Body prosthesis base adaptable to different lying situations

By designing multiple reclining grooves on the base of the human prosthesis, the problem of existing prosthesis models being unable to be stably fixed in different reclining positions is solved, achieving stable placement in multiple reclining positions and realistic surgical simulation, thus improving training effectiveness.

CN117351823BActive Publication Date: 2026-04-10HONEST MEDICAL CHINA CO LTD +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-09-06
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

Existing human prosthetic models are difficult to stably fix in different lying positions, and cannot simulate the surgical scenarios of real human bodies in different lying positions, thus affecting the training effect.

Method used

Design a human prosthesis base containing multiple reclining grooves to accommodate lying flat, left lateral, and right lateral positions. The specific groove structure limits the human prosthesis to ensure stable placement in different lying positions.

Benefits of technology

It enables stable placement of human prostheses in different lying positions, simulating real surgical scenarios and improving the realism and effectiveness of surgical training.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application provides a human body prosthesis base which can adapt to different lying position situations. The human body prosthesis has a pelvic part, a trunk part and a lower limb part. The pelvic part has a first hip part and a second hip part. The lower limb part has a first lower limb part and a second lower limb part. The human body prosthesis base comprises a base body. The front surface of the base body has a first lying recess. The back surface of the base body has a second lying recess and a third lying recess. The first lying recess corresponds to the back side of the human body prosthesis. When the human body prosthesis is placed in the first lying recess, the human body prosthesis is in a lying position. The second lying recess corresponds to the left side of the human body prosthesis. When the human body prosthesis is placed in the second lying recess, the human body prosthesis is in a left side lying position. The third lying recess corresponds to the right side of the human body prosthesis. When the human body prosthesis is placed in the third lying recess, the human body prosthesis is in a right side lying position. Thus, the human body prosthesis base can provide the human body with the most commonly used lying position for the human body prosthesis during actual surgery.
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Description

TECHNICAL FIELD

[0001] The present invention relates to a human body prosthesis base that can adapt to different lying position situations, in particular to forming different types of lying recesses on the seat body of the human body prosthesis base, so that the artificial human body prosthesis placed in different types of lying recesses can present different lying positions. BACKGROUND

[0002] The training of medical students or the actual operation planning of surgeons on patients often simulates the operation with a human training prosthesis to ensure the smooth progress of the actual operation.

[0003] The human training prosthesis, for example, has Chinese Patent No. CN212181766U "Urinary system intervention training model". The urinary system model is installed in the space of a rectangular base, and the urinary system model includes a lesion module, which can be used for medical students to train urinary system surgery.

[0004] However, the human model of Chinese Patent No. CN212181766U only includes the urinary system model to be practiced, and does not have an artificial human appearance, which still has a gap with the situation and state of performing surgery on a real human body.

[0005] Japanese Patent No. JP2015018130A "Internal organ model and human model". The internal organ model with a simulated tumor inside is arranged in an artificial human model for simulated surgery practice. Through the artificial human model, the situation and state of performing surgery on a real human body can be simulated, and the training effectiveness is improved.

[0006] The artificial human model used in Japanese Patent No. JP2015018130A has an irregular curved surface appearance like a real human body, but in actual surgery, the human body needs to adopt different lying positions according to needs, such as flat lying position, left side lying position, right side lying position, etc. However, the artificial human model is not easy to fix in the desired lying position. SUMMARY

[0007] To solve the above problems, the purpose of the present invention is to provide a human body prosthesis base that can adapt to different lying position situations.

[0008] The present invention provides a human body prosthesis base that can adapt to different lying position situations, for an artificial human body to lie down to perform simulated surgery operation. The human body prosthesis has a front side, a back side, a left side and a right side, and the human body prosthesis has a pelvic part, a trunk part and a lower limb part. The pelvic part has a first hip part and a second hip part, and the lower limb part has a first lower limb part and a second lower limb part. The human body prosthesis base comprises:

[0009] A seat body has a front side and a back side, the front side has a first lying recess, the back side has a second lying recess and a third lying recess.

[0010] The first lying recess corresponds to the back side of the human body prosthesis, so that the human body prosthesis is in a lying position when placed in the first lying recess.

[0011] The second lying recess corresponds to the left side of the human body prosthesis, so that the human body prosthesis is in a left side lying position when placed in the second lying recess.

[0012] The third lying recess corresponds to the right side of the human body prosthesis, so that the human body prosthesis is in a right side lying position when placed in the third lying recess.

[0013] Further, the lower limb part of the human body prosthesis extends from the pelvic part to the front side, the first lying recess includes two first hip recesses corresponding to the first hip part and the second hip part, and a first trunk recess connected to the two first hip recesses, so that the human body prosthesis can be positioned when placed in the first lying recess in a lying position.

