A portable endoscope transfer box for hospital emergency and a portable endoscope diagnosis system

CN224820890UActive Publication Date: 2026-10-09SHANGHAI TENTH PEOPLES HOSPITAL
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Patent Information

Application Number
CN202521111730.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-30
Publication Date
2026-10-09
Estimated Expiration
2035-05-30

AI Technical Summary

Technical Problem

[0006]本实用新型的目的是针对现有技术中的不足,提供一种用于医院急诊的便携式内窥镜转运箱及便携式内窥镜诊断系统,以解决相关技术中存在的难以快速转移内窥镜系统、占地体积大、耗时耗力等问题

Benefits of technology

本实用新型的一种用于医院急诊的便携式内窥镜转运箱及便携式内窥镜诊断系统,利用箱体单元容纳内窥镜辅助器械、内窥镜主机和内窥镜,便于在急救时刻无须整理即可快速完成内窥镜检查的准备工作;利用拉杆单元与滚轮单元的配合,实现对箱体单元的快速转移,方便医护人员拉动箱体单元进行跑动;利用密封单元对内窥镜进行收纳保护,避免内窥镜在转移过程中因活动导致磕碰;利用第一缓冲单元对内窥镜辅助器械、内窥镜主机和内窥镜进行缓冲,防止转运过程中因振动对器械造成损坏。

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Abstract

The utility model relates to a portable endoscope transfer case and portable endoscope diagnosis system for hospital emergency, portable endoscope transfer case includes box body unit, sealing unit, first buffer unit, pull rod unit and gyro wheel unit. Its advantage lies in, utilize the box body unit to contain endoscope auxiliary instrument, endoscope host computer and endoscope, and it is convenient to complete the preparation work of endoscope examination quickly without arranging in the first aid moment, utilize the cooperation of pull rod unit and gyro wheel unit, realize the quick shift to box body unit, and it is convenient for medical staff to pull the box body unit and run, utilize sealing unit and store the protection to endoscope, avoid the endoscope and cause the knock because of the activity in the shift process, utilize the first buffer unit and buffer endoscope auxiliary instrument, endoscope host computer and endoscope, prevent the damage to instrument because of the vibration in the transfer process.
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Description

Technical Field

[0001] This utility model relates to the field of emergency endoscope technology, and in particular to a portable endoscope transport box and a portable endoscope diagnostic system for use in hospital emergency departments. Background Technology

[0002] Conventional endoscopes are typically fixed devices, usually located in the endoscopy room. Patients undergoing endoscopy are categorized as those requiring no anesthesia or those requiring anesthesia. Patients requiring no anesthesia can lie on the examination table for the procedure, while patients requiring anesthesia are usually transported using a transfer bed.

[0003] However, the above methods are not applicable to emergency or ICU patients. For emergency or ICU patients, endoscopic equipment needs to be transported to the bedside for endoscopic examinations. Existing transport methods typically involve moving the entire endoscopic system, fixed in the endoscopy room, to the emergency bedside. An endoscopic system generally includes a wheeled support frame, a main unit mounted on the support frame, a display screen, etc., weighing over 50 kg and standing 1.7–2.0 m tall. Pushing or pulling it alone is difficult, requiring multiple people and elevator assistance for transport, which is time-consuming.

[0004] When transferred to the emergency bedside, the large size of the endoscope system takes up space for other emergency equipment and rescue devices, requiring adjustments to other equipment at the emergency bedside and further increasing the difficulty of emergency treatment.

[0005] Currently, no effective solutions have been proposed for the problems existing in related technologies, such as the difficulty in quickly transferring endoscope systems, large footprint, and time and labor consumption. Utility Model Content

[0006] The purpose of this invention is to address the shortcomings of existing technologies by providing a portable endoscope transport box and a portable endoscope diagnostic system for hospital emergency departments, thereby solving problems such as difficulty in quickly transferring endoscope systems, large footprint, and time and labor consumption in related technologies.

[0007] To achieve the above objectives, the technical solution adopted by this utility model is as follows: In a first aspect, a portable endoscope transport case for use in hospital emergency departments, for transferring an endoscope main unit, an endoscope, and endoscopic auxiliary instruments, including: The housing unit is provided with a first receiving cavity for accommodating endoscopic auxiliary instruments, a second receiving cavity for accommodating the endoscope main unit, and a third receiving cavity for accommodating the endoscope. A sealing unit, which is removably disposed in the third receiving cavity of the housing unit, is used to receive and fix the endoscope; The first buffer unit is disposed inside the housing unit and is used to buffer the endoscope auxiliary instruments, the endoscope main unit, and the sealing unit; A pull rod unit is movably disposed on the side of the housing unit and is used to pull the housing unit to move; A roller unit is disposed on the side of the housing unit to assist the housing unit in moving.

[0008] In some embodiments, the housing unit includes: A housing element, wherein the first buffer unit is disposed inside the housing element; A first spacer element is disposed inside the housing element, and a first buffer unit is disposed on the side of the first spacer element to separate the housing element to form a first receiving cavity; The second spacer element is disposed inside the housing element and located on the side of the first spacer element. The side of the second spacer element is provided with the first buffer unit for separating the housing element to form a second receiving cavity and a third receiving cavity. A lid element is movably disposed on the top of the box body element and is removably locked to the box body element for sealing or exposing the box body element; At least one first movable element is disposed on the side of the housing element and is movably connected to the pull rod unit for reciprocating movement of the pull rod unit along the height direction of the housing element.

[0009] In some embodiments, the sealing unit includes: First sealing element; A second sealing element is removably locked to the first sealing element and is used to cooperate with the first sealing element to receive and secure the endoscope; A plurality of first fixing elements are distributed on the first sealing element for fixing the endoscope; A plurality of second fixing elements are distributed on the second sealing element and are staggered with the corresponding first fixing elements, for use in conjunction with the first fixing elements to fix the endoscope.

[0010] In some embodiments, the first buffer unit includes: A plurality of positioning elements are distributed and disposed inside the housing unit; A plurality of first buffer elements are respectively connected to the corresponding positioning elements for fixing inside the housing unit to buffer the endoscope host, endoscope auxiliary instruments and the sealing unit.

[0011] In some embodiments, the pull rod unit includes: At least one second movable element, which is movably connected to the housing unit and is spaced apart along the height direction of the housing unit; A pull rod element, the bottom end of which is connected to the top end of the second movable element, is used to control the pull rod element and facilitate the user to pull the box unit.

[0012] In some embodiments, when the second movable element is a telescopic structure and the number of the second movable elements is two, the pull rod unit further includes: Two first limiting elements are respectively disposed on the side of the corresponding second movable element; Two second limiting elements are movably disposed between two second movable elements, and the first ends of the two second limiting elements are removably limited to the corresponding first limiting elements. A support element, the two ends of which are respectively connected to two second movable elements, and two second limiting elements are movably disposed inside the support element; A control element is movably disposed on the support element, and the two ends of the control element respectively abut against the second ends of the two second limiting elements for control to make the two second limiting elements move relative to each other; A reset element is disposed inside the support element, and its two ends are respectively connected to two second limiting elements to reset the two second limiting elements so that they are respectively limited and connected to the corresponding first limiting elements.

[0013] In some of these embodiments, it also includes: The second buffer unit is located inside the housing unit and is used for shock absorption.

