CN210170033U - Noninvasive hemodynamic detector - Google Patents

Noninvasive hemodynamic detector Download PDF

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Publication number
CN210170033U
CN210170033U CN201920536100.4U CN201920536100U CN210170033U CN 210170033 U CN210170033 U CN 210170033U CN 201920536100 U CN201920536100 U CN 201920536100U CN 210170033 U CN210170033 U CN 210170033U
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China
Prior art keywords
outer tube
locking groove
sleeve pipe
spring
electrode plate
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CN201920536100.4U
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Chinese (zh)
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李燕青
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MAIDEAN MEDICAL EQUIPMENT CO Ltd SHENZHEN
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MAIDEAN MEDICAL EQUIPMENT CO Ltd SHENZHEN
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Abstract

The utility model discloses a there is not hemodynamics detector of wound, the on-line screen storage device comprises a base, the intermediate position department at base top installs interior sleeve pipe, and interior sheathed tube one side has evenly seted up the locking groove, the top of interior sleeve pipe lateral wall is provided with the outer tube, and outer tube and interior sleeve pipe are fit for mutually, the bottom of outer tube lateral wall articulates there is the press plate, and keeps away from the one end of hinged end according to the press plate and install spring A, set up the fitting bolt that runs through it on the outer tube. The utility model discloses install interior sleeve pipe, outer tube, press the clamp plate, spring A, spacing groove, latch bolt and locking groove, press down and make the latch bolt pull outward according to the clamp plate, remove the spacing relation in latch bolt and locking groove, according to operator's height, adjustment outer tube and interior sheathed tube position relation loosen behind the clamp plate, spring A resumes deformation power and pushes away and lift on the clamp plate one end to press the latch bolt interior pressure, it is spacing to make it accomplish with appointed locking groove and lock, the convenience of operation has been improved.

