Low-invasive surgical handbag
The surgical glove with thickened and anti-slip areas on the thumb, middle finger, and ring finger addresses discomfort and pain from minimally invasive instruments, improving operability and hand protection.
Patent Information
- Application Number
- JP2024600210U
- Authority / Receiving Office
- JP · JP
- Patent Type
- Utility models
- Current Assignee / Owner
- Priority Date
- 2022-12-30
- Filing Date
- 2023-10-10
- Publication Date
- 2025-12-08
- Estimated Expiration
- 2033-10-10
AI Technical Summary
Minimally invasive surgical instruments cause discomfort and pain due to prolonged localized pressure on the surgeon's thumb, middle finger, and ring finger, which traditional surgical gloves fail to alleviate effectively.
A minimally invasive surgical glove with thickened thumb, middle finger, and ring finger portions, each with an anti-slip structure, designed to correspond to specific hand areas, providing enhanced friction and relief from localized pressure.
The glove alleviates discomfort and pain by increasing friction and reducing localized pressure on the thumb, middle finger, and ring finger during minimally invasive surgery, enhancing operability and hand protection.
Smart Images

Figure 0003253883000001_ABST
Abstract
Description
[Technical Field]
[0001] The present disclosure is in the field of medical devices, and specifically relates to minimally invasive surgical gloves. (CROSS-REFERENCE TO RELATED APPLICATIONS) This disclosure claims priority to a Chinese application filed with the State Intellectual Property Office of the People's Republic of China on December 30, 2022, bearing application number 202223604415.9 and entitled "Minimally Invasive Surgical Gloves," the entire contents of which are incorporated herein by reference. [Background technology]
[0002] Minimally invasive surgery is surgery performed using modern medical equipment such as laparoscopes and thoracoscopes, and related devices, and has the advantages of leaving small scars, causing less pain, and allowing for quick recovery.
[0003] A relatively large number of minimally invasive surgical instruments are used during minimally invasive surgery. Compared to open surgical instruments, minimally invasive surgical instruments continuously apply localized pressure to the surgeon's hand, which can easily cause discomfort and pain due to prolonged localized pressure. Ergonomic analysis and clinical experience have shown that the areas of discomfort in the hand are mainly concentrated on the thumb, middle finger, and ring finger. Traditional surgical gloves are simply used as protective equipment for medical surgery, and are therefore difficult to alleviate the discomfort caused by prolonged localized pressure in minimally invasive surgery. Summary of the Invention [Problem to be solved by the invention]
[0004] The present disclosure aims to provide minimally invasive surgical gloves that can better protect the hands of a surgeon. [Means for solving the problem]
[0005] To achieve the above objectives, the present disclosure provides the following technical solutions.
[0006] A glove for minimally invasive surgery includes a glove body, a thick thumb portion, a thick middle finger portion, and a thick ring finger portion, the thicknesses of the thick thumb portion, the thick middle finger portion, and the thick ring finger portion all being greater than the thickness of the glove body, and an anti-slip structure is provided on part or all of the outer peripheral walls of the thick thumb portion, the thick middle finger portion, and the thick ring finger portion, and the glove body, the thick thumb portion, the thick middle finger portion, and the thick ring finger portion are integrally molded.
[0007] In any one of the above technical solutions, optionally, the thumb thickening portion is configured to correspond to the position of the proximal phalanx of the thumb, or the thumb thickening portion is configured to correspond to the position of the proximal phalanx of the thumb and a portion of the thenar eminence.
[0008] In any one of the above technical solutions, optionally, the thickened middle finger portion is configured to correspond to the position of the middle phalanx of the middle finger, or the thickened middle finger portion is configured to correspond to the position of the proximal phalanx of the middle finger, or the thickened middle finger portion is configured to correspond to the positions of the middle phalanx and a part of the proximal phalanx of the middle finger, or the thickened middle finger portion is configured to correspond to the positions of the proximal phalanx of the middle finger and a part of the middle phalanx of the middle finger, or the thickened middle finger portion is configured to correspond to the positions of the proximal phalanx of the middle finger and the middle phalanx of the middle finger.