[0014] In some embodiments, the second buffer unit includes: A plurality of second buffer elements are distributed inside the housing unit, and the first ends of the plurality of second buffer elements are respectively connected to the housing unit; A plurality of protective elements are distributed inside the housing unit and are respectively connected to the corresponding second buffer element.

[0015] In some of these embodiments, it also includes: A locking unit is provided between the housing unit and the pull rod unit, and is used to lock the relative position of the housing unit and the pull rod unit when the housing unit is opened.

[0016] In some embodiments, the locking unit includes: At least one first locking element is disposed at the top of the housing unit; At least one second locking element is disposed at the top of the pull rod unit and is removably locked to the corresponding first locking element, for cooperating with the corresponding first locking element to lock the relative position of the housing unit and the pull rod unit when the housing unit is opened.

[0017] Secondly, a portable endoscopic diagnostic system is provided, comprising: The portable endoscope transport case as described in the first aspect; An endoscope host, wherein the endoscope host is removably disposed in the second receiving cavity of the housing unit of the portable endoscope transport case; An endoscope, which is removably disposed in the third receiving cavity of the housing unit of the portable endoscope transport case.

[0018] In some of these embodiments, it also includes: A gas-water bottle, which is removably disposed in the first receiving cavity of the housing unit of the portable endoscope transport box; A secondary water delivery bottle is removably disposed in the first receiving cavity of the housing unit of the portable endoscope transport box; A suction bottle, which is removably disposed in the first receiving cavity of the housing unit of the portable endoscope transport case; A plurality of tubing, wherein the plurality of tubing is removably disposed in the first receiving cavity of the housing unit of the portable endoscope transport case; A plurality of connecting lines are removably disposed in the first receiving cavity of the housing unit of the portable endoscope transport box.

[0019] The present invention adopts the above technical solution and has the following technical effects compared with the prior art: This utility model discloses a portable endoscope transport box and a portable endoscope diagnostic system for use in hospital emergency departments. The box unit houses the endoscope auxiliary instruments, the endoscope main unit, and the endoscope, facilitating rapid preparation for endoscopic examinations without the need for tidying up during emergency situations. The combination of a pull rod unit and a roller unit enables rapid transfer of the box unit, allowing medical staff to easily move it. A sealing unit protects the endoscope, preventing damage during transport. A first buffer unit cushions the endoscope auxiliary instruments, the endoscope main unit, and the endoscope, preventing damage from vibration during transport. Attached Figure Description

[0020] Figure 1 This is a schematic diagram (a) of a portable endoscope transport box according to an embodiment of the present utility model; Figure 2 This is a schematic diagram (II) of a portable endoscope transport box according to an embodiment of the present utility model; Figure 3 This is a schematic diagram of the housing unit according to an embodiment of the present utility model; Figure 4 This is a schematic diagram of a sealing unit according to an embodiment of the present utility model; Figure 5 This is a schematic diagram of the first buffer unit according to an embodiment of the present utility model; Figure 6 This is a schematic diagram of a pull rod unit according to an embodiment of the present utility model; Figure 7 This is a schematic diagram (III) of a portable endoscope transport box according to an embodiment of the present utility model; Figure 8 This is a schematic diagram of the second buffer unit according to an embodiment of the present utility model; Figure 9 This is a schematic diagram (four) of a portable endoscope transport box according to an embodiment of the present utility model; Figure 10 This is a schematic diagram of a locking unit according to an embodiment of the present utility model; Figure 11 This is a portable endoscopic diagnostic system according to an embodiment of the present invention.

[0021] The reference numerals in the attached drawings are as follows: 100, portable endoscope transport case; 110, case unit; 111, case element; 112, first spacer element; 113, second spacer element; 114, case cover element; 115, first movable element; 120. Sealing unit; 121. First sealing element; 122. Second sealing element; 123. First fixing element; 124. Second fixing element; 130. First buffer unit; 131. Positioning element; 132. First buffer element; 140. Pull rod unit; 141. Second moving element; 142. Pull rod element; 143. First limiting element; 144. Second limiting element; 145. Support element; 146. Control element; 147. Reset element; 150. Roller unit; 160. Second buffer unit; 161. Second buffer element; 162. Protective element; 170. Locking unit; 171. First locking element; 172. Second locking element; 200. Endoscope main unit; 300. Endoscope. Detailed Implementation

[0022] 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 skilled in the art without creative effort are within the protection scope of the present utility model.

[0023] It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments can be combined with each other.

[0024] The present invention will be further described below with reference to the accompanying drawings and specific embodiments, but this is not intended to limit the present invention.

[0025] Example 1 This embodiment relates to the portable endoscope transport box of this utility model.

[0026] An illustrative embodiment of this utility model, such as Figures 1-2As shown, a portable endoscope transport case 100 for hospital emergency use is used to transfer an endoscope main unit, an endoscope, and endoscope auxiliary instruments. It includes a case unit 110, a sealing unit 120, a first buffer unit 130, a pull rod unit 140, and a roller unit 150. The case unit 110 has a first receiving cavity for accommodating endoscope auxiliary instruments, a second receiving cavity for accommodating the endoscope main unit, and a third receiving cavity for accommodating the endoscope. The sealing unit 120 is removably disposed in the third receiving cavity of the case unit 110 for accommodating and securing the endoscope. The first buffer unit 130 is disposed inside the case unit 110 for buffering the endoscope auxiliary instruments, the endoscope main unit, and the sealing unit 120. The pull rod unit 140 is movably disposed on the side of the case unit 110 for pulling the case unit 110. The roller unit 150 is disposed on the side of the case unit 110 for assisting in the movement of the case unit 110.

[0027] The method of using this utility model is as follows: (a) Storage Place the endoscopic auxiliary instruments (such as gas-water bottles, auxiliary water delivery bottles, suction bottles, tubing, and connecting wires) into the first receiving cavity; Place the endoscope main unit into the second receiving cavity; The endoscope is placed into the sealing unit 120, the sealing unit 120 is locked or sealed, and then the sealing unit 120 is placed into the third receiving cavity; Lock or seal the housing unit 110; (ii) Transshipment When a bedside endoscopy is required for an emergency patient, medical staff can pull out the lever unit 140 and move the case unit 110 quickly with the assistance of the roller unit 150. (iii) Endoscopic examination Upon reaching the bedside of the emergency patient, open the housing unit 110, and take out the sealing unit 120, the endoscope main unit, and the endoscope auxiliary instruments in sequence from the housing unit 110, and take out the endoscope from the sealing unit 120. Place the endoscope main unit on the platform (any horizontal plane), connect the endoscope to the endoscope main unit, and connect the endoscope auxiliary instruments to the endoscope main unit or the endoscope respectively, and then you can perform an endoscope examination. (iv) Cleaning After the endoscopy is completed, the endoscopic auxiliary instruments (such as gas and water bottles, auxiliary water bottles, suction bottles, tubing, and connecting wires) are placed into the first receiving cavity. Place the endoscope main unit into the second receiving cavity; The endoscope is placed into the sealing unit 120, the sealing unit 120 is locked or sealed, and then the sealing unit 120 is placed into the third receiving cavity; Lock or seal the housing unit 110; Medical staff can pull out the lever unit 140 and move the box unit 110 quickly with the assistance of the roller unit 150; Upon reaching the clean area, open the housing unit 110 and remove the sealing unit 120, endoscope main unit, and endoscope auxiliary instruments from the housing unit 110 in sequence, and remove the endoscope from the sealing unit 120. Then all the instruments are cleaned and disinfected, and then recycled.