Description

Noninvasive hemodynamic detector
Technical Field
The utility model relates to a blood test equipment technical field specifically is a noninvasive blood dynamics detector.
Background
The hemodynamics detector is used for critical diseases such as myocardial infarction, heart failure, acute pulmonary edema, acute pulmonary embolism, shock caused by various reasons, sudden cardiac arrest and respiration, serious multiple injuries, multiple organ failure, major perioperative period and the like, and people needing to strictly monitor the function change of a circulatory system so as to guide the application of cardiovascular active drugs.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a do not have hemodynamics detector of creating to solve the problem that proposes in the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme: a noninvasive hemodynamic detector comprises a base, wherein an inner sleeve is installed at the middle position of the top of the base, a locking groove is uniformly formed in one side of the inner sleeve, an outer sleeve is arranged at the top end of the outer sleeve side wall, the outer sleeve and the inner sleeve are suitable, a pressing plate is hinged to the bottom end of the outer sleeve side wall, a spring A is installed at one end, away from a hinged end, of the pressing plate, a locking bolt which penetrates through the outer sleeve is arranged on the outer sleeve, the locking bolt is matched with the locking groove, a limiting groove is formed in one end, away from the locking groove, of the outer locking bolt outer side wall, a mounting plate is installed at the top of the outer sleeve, a limiting clamp is installed at one end of the top of the mounting plate, an L hinged rod is hinged to one end, away from the mounting plate, of the top of, the utility model discloses an electrode plate assembly, including L articulated rod, outer telescopic tube, spring B, outer telescopic tube, outer sleeve, electrode plate assembly, host computer and switch, centre gripping inductive head electricity are connected to the outside one side of outer tube, and the inside of the outer telescopic tube of arc is provided with spring B, the top of mounting panel is provided with the host computer, and one side intercommunication of host computer has the switch, the other end of switch evenly is provided with the centre gripping inductive head, the outside one side of outer tube is provided with the collecting storage.
Preferably, the electrode slice subassembly includes that primary and secondary magic subsides A, hinge ring, sliding sleeve A, electrode slice A, sliding sleeve B, bandage, primary and secondary magic subsides B and electrode slice B, hinge ring and bandage are all placed inside the collecting chamber, and the lateral wall at hinge ring both ends is provided with primary and secondary magic subsides A, the both ends symmetry cover of hinge ring lateral wall is equipped with sliding sleeve A, and sliding sleeve A all installs electrode slice A in the one side that is close to mutually, the one side that the bandage both ends are close to mutually all is provided with primary and secondary magic subsides B, and the both ends symmetry cover of bandage lateral wall is equipped with sliding sleeve B, and electrode slice B is all installed to one side of sliding sleeve B.
Preferably, one end of the locking bolt close to the locking groove is of a conical structure.
Preferably, a rubber layer is arranged on one side of the pressing plate far away from the spring A.
Preferably, the inner side wall of the pull ring is provided with a cotton layer.
Preferably, the top end of the outer side wall of the outer sleeve is provided with a rope winding rod.
Preferably, the top of the main frame is provided with a handle, and the outer side wall of the handle is provided with a rubber layer.
Compared with the prior art, the beneficial effects of the utility model are that: the noninvasive hemodynamic detector is provided with a primary and secondary magic tape A, a hinge ring, a sliding sleeve A, an electrode plate A, a sliding sleeve B, a binding band, a primary and secondary magic tape B, an electrode plate and a clamping induction head, wherein the sliding sleeve A is held by a hand to slide on the outer side of the hinge ring according to the thickness of a neck of a patient, the electrode plate A is just tightly pressed on two sides of the detected person, two ends of the hinge ring are fixed through the primary and secondary magic tape A, the binding band is bound on the position of the thorax of the detected person, the tightness and the length of the binding band are adjusted according to the body type of the detected person, two ends of the binding band are fixed through the primary and secondary magic tape B, the sliding sleeve B is held by the hand to slide, the electrode plate B is just tightly stuck on the thorax of the detected person, the clamping induction head is respectively clamped on each group of the electrode plate A and the electrode plate B, real-time detection can be carried out, the possibility of cross infection is avoided, the horizontal alignment and tight attachment stability of the electrode plate A and the electrode plate B is improved, translocation is avoided, the accuracy of blood oxygen detection is influenced, the noninvasive hemodynamic detector is provided with an inner sleeve, an outer sleeve, a pressing plate, a spring A, a limiting groove, a locking bolt and a locking groove, the pressing plate is pressed to enable the locking bolt to be pulled outwards, the limiting relation between the locking bolt and the locking groove is removed, the position relation between the outer sleeve and the inner sleeve is adjusted according to the height of an operator, after the pressing plate is released, the spring A recovers deformation force to push one end of the pressing plate to be lifted upwards, so that the locking bolt is pressed inwards, the locking bolt and an appointed locking groove are locked and limited, the height adjustment in clinical use is facilitated, the convenience in operation is improved, and the device is convenient for the disassembly and assembly operation of a host machine through the spring B, the arc-shaped telescopic pipes, can be placed, carried and used, and improves the flexibility and the applicability of the device.
Drawings
Fig. 1 is a schematic front sectional view of the present invention;
FIG. 2 is an enlarged schematic view of the structure at the position A of the present invention;
fig. 3 is an enlarged schematic view of the structure at the position B of the present invention.
