Intelligent endoscopy equipment

By utilizing the adjustment mechanism and control components of the intelligent endoscopic examination equipment, and through the cooperation of the gas injection catheter and rubber bladder, the problem of inconvenient adjustment of the endoscopic observation angle has been solved, enabling flexible angle adjustment of the endoscopic lens and improving the observation effect.

CN223742860UActive Publication Date: 2025-12-30河北港口集团有限公司秦皇岛中西医结合医院
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Patent Information

Application Number
CN202520405883.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-10
Publication Date
2025-12-30
Estimated Expiration
2035-03-10

AI Technical Summary

Technical Problem

The existing endoscopes are inconvenient to adjust the observation angle inside the patient's body, which affects the observation effect.

Method used

An intelligent endoscopic examination device was designed. Through the adjustment mechanism and control components, the angle of the endoscope is adjusted by the cooperation of the gas injection inner tube and the rubber bladder. The device includes a combination of a soft tubing, an inner tube, a flexible film and a rubber bladder. The angle is adjusted by manually rotating the rotating sleeve and the fixing ring.

Benefits of technology

It enables flexible angle adjustment of the endoscope lens, improves the observation effect, and ensures the accuracy and comfort of the endoscope.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of medical instruments, in particular to intelligent endoscopy equipment which comprises an endoscope lens and a wire jacket, and the endoscope lens is arranged at one end of the wire jacket; the adjusting mechanism is mounted in the wire jacket, and one end of the adjusting mechanism penetrates into the endoscope lens; wherein the adjusting mechanism comprises an internal wire fixedly connected to the interior of the endoscope lens, and the other end of the internal wire penetrates into the interior of the wire jacket; according to the intelligent endoscopy equipment, under the action of the adjusting assembly, the observation irradiation angle of the endoscope lens can be adjusted, gas is injected into the inner guide pipe through the control assembly, the gas in the inner guide pipe is guided into the adjacent inner cavity, and therefore due to the fact that the surface of the silica gel sheet is in a wavy shape, the observation irradiation angle of the endoscope lens can be adjusted. Therefore, the angle of the endoscope lens is adjusted, and the observation effect of the endoscope is guaranteed.
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Description

Technical Field

[0001] This utility model relates to the field of medical device technology, and in particular to an intelligent endoscopic examination device. Background Technology

[0002] An endoscope is a diagnostic instrument that integrates traditional optics, ergonomics, precision mechanics, modern electronics, mathematics, and software. An endoscope can be inserted into the stomach through the mouth or other natural orifices. Endoscopes can visualize lesions that X-rays cannot, making them extremely useful for doctors. With the help of an endoscope, doctors can observe ulcers or tumors in the stomach and formulate the best treatment plan accordingly.

[0003] A search of existing technologies for "endoscope" yielded the publication number "CN219147536U". This device effectively reduces unnecessary bending of the endoscope (laparoscopy) when connected to the imaging display device via optical cable. However, during observation, the observation head is inside the patient's body, making it inconvenient to adjust the observation angle and affecting the observation effect of the endoscope.

[0004] Therefore, an intelligent endoscopic examination device is proposed to solve the above problems. Utility Model Content

[0005] The purpose of this invention is to provide an intelligent endoscopic examination device to solve the above-mentioned problems, thereby improving the problem that the observation angle adjustment is inconvenient due to the observation head being inside the patient's body, which affects the observation effect of the endoscope.

[0006] This utility model achieves the above-mentioned objective through the following technical solution: an intelligent endoscopic examination device, comprising: an endoscope lens and a guide wire sheath, wherein the endoscope lens is disposed at one end of the guide wire sheath; an adjustment mechanism, wherein the adjustment mechanism is installed inside the guide wire sheath, and one end of the adjustment mechanism extends through the interior of the endoscope lens; wherein the adjustment mechanism includes an internal guide wire fixedly connected to the interior of the endoscope lens, the other end of the internal guide wire extending through the interior of the guide wire sheath, a control component is disposed on the surface of the internal guide wire, the control component is installed on the surface of the guide wire sheath, and an adjustment component is installed on the side of the control component closer to the endoscope lens.

[0007] Preferably, the internal wire includes a flexible rubber tube fixedly connected to the inner wall of the wire sheath. Multiple internal conduits are embedded in the inner wall of the flexible rubber tube. One end of the internal conduit near the endoscope extends to the outside of the flexible rubber tube. One end of the flexible rubber tube is fixedly connected to the surface of the endoscope with multiple flexible films. A silicone sheet is fixedly connected to the surface of the flexible film. The silicone sheet is made of deformable flexible silicone material, and the flexible film material is a soft rubber material.

[0008] Preferably, the control component includes a rotating sleeve fitted onto the surface of the conductor jacket, with fixed rings rotatably connected to both ends of the rotating sleeve. The fixed rings are fixedly connected to the surface of the conductor jacket, and a stop block is fixedly connected to the inner wall of the rotating sleeve. The stop block has multiple rubber bladders inside, and the rubber bladders are connected to the ends of adjacent inner conduits. By holding the fixed rings and manually rotating the rotating sleeve, the stop block moves accordingly, wherein the stop block abuts against the surface of the adjacent rubber bladders, thereby squeezing the gas inside the rubber bladders and guiding it into the inner conduit.

