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Chin force in violin playing

机译:小提琴演奏中的下巴力

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摘要

Force generated between the left mandible of violinists and the chinrest of the violin was examined using a force-sensing chinrest developed in this study. A strain-gauge force sensor was built, and it was fixed between the violin’s top plate and a chin cup. Fifteen professional/amateur violinists held the violin statically, played musical scales with different sound properties and sounding techniques, as well as an excerpt from a Max Bruch concerto. Peak and mean forces were evaluated for each task. In a separate experiment, lateral movement of the lower teeth due to different levels of voluntary chin force exertion was measured. Static holding forces observed were 15 and 22 N with and without the help of the left hand, respectively. Peak force increased from 16 N at soft dynamics to 20 N at strong dynamics during scales. The force further increased to 29 N with the use of vibrato technique and 35 N during shifts. Tempo and hand position did not affect the force. Playing a Bruch concerto induced a mean peak force of 52 N, ranging from 31 to 82 N among the violinists. The developed force-sensing chinrest could accurately record the generated chin force. Typical chin force to stabilize the violin during ordinary musical performance was less than 30 N, but it could momentarily exceed 50 N when technically demanding musical pieces were performed. The lateral shift of the mandible was fairly small (0.4 mm) even with high chin-force exertion, possibly due to clenching of the molars.
机译:使用在这项研究中开发的力感应下颚,检查了小提琴手的左下颚和小提琴下颚之间产生的力。内置了应变计力传感器,并将其固定在小提琴的顶板和下巴杯之间。 15位专业/业余小提琴手静态拉小提琴,演奏具有不同音质和发声技术的音阶,以及Max Bruch协奏曲的摘录。评估每个任务的峰值力和平均力。在一个单独的实验中,测量了由于主动下巴力水平不同而导致的下牙齿的横向运动。在没有左手帮助的情况下,观察到的静态保持力分别为15 N和22N。在秤期间,峰值力从软动力时的16 N增加到强动力时的20N。借助颤音技术,力进一步增加到29 N,换档时增加到35N。拍子和手的位置不影响力。演奏布鲁赫协奏曲时,小提琴手的平均峰值力为52 N,范围从31到82N。开发的力感应下颌可以准确记录下颌产生的力。在普通音乐演奏中,稳定小提琴的典型下巴力小于30 N,但在演奏技术要求较高的音乐作品时,其瞬时可能会超过50N。下颌骨的侧向移位即使在下巴力较高的情况下也相当小(<0.4 mm),这可能是由于磨牙的咬合所致。

著录项

  • 来源
    《European Journal of Applied Physiology》 |2012年第6期|p.2085-2095|共11页
  • 作者单位

    Biomechanics and Motor Control Laboratory, Graduate School of Medicine, Osaka University, 1-17, Machikaneyama, Toyonaka, 560-0043, Osaka, Japan;

    Biomechanics and Motor Control Laboratory, Graduate School of Medicine, Osaka University, 1-17, Machikaneyama, Toyonaka, 560-0043, Osaka, Japan;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Chin rest; Force; Load sensor; Violin; Mandible;

    机译:下巴托;力;负荷传感器;小提琴;Mandible;

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