Osteoporosis prevention exerciser for hand surgery department

A technology for osteoporosis and exercise equipment, applied in gymnastics equipment, muscle training equipment, sports accessories, etc., can solve the problems of effective, troublesome, and stimulating affecting muscle strength, and achieve the effect of improving flexibility, convenient use, and improving prevention.

Active Publication Date: 2021-04-02
刘晓梅 +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] Under normal circumstances, based on the actual situation, it is very likely that healthy people will spend a lot of working time to prevent osteoporosis exercises when their fingers are healthy. Therefore, this type of finger force for preventing finger osteoporosis is mainly suitable for For the elderly and people with sub-healthy fingers, in addition, in the process of a fixed displacement of the traditional finger force, as long as the spring position remains unchanged, and the pressure required by the finger is inherently unchanged, finger exercise is a long-term continuous process , regardless of whether the fingers are healthy or not, with the continuous exercise of the fingers, the health of the fingers must be getting better and better. In this way, when the fingers are exercising and pressing the same position in real time, although the displacement is the same, the bones can be effectively stimulated and exercised , but the fingers are in good health at this time, and the grip strength will inevitably increase with the exercise, which leads to the real-time elastic force provided by the fixed spring compression and displacement is not enough to meet the needs of real-time finger exercise, affecting real-time exercise Effective stimulation of muscle strength during the process, thus affecting the exercise effect
[0005] Therefore, on the basis of the original structure of the existing finger force, the function of changing the position of the spring is correspondingly added, thereby changing the pressing force of the fingers during ex

Method used

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  • Osteoporosis prevention exerciser for hand surgery department
  • Osteoporosis prevention exerciser for hand surgery department
  • Osteoporosis prevention exerciser for hand surgery department

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Effect test

Embodiment 1

[0033] see Figure 2-10 , the present invention provides a technical solution: an exerciser for preventing osteoporosis in hand surgery, including a hollow shell 1, the hollow shell 1 is a structural design that matches the shape of an existing finger force device, and will not be described in detail here;

[0034] The top of the hollow shell 1 is provided with four functional slots 2 equidistantly through the top, and the number of functional slots is set to four according to the prior art, mainly for the purpose of matching the four fingers of personnel except the thumb for exercising, and the hollow shell 1 It is equipped with an adjustable acupressure part 3 that cooperates with four functional channels 2 and can change the strength of the elastic exercise synchronously and in real time according to the demand during the real-time exercise process, so as to be different from the prior art, and then in the real-time use process, through The real-time pressing of the adjusta...

Embodiment 2

[0045] see Figure 11-12 , the present invention provides another technical solution: an exerciser for preventing osteoporosis in hand surgery, comprising a hollow casing 1, and four functional slots 2 are opened equidistantly on the top of the hollow casing 1, and hollow There are two sets of adjustable acupressure parts 3 that cooperate with four functional channels 2 and can change the strength of elastic exercise synchronously and in real time during the real-time exercise process according to the needs. It should be noted that the adjustable acupressure The component 3 also includes two finger-pressing driving rods 4 respectively arranged at the edge positions on both sides of the channel 2 with different functions and two auxiliary finger-pressing rods 5 located in the middle functional channel 2. The finger-pressing driving rods 4 and The top of the auxiliary acupressure rod 5 is also fixed with a pressing part 6 for comfortable finger pressing exercise, and the outside...

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Abstract

The invention discloses an osteoporosis prevention exerciser for the hand surgery department. The exerciser comprises a hollow shell; four functional through grooves are formed in the top of the hollow shell at equal intervals in a penetrating mode; adjustable finger pressing components which can synchronously change the magnitude of elastic exercise force in real time according to needs in a real-time exercise process and are matched with the four functional through grooves are arranged in the hollow shell. The osteoporosis prevention exerciser for the hand surgery department is different from the prior art in that the osteoporosis prevention exerciser can change the real-time pressing force at a limit pressing position in the real-time pressing process through the real-time pressing of the adjustable finger pressing components and the transmission fit of the structural characteristics of the osteoporosis prevention exercise, and therefore, the flexibility of the use of the finger force device can be effectively improved, a user can adjust the proper exercise pressing force in real time according to the health condition of the fingers of the user in the real-time exercise process.The osteoporosis prevention exerciser is ingenious in structure, convenient to use, flexible and efficient, and effectively improves the exercise use experience of osteoporosis prevention of patientsin the hand surgery department.

Description

technical field [0001] The invention relates to the technical field of finger force devices, in particular to an exercise device for preventing osteoporosis used in hand surgery. Background technique [0002] Osteoporosis is a systemic bone disease in which bone density and bone quality decrease due to various reasons, bone microstructure is destroyed, bone fragility increases, and fractures are prone to occur. Osteoporosis is divided into primary and secondary Primary osteoporosis is divided into three types: postmenopausal osteoporosis (type I), senile osteoporosis (type II) and idiopathic osteoporosis (including juvenile type). , postmenopausal osteoporosis generally occurs in women within 5 to 10 years after menopause; senile osteoporosis generally refers to the osteoporosis that occurs in the elderly after the age of 70; and idiopathic osteoporosis mainly occurs in adolescents, and the etiology is still unknown. unknown. [0003] At present, human beings are still una...

Claims

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Application Information

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IPC IPC(8): A63B23/16A63B21/05
CPCA63B21/05A63B23/16
Inventor 刘晓梅张珉
Owner 刘晓梅
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