[0014] Further, the lower limb part of the human body prosthesis extends from the pelvic part to the front side, the second lying recess includes a second hip recess corresponding to the first hip part from the left side, a second trunk recess connected to the second hip recess corresponding to the trunk part from the left side, and a left lower limb recess corresponding to the first lower limb part from the left side, so that the human body prosthesis can be positioned when placed in the second lying recess in a left side lying position. The side part of the seat body has a first gap connected to the left lower limb recess.

[0015] Further, the lower limb part of the human body prosthesis extends from the pelvic part to the front side, the third lying recess includes a third hip recess corresponding to the second hip part from the right side, a third trunk recess connected to the third hip recess corresponding to the trunk part from the right side, and a right lower limb recess corresponding to the second lower limb part from the right side, so that the human body prosthesis can be positioned when placed in the third lying recess in a right side lying position. The side part of the seat body has a second gap connected to the right lower limb recess.

[0016] The following effects can be achieved according to the above technical features:

[0017] The human body prosthesis base can provide the most commonly used lying position for the human body during actual surgery for the prosthesis to lie down, and realize the simulation of the real surgery situation and state. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 This is a three-dimensional view of the human prosthesis base of the present invention from the front.

[0019] Figure 2 for Figure 1 Top view.

[0020] Figure 3 This is a three-dimensional view of the back of the human prosthesis base of the present invention.

[0021] Figure 4 for Figure 3 Top view.

[0022] Figure 5 This is a three-dimensional exploded view showing the human prosthesis placed in a supine position on the human prosthesis base when used in this invention.

[0023] Figure 6 This is a three-dimensional assembly diagram showing the human prosthesis placed in a supine position on the human prosthesis base when used in this invention.

[0024] Figure 7 This is a three-dimensional exploded view of the human prosthesis placed on the human prosthesis base in a left-side lying position when used in this invention.

[0025] Figure 8 This is a three-dimensional assembly diagram of a human prosthesis placed on a human prosthesis base in a left-side lying position when used in this invention.

[0026] Figure 9 This is a three-dimensional exploded view of the human prosthesis placed on the human prosthesis base in a right-side lying position when used in this invention.

[0027] Figure 10 This is a three-dimensional assembly diagram of a human prosthesis placed on a human prosthesis base in a right-side lying position when used in this invention. Detailed Implementation

[0028] Based on the above technical features, the main functions of the human prosthetic base of the present invention, which can adapt to different lying positions, will be clearly presented in the following embodiments.

[0029] Please see Figure 1 , Figure 2 , Figure 3 and Figure 4 As shown, the human prosthesis base 10 of this embodiment of the invention includes a body 1, which has a front side 11 and a back side 12. The front side 11 has a first reclining groove 111, and the back side 12 has a second reclining groove 121 and a third reclining groove 122.

[0030] The first lying recess 111 includes two first hip recesses 1111 and a first trunk recess 1112 connected with the two first hip recesses 1111. The second lying recess 121 includes a second hip recess 1211, a second trunk recess 1212 connected with the second hip recess 1211, and a left lower limb recess 1213. The seat body 1 has a first gap 13 on one side thereof, and the left lower limb recess 1213 is communicated with the first gap 13. The third lying recess 122 includes a third hip recess 1221, a third trunk recess 1222 connected with the third hip recess 1221, and a right lower limb recess 1223. The seat body 1 has a second gap 14 on one side thereof, and the right lower limb recess 1223 is communicated with the second gap 14.

[0031] Referring to Figs. 1 and 2, Figure 5 and Figure 6 The human body prosthesis base 10 can be used for the human body prosthesis 20 to lie down to perform the simulated operation. The human body prosthesis 20 has a front side 201, a back side 202, a left side 203, and a right side 204. The human body prosthesis 20 has a pelvic part 205, a trunk part 206, and a lower limb part 207. The pelvic part 205 has a first hip part 2051 and a second hip part 2052. The lower limb part 207 has a first lower limb part 2071 and a second lower limb part 2072. The first lower limb part 2071 and the second lower limb part 2072 extend from the pelvic part 205 towards the front side 201.

[0032] Specifically, the front side 11 of the seat body 1 is directed towards the human body prosthesis 20, and the first lying recess 111 corresponds to the back side 202 of the human body prosthesis 20. When the human body prosthesis 20 is placed in the first lying recess 111, the two first hip recesses 1111 can correspondingly accommodate the first hip part 2051 and the second hip part 2052, and the first trunk recess 1112 can correspondingly accommodate the trunk part 206. Thus, the human body prosthesis 20 can be placed in the first lying recess 111 to assume a lying position, and the human body prosthesis 20 can be limited in the first lying recess 111 to facilitate the simulated operation practice.

