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Influence of Wristband Tightness on the Protection of Wrist Joint in Table Tennis

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Book cover Man–Machine–Environment System Engineering (MMESE 2019)

Part of the book series: Lecture Notes in Electrical Engineering ((LNEE,volume 576))

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Abstract

Table tennis is popular with most people. However, the research on the protective equipment wristbands for this sport only stays on the study of fabric properties. In order to study the tight comfort performance and protective performance of wearing wristbands in the table tennis ball and the relationship between them, fifteen female college students who love table tennis are the research subjects. The Qualisys Track Manager optical motion capture device was used to capture 3D data of the human body markers in the process of table tennis. The three-dimensional angle of the wrist was derived by visual 3D bone modeling. Mathematical statistical analysis and research of experimental data were conducted. The combination of compression comfort and injury protection is proposed, in order to propose a practical and systematic evaluation method of tight compression protection. The results show that the wrist tightness is an important factor for the wrist to have a good protective. When the optimal pressure range for wearing the wristband is controlled at 584.3–600 mN, it can protect the wrist and make the human body feel comfortable during exercise.

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References

  1. Guo SF (2000) Clinical anatomy of orthopedics. Shandong Science and Technology Press, Jinan, pp 542–573

    Google Scholar 

  2. Cao MS, Jiang GH, Tian L (2006) Investigation, analysis and research on wrist injury of gymnasts. J Nanjing Sport Inst 20(2):8–10

    Google Scholar 

  3. Fu WJ (2011) Research status and prospect of body-hugging equipment in the field of sports science. China Sport Sci Technol 47(2):62–69

    Google Scholar 

  4. Ibrahin SM (1985) A psychological scale for fabric stiffness. J Text Inst 76(6):44–47

    Google Scholar 

  5. Nakahashi M, Harumi T et al (1999) Lower leg front pressure behind degree. Jpn Res Assn Text End-uses 40(10):49–55

    Google Scholar 

  6. Xu J, Zhang L, Zhang F (2009) Research on pressure comfort of women’s beach volleyball apparel based on sports biomechanics. J Tianjin Polytech Univ 2:23–26

    Google Scholar 

  7. Dan BK, Kwon YH, Newton RU et al (2003) Evaluation of a lower body compression garment. J Sports Sci 21(8):601–610

    Article  Google Scholar 

  8. Lu YH (2010) Effect and mechanism of dressing compression on skin blood flow of lower limbs. Suzhou University, pp 2–7

    Google Scholar 

  9. Yu XN (2013) On the application of motion capture technology in the process of film and television animation creation. Electron Technol Softw Eng 22:99–100

    Google Scholar 

  10. Yin L, Zhang WB, Xia L (2008) Research review and analysis of clothing pressure comfort. J Text Res 29(3):137–142

    Google Scholar 

  11. Di XY (1996) Bone and joint injuries and diseases in the elderly. People’s Medical Publishing House, pp 39–40

    Google Scholar 

  12. Zhao LY, Huang SG, Sui LM et al (2015) Study on the difference of knee movement between treadmill walking and flat walking. J Harbin Eng Univ 36(9):1259–1260

    Google Scholar 

Download references

Compliance with Ethical Standards

The study was approved by the Logistics Department for Civilian Ethics Committee of Zhejiang Sci-Tech University.

All subjects who participated in the experiment were provided with and signed an informed consent form.

All relevant ethical safeguards have been met with regard to subject protection.

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Correspondence to Zimin Jin .

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Zhou, M., Jin, Z., Jin, J., Li, W., Yan, Y. (2020). Influence of Wristband Tightness on the Protection of Wrist Joint in Table Tennis. In: Long, S., Dhillon, B. (eds) Man–Machine–Environment System Engineering . MMESE 2019. Lecture Notes in Electrical Engineering, vol 576. Springer, Singapore. https://doi.org/10.1007/978-981-13-8779-1_9

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