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An experimental setup for generating standard bone lesions

An experimental device and bone injury technology, which is applied in the direction of educational appliances, instruments, teaching models, etc., can solve the problems of inability to accurately control the strength, inability to use precise research and experiments, and poor repeatability of experimental results, so as to improve the experimental accuracy and convenience. Reproducible and reproducible effects

Inactive Publication Date: 2018-08-10
SHANGHAI UNIV OF MEDICINE & HEALTH SCI
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

There are obvious disadvantages in making fracture models by this method: because the establishment of fracture models is basically made by hand, the strength of vertical or oblique fracture cannot be precisely controlled, which inevitably leads to certain errors between each model. The difference between them is bound to have an impact on the data of the experimental results, resulting in poor repeatability of the experimental results. It can be used for qualitative research, but cannot be used for quantitative precise research and experiments.

Method used

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  • An experimental setup for generating standard bone lesions
  • An experimental setup for generating standard bone lesions
  • An experimental setup for generating standard bone lesions

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Experimental program
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Embodiment Construction

[0046] The present invention will be further described below in conjunction with the accompanying drawings.

[0047] exist figure 1 , figure 2 and image 3 Among them, the technical solution of the present invention provides an experimental device for generating standard bone injuries, and its invention points are:

[0048] A column 2 is arranged on the base 1; a top horizontal block 3 is arranged horizontally on the top of the column, one end of the top horizontal block is fixedly connected to the top of the column, and the other end is suspended in the air, forming a cantilever structure.

[0049] In the middle of the column, a guide bracket 4 is vertically arranged.

[0050] At the cantilever end of the top cross block, a slide bar 5 is longitudinally arranged, and the slide bar runs through the guide bracket to set; The longitudinal axes of the slide bars coincide with each other.

[0051] Between the disc and the upper end of the guide bracket, a spring 8 is set, whic...

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Abstract

The invention provides an experimental device for generating standard bone injury and belongs to the field of the experimental device. A vertical column is arranged on a base; a top horizontal block is arranged at the top end of the vertical column; a guiding bracket is arranged in the middle of the vertical column; a slide rod is arranged at a cantilever end of the top horizontal block; a disc is arranged on the slide rod; a spring is arranged between the disc and the upper end of the guiding bracket; a blade is arranged at the lower end of the slide rod; a slide block set is arranged on the base under the blade; a sample platform is arranged on a side wall of the slide block set; and a counterweight sleeves the slide rod in a sliding form. The experimental device is used for generating the standard bone injury of an experimental bone sample by supplying a magnitude-specified and value-adjustable impact force, so as to accurately and quantitatively realize the dynamic breakage feature experiment of the bone sample; the repeatability of the experimental result is excellent; the batch acquisition or preparation for the standard bone injury sample or model can be conveniently realized; and the experimental device can be widely applied to the experimental field of bone biomechanical property research and bone sample dynamic breakage features.

Description

technical field [0001] The invention belongs to the field of simulation experiment devices, in particular to an experiment device for testing the dynamic mechanical properties of bones. Background technique [0002] With the aging of the population, the widespread use of hormone drugs and the increase in traffic accidents, the incidence of fractures has increased significantly. According to the differences in fractures at different parts and their biomechanical characteristics, corresponding treatment measures should be taken as soon as possible to reduce complications. , improve the prognosis and reduce the fatality rate. Therefore, people pay more and more attention to the testing and research of the biomechanical properties of bone. [0003] Many scholars have used quasi-static experimental methods to study the mechanical properties of bone, including the elasticity, viscoelasticity and fracture properties of bone. [0004] The announcement date is January 07, 2015, and...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G09B23/28
CPCG09B23/28
Inventor 许萍王红陈千红
Owner SHANGHAI UNIV OF MEDICINE & HEALTH SCI
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