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A Novel Mobility Aid for the Blind through Ultrasound Pulsed Echo Modulated Nerve Stimulation

机译:通过超声脉冲回波调制神经刺激盲人的新型流动性援助。

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There are no affordable and widely available technology based aid to give a blind person the power of free movement avoiding obstacles and dangers. Some ultrasound pulse echo based electronic aids deliver the information obtained through the echo through audio signals conveyed by means of ear phones, but these affect the capability of such an important sense organ which a blind person uses greatly to receive and discern information of the surroundings. In the present work this limitation is overcome by passing this information through nerve stimulations at a suitable point on the body, possible wrist. Here the delays of the received ultrasound echo-pulses are used to modulate the frequency of nerve stimulation, to give higher frequency for shorter distances. This was designed to match the common psychological response of attributing higher frequencies to danger, creating a natural reaction for moving away when an object is too close. The highest frequency a human nerve can be stimulated to is about 500Hz, and pulses with heights of 100V to 200V are required for stimulating nerves passing just under the skin using surface electrodes. Necessary electronic circuit design was developed and a prototype fabricated in the present work. The prototype was tested for short distances up to 20cm giving very good linear response between object distance and the stimulating frequency, with the inverse characteristics as mentioned above. Reduction of noise through proper housing and shielding will allow the device to be useful to a practical distance of about 10m using 40kHz ultrasound transducers. DOI: http://dx.doi.org/10.3329/bjmp.v4i1.14692 Bangladesh Journal of Medical Physics Vol.4 No.1 2011 87-94
机译:没有负担得起且广泛可用的基于技术的援助来赋予盲人自由移动的力量,从而避免障碍和危险。一些基于超声脉冲回波的电子辅助设备通过耳机传送的音频信号传递通过回波获得的信息,但是这些影响了重要的感知器官的功能,盲人极大地利用这种器官来接收和辨别周围的信息。在当前的工作中,通过使该信息在身体(可能是手腕)上的适当位置处通过神经刺激传递信息,从而克服了这一限制。在这里,接收到的超声回波脉冲的延迟被用来调制神经刺激的频率,从而为较短的距离提供更高的频率。它旨在与将较高频率归因于危险的常见心理反应相匹配,从而在物体离得太近时产生自然的移动反应。人的神经可以被刺激的最高频率约为500Hz,并且使用表面电极刺激刚好在皮肤下面通过的神经需要100V至200V高度的脉冲。开发了必要的电子电路设计,并在当前工作中制造了原型。对原型进行了短至20cm的短距离测试,在物距和刺激频率之间具有很好的线性响应,并具有如上所述的反特性。通过适当的外壳和屏蔽来减少噪声,将使该设备在使用40kHz超声换能器的情况下可用于约10m的实际距离。 DOI:http://dx.doi.org/10.3329/bjmp.v4i1.14692孟加拉国医学物理学杂志2011年第4卷第1期87-94

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