[0028] In some embodiments, the roller unit 150 includes a plurality of roller elements. The plurality of roller elements are symmetrically arranged on both sides of the housing unit 110 and are movably connected to the housing unit 110 respectively.

[0029] Generally, the movable connection between the roller element and the housing unit 110 is a rotatable connection. The rotatable connection between the roller element and the housing unit 110 is a conventional technique in this field and will not be described in detail here.

[0030] At least one roller element is provided on each side of the housing unit 110. When several roller elements are provided on each side of the housing unit 110, the roller elements are spaced apart along the width direction of the housing unit 110.

[0031] In some embodiments, the roller element is a movable wheel, including but not limited to rubber wheels, PU foam wheels, etc.

[0032] In some embodiments, the roller element can be a roller with a braking function. This roller structure is a conventional technique in the art and will not be described in detail here.

[0033] like Figure 3As shown, the housing unit 110 includes a housing element 111, a first spacer element 112, a second spacer element 113, a housing cover element 114, and at least one first movable element 115. The enclosure element 111 has a first buffer unit 130 inside; a first spacer element 112 is disposed inside the enclosure element 111, and the first buffer unit 130 is disposed on the side of the first spacer element 112 to separate the enclosure element 111 into a first receiving cavity; a second spacer element 113 is disposed inside the enclosure element 111 and located on the side of the first spacer element 112, and the first buffer unit 130 is disposed on the side of the second spacer element 113 to separate the enclosure element 111 into a second receiving cavity and a third receiving cavity; a lid element 114 is movably disposed on the top of the enclosure element 111 and is removably locked to the enclosure element 111 to seal or expose the enclosure element 111; a first movable element 115 is disposed on the side of the enclosure element 111 and is movably connected to a pull rod unit 140 to allow the pull rod unit 140 to reciprocate along the height direction of the enclosure element 111.

[0034] The housing element 111 has a closed bottom and an open top structure.

[0035] Generally, the enclosure element 111 is rectangular. Its length, width, and height can be selected according to usage requirements and are not limited here. Typically, the length of the enclosure element 111 is greater than its width.

[0036] In this utility model, the material of the housing component 111 is not limited, as long as it meets the requirements of being lightweight, corrosion-resistant, and having a certain strength.

[0037] Generally, the housing element 111 is made of a non-transparent material.

[0038] In some embodiments, the housing element 111 is provided with a number of hole structures and / or a number of groove structures and / or a number of protrusion structures for plugging, snapping or connecting with other structural units (or elements) by bolts (groups).

[0039] In some of these embodiments, the housing element 111 includes, but is not limited to, a storage box, a containment box, a collection box, etc.

[0040] The first spacer element 112 and the housing element 111 can be fixedly connected or detachably connected. Fixed connections include, but are not limited to, integral molding; detachable connections include, but are not limited to, plug-in, snap-fit, and bolt connections. These connection methods are all conventional techniques in this field and will not be elaborated further here.

[0041] The first spacer element 112 can be arranged parallel to the bottom surface of the housing element 111, or parallel to the left / right side of the housing element 111, or parallel to the front / rear side of the housing element 111. That is, the first spacer element 112 can be arranged parallel to the horizontal plane or perpendicular to the horizontal plane.

[0042] With the first spacer element 112 arranged parallel to the horizontal plane, the first spacer element 112 has an annular structure. A first receiving cavity is formed between the first spacer element 112 and the bottom end face of the housing element 111. Medical personnel can remove endoscopic auxiliary instruments from the housing element 111 or place endoscopic auxiliary instruments at the bottom end of the housing element 111 through the annular cavity of the first spacer element 112. In this case, the first receiving cavity, the second receiving cavity, and the third receiving cavity are connected.

[0043] When the first spacer element 112 is perpendicular to the horizontal plane, a first receiving cavity is formed between the first spacer element 112 and the left side (or right side, front side, or rear side) of the housing element 111. In this case, the first spacer element 112 has a non-annular structure. That is, the first receiving cavity is not connected to the second or third receiving cavity.

[0044] When the first spacer element 112 is perpendicular to the horizontal plane, the top end of the first spacer element 112 may not protrude from the top end of the housing element 111, may be coplanar with the top end of the housing element 111, or may protrude from the top end of the housing element 111.

[0045] In this invention, the material of the first spacer element 112 is not limited, as long as it is lightweight, corrosion-resistant, and has a certain strength.

[0046] Generally, the first spacer element 112 is made of a non-transparent material.

[0047] In some embodiments, the first spacer element 112 is provided with a plurality of hole structures and / or a plurality of groove structures and / or a plurality of protrusion structures for insertion, snap-fitting or connection with other structural units (or elements) by bolts (groups).

[0048] In some of these embodiments, the first spacer element 112 includes, but is not limited to, a partition plate, a spacer plate, a baffle plate, etc.

[0049] The second spacer element 113 and the housing element 111 can be either fixedly connected or detachably connected. Fixed connections include, but are not limited to, integral molding; detachable connections include, but are not limited to, plug-in, snap-fit, and bolt connections. These connection methods are all conventional techniques in this field and will not be elaborated further here.

[0050] Generally, the second spacer element 113 is arranged parallel to the first spacer element 112.

[0051] The second spacer element 113 can be arranged parallel to the bottom surface of the housing element 111, or parallel to the left / right side of the housing element 111, or parallel to the front / rear side of the housing element 111. That is, the second spacer element 113 can be arranged parallel to the horizontal plane or perpendicular to the horizontal plane.

[0052] With the second spacer element 113 arranged parallel to the horizontal plane, the second spacer element 113 has an annular structure. A second receiving cavity is formed between the second spacer element 113 and the first spacer element 112, and a third receiving cavity is formed between the second spacer element 113 and the top surface of the housing element 111. Medical personnel can retrieve the endoscope main unit and endoscope auxiliary instruments from the housing element 111 through the annular cavity of the second spacer element 113. In this case, the first receiving cavity, the second receiving cavity, and the third receiving cavity are connected.

[0053] When the second spacer element 113 is perpendicular to the horizontal plane, a third receiving cavity is formed between the second spacer element 113 and the left side (or right side, front side, or rear side) of the housing element 111. In this case, the second spacer element 113 has a non-annular structure. That is, the third receiving cavity is not connected to the second receiving cavity or the first receiving cavity.

[0054] When the second spacer element 113 is perpendicular to the horizontal plane, the top end of the second spacer element 113 may not protrude from the top end of the housing element 111, may be coplanar with the top end of the housing element 111, or may protrude from the top end of the housing element 111.

[0055] When both the second spacer element 113 and the first spacer element 112 are annular structures, the radial dimension (such as length, width, diameter, etc.) of the inner edge surface of the second spacer element 113 is greater than the radial dimension (such as length, width, diameter, etc.) of the inner edge surface of the first spacer element 112. That is, from a top view, the annulus of the first spacer element 112 is located inside the annulus of the second spacer element 113.

[0056] In this invention, the material of the second spacer element 113 is not limited, as long as it is lightweight, corrosion-resistant, and has a certain strength.

[0057] Generally, the second spacer element 113 is made of a non-transparent material.

[0058] In some embodiments, the second spacer element 113 is provided with a plurality of hole structures and / or a plurality of groove structures and / or a plurality of protrusion structures for insertion, snap-fitting or connection with other structural units (or elements) by bolts (groups).