In the figure: 1. an inner sleeve; 2. an outer sleeve; 3. a host; 4. mounting a plate; 5. a limiting clamp; 6. a switch; 7. a primary and secondary magic tape A; 8. a hinge ring; 9. a sliding sleeve A; 10. an electrode slice A; 11. a sliding sleeve B; 12. binding bands; 13. a primary and secondary magic tape B; 14. an electrode slice B; 15. clamping the induction head; 16. a base; 17. a pressing plate; 18. a spring A; 19. a limiting groove; 20. a locking bolt; 21. a locking groove; 22. a pull ring; 23. an L-shaped hinge rod; 24. a spring B; 25. an arc-shaped inner and outer telescopic pipe.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-3, the present invention provides an embodiment: a noninvasive hemodynamic detector comprises a base 16, an inner sleeve pipe 1 is installed at the middle position of the top of the base 16, a locking groove 21 is uniformly formed in one side of the inner sleeve pipe 1, an outer sleeve pipe 2 is arranged at the top end of the outer side wall of the inner sleeve pipe 1, the outer sleeve pipe 2 is suitable for the inner sleeve pipe 1, the height of the device can be conveniently adjusted according to the height and clinical conditions of an operator, the applicability and the comfort of the device are improved, a pressing plate 17 is hinged to the bottom end of the outer side wall of the outer sleeve pipe 2, a spring A18 is installed at one end, far away from the hinged end, of the pressing plate 17, of the spring A18, a locking bolt 20 penetrating through the outer sleeve pipe 2 is arranged on the outer sleeve pipe 2, the locking bolt 20 is matched with the locking groove 21, a limiting groove 19 is formed in one end, far away from the locking groove 21, of the outer side wall of, the one end that mounting panel 4 top was kept away from spacing clamp 5 articulates there is L hinge bar 23, the use is carried in the dismouting of being convenient for, improve and use flexibility and suitability, and L hinge bar 23 keeps away from the one end of mounting panel 4 and installs pull ring 22, flexible pipe 25 inside and outside the arc is installed to the bottom of L hinge bar 23, and the inboard of flexible pipe 25 inside and outside the arc is provided with spring B24, the top of mounting panel 4 is provided with host computer 3, and one side intercommunication of host computer 3 has switch 6, switch 6's the other end evenly is provided with centre gripping inductive head 15, the outside one side of outer tube 2 is provided with the storage bin, and the electrode slice subassembly has been placed to the inside of storage bin, host computer 3 and.
In this implementation: the electrode plate assembly comprises a primary and secondary magic tape A7, a hinged ring 8, a sliding sleeve A9, an electrode plate A10, a sliding sleeve B11, a bandage 12, a primary and secondary magic tape B13 and an electrode plate B14, wherein the hinged ring 8 and the bandage 12 are all placed inside the storage bin, the outer side walls of the two ends of the hinged ring 8 are provided with primary and secondary magic tapes A7, the two ends of the outer side wall of the hinged ring 8 are symmetrically sleeved with the sliding sleeve A9, the side, close to the sliding sleeve A9, is provided with an electrode plate A10, the side, close to the two ends of the bandage 12 is provided with a primary and secondary magic tape B13, the two ends of the outer side wall of the bandage 12 are symmetrically sleeved with the sliding sleeve B11, one side of the sliding sleeve B11 is provided with an electrode plate B14, sampling detection is not required to puncture, cross infection is avoided, the stability of horizontal tightness is improved, translocation is avoided, the accuracy of detection is influenced, one, be convenient for make the locking bolt 20 impress inside the completion of locking groove 21 spacing, improve stability, one side of keeping away from spring A18 according to pressing plate 17 is provided with the rubber layer, improve the comfort level of pressing, the inside wall of pull ring 22 is provided with the cotton layer, improve operation comfort, avoid taking place the scratch, the top of outer tube 2 lateral wall is provided with the winding rope pole, each group's wire of being convenient for twines and accomodates, avoid taking place the confusion, so that follow-up taking, the top of host computer 3 is provided with the handle, and the lateral wall of handle is provided with the rubber layer, be convenient for carry and hold the use of carrying, use comfort.
The working principle is as follows: switching on a power supply (the device uses electric components which are all powered by an external power supply), moving the device to a designated position through a universal self-locking wheel, pressing a pressing plate 17 to pull a locking bolt 20 outwards, releasing the limit relation between the locking bolt 20 and a locking groove 21, adjusting the position relation between an outer sleeve 2 and an inner sleeve 1 according to the height of an operator, loosening the pressing plate 17, restoring the deformation force by a spring A18 to push one end of the pressing plate 17 to lift upwards so as to press the locking bolt 20 inwards to complete the locking limit with the designated locking groove 21, taking out a head induction electrode plate assembly from a storage bin, sleeving a hinged ring 8 at the neck position of a detected person, pinching a sliding sleeve A9 to slide on the outer side of the hinged ring 8 according to the neck thickness of the patient to enable an electrode plate A10 to be just pressed on two sides of the hinged person, fixing two ends of the hinged ring 8 through a snap magic tape A7, and taking out the outline induction electrode plate assembly from the storage bin, the bandage 12 is tied at the position of the chest of a detected person, the tightness and the length of the bandage 12 are adjusted according to the body type of the detected person, two ends of the bandage 12 are fixed through a snap magic tape B13, a sliding sleeve B11 is held by a hand to slide, an electrode plate B14 is just attached to the chest of the detected person, a clamping induction head 15 is clamped on each group of electrode plates A10 and B14 respectively, a switch 6 activation circuit is opened, detected blood oxygen indexes and the like are observed and recorded through a host 3, when the host 3 needs to be carried, the pull ring 22 is held by the hand to pull outwards, the pressing relation of the L hinge rod 23 to the host 3 is released, the host 3 is carried, taken out and then the pull ring 22 is released, a spring B24 pushes the L hinge rod 23 to reset through an arc-shaped inner and outer telescopic tube 25, and the host 3, the bandage 12 and the L hinge ring 8 are reset and stored after the use is finished.
Although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments or portions thereof without departing from the spirit and scope of the invention.