[0009] Preferably, the silicone sheet and the flexible film are combined to form an internal cavity, and the surface of the silicone sheet away from the flexible film is wavy, wherein the gas in the inner conduit is guided to the adjacent internal cavity, and then, due to the wavy surface of the silicone sheet, it gradually extends and tends to become flat.

[0010] Preferably, a plurality of the flexible films are arranged in a ring along the inner wall of the soft tubing, and the flexible films are fixedly connected to the surface of the internal wires.

[0011] Preferably, the rubber bladder is fixedly connected to the surface of the internal wire, and a plurality of the rubber bladders are distributed in a ring along the surface of the internal wire, and the rubber bladders store gas inside.

[0012] Preferably, a plurality of rubber rods are fixedly connected to the inner wall of the rubber bladder near the abutment block, and the other end of the rubber rods is fixedly connected to the inner wall of the rubber bladder near the internal wire. The rubber rods are made of elastic rubber, so that the rubber bladder expands when the abutment block does not abut against the rubber bladder.

[0013] The beneficial effects of this utility model are:

[0014] 1. The above-mentioned intelligent endoscope examination device can adjust the observation angle of the endoscope lens under the action of the adjustment component. The device injects gas into the interior of the inner tube through the control component. The gas in the inner tube is guided to the adjacent internal cavity. As the surface of the silicone sheet is wavy, it gradually extends and tends to be flat, thereby adjusting the angle of the endoscope lens and ensuring the observation effect of the endoscope.

[0015] 2. By setting up a control component, the adjustment component can be driven under the action of the control component. The device manually rotates the rotating sleeve by holding the fixed ring, which drives the abutment to move accordingly, and adjusts the observation angle of the wire jacket. The abutment contacts the surface of the adjacent rubber bladder, squeezing the gas inside the rubber bladder and guiding it into the inner conduit, thus driving the internal wire to adjust the angle. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the structure of this utility model;

[0017] Figure 2This is an exploded view of the adjusting mechanism of this utility model;

[0018] Figure 3 This is a cross-sectional view of the adjustment component of this utility model;

[0019] Figure 4 This is an exploded sectional view of the control component of this utility model.

[0020] In the diagram: 1. Endoscope; 2. Cable sheath; 3. Adjustment mechanism; 31. Internal cable; 32. Adjustment assembly; 321. Flexible tubing; 322. Internal catheter; 323. Flexible film; 324. Silicone sheet; 325. Internal cavity; 33. Control assembly; 331. Rotating sleeve; 332. Fixing ring; 333. Abutment; 334. Rubber bladder; 335. Rubber rod. Detailed Implementation

[0021] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0022] In practical implementation: such as Figure 1-4 As shown, an intelligent endoscopic examination device includes: an endoscope 1 and a guide tube sleeve 2, with the endoscope 1 disposed at one end of the guide tube sleeve 2; an adjustment mechanism 3 installed inside the guide tube sleeve 2, with one end of the adjustment mechanism 3 penetrating into the interior of the endoscope 1; wherein, the adjustment mechanism 3 includes an internal guide tube 31 fixedly connected to the interior of the endoscope 1, the other end of the internal guide tube 31 penetrating into the interior of the guide tube sleeve 2, a control component 33 disposed on the surface of the internal guide tube 31, the control component 33 being installed on the surface of the guide tube sleeve 2, and an adjustment component 32 being installed on the side of the control component 33 near the endoscope 1;

[0023] like Figures 1-4As shown, the internal wire 31 includes a flexible tubing 321 fixedly connected to the inner wall of the wire sheath 2. Multiple internal conduits 322 are embedded in the inner wall of the flexible tubing 321. One end of the internal conduit 322 near the endoscope 1 extends to the outside of the flexible tubing 321. One end of the flexible tubing 321 is fixedly connected to the surface of the endoscope 1 with multiple flexible films 323. A silicone sheet 324 is fixedly connected to the surface of the flexible film 323. The silicone sheet 324 and the flexible film 323 are combined to form an internal cavity 325. The surface of the silicone sheet 324 away from the flexible film 323 is wavy. Multiple flexible films 323 are distributed in a ring along the inner wall of the flexible tubing 321. The flexible films 323 are fixedly connected to the surface of the internal wire 31. When the device is in use, gas can be injected into the interior of the inner conduit 322 through the control component 33. The gas in the inner conduit 322 is guided to the adjacent internal cavity 325. As the surface of the silicone sheet 324 is wavy, it gradually extends and becomes flat, thereby allowing the angle of the endoscope 1 to be adjusted. The silicone sheet 324 is made of deformable flexible silicone material, and the flexible film 323 is made of soft rubber material.