[0059] In some of these embodiments, the second spacer element 113 includes, but is not limited to, a partition plate, a spacer plate, a baffle plate, etc.

[0060] The cover element 114 is movably disposed on the top of the housing element 111 in the following ways: 1) The lid element 114 is removably disposed on the top of the body element 111. The two sides of the lid element 114 are removably locked to the two sides of the body element 111 respectively. That is, there is no flexible connection mechanism or rigid connection structure between the lid element 114 and the body element 111. The lid element 114 and the body element 111 are two completely independent and completely separate individuals. 2) One side of the cover element 114 is rotatably connected to one side (usually the rear side) of the body element 111 (e.g., via a hinge structure), and the other side (usually the front side) of the cover element 114 is removably locked to the other side of the body element 111.

[0061] In method 1), the cover element 114 can be removed from the body element 111; in method 2), the cover element 114 cannot be removed from the body element 111.

[0062] Methods 1 and 2 are conventional structures in this field and will not be described further here.

[0063] The removable locking connection between the cover element 114 and the body element 111 includes, but is not limited to, snap-fit ​​connections, plug-in connections, etc. These connection methods are all conventional techniques in the field and will not be described in detail here.

[0064] With the first spacer element 112 and the second spacer element 113 arranged perpendicular to the horizontal plane, the cover element 114 may or may not contact the first spacer element 112 and the second spacer element 113. When the cover element 114 contacts the first spacer element 112 and the second spacer element 113, the cover element 114 also contacts the endoscope auxiliary instrument, the endoscope main unit, and the sealing unit 120, thereby further limiting the endoscope auxiliary instrument, the endoscope main unit, and the sealing unit 120 and preventing them from moving.

[0065] In this utility model, the material of the box cover element 114 is not limited, as long as it meets the requirements of being lightweight, corrosion-resistant, and having a certain strength.

[0066] Generally, the lid element 114 is made of a non-transparent material.

[0067] In some embodiments, the cover element 114 is provided with a plurality of hole structures and / or a plurality of groove structures and / or a plurality of protrusion structures for plugging, snapping or connecting with other structural units (or elements) by bolts (groups).

[0068] In some of these embodiments, the cover element 114 includes, but is not limited to, a partition, a spacer, a baffle, etc.

[0069] Generally, the first movable element 115 is located on the rear side of the housing element 111.

[0070] Generally, the first movable element 115 is fixedly connected to the housing element 111, including but not limited to being integrally formed.

[0071] In some embodiments, there are multiple first movable elements 115. The multiple first movable elements 115 are spaced apart along the length direction of the housing element 111.

[0072] Generally, there are two first movable elements 115. The two first movable elements 115 are symmetrically arranged on the left and right sides of the rear side of the housing element 111.

[0073] In some of these embodiments, the first movable element 115 includes, but is not limited to, a movable cavity, a movable cylinder, a sliding cavity, a sliding cylinder, etc.

[0074] like Figure 4 As shown, the sealing unit 120 includes a first sealing element 121, a second sealing element 122, a plurality of first fixing elements 123, and a plurality of second fixing elements 124. The first side of the second sealing element 122 is rotatably connected to the first sealing element 121, and the second side of the second sealing element 122 is removably locked to the second side of the first sealing element 121, for cooperating with the first sealing element 121 to accommodate and fix the endoscope. A plurality of first fixing elements 123 are distributed on the first sealing element 121 for fixing the endoscope. A plurality of second fixing elements 124 are distributed on the second sealing element 122 and are alternately arranged with corresponding first fixing elements 123, for cooperating with the first fixing elements 123 to fix the endoscope.

[0075] Specifically, the sealing unit 120 is removably disposed between the housing element 111 and the second spacer element 113.

[0076] The sealing unit 120 can be arranged parallel to the horizontal plane, that is, placed above the second spacer element 113; the sealing unit 120 can also be arranged perpendicular to the horizontal plane, that is, inserted between the housing element 111 and the second spacer element 113, and abutting against the housing element 111 and the second spacer element 113.

[0077] The first sealing element 121 has a structure that is closed at the bottom and open at the top.

[0078] Generally, the first sealing element 121 is rectangular. Its length, width, and height can be selected according to usage requirements and are not limited here. Typically, the length of the first sealing element 121 is greater than its width.

[0079] In this invention, the material of the first sealing element 121 is not limited, as long as it meets the requirements of being lightweight, corrosion-resistant, and having a certain strength.

[0080] Generally, the first sealing element 121 is made of a transparent material.

[0081] In some of these embodiments, the first sealing element 121 is provided with a plurality of hole structures and / or a plurality of groove structures and / or a plurality of protrusion structures for insertion, snap-fitting or connection with other structural units (or elements) by bolts (groups).

[0082] In some of these embodiments, the first sealing element 121 includes, but is not limited to, a sealing box.

[0083] The second sealing element 122 has a structure that is closed at the bottom and open at the top.

[0084] Generally, the second sealing element 122 is rectangular. Its length, width, and height can be selected according to usage requirements and are not limited here. Typically, the length of the second sealing element 122 is greater than its width.

[0085] The second sealing element 122 is movably disposed at the top of the first sealing element 121 in the following ways: 1) The second sealing element 122 is removably disposed at the top of the first sealing element 121. The two sides of the second sealing element 122 are removably locked to the two sides of the first sealing element 121 respectively. That is, there is no flexible connection mechanism or rigid connection structure between the second sealing element 122 and the first sealing element 121. The second sealing element 122 and the first sealing element 121 are two completely independent and completely separate individuals. 2) One side of the second sealing element 122 is rotatably connected to one side (usually the rear side) of the first sealing element 121 (e.g., via a hinge structure), and the other side (usually the front side) of the second sealing element 122 is removably locked to the other side of the first sealing element 121.

[0086] In mode 1), the second sealing element 122 can be removed from the first sealing element 121; in mode 2), the cover element 114 cannot be removed from the first sealing element 121.

[0087] Methods 1 and 2 are conventional structures in this field and will not be described further here.

[0088] The removable locking connection between the second sealing element 122 and the first sealing element 121 includes, but is not limited to, snap-fit ​​connections, plug-in connections, etc. These connection methods are all conventional techniques in the field and will not be described in detail here.

[0089] In this invention, the material of the second sealing element 122 is not limited, as long as it meets the requirements of being lightweight, corrosion-resistant, and having a certain strength.

[0090] Generally, the second sealing element 122 is made of a transparent material.

[0091] In some embodiments, the second sealing element 122 is provided with a plurality of hole structures and / or a plurality of groove structures and / or a plurality of protrusion structures for insertion, snap-fitting or connection with other structural units (or elements) by bolts (groups).

[0092] In some of these embodiments, the second sealing element 122 includes, but is not limited to, a sealing cap.

[0093] Several first fixing elements 123 are distributed on the bottom surface inside the first sealing element 121.

[0094] The first fixing element 123 and the first sealing element 121 can be fixedly connected or detachably connected. Fixed connections include, but are not limited to, integral molding; detachable connections include, but are not limited to, plug-in, snap-fit, and bolt connections. These connection methods are all conventional techniques in the art and will not be elaborated further here.

[0095] In some of these embodiments, the first fixing element 123 is made of an elastic material, including but not limited to silicone, rubber, etc.

[0096] In some of these embodiments, the first fixing element 123 is made of a rigid material, including but not limited to plastic.

