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Gait rehabilitation with a robotic dog

机译:与机器人狗步态康复

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Purpose Gait rehabilitation is a fundamental requirement to avoid disuse syndrome for the long-term hospitalized person such as cerebral infarction patient or patient with dementia. In general gait rehabilitation is monotonous and dull, so some entertainment or a sense of achievement is helpful to maintain motivation during the daily exercise. This paper proposes an effective gait-rehabilitation system using a robotic dog supporting individual initiatives of the patient. Method Walking with a living dog is one way to achieve this; however as an intervention it is limited to mildly symptomatic patients because a real dog risks sudden lunging. We used a robotic dog instead of a living dog for relatively critical patients. We have studied robot-assisted activity and therapy using robotic animals in the elderly nursing home in order to improve residents' quality of life (QOL). In the case of a man-made robot, aforementioned risks can be ignored. Moreover, it is an advantage that an in-house walking exercise with the dog is possible. The basic concept of this proposal is co-creation of steps between the elderly and dog. That is, the real-time stabilometric signal of the elderly was measured and analyzed to extract a single step and forwarded to the robotic dog to make a step. Since commercially available amusement products pass through the safety review of public administration, the proposed system was composed of those products as a hardware tool. More specifically, entertainment robot AIBO of Sony ERC was adopted as the robotic dog and Nintendo's Wii-balance-board is used as the stabilometric human interface devices. All signals are transmitted by conventional Bluetooth and LAN systems. Results & Discussion Figure 2 shows the block diagram and enforcement scenes of gaiting exercise at standing and sitting positions, respectively. The patients both suffered from dementia and made their own steps in a positive manner shown by arrows in the figure. Such positive attitude was uncommon in the conventional daily exercise. Functions for walking back and forth walk, and turning right and left are installed. It is noteworthy that the standing patient tempts the dog to move toward another patient and the patient calls the robot to her. This means there a co-creation field is created through the robotic dog. This was followed by a chat between the patients. In the case of the sitting patient, although for her it is very hard exercise to raise her foot from the floor, she made several steps on her own initiative successively after the physical therapist guided her how to walk by patting and lifting her right and left knees alternately. The position of the center of gravity and command signal were logged every 0.1 sec in the control PC and available to be analyzed afterward. For example, the change of exhaustion during exercise was estimated from the magnitude and regularity of steps. Since all hardware tools can be packed in a suitcase the proposed gait exercise can be easily done everywhere.
机译:目的步态康复是一种基本要求,以避免因脑梗死患者或患有痴呆症的长期住院人员或患者的长期住院人员综合征。总步态康复是单调和沉闷的,因此一些娱乐或成就感有助于在日常运动期间保持动力。本文提出了一种使用支持​​患者个体举措的机器人犬的有效步态康复系统。用活狗散步的方法是实现这一目标的一种方式;然而,由于干预,它仅限于温和的症状患者,因为真正的狗风险突然训练。我们使用了一个机器人狗而不是一个活着的狗来相对关键的患者。我们研究了机器人辅助的活动和治疗在老年人养老院中使用机器人动物,以提高居民的生活质量(QOL)。在人造机器人的情况下,可以忽略上述风险。此外,可以使用与狗的内部行走锻炼是有利的。这项提议的基本概念是老年人和狗之间的步骤的共同创造。也就是说,测量和分析老年人的实时稳定信号以提取单一步骤并转发到机器人狗以进行步骤。由于商业上可获得的娱乐产品通过公共行政的安全审查,所提出的系统由这些产品作为硬件工具组成。更具体地说,索尼ERC的娱乐机器人AIBO被用作机器人狗,任天堂的Wii-Balant-Lands用作稳定性人体界面装置。所有信号都由传统的蓝牙和LAN系统传输。结果与讨论图2示出了分别在站立和坐姿的步态锻炼的框图和执法场景。患者患有痴呆症,并以箭头所示的正面方式制造自己的步骤。在传统的日常运动中,这种积极的态度罕见。安装了来回步行的功能,并安装右侧和左转。值得注意的是,常规患者诱使狗朝向另一名患者移动,患者呼叫机器人给她。这意味着通过机器人狗创建一个共同创造的字段。接下来是患者之间的聊天。在坐着的患者的情况下,虽然为她来说是非常艰难的运动,但抚养她的脚从地板上抬起,她在物理治疗师引导她如何通过拍拍和抬起她的右侧和左后,在她自己的倡议上取决于她自己的倡议。膝盖交替。重心和指令信号的位置每0.1秒记录在对照PC中并以后可用于分析。例如,从步骤的幅度和规律估计锻炼过程中的耗尽变化。由于所有硬件工具都可以包装在行李箱中,因此可以在任何地方轻松完成所提出的步态运动。

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