[0024] like Figure 1 , Figure 2 and Figure 4 As shown, the control component 33 includes a rotating sleeve 331 fitted onto the surface of the conductor jacket 2. Both ends of the rotating sleeve 331 are rotatably connected to a fixing ring 332, which is fixedly connected to the surface of the conductor jacket 2. A stop block 333 is fixedly connected to the inner wall of the rotating sleeve 331. Multiple rubber bladders 334 are disposed inside the stop block 333. The rubber bladders 334 are connected to the ends of adjacent inner conduits 322. The rubber bladders 334 are fixedly connected to the surface of the inner conductor 31. The multiple rubber bladders 334 are distributed in a ring along the surface of the inner conductor 31. Multiple rubber rods 335 are fixedly connected to the inner wall of the rubber bladders 334 near the stop block 333. The other end of the rubber rods 335 is fixedly connected to the inner wall of the rubber bladders 334 near the inner conductor 31. When the operator needs to adjust the viewing angle of the lead wire jacket 2, he can manually hold the fixing ring 332 and manually rotate the rotating sleeve 331 to drive the abutment 333 to move. The abutment 333 abuts against the surface of the adjacent rubber bladder 334, thereby squeezing the gas guide tube 322 inside the rubber bladder 334. Since there are multiple rubber rods 335 inside the rubber bladder 334, and the rubber rods 335 are made of elastic rubber, the rubber bladder 334 is inflated when the abutment 333 does not abut against the rubber bladder 334.

[0025] In use, the rotating sleeve 331 is manually rotated by holding the fixing ring 332, which causes the abutment 333 to move accordingly, adjusting the observation angle of the wire sleeve 2. The abutment 333 abuts against the surface of the adjacent rubber bladder 334, squeezing the gas inside the rubber bladder 334 into the inner conduit 322. The gas is injected into the inner conduit 322 by the control component 33, and the gas in the inner conduit 322 is guided to the adjacent internal cavity 325. Since the surface of the silicone sheet 324 is wavy, it gradually extends and tends to be flat, thus changing the angle of the endoscopic lens 1.

[0026] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. An intelligent endoscopy device, characterized by, The utility model relates to an endoscope head (1) and a guide wire sheath (2), the endoscope head (1) is arranged at one end of guide wire sheath (2), an adjusting mechanism (3) is installed inside guide wire sheath (2), one end of adjusting mechanism (3) penetrates to the inside of endoscope head (1), wherein the adjusting mechanism (3) includes the inside guide wire (31) fixedly connected in the inside of endoscope head (1), the other end of inside guide wire (31) penetrates to the inside of guide wire sheath (2), the surface of inside guide wire (31) is provided with control assembly (33), control assembly (33) is installed on the surface of guide wire sheath (2), and adjusting assembly (32) is installed on the side close to endoscope head (1) of control assembly (33). The inside guide wire (31) includes the soft rubber tube (321) fixedly connected to the inner wall of the guide wire sheath (2), a plurality of inner tubes (322) are embedded and installed on the inner wall of the soft rubber tube (321), one end of the inner tube (322) close to the endoscope head (1) penetrates to the outside of the soft rubber tube (321), a plurality of flexible rubber sheets (323) are fixedly connected to the surface of the soft rubber tube (321) at one end, and a silica gel sheet (324) is fixedly connected to the surface of the flexible rubber sheet (323). The control assembly (33) includes a rotating sleeve (331) sleeved on the surface of the guide wire sheath (2), both ends of the rotating sleeve (331) are rotatably connected with a fixed ring (332), the fixed ring (332) is fixedly connected to the surface of the guide wire sheath (2), the inner wall of the rotating sleeve (331) is fixedly connected with a stop block (333), a plurality of rubber capsules (334) are arranged in the inside of the stop block (333), and the rubber capsules (334) are in communication with the end portions of adjacent inner tubes (322). The silica gel sheet (324) and the flexible rubber sheet (323) combine to form an internal cavity (325), and the surface of the silica gel sheet (324) away from the flexible rubber sheet (323) is wavy.

2. The intelligent endoscopy device of claim 1, wherein: A plurality of flexible rubber sheets (323) are annularly distributed along the inner wall of the soft rubber tube (321) and are fixedly connected to the surface of the inside guide wire (31).

3. The intelligent endoscopy device of claim 2, wherein: The rubber capsules (334) are fixedly connected to the surface of the inside guide wire (31) and are annularly distributed along the surface of the inside guide wire (31).

4. The intelligent endoscopy device of claim 2, wherein: The rubber capsules (334) are fixedly connected with a plurality of rubber rods (335) close to the inner wall of the stop block (333), and the other ends of the rubber rods (335) are fixedly connected to the inner wall of the rubber capsules (334) close to the inside guide wire (31).

5. The intelligent endoscopy device of claim 4, wherein: ​ 6. The intelligent endoscopy device of claim 3, wherein: ​ 7. The intelligent endoscopy device of claim 6, wherein: ​

Citation Information

Patent Citations

  • Endoscope

    CN219147536U