Claims (7)

1. A non-invasive hemodynamic detector, comprising a base (16), characterized in that: the middle position department at base (16) top installs interior sleeve pipe (1), and evenly seted up locking groove (21) in one side of interior sleeve pipe (1), the top of interior sleeve pipe (1) lateral wall is provided with outer tube (2), and outer tube (2) and interior sleeve pipe (1) are fit for, the bottom of outer tube (2) lateral wall articulates there is press plate (17), and press plate (17) to keep away from the one end of hinged end and install spring A (18), set up locking bolt (20) that run through it on outer tube (2), and locking bolt (20) and locking groove (21) cooperate, spacing groove (19) have been seted up to the one end that locking groove (21) were kept away from to locking bolt (20) lateral wall, and the one end of spacing groove (19) and press plate (17) is fit for, mounting panel (4) are installed at the top of outer tube (2), and spacing clamp (5) are installed to the one end at mounting panel (4) top, the utility model discloses a portable electrode assembly, including mounting panel (4), inner and outer flexible pipe (25) of arc, outer sleeve (2), electrode piece assembly, host computer (3) and switch (6), centre gripping inductive head (15) electricity are connected to the one end that spacing clamp (5) were kept away from at mounting panel (4) top is articulated to have L hinge bar (23), and L hinge bar (23) keep away from the one end of mounting panel (4) and install pull ring (22), the inner and outer flexible pipe (25) of arc are installed to the bottom of L hinge bar (23), and the inboard of the inner and outer flexible pipe (25) of arc is provided with spring B (24), the top of mounting panel (4) is provided with host computer (3), and one side intercommunication of host computer (3) has switch (6), the other end of.
2. The non-invasive hemodynamic detector of claim 1, wherein: the electrode plate component comprises a primary and secondary magic tape A (7), a hinge ring (8), a sliding sleeve A (9), an electrode plate A (10), a sliding sleeve B (11), a binding band (12), a primary and secondary magic tape B (13) and an electrode plate B (14), the hinge ring (8) and the binding band (12) are all placed inside the storage bin, and the outer side walls at the two ends of the hinged ring (8) are provided with primary and secondary magic tapes A (7), two ends of the outer side wall of the hinge ring (8) are symmetrically sleeved with sliding sleeves A (9), and one side of the sliding sleeve A (9) close to the electrode plate A (10) is provided with the electrode plate A, one side of the two ends of the binding band (12) close to each other is provided with a primary and secondary magic tape B (13), and two ends of the outer side wall of the binding band (12) are symmetrically sleeved with sliding sleeves B (11), and one side of the sliding sleeve B (11) is provided with an electrode plate B (14).
3. The non-invasive hemodynamic detector of claim 1, wherein: one end of the locking bolt (20) close to the locking groove (21) is of a conical structure.
4. The non-invasive hemodynamic detector of claim 1, wherein: and a rubber layer is arranged on one side of the pressing plate (17) far away from the spring A (18).
5. The non-invasive hemodynamic detector of claim 1, wherein: the inside wall of pull ring (22) is provided with the cotton layer.
6. The non-invasive hemodynamic detector of claim 1, wherein: and a rope winding rod is arranged at the top end of the outer side wall of the outer sleeve (2).
7. The non-invasive hemodynamic detector of claim 1, wherein: the top of the main machine (3) is provided with a handle, and the outer side wall of the handle is provided with a rubber layer.
CN201920536100.4U 2019-04-19 2019-04-19 Noninvasive hemodynamic detector Active CN210170033U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920536100.4U CN210170033U (en) 2019-04-19 2019-04-19 Noninvasive hemodynamic detector

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920536100.4U CN210170033U (en) 2019-04-19 2019-04-19 Noninvasive hemodynamic detector

Publications (1)

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CN210170033U true CN210170033U (en) 2020-03-24

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112205193A (en) * 2020-10-26 2021-01-12 广德建国机械有限公司 High branch scissors convenient to adjust

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112205193A (en) * 2020-10-26 2021-01-12 广德建国机械有限公司 High branch scissors convenient to adjust

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