[0097] In some embodiments, the first fixing element 123 includes, but is not limited to, a fixing clip. Generally, the clamping hole (clamping groove) of the first fixing element 123 is narrower at the top and wider at the bottom.

[0098] Several second fixing elements 124 are distributed on the top surface inside the second sealing element 122.

[0099] The second fixing element 124 and the second sealing element 122 can be fixedly connected or detachably connected. Fixed connections include, but are not limited to, integral molding; detachable connections include, but are not limited to, plug-in, snap-fit, and bolt connections. These connection methods are all conventional techniques in the field and will not be elaborated further here.

[0100] The relationship between the second fixing element 124 and the first fixing element 123 can be one-to-one, one-to-many, many-to-one, or many-to-many. For example: Fixing a specific structure of an endoscope can be achieved at least by: 1) The cooperation of a first fixing element 123 and a second fixing element 124 achieves vertical fixation; 2) The cooperation of two first fixing elements 123 and one second fixing element 124 (first fixing element 123 - second fixing element 124 - first fixing element 123) achieves vertical fixation; 3) The cooperation of the first fixing element 123 and the two second fixing elements 124 (second fixing element 124 - first fixing element 123 - second fixing element 124) achieves vertical fixation.

[0101] That is, for a first fixing element 123 and a second fixing element 124 set at a specific position, at least one second fixing element 124 is provided between two adjacent first fixing elements 123, or at least one first fixing element 123 is provided between two adjacent second fixing elements 124.

[0102] In some embodiments, the second fixing element 124 is made of an elastic material, including but not limited to silicone, rubber, etc.

[0103] In some of these embodiments, the second fixing element 124 is made of a rigid material, including but not limited to plastic.

[0104] In some embodiments, the second fixing element 124 includes, but is not limited to, a fixing clip. Generally, the clamping hole (clamping groove) of the second fixing element 124 is narrower at the bottom and wider at the top.

[0105] In this invention, the endoscope can be further constrained by the first fixing element 123 located on the lower side (relative position) of the endoscope and the second fixing element 124 located on the upper side (relative position) of the endoscope, thereby reducing the probability of the endoscope moving up and down.

[0106] like Figure 5 As shown, the first buffer unit 130 includes a plurality of positioning elements 131 and a plurality of first buffer elements 132. The plurality of positioning elements 131 are distributed inside the housing unit 110; the plurality of first buffer elements 132 are respectively connected to the corresponding positioning elements 131 and are used to fix them inside the housing unit 110 to buffer the endoscope host, endoscope auxiliary instruments and sealing unit 120.

[0107] Specifically, a number of positioning elements 131 are distributed on the housing element 111, the first spacer element 112, the second spacer element 113, and the cover element 114.

[0108] The positioning element 131 can be fixedly connected to the housing element 111, the first spacer element 112, the second spacer element 113, and the cover element 114, or it can be detachably connected. Fixed connections include, but are not limited to, integral molding; detachable connections include, but are not limited to, plug-in, snap-fit, and bolt connections. These connection methods are all conventional techniques in this field and will not be elaborated further.

[0109] In some of these embodiments, the positioning element 131 includes, but is not limited to, a positioning groove, a positioning post, etc.

[0110] The first buffer element 132 and the positioning element 131 are detachably connected, including but not limited to plug-in, snap-fit, and bolt connection. These connection methods are all conventional techniques in the field and will not be described in detail here.

[0111] In some embodiments, the first buffer element 132 includes an outer frame and a buffer pad. The outer frame is detachably connected to the corresponding positioning element 131; the buffer pad is disposed inside the outer frame.

[0112] In some embodiments, the first buffer element 132 includes a buffer pad. At least one diagonal position of the buffer pad is inserted into a corresponding positioning element 131.

[0113] Generally, the first buffer element 132 (buffer pad) is made of elastic buffer material, including but not limited to rubber, silicone, etc.

[0114] Generally, the first buffer element 132 covers the inner wall of the housing element 111, the surface of the first spacer element 112, the surface of the second spacer element 113, and the side of the lid element 114 facing the housing element 111.

[0115] like Figure 6 As shown, the pull rod unit 140 includes at least one second movable element 141 and a pull rod element 142. The second movable element 141 is movably connected to the housing unit 110 and is spaced apart along the height direction of the housing unit 110. The bottom end of the pull rod element 142 is connected to the top end of the second movable element 141, and is used to control the pull rod element 142 and facilitate the user to pull the housing unit 110.

[0116] Specifically, the second movable element 141 is slidably connected to the corresponding first movable element 115.

[0117] The number of second movable elements 141 matches the number of first movable elements 115. Generally, the number of second movable elements 141 is equal to the number of first movable elements 115. That is, there is a one-to-one correspondence between the second movable elements 141 and the first movable elements 115.

[0118] Generally, there are two second active elements 141.

[0119] Generally, the second movable element 141 and the first movable element 115 are connected by a non-separating sliding connection. This non-separating sliding connection is a conventional technique in the art and will not be described in detail here.

[0120] In some embodiments, the second movable element 141 is a fixed-length sliding rod or an adjustable-length telescopic rod.

[0121] The pull rod element 142 and the second movable element 141 can be fixedly connected or detachably connected. Fixed connections include, but are not limited to, integral molding; detachable connections include, but are not limited to, plug-in, snap-fit, and bolt connections. These connection methods are all conventional techniques in the field and will not be elaborated further here.

[0122] In some of these embodiments, the lever element 142 includes, but is not limited to, a handle.

[0123] Furthermore, when the second movable element 141 is a telescopic structure and there are two second movable elements 141, the lever unit 140 also includes two first limiting elements 143, two second limiting elements 144, a support element 145, a control element 146, and a reset element 147. The first limiting element 143 is respectively disposed on the side of the corresponding second movable element 141; the two second limiting elements 144 are movably disposed between the two second movable elements 141, and the first ends of the two second limiting elements 144 are removably limited to the corresponding first limiting element 143; the two ends of the bracket element 145 are respectively connected to the two second movable elements 141, and the two second limiting elements 144 are movably disposed inside the bracket element 145; the control element 146 is movably disposed in the bracket element 145, and the two ends of the control element 146 abut against the second ends of the two second limiting elements 144, for controlling the relative movement of the two second limiting elements 144; the reset element 147 is disposed inside the bracket element 145, and the two ends of the reset element 147 are respectively connected to the two second limiting elements 144, for resetting the two second limiting elements 144 to be limited to the corresponding first limiting element 143.

[0124] The extension and retraction of the second movable element 141 can be controlled by the above structure. The second movable element 141 can be extended by the action of the control element 146. Generally, when the control element 146 is not operated, the second movable element 141 is in a locked state and cannot be extended.

[0125] In this embodiment, the second movable element 141 includes an outer sleeve and an inner slide rod. The lower end of the outer sleeve is movably inserted into the first movable element 115; the lower end of the inner slide rod is movably inserted into the outer sleeve. Furthermore, the relative movement of the outer sleeve and the inner slide rod allows for the extension and retraction of the second movable element 141.

[0126] Generally, the outer contour of the outer sleeve matches the inner contour of the first movable element 115.

[0127] Generally, the first limiting element 143 includes at least a first limiting hole. The first limiting hole is disposed in the outer sleeve of the second movable element 141.

[0128] In addition, the first limiting element 143 also includes a second limiting hole. The second limiting hole is disposed within the inner slide rod of the second movable element 141. The second limiting hole can cooperate with the second limiting element 144 to limit the position of the inner slide rod.