[0009] In any one of the above technical solutions, optionally, the thickened portion of the ring finger is configured to correspond to the position of the middle phalanx of the ring finger, or the thickened portion of the ring finger is configured to correspond to the position of the proximal phalanx of the ring finger, or the thickened portion of the ring finger is configured to correspond to the positions of the middle phalanx of the ring finger and a part of the proximal phalanx of the ring finger, or the thickened portion of the ring finger is configured to correspond to the positions of the proximal phalanx of the ring finger and a part of the middle phalanx of the ring finger, or the thickened portion of the ring finger is configured to correspond to the positions of the proximal phalanx of the ring finger and the middle phalanx of the ring finger.
[0010] In any one of the above technical solutions, optionally, the thickness of each of the thick thumb portion, the thick middle finger portion and the thick ring finger portion is 1.5 to 2 times the thickness of the glove body. In any one of the above technical solutions, optionally, the thumb thickened portion, the middle finger thickened portion, and the ring finger thickened portion each have an annular shape.
[0011] In any one of the above technical solutions, optionally, the anti-slip structure includes anti-slip granules or anti-slip protrusions.
[0012] In any one of the above technical solutions, optionally, the shape of the anti-skid protrusion is circular, elliptical, elongated, triangular or hexagonal.
[0013] In any one of the above technical solutions, optionally, the materials of the glove body, the thumb thickened portion, the middle finger thickened portion and the ring finger thickened portion are the same.
[0014] In any one of the above technical solutions, optionally, the material of the glove body is latex, rubber or silicone rubber. [Effects of the Invention]
[0015] The present disclosure mainly has the following beneficial effects: The minimally invasive surgical glove according to the present disclosure includes a glove body, a thick thumb portion, a thick middle finger portion, and a thick ring finger portion. By providing a non-slip structure on the outer peripheral walls of some or all of the thick thumb portion, thick middle finger portion, and thick ring finger portion, the friction between the minimally invasive surgical glove and minimally invasive surgical instruments is increased, improving the operability of the minimally invasive surgical instruments and contributing to minimally invasive surgery. The glove body, thick thumb portion, thick middle finger portion, and thick ring finger portion are integrally molded, and the thicknesses of the thick thumb portion, thick middle finger portion, and thick ring finger portion are all greater than the thickness of the glove body. This relieves some of the localized pressure when minimally invasive surgical instruments compress a portion of the hand during minimally invasive surgery, thereby alleviating some of the discomfort and pain felt by the surgeon's hand. This is particularly true for the thumb, middle finger, and ring finger, providing better hand protection during minimally invasive surgery.
[0016] In order to make the above-mentioned objects, features and advantages of the present application more apparent, preferred embodiments will be described in detail below with reference to the drawings. [Brief explanation of the drawings]
[0017] In order to more clearly explain the technical solutions of the embodiments of the present disclosure, the drawings used in the embodiments will be briefly described below. The drawings described are only for illustrating some embodiments of the present disclosure and are not intended to limit the scope. Those skilled in the art can obtain other drawings based on these drawings without using inventive abilities. [Figure 1] FIG. 1 is a schematic diagram illustrating the configuration of a minimally invasive surgical glove according to an embodiment of the present disclosure. [Figure 2] FIG. 1 is another schematic diagram of a minimally invasive surgical glove according to an embodiment of the present disclosure. [Figure 3] 1A and 1B are schematic diagrams illustrating the configuration of an anti-slip protrusion according to an embodiment of the present disclosure. [Figure 4] 10A and 10B are schematic diagrams illustrating another configuration of an anti-slip protrusion according to an embodiment of the present disclosure. DETAILED DESCRIPTION OF THE INVENTION
[0018] In order to make the objectives, technical solutions and advantages of the embodiments of the present disclosure clearer, the technical solutions in the embodiments of the present disclosure will be clearly and completely described below with reference to the drawings used in the embodiments of the present disclosure. The described embodiments are only some of the embodiments of the present disclosure, and are not all of the embodiments. The components in the embodiments of the present disclosure shown in the drawings can be arranged and configured in various arrangements.