[0033] Referring to Figs. 1 and 2, Figure 7 and Figure 8As shown, specifically, the back surface 12 of the seat body 1 is oriented towards the human body prosthesis 20, and the second lying recess 121 corresponds to the left side 203 of the human body prosthesis 20. When the human body prosthesis 20 is placed in the second lying recess 121, the second hip recess 1211 corresponds to accommodate the first hip portion 2051 from the left side 203, the second trunk recess 1212 corresponds to accommodate the trunk portion 206 from the left side 203, and the left lower limb recess 1213 corresponds to accommodate the first lower limb portion 2071 from the left side 203. After the human body prosthesis 20 is placed in the second lying recess 121, the human body prosthesis 20 can be in a left side lying position, and the first notch 13 can be used for the first lower limb portion 2071 to extend out. Thus, the human body prosthesis 20 can be limited in the second lying recess 121, so as to facilitate the simulation surgery practice.

[0034] As shown in Figure 9 and Figure 10 As shown, specifically, the back surface 12 of the seat body 1 is oriented towards the human body prosthesis 20, and the second lying recess 121 corresponds to the left side 203 of the human body prosthesis 20. When the human body prosthesis 20 is placed in the second lying recess 121, the second hip recess 1211 corresponds to accommodate the first hip portion 2051 from the left side 203, the second trunk recess 1212 corresponds to accommodate the trunk portion 206 from the left side 203, and the left lower limb recess 1213 corresponds to accommodate the first lower limb portion 2071 from the left side 203. After the human body prosthesis 20 is placed in the second lying recess 121, the human body prosthesis 20 can be in a left side lying position, and the first notch 13 can be used for the first lower limb portion 2071 to extend out. Thus, the human body prosthesis 20 can be limited in the second lying recess 121, so as to facilitate the simulation surgery practice.

[0035] According to the foregoing description, the human body prosthesis base 10 of the present application can provide the most common lying position of the human body during actual surgery for the simulation human body prosthesis 20 to lie, so as to realize the situation and state of simulating the real surgery.

[0036] In summary of the foregoing description of the embodiments, the operation, use and effects of the present application can be fully understood. The foregoing embodiments are only the preferred embodiments of the present application, and should not limit the scope of the present application. Any simple equivalent changes and modifications according to the content of the present application are within the scope of the present application.

Claims

1. A human prosthetic base adaptable to different lying situations for a realistic human prosthetic to lie down for simulated surgical operations, characterized in that: The human body prosthesis has a front side, a back side, a left side and a right side, and has a pelvic part, a trunk part and a lower limb part, the pelvic part has a first hip part and a second hip part, the lower limb part has a first lower limb part and a second lower limb part, the human body prosthesis base comprises: a seat body, the seat body has a front face and a back face, the front face has a first lying recess, the back face has a second lying recess and a third lying recess; the first lying recess corresponds to the back side of the human body prosthesis, so that the human body prosthesis is in a lying position when placed in the first lying recess; the second lying recess corresponds to the left side of the human body prosthesis, so that the human body prosthesis is in a left side lying position when placed in the second lying recess; the third lying recess corresponds to the right side of the human body prosthesis, so that the human body prosthesis is in a right side lying position when placed in the third lying recess; the lower limb part of the human body prosthesis extends from the pelvic part towards the front side, wherein: the second lying recess comprises a second hip recess, a second trunk recess connected to the second hip recess, and a left side lower limb recess, the second hip recess corresponds to the first hip part from the left side, the second trunk recess corresponds to the trunk part from the left side, and the left side lower limb recess corresponds to the first lower limb part from the left side, so that the human body prosthesis can be positioned when placed in the second lying recess in a left side lying position; the seat body side has a first gap, and the first gap is connected to the left side lower limb recess; and / or, the third lying recess comprises a third hip recess, a third trunk recess connected to the third hip recess, and a right side lower limb recess, the third hip recess corresponds to the second hip part from the right side, the third trunk recess corresponds to the trunk part from the right side, and the right side lower limb recess corresponds to the second lower limb part from the right side, so that the human body prosthesis can be positioned when placed in the third lying recess in a right side lying position; the seat body side has a second gap, and the second gap is connected to the right side lower limb recess.

2. The human prosthetic base adaptable to different lying position scenarios of claim 1, wherein, the first lying recess comprises two first hip recesses and a first trunk recess connected thereto, the two first hip recesses correspond to the first hip part and the second hip part, and the first trunk recess corresponds to the trunk part, so that the human body prosthesis can be positioned when placed in the first lying recess in a lying position.

Citation Information

Patent Citations

  • Urinary system intervention training model

    CN212181766U

  • Visceral organ model and phantom model

    JP2015018130A

  • Urethral catheterization model

    CN202258073U