[0129] Furthermore, there are several second limiting holes. These second limiting holes are spaced apart along the height direction of the inner slide rod. By using different second limiting holes, the length of the inner slide rod extending out of the outer sleeve and the relative position of the inner slide rod with the outer sleeve when fully extended can be limited.

[0130] The cooperation between the second limiting element 144 and the first limiting element 143 is as follows: When the second movable element 141 is limited, the end of the second limiting element 144 abuts against the inner slide bar of the second movable element 141 through the first limiting element 143; When the second movable element 141 is unlocked, the end of the second limiting element 144 does not contact the second movable element 141. At this time, the end of the second limiting element 144 can be located inside the first limiting element 143, or the end of the second limiting element 144 can be completely inserted into the support element 145.

[0131] In some embodiments, the second limiting element 144 includes, but is not limited to, a telescopic slide bar.

[0132] Both ends of the support element 145 are respectively connected to the outer sleeves of the two second movable elements 141. The connection method can be a fixed connection or a detachable connection. Among them, the fixed connection includes, but is not limited to, integral molding; the detachable connection includes, but is not limited to, plug-in, snap-fit, bolt connection, etc. The above connection methods are all conventional technical means in this field and will not be described in detail here.

[0133] The support element 145 is a hollow structure, and two second limiting elements 144 are movably installed inside it.

[0134] In addition, a control cavity is provided in the middle of the support element 145 for the control element 146 to reciprocate in the vertical direction.

[0135] In some of these embodiments, the support element 145 includes, but is not limited to, a fixing bracket.

[0136] Generally, the control element 146 includes a control member, a first driving member, and a second driving member. The control member is movably disposed in the control cavity in the middle of the support element 145. The first driving member is disposed at the first end of the control member, with its top end connected to the first end of the control member and its bottom end abutting against the end of a second limiting element 144, for reciprocating vertically under the action of the first driving member to drive the second limiting element 144 to move. The second driving member is disposed at the second end of the control member, with its top end connected to the second end of the control member and its bottom end abutting against the end of another second limiting element 144, for reciprocating vertically under the action of the first driving member to drive the second limiting element 144 to move.

[0137] Specifically, when the control member moves downward, the first drive member moves downward so that its corresponding second limiting element 144 moves toward the middle of the support element 145, and the second drive member moves downward so that its corresponding second limiting element 144 moves toward the middle of the support element 145, that is, the two second limiting elements 144 move closer to each other, thereby separating from the inner slide bar of the second movable element 141.

[0138] Generally, the end of the second limiting element 144 (the end that contacts the control element 146) is provided with an inclined guide surface, and the bottom ends of the first driving member and the second driving member are both provided with inclined driving surfaces, with the driving surfaces and guide surfaces in inclined contact. With this shape design, when the control element 146 moves downward in the vertical direction, the two second limiting elements 144 move closer to each other.

[0139] In some embodiments, the control element 146 includes, but is not limited to, control buttons.

[0140] The connection methods between the reset element 147 and the second limiting element 144 include, but are not limited to, plug-in and socket connections. These connection methods are all conventional techniques in the field and will not be described in detail here.

[0141] When the control element 146 moves downward and brings the two second limiting elements 144 closer together, the reset element 147 is compressed; after the force applied to the control element 146 is removed, the reset element 147 provides a rebound force to move the two second limiting elements 144 away from each other, thereby causing the second limiting elements 144 to cooperate with the first limiting element 143 to lock the length of the second movable element 141.

[0142] In some of these embodiments, the reset element 147 includes, but is not limited to, a spring.

[0143] The usage method of this embodiment is as follows: (a) Storage Place the endoscopic auxiliary instruments (such as gas and water bottles, auxiliary water bottles, suction bottles, tubing, and connecting wires) into the first receiving cavity (i.e., between the box element 111 and the first spacer element 112). The endoscope host is placed in the second receiving cavity (i.e., between the housing element 111 and the second spacer element 113). The endoscope is placed into the sealing unit 120, the sealing unit 120 is locked or sealed, and then the sealing unit 120 is placed into the third receiving cavity (i.e., between the housing element 111 and the second spacer element 113). Lock the cover component 114 to the body component 111; (ii) Transshipment When a bedside endoscopy is required for an emergency patient, medical staff can pull the second movable element 141 from the first movable element 115 using the pull rod element 142, and with the assistance of the roller unit 150, the box unit 110 can be moved quickly. (iii) Endoscopic examination Upon reaching the bedside of the emergency patient, unlock the lid element 114 and the body element 111, and take out the sealing unit 120, endoscope main unit, and endoscope auxiliary instruments from the body element 111 in sequence. Unlock the second sealing element 122 and the first sealing element 121, and take out the endoscope from the sealing unit 120. Place the endoscope main unit on the platform (any horizontal plane), connect the endoscope to the endoscope main unit, and connect the endoscope auxiliary instruments to the endoscope main unit or the endoscope respectively, and then you can perform an endoscope examination. (iv) Cleaning After the endoscopy is completed, the endoscopic auxiliary instruments (such as gas and water bottles, auxiliary water bottles, suction bottles, tubing, and connecting wires) are placed into the first receiving cavity. Place the endoscope main unit into the second receiving cavity; The endoscope is placed into the first sealing element 121 and the endoscope is secured in the first fixing element 123. The second sealing element 122 is locked to the first sealing element 121 and the second fixing element 124 is secured to the endoscope. Then the sealing unit 120 is placed into the third receiving cavity. Lock the cover component 114 to the body component 111; Medical staff can pull the second movable element 141 out from the first movable element 115 using the pull rod element 142, and with the assistance of the roller unit 150, they can carry the box unit 110 for rapid movement. Upon reaching the clean area, unlock the lid element 114 and the body element 111, and take out the sealing unit 120, endoscope main unit, and endoscope auxiliary instruments from the body element 111 in sequence. Unlock the second sealing element 122 and the first sealing element 121, and take out the endoscope from the sealing unit 120. Then all the instruments are cleaned and disinfected, and then recycled.

[0144] The technical effects of this utility model are as follows: 1) The box unit houses the endoscopic auxiliary instruments, the endoscopic main unit, and the endoscope, making it easy to quickly complete the preparation work for the endoscopic examination without having to organize them in an emergency. 2) By utilizing the combination of the pull rod unit and the roller unit, the box unit can be quickly transferred, making it convenient for medical staff to pull the box unit while running. 3) Use a sealing unit to store and protect the endoscope, preventing it from being bumped or knocked during transport; 4) The first buffer unit is used to buffer the endoscopic auxiliary instruments, the endoscopic main unit and the endoscope to prevent damage to the instruments due to vibration during transportation.

[0145] Example 2 This embodiment is a modified embodiment of embodiment 1.

[0146] like Figure 7 As shown, the portable endoscope transport case 100 also includes a second buffer unit 160. The second buffer unit 160 is disposed inside the case unit 110 and is used for shock absorption.

[0147] In this embodiment, the first buffer unit 130 may be disposed in the second buffer unit 160.

[0148] In this embodiment, the second buffer unit 160 and the housing unit 110 are integrally formed.

[0149] like Figure 8 As shown, the second buffer unit 160 includes a plurality of second buffer elements 161 and a plurality of protective elements 162. The plurality of second buffer elements 161 are distributed inside the housing unit 110, and the first ends of the plurality of second buffer elements 161 are respectively connected to the housing unit 110; the plurality of protective elements 162 are distributed inside the housing unit 110 and are respectively connected to the corresponding second buffer elements 161.