[0019] Therefore, the detailed description of the embodiments of the present disclosure shown in the drawings is merely a selected embodiment of the present disclosure and does not limit the scope of the present disclosure to be protected. All other embodiments that a person skilled in the art can obtain based on the embodiments of the present disclosure without using his or her inventive ability also fall within the scope of protection of the present disclosure.
[0020] Like reference numerals refer to like objects in the drawings, so that a definition in one drawing does not require further definition or interpretation in other drawings.
[0021] In describing this disclosure, directions or positional relationships expressed by terms such as "center," "up," "down," "left," "right," "vertical," "horizontal," "inside," and "outside" are based on the drawings and represent the normal arrangement direction or positional relationship of the products according to this disclosure, and are merely for the purpose of simply and concisely describing this disclosure, and do not expressly or imply that the relevant devices or elements necessarily have a specific orientation, or are configured or operated in a specific direction, and therefore do not limit this disclosure. Furthermore, terms such as "first," "second," and "third" are merely used for the purpose of distinction and description, and do not expressly or imply relative importance.
[0022] Furthermore, terms such as "horizontal," "vertical," and "gravity direction" do not mean that a component is placed absolutely horizontally or vertically, but may be slightly tilted. For example, "horizontal" means that the orientation of the component is merely more horizontal than "vertical," and does not necessarily require that the component be completely horizontal, but may be slightly tilted.
[0023] In describing the present disclosure, the terms "installation," "mounting," "coupling," and "connection" should be understood in a broad sense. For example, they may refer to a fixed connection, a detachable connection, or an integral connection. They may also refer to a mechanical connection or an electrical connection. They may also refer to a direct connection, an indirect connection via an intermediate, or internal communication between two elements. Those skilled in the art will be able to understand the specific meanings of the above terms in the present disclosure depending on the specific circumstances.
[0024] Hereinafter, several embodiments of the present disclosure will be described in detail with reference to the drawings. Unless inconsistent, the following examples and features in the examples can be combined with each other. Example
[0025] This embodiment provides gloves for minimally invasive surgery. Referring to FIGS. 1 to 4, FIGS. 1 and 2 are schematic diagrams of two types of gloves for minimally invasive surgery according to this embodiment. In FIG. 1, the thick thumb portion corresponds to the position of the proximal phalanx of the thumb and part of the thenar eminence, the thick middle finger portion corresponds to the position of the proximal phalanx of the middle finger and part of the middle phalanx of the middle finger, and the thick ring finger portion corresponds to the position of the proximal phalanx of the ring finger and part of the middle phalanx of the ring finger. In FIG. 2, the thick thumb portion corresponds to the position of the proximal phalanx of the thumb, the thick middle finger portion corresponds to the position of the proximal phalanx of the middle finger and part of the middle phalanx of the middle finger, and the thick ring finger portion corresponds to the position of the proximal phalanx of the ring finger and part of the middle phalanx of the ring finger. To better illustrate the positions in FIGS. 1 and 2, the boundary between the proximal phalanx of the thumb and the thenar eminence and the joint line between the proximal phalanx and the middle phalanx are indicated by dashed lines. 3 and 4 are schematic diagrams of two types of anti-slip protrusions according to this embodiment, where the anti-slip protrusions shown in FIG. 3 are circular in shape and the anti-slip protrusions shown in FIG. 4 are elliptical in shape.
[0026] The minimally invasive surgical gloves according to this embodiment can be used for minimally invasive thoracoscopic surgery, minimally invasive laparoscopic surgery, minimally invasive gynecological surgery, and the like.
[0027] As shown in FIGS. 1 to 4, the glove for minimally invasive surgery according to this embodiment includes a glove body portion 110, a thick thumb portion 120, a thick middle finger portion 130, and a thick ring finger portion 140.
[0028] The thicknesses of the thumb thickened portion 120, the middle finger thickened portion 130, and the ring finger thickened portion 140 are all greater than the thickness of the glove body 110. By making the thumb thickened portion 120, the middle finger thickened portion 130, and the ring finger thickened portion 140 all greater than the thickness of the glove body 110, when a part of the hand is compressed by a minimally invasive surgical instrument during minimally invasive surgery, the localized compression is alleviated to a certain extent, thereby alleviating discomfort and pain in the doctor's hand to a certain extent, and particularly discomfort and pain in the thumb, middle finger, and ring finger during minimally invasive surgery.
