, axle sleeve are connected with output shaft 2, and output shaft 2 is terminal to connect bent axles 12 by two axle sleeves (21,22).
Be it can also be seen that by Fig. 1, Fig. 2: leading screw 14 ends are connected with handle 13 and are used for rotational lead screw, and then reach and regulate eccentric and make it aim at the thoracic cavity.
As seen from Figure 1: below ventral aorta is pushed hands 10 and thoracic cavity extruding gasbag 16, be equipped with by press 17.
It can also be seen that by Fig. 1 actuating unit can also adopt automatic control system to control.
Be it can also be seen that by Fig. 1: the Connection Card 8 of chest compression mechanism is limit device with the guiding up and down that the pressing lever 15 of ventral aorta pressing mechanism all passes through separately.
The present invention can use as the wellness approach equipment in daily life, during use, and according to normal person's heartbeat number of times, rhythmical heart and the ventral aorta pushed, cardia according to pressing depth is 2-2.5 centimetre, dynamics is 35 kilograms; Ventral aorta according to pressing depth is 4-5 centimetre, and dynamics is 35 kilograms.Can cooperate when pushing and suck an amount of oxygen.Every day twice, each 30-40 minute, 15 days was a course of treatment.A lighter's state of an illness course of treatment improves, and result of use is better throughout the year.
Claims (9)
1, a kind of automatic physiotherapy equipment for cardiac, it comprises actuating unit, power drive mechanism, by chest compression mechanism, ventral aorta pressing mechanism that power drive mechanism drives, it is characterized in that:
The output shaft of a, power drive mechanism (2) end is a bent axle (12);
B,, the ventral aorta pressing mechanism comprise slip cap the output shaft (2) of power drive mechanism go up and outer convex direction and the outer convex direction of bent axle (2) to anti-eccentric (3), with eccentric roll the setting of stretching up and down that is connected, the stretch lower end of setting is connected a ventral aorta and pushes hands (10) up and down;
C, ventral aorta pressing mechanism comprise that connecting rod (15), connecting rod (15) lower end of hinge on bent axle (12) connects a thoracic cavity extruding gasbag (16) by the cylinder drive.
2, automatic physiotherapy equipment for cardiac according to claim 1, it is characterized in that: flexible up and down the setting comprises that a Connection Card (8), Connection Card (8) divide isolated two sections up and down, be provided with in the epimere and be provided with a ball (4) in oiling roller (5), oiling roller (5) top-portion apertures, ball (4) is gone up with eccentric roll be connected, immerse down in the oiling roller, the oiling roller lower end is connected with support bar (24), support bar (24) is supported on the interior support spring (7) of Connection Card; Connection Card hypomere internal fixation is equipped with pressing lever (9), and pressing lever (9) lower end is equipped with ventral aorta and is pushed hands (10).
3, automatic physiotherapy equipment for cardiac according to claim 2, it is characterized in that: be provided with keyway in the axis hole of described eccentric (3), output shaft (2) is provided with the key (23) that is slidingly matched with strong groove, eccentric (3) wheel rim is limited in one and regulates in the device of leading screw so that the left and right adjusting eccentric, and leading screw is supported on the bearing bracket stand (6).
4, automatic physiotherapy equipment for cardiac according to claim 1 is characterized in that: described ventral aorta is pushed hands (10) and is connected pressing lever (9) lower end by an elevation and subsidence regulating device (11).
5, automatic physiotherapy equipment for cardiac according to claim 4, it is characterized in that: described power drive mechanism also comprises motor (18), the variator (1) that is connected with motor, the shaft joint (19) that is connected with variator, the axle sleeve (20) that is connected with shaft joint, axle sleeve (21) are connected with output shaft (2), and output shaft (2) is terminal to be connected with bent axle (12) by two axle sleeves (21,22).
6, automatic physiotherapy equipment for cardiac according to claim 5 is characterized in that: described leading screw end is connected with handle (13).
7, automatic physiotherapy equipment for cardiac according to claim 6 is characterized in that: be equipped with by press (17) below ventral aorta is pushed hands (10) and thoracic cavity extruding gasbag (16).
8, automatic physiotherapy equipment for cardiac according to claim 7 is characterized in that: the pressing lever (15) of Connection Card of chest compression mechanism (8) and ventral aorta pressing mechanism all passes through the limit of guiding up and down device separately.
9, automatic physiotherapy equipment for cardiac according to claim 7 is characterized in that: described actuating unit is controlled by computerized control system, and computerized control system is connected with cardiac monitoring system.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN2006100179483A CN1861034B (en) | 2006-06-13 | 2006-06-13 | Automatic physiotherapy equipment for cardiac |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN2006100179483A CN1861034B (en) | 2006-06-13 | 2006-06-13 | Automatic physiotherapy equipment for cardiac |
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CN1861034A true CN1861034A (en) | 2006-11-15 |
CN1861034B CN1861034B (en) | 2010-06-23 |
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CN2006100179483A Expired - Fee Related CN1861034B (en) | 2006-06-13 | 2006-06-13 | Automatic physiotherapy equipment for cardiac |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102028612B (en) * | 2009-09-25 | 2012-04-18 | 王卫东 | Cardiopulmonary resuscitator |
CN108392329A (en) * | 2018-04-18 | 2018-08-14 | 河南科技大学第附属医院 | A kind of Ultrasonography inspection survival kit |
CN111529357A (en) * | 2020-04-16 | 2020-08-14 | 李永翔 | Clinical medical cardiopulmonary resuscitator of emergency department |
Family Cites Families (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US3904195A (en) * | 1973-09-07 | 1975-09-09 | Rene Chavanne | Body exercising and re-education apparatus |
US5630789A (en) * | 1994-10-07 | 1997-05-20 | Datascope Investment Corp. | Active compression/decompression device for cardiopulmonary resuscitation |
US5769797A (en) * | 1996-06-11 | 1998-06-23 | American Biosystems, Inc. | Oscillatory chest compression device |
CN2354553Y (en) * | 1998-12-02 | 1999-12-22 | 王保吉 | Automatic heart pressing device |
CN2759459Y (en) * | 2004-11-25 | 2006-02-22 | 王天生 | Automatic extrathoracic cardiac massaging machine |
-
2006
- 2006-06-13 CN CN2006100179483A patent/CN1861034B/en not_active Expired - Fee Related
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102028612B (en) * | 2009-09-25 | 2012-04-18 | 王卫东 | Cardiopulmonary resuscitator |
CN108392329A (en) * | 2018-04-18 | 2018-08-14 | 河南科技大学第附属医院 | A kind of Ultrasonography inspection survival kit |
CN108392329B (en) * | 2018-04-18 | 2019-11-15 | 河南科技大学第一附属医院 | A kind of Ultrasonography inspection survival kit |
CN111529357A (en) * | 2020-04-16 | 2020-08-14 | 李永翔 | Clinical medical cardiopulmonary resuscitator of emergency department |
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Publication number | Publication date |
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CN1861034B (en) | 2010-06-23 |
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Granted publication date: 20100623 Termination date: 20110613 |