[0150] Specifically, a number of second buffer elements 161 are distributed on the housing element 111, the first spacer element 112, the second spacer element 113, and the housing cover element 114.

[0151] The second buffer element 161 can be fixedly connected to the housing element 111, the first spacer element 112, the second spacer element 113, and the cover element 114, or it can be detachably connected. Fixed connections include, but are not limited to, welding; detachable connections include, but are not limited to, plug-in connections, snap-fit ​​connections, and bolted connections. The above connection methods are all conventional techniques in this field and will not be elaborated further here.

[0152] In some embodiments, the second buffer element 161 includes, but is not limited to, a spring, a silicone pillar, a rubber pillar, a silicone pad, a rubber pad, etc.

[0153] The protective element 162 and the second buffer element 161 can be fixedly connected or detachably connected. Fixed connections include, but are not limited to, welding; detachable connections include, but are not limited to, plug-in connections, snap-fit ​​connections, and bolted connections. These connection methods are all conventional techniques in the field and will not be elaborated further here.

[0154] Generally, the protective element 162 covers the inner wall of the housing element 111, the surface of the first spacer element 112, the surface of the second spacer element 113, and the side of the cover element 114 facing the housing element 111.

[0155] In some embodiments, the protective element 162 includes a first contact, a support, and a second contact. A second buffer element 161 is connected to a first side of the first contact; the support is disposed on a second side of the first contact; and the first side of the second contact is connected to the support.

[0156] Generally, the first contact element includes, but is not limited to, a contact plate and a fixing plate.

[0157] Generally, the support structure is a honeycomb mesh structure.

[0158] Generally, the second contact element includes, but is not limited to, a contact plate and a fixing plate.

[0159] In some of these embodiments, the protective element 162 includes, but is not limited to, a shock-absorbing plate.

[0160] In this embodiment, a plurality of positioning elements 131 are distributed on the second side of the corresponding protective element 162 (i.e., the second side of the second contact).

[0161] In this embodiment, a plurality of protective elements 162 are integrally formed with the housing element 111, and a plurality of second buffer elements 161 are disposed between the protective elements 162 and the housing element 111; a plurality of protective elements 162 are integrally formed with the first spacer element 112, and a plurality of second buffer elements 161 are disposed between the protective elements 162 and the first spacer element 112; a plurality of protective elements 162 are integrally formed with the second spacer element 113, and a plurality of second buffer elements 161 are disposed between the protective elements 162 and the second spacer element 113; a plurality of protective elements 162 are integrally formed with the lid element 114, and a plurality of second buffer elements 161 are disposed between the protective elements 162 and the lid element 114.

[0162] For example, five protective elements 162 are integrally formed with the front side wall, rear side wall, left side wall, right side wall and bottom wall of the inner side of the housing element 111, respectively; two protective elements 162 are integrally formed with the first side and the second side (the side facing the endoscope host and endoscope auxiliary instruments) of the first partition element 112, respectively; two protective elements 162 are integrally formed with the first side and the second side (the side facing the endoscope host and endoscope) of the second partition element 113, respectively; and one protective element 162 is integrally formed with the side of the cover element 114 facing the housing element 111.

[0163] That is, a sandwich-like structure can be formed between the housing unit 110 and the second buffer unit 160, and the second buffer element 161 can be used to absorb the impact, thereby reducing the impact of vibration on the instruments located in the housing unit 110.

[0164] The usage method of this embodiment is basically the same as that of Embodiment 1, and will not be repeated here.

[0165] The technical effects of this embodiment are as follows: 1) By utilizing the dual function of the second and first buffer units, the impact of vibration on the endoscope host and endoscope during transport is further reduced.

[0166] Example 3 This embodiment is a modified embodiment of Embodiments 1 and 2.

[0167] like Figure 9 As shown, the portable endoscope transport case 100 also includes a locking unit 170. The locking unit 170 is disposed between the case unit 110 and the pull rod unit 140, and is used to lock the relative position of the case unit 110 and the pull rod unit 140 when the case unit 110 is opened.

[0168] In this embodiment, the first side of the cover element 114 is rotatably connected to the first side of the body element 111.

[0169] In this embodiment, after opening the lid element 114, the locking unit 170 locks the lid element 114 and the pull rod element 142, so that the lid element 114 can always remain vertical, making it convenient for medical staff to take out the sealing unit 120, endoscope main unit and endoscope auxiliary instruments from the box element 111.

[0170] like Figure 10 As shown, the locking unit 170 includes at least one first locking element 171 and at least one second locking element 172. The first locking element 171 is disposed at the top of the housing unit 110; the second locking element 172 is disposed at the top of the pull rod unit 140 and is removably locked to the corresponding first locking element 171, for locking the relative position of the housing unit 110 and the pull rod unit 140 in cooperation with the corresponding first locking element 171 when the housing unit 110 is opened.

[0171] Specifically, the first locking element 171 is disposed on the cover element 114; the second locking element 172 is disposed on the pull rod element 142.

[0172] The first locking element 171 and the cover element 114 can be fixedly connected or detachably connected. Fixed connections include, but are not limited to, welding; detachable connections include, but are not limited to, plug-in, snap-fit, and bolt connections. These connection methods are all conventional techniques in the field and will not be elaborated further here.

[0173] In some embodiments, there are multiple first locking elements 171. The multiple first locking elements 171 are spaced apart along the length of the cover element 114.

[0174] In some of these embodiments, the first locking element 171 includes, but is not limited to, a locking protrusion, a locking groove, a locking buckle, etc.

[0175] The second locking element 172 and the pull rod element 142 can be fixedly connected or detachably connected. Fixed connections include, but are not limited to, welding; detachable connections include, but are not limited to, plug-in connections, snap-fit ​​connections, and bolt connections. These connection methods are all conventional techniques in the field and will not be elaborated further here.

[0176] In some embodiments, there are multiple second locking elements 172. These multiple second locking elements 172 are spaced apart along the length of the pull rod element 142.

[0177] The number of second locking elements 172 matches the number of first locking elements 171. Generally, the number of second locking elements 172 is equal to the number of first locking elements 171.

[0178] In some of these embodiments, the second locking element 172 includes, but is not limited to, a locking protrusion, a locking groove, a locking buckle, etc.

[0179] In this embodiment, the locking engagement between the first locking element 171 and the second locking element 172 is a conventional technique in the art and will not be described in detail here.

[0180] The usage method of this embodiment is basically the same as that of embodiment 1, except that: After the lid element 114 and the body element 111 are unlocked, the position of the lid element 114 is limited by the cooperation of the first locking element 171 and the second locking element 172.

[0181] The technical effects of this embodiment are as follows: 1) By using the locking unit to lock the box unit and the pull rod unit, the box cover element can always be kept vertical, making it easy for medical staff to take out the sealing unit, endoscope main unit and endoscope auxiliary instruments from the box element.

[0182] Example 4 This embodiment relates to the portable endoscopic diagnostic system of this utility model.

[0183] An illustrative embodiment of this utility model, such as Figure 11 As shown, a portable endoscopic diagnostic system includes a portable endoscope transport case 100, an endoscope main unit 200, and an endoscope 300 as described in any one of Embodiments 1 to 3. The endoscope main unit 200 is removably disposed in the second receiving cavity of the housing unit 110 of the portable endoscope transport case 100; the endoscope 300 is removably disposed in the third receiving cavity of the housing unit 110 of the portable endoscope transport case 100.