[0029] Anti-slip structures 150 are provided on part or all of the outer peripheral walls of the thickened thumb portion 120, the thickened middle finger portion 130, and the thickened ring finger portion 140. Optionally, anti-slip structures 150 are provided on the outer peripheral walls of each of the thickened thumb portion 120, the thickened middle finger portion 130, and the thickened ring finger portion 140. The anti-slip structures 150 increase the frictional force between the minimally invasive surgical glove and minimally invasive surgical instruments, improving the operability of the minimally invasive surgical instruments and contributing to minimally invasive surgery.
[0030] The glove body 110, the thick thumb portion 120, the thick middle finger portion 130, and the thick ring finger portion 140 are integrally molded. By integrally molding the glove body 110, the thick thumb portion 120, the thick middle finger portion 130, and the thick ring finger portion 140, it is possible to contribute to the production and processing of gloves for minimally invasive surgery, as well as to the ease with which doctors wear the gloves.
[0031] The minimally invasive surgical glove according to this embodiment includes a glove body 110, a thick thumb portion 120, a thick middle finger portion 130, and a thick ring finger portion 140. By providing an anti-slip structure 150 on part or all of the outer peripheral walls of the thick thumb portion 120, the thick middle finger portion 130, and the thick ring finger portion 140, the frictional force between the minimally invasive surgical glove and minimally invasive surgical instruments is increased, improving the operability of the minimally invasive surgical instruments and contributing to minimally invasive surgery. Glove body 110, thick thumb portion 120, thick middle finger portion 130, and thick ring finger portion 140 are integrally molded, and the thicknesses of thick thumb portion 120, thick middle finger portion 130, and thick ring finger portion 140 are all greater than the thickness of glove body 110. This allows for some relief of localized pressure when minimally invasive surgical instruments compress a portion of the hand during minimally invasive surgery, thereby alleviating discomfort and pain in the doctor's hands to some extent. In particular, this reduces discomfort and pain in the thumb, middle finger, and ring finger during minimally invasive surgery, thereby better protecting the doctor's hands.
[0032] In this embodiment, the specific positions of the thumb thickened portion 120, the middle finger thickened portion 130, and the ring finger thickened portion 140 may be designed taking into consideration ergonomic analysis, clinical experience, actual experience with minimally invasive surgery, and the like.
[0033] As shown in FIG. 2, in an alternative embodiment of this embodiment, the thumb padding 120 is configured to correspond to the location of the proximal phalanx of the thumb.
[0034] As shown in FIG. 1, in an alternative embodiment of this embodiment, the thumb padding 120 is configured to correspond to the location of the proximal phalanx of the thumb and a portion of the ball of the foot.
[0035] As shown in FIGS. 1 and 2 , in an optional variant of this embodiment, the specific position of the middle finger thickened portion 130 can be set according to the actual needs of a specific minimally invasive surgery. For example, the middle finger thickened portion 130 corresponds to the positions of part or all of the middle phalanx and the proximal phalanx of the middle finger. Specifically, the middle finger thickened portion 130 is configured to correspond to the position of the middle phalanx of the middle finger. Alternatively, the middle finger thickened portion 130 is configured to correspond to the position of the proximal phalanx of the middle finger. Alternatively, the middle finger thickened portion 130 is configured to correspond to the positions of the middle phalanx and part of the proximal phalanx of the middle finger. Alternatively, the middle finger thickened portion 130 is configured to correspond to the positions of the proximal phalanx and part of the middle phalanx of the middle finger. Alternatively, the middle finger thickened portion 130 is configured to correspond to the positions of the proximal phalanx and the middle phalanx of the middle finger. In FIG. 1, the thick part of the middle finger corresponds to the position of the proximal phalanx and the middle phalanx of the middle finger, and in FIG. 2, the thick part of the middle finger corresponds to the position of the proximal phalanx and part of the middle phalanx of the middle finger.
