低流阻肌电控制型说话阀的研制

K. Ooe, Kohei Sakurai, Shinya Mimaki
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引用次数: 2

摘要

我们的目标是为发音障碍患者开发福利设备。其中一种装置是电控式说话阀系统。传统的说话阀为单向阀结构,当用户吸气时打开,当用户呼气并发出声音时关闭。这种类型非常简单和坚固,但有些用户在没有发声的情况下呼气时会感到亲密。造成这一问题的原因是其机制不受用户意志的控制。因此,我们提出了一种电控式说话阀系统来解决这一问题。该瓣膜由胸骨舌骨肌的颈肌电信号控制。从我们之前的报告中可以看出,这种阀门在易于呼吸方面具有更好的性能。在此基础上,提出了紧凑型肌电控制式说话阀系统。新型说话阀体积小,可以附着在人体上,开口面积也比传统说话阀大。此外,还利用有限元分析方法描述了对流道形状的改进。分析结果表明,改进型说话阀在吸气情况下具有低流阻通道。在这个报告中,我们试图通过电流板的形状来降低流动阻力,在吸气和呼气的情况下。有限元分析结果表明,与老型号相比,我们的说话阀具有更好的流道。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of myoelectric control type speaking valve with low flow resistance
We aimed to develop welfare devices for patients with phonation disorder. One of these devices is the electrical controltype speaking valve system. The conventional speaking valves have one-way valve architecture, they open when the user breathes in, and they close when user breathes out and produce voices. This type is very simple and tough, but some users feel closeness in case of exhalation without phonation. This problem is caused by its mechanism what can not be controlled by user’s will. Therefore, we proposed an electrical control-type speaking valve system to resolve this problem. This valve is controlled by neck myoelectric signal of sternohyoid muscle. From our previous report, it was clarified that this valve had better performance about easy-to-breath. Furthermore, we proposed the compact myoelectric control-type speaking valve system. The new-type speaking valve was enough small to attach the human body, and its opening area is larger than that of conventional one. Additionally, we described the improvement of flow channel shape by using of FEM analysis. According to the result of the analysis, it was clarified that the shape-improved speaking valve gets the low flow resistance channel in case of inspiration. In this report, we tried to make the flow resistance lower by the shape of current plates, in case of both inspiration and exhalation. From the result of FEM analysis, our speaking valve could get better flow channel than older one.
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