[0184] In some embodiments, the endoscope host 200 is an image processor with a display screen. The endoscope host 200 is prior art in the art, and this invention does not improve upon it. Therefore, the specific structure and function of the endoscope host 200 will not be described in detail here.

[0185] In some embodiments, the endoscope 300 is an electronic endoscope. The endoscope 300 is prior art in this invention, and this invention does not improve upon the endoscope 300. Therefore, the specific structure and function of the endoscope 300 will not be described in detail here.

[0186] Furthermore, the portable endoscope diagnostic system also includes a gas-water bottle, a secondary water delivery bottle, a suction bottle, several tubing units, and several connecting wires. Specifically, the gas-water bottle is removably disposed in the first receiving cavity of the housing unit 110 of the portable endoscope transport box 100; the secondary water delivery bottle is removably disposed in the first receiving cavity of the housing unit 110 of the portable endoscope transport box 100; the suction bottle is removably disposed in the first receiving cavity of the housing unit 110 of the portable endoscope transport box 100; several tubing units are removably disposed in the first receiving cavity of the housing unit 110 of the portable endoscope transport box 100; and several connecting wires are removably disposed in the first receiving cavity of the housing unit 110 of the portable endoscope transport box 100.

[0187] The gas-water bottle, auxiliary water delivery bottle, suction bottle, tubing, and connecting wires are all existing technologies in this field, and this utility model does not improve upon them. Therefore, the specific structure and function of the endoscope 300 will not be described in detail here.

[0188] The usage method of this embodiment is basically the same as that of Embodiments 1 to 3, and will not be repeated here.

[0189] The technical effects of this embodiment are basically the same as those of Embodiments 1 to 3, and will not be repeated here.

[0190] The above description is only a preferred embodiment of the present utility model and does not limit the implementation method and protection scope of the present utility model. Those skilled in the art should realize that all solutions obtained by equivalent substitutions and obvious changes made based on the description and illustrations of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A portable endoscope transport case for use in hospital emergency departments, used to transfer an endoscope main unit, an endoscope, and endoscope auxiliary instruments, characterized in that, include: The housing unit is provided with a first receiving cavity for accommodating endoscopic auxiliary instruments, a second receiving cavity for accommodating the endoscope main unit, and a third receiving cavity for accommodating the endoscope. A sealing unit, which is removably disposed in the third receiving cavity of the housing unit, is used to receive and fix the endoscope; The first buffer unit is disposed inside the housing unit and is used to buffer the endoscope auxiliary instruments, the endoscope main unit, and the sealing unit; A pull rod unit is movably disposed on the side of the housing unit and is used to pull the housing unit to move; A roller unit is disposed on the side of the housing unit to assist the housing unit in moving.

2. The portable endoscope transport case according to claim 1, characterized in that, The housing unit includes: A housing element, wherein the first buffer unit is disposed inside the housing element; A first spacer element is disposed inside the housing element, and a first buffer unit is disposed on the side of the first spacer element to separate the housing element to form a first receiving cavity; The second spacer element is disposed inside the housing element and located on the side of the first spacer element. The side of the second spacer element is provided with the first buffer unit for separating the housing element to form a second receiving cavity and a third receiving cavity. A lid element is movably disposed on the top of the box body element and is removably locked to the box body element for sealing or exposing the box body element; At least one first movable element is disposed on the side of the housing element and is movably connected to the pull rod unit for reciprocating movement of the pull rod unit along the height direction of the housing element.

3. The portable endoscope transport case according to claim 1, characterized in that, The sealing unit includes: First sealing element; A second sealing element is removably locked to the first sealing element and is used to cooperate with the first sealing element to receive and secure the endoscope; A plurality of first fixing elements are distributed on the first sealing element for fixing the endoscope; A plurality of second fixing elements are distributed on the second sealing element and are staggered with the corresponding first fixing elements, for use in conjunction with the first fixing elements to fix the endoscope.

4. The portable endoscope transport case according to claim 1, characterized in that, The first buffer unit includes: A plurality of positioning elements are distributed and disposed inside the housing unit; A plurality of first buffer elements are respectively connected to the corresponding positioning elements for fixing inside the housing unit to buffer the endoscope host, endoscope auxiliary instruments and the sealing unit.

5. The portable endoscope transport case according to claim 1, characterized in that, The tie rod unit includes: At least one second movable element, which is movably connected to the housing unit and is spaced apart along the height direction of the housing unit; A pull rod element, the bottom end of which is connected to the top end of the second movable element, is used to control the pull rod element and facilitate the user to pull the box unit.

6. The portable endoscope transport case according to claim 5, characterized in that, When the second movable element is a telescopic structure and there are two of the second movable elements, the pull rod unit further includes: Two first limiting elements are respectively disposed on the side of the corresponding second movable element; Two second limiting elements are movably disposed between two second movable elements, and the first ends of the two second limiting elements are removably limited to the corresponding first limiting elements. A support element, the two ends of which are respectively connected to two second movable elements, and two second limiting elements are movably disposed inside the support element; A control element is movably disposed on the support element, and the two ends of the control element respectively abut against the second ends of the two second limiting elements for control to make the two second limiting elements move relative to each other; A reset element is disposed inside the support element, and its two ends are respectively connected to two second limiting elements to reset the two second limiting elements so that they are respectively limited and connected to the corresponding first limiting elements.

7. The portable endoscope transport case according to any one of claims 1 to 6, characterized in that, Also includes: The second buffer unit is disposed inside the housing unit and is used for shock absorption; and / or A locking unit is provided between the housing unit and the pull rod unit, and is used to lock the relative position of the housing unit and the pull rod unit when the housing unit is opened.

8. The portable endoscope transport case according to claim 7, characterized in that, The second buffer unit includes: A plurality of second buffer elements are distributed inside the housing unit, and the first ends of the plurality of second buffer elements are respectively connected to the housing unit; A plurality of protective elements are distributed inside the housing unit and are respectively connected to the corresponding second buffer element; and / or The locking unit includes: At least one first locking element is disposed at the top of the housing unit; At least one second locking element is disposed at the top of the pull rod unit and is removably locked to the corresponding first locking element, for cooperating with the corresponding first locking element to lock the relative position of the housing unit and the pull rod unit when the housing unit is opened.

9. A portable endoscopic diagnostic system, characterized in that, include: Portable endoscope transport box as described in any one of claims 1 to 8; An endoscope host, wherein the endoscope host is removably disposed in the second receiving cavity of the housing unit of the portable endoscope transport case; An endoscope, which is removably disposed in the third receiving cavity of the housing unit of the portable endoscope transport case.

10. The portable endoscopic diagnostic system according to claim 9, characterized in that, Also includes: A gas-water bottle, which is removably disposed in the first receiving cavity of the housing unit of the portable endoscope transport box; A secondary water delivery bottle is removably disposed in the first receiving cavity of the housing unit of the portable endoscope transport box; A suction bottle, which is removably disposed in the first receiving cavity of the housing unit of the portable endoscope transport case; A plurality of tubing, wherein the plurality of tubing is removably disposed in the first receiving cavity of the housing unit of the portable endoscope transport case; A plurality of connecting lines are removably disposed in the first receiving cavity of the housing unit of the portable endoscope transport box.