[0036] As shown in FIGS. 1 and 2 , in an optional variant of this embodiment, the specific position of the ring finger thickened portion 140 can be set according to the actual needs of a specific minimally invasive surgery. For example, the ring finger thickened portion 140 corresponds to the positions of a portion or all of the middle phalanx and the proximal phalanx of the ring finger. Specifically, the ring finger thickened portion 140 is configured to correspond to the position of the middle phalanx of the ring finger. Alternatively, the ring finger thickened portion 140 is configured to correspond to the position of the proximal phalanx of the ring finger. Alternatively, the ring finger thickened portion 140 is configured to correspond to the positions of the middle phalanx and a portion of the proximal phalanx of the ring finger. Alternatively, the ring finger thickened portion 140 is configured to correspond to the positions of the proximal phalanx and a portion of the middle phalanx of the ring finger. Alternatively, the ring finger thickened portion 140 is configured to correspond to the positions of the proximal phalanx and the middle phalanx of the ring finger. In FIG. 1 , the ring finger thickened portion corresponds to the positions of the proximal phalanx and the middle phalanx of the ring finger. In FIG. 2, the thick part of the ring finger corresponds to the position of the proximal phalanx of the ring finger and part of the middle phalanx of the ring finger.
[0037] In an alternative embodiment of the present invention, the thickness of each of thick thumb portion 120 , thick middle finger portion 130 and thick ring finger portion 140 is 1.5 to 2 times the thickness of glove body 110 .
[0038] For example, the thickness of thumb padding 120 may be 1.5, 1.8, 1.95, or 2 times the thickness of glove body 110, or some other multiple. For example, the thickness of the middle finger thickened portion 130 may be 1.5 times, 1.8 times, 1.95 times, or 2 times the thickness of the glove body portion 110, or some other multiple. For example, the thickness of ring finger thickened portion 140 may be 1.5 times, 1.8 times, 1.95 times, or 2 times the thickness of glove body portion 110, or some other multiple.
[0039] In an alternative embodiment of this embodiment, the thickened thumb portion 120, the thickened middle finger portion 130, and the thickened ring finger portion 140 each have a ring shape. The thickened thumb portion 120, the thickened middle finger portion 130, and the thickened ring finger portion 140 each have a ring shape, which can contribute to the minimally invasive surgery performed by a doctor and to the production and processing of minimally invasive surgical gloves.
[0040] In an alternative embodiment of this embodiment, the anti-slip structures 150 include anti-slip granules or anti-slip protrusions, or other structures.
[0041] Optionally, the shape of the anti-slip protrusions is circular, elliptical, elongated, triangular, hexagonal, or other shapes. The shape of the anti-slip protrusions shown in Figure 3 is circular, and the shape of the anti-slip protrusions shown in Figure 4 is elliptical.
[0042] In an alternative embodiment of this embodiment, the glove body 110, the thick thumb portion 120, the thick middle finger portion 130, and the thick ring finger portion 140 are made of the same material. Using the same material for the glove body 110, the thick thumb portion 120, the thick middle finger portion 130, and the thick ring finger portion 140 contributes to the production and processing of minimally invasive surgical gloves.
[0043] In an alternative embodiment of the present invention, the material of the glove body 110 is latex, rubber, silicone rubber, or other materials.
[0044] The above are only preferred embodiments of the present disclosure and are not intended to limit the present disclosure. Those skilled in the art may find various modifications and variations in the present disclosure. As long as they do not deviate from the spirit and principle of the present disclosure, any modifications, equivalent replacements, improvements, etc., fall within the scope of protection of the present disclosure. Industrial Applicability
[0045] The present disclosure provides a glove for minimally invasive surgery, belonging to the technical field of medical devices. The glove for minimally invasive surgery includes a glove body, a thickened thumb portion, a thickened middle finger portion, and a thickened ring finger portion. The thicknesses of the thickened thumb portion, the thickened middle finger portion, and the thickened ring finger portion are all greater than the thickness of the glove body. A non-slip structure is provided on part or all of the outer peripheral walls of the thickened thumb portion, the thickened middle finger portion, and the thickened ring finger portion. The glove body, the thickened thumb portion, the thickened middle finger portion, and the thickened ring finger portion are integrally molded. The present disclosure aims to provide a glove for minimally invasive surgery. When a part of the hand is compressed by a minimally invasive surgical instrument during minimally invasive surgery, the glove improves the local non-slip effect and relieves the local compression, thereby reducing discomfort and pain in the surgeon's hand, particularly in the thumb, middle finger, and ring finger, and providing better hand protection during minimally invasive surgery.
[0046] Furthermore, the minimally invasive surgical gloves according to the present disclosure are operable and can be used in a variety of industrial applications, for example, in the field of medical devices. [Explanation of symbols]
[0047] 110 Glove body 120 Thick part of thumb 130 Thick part of middle finger 140 Ring finger thick part 150 Anti-slip structure
Claims
1. A minimally invasive surgical glove, The glove includes a main body portion, a thick thumb portion, a thick middle finger portion, and a thick ring finger portion, The thickness of the thumb thick portion, the middle finger thick portion, and the ring finger thick portion are all greater than the thickness of the glove body portion, a non-slip structure is provided on a part or all of the outer peripheral walls of the thick thumb portion, the thick middle finger portion, and the thick ring finger portion; The glove body, the thumb thick portion, the middle finger thick portion, and the ring finger thick portion are integrally molded. A minimally invasive surgical glove characterized by:
2. The thumb thickening portion is configured to correspond to the position of the proximal phalanx of the thumb; Alternatively, the thumb thickening portion is configured to correspond to the position of the proximal phalanx of the thumb and a portion of the ball of the foot.
2. The glove for minimally invasive surgery according to claim 1.
3. The thickened portion of the middle finger is configured to correspond to the position of the middle phalanx of the middle finger, Alternatively, the thickened portion of the middle finger is configured to correspond to the position of the proximal phalanx of the middle finger, Alternatively, the thickened portion of the middle finger is configured to correspond to the position of the middle phalanx of the middle finger and a part of the proximal phalanx of the middle finger, Alternatively, the thickened portion of the middle finger is configured to correspond to the positions of the proximal phalanx of the middle finger and a part of the middle phalanx of the middle finger, Alternatively, the thickened portion of the middle finger is configured to correspond to the positions of the proximal phalanx and the middle phalanx of the middle finger.
2. The glove for minimally invasive surgery according to claim 1.
4. The ring finger thick portion is configured to correspond to the position of the middle phalanx of the ring finger, Alternatively, the ring finger thickened portion is configured to correspond to the position of the proximal phalanx of the ring finger, Alternatively, the thickened portion of the ring finger is configured to correspond to the positions of the middle phalanx of the ring finger and a part of the proximal phalanx of the ring finger, Alternatively, the thickened portion of the ring finger is configured to correspond to the positions of the proximal phalanx of the ring finger and a part of the middle phalanx of the ring finger, Alternatively, the thickened portion of the ring finger is configured to correspond to the positions of the proximal phalanx and the middle phalanx of the ring finger.
2. The glove for minimally invasive surgery according to claim 1.
5. The thickness of each of the thick thumb portion, the thick middle finger portion, and the thick ring finger portion is 1.5 to 2 times the thickness of the glove body portion. The glove for minimally invasive surgery according to any one of claims 1 to 4.
6. The thumb thick portion, the middle finger thick portion, and the ring finger thick portion each have an annular shape. The glove for minimally invasive surgery according to any one of claims 1 to 4.
7. The anti-slip structure includes anti-slip granules or anti-slip protrusions The glove for minimally invasive surgery according to any one of claims 1 to 4.
8. The shape of the anti-slip protrusions is circular, elliptical, elongated, triangular or hexagonal.
8. The glove for minimally invasive surgery according to claim 7.
9. The glove body, the thumb thick portion, the middle finger thick portion, and the ring finger thick portion are made of the same material. The glove for minimally invasive surgery according to any one of claims 1 to 4.
10. The glove body is made of latex, rubber, or silicone rubber.
10. The glove for minimally invasive surgery according to claim 9.