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Design and development of “biomechatronic gym” for early detection of neurological disorders in infants

机译:用于早期发现婴儿神经系统疾病的“生物机电一体化健身房”的设计和开发

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The study and measurement of grasping actions and forces in humans is important in a variety of contexts. In infants, it can give insights on the typical and atypical motor development, while it poses functional and operative requirements that are not fully matched by current sensing technology. Novel approaches for measuring infants' grasping actions are based on sensorized platform usable in natural settings. A new set of instrumented toys has been designed for the assessment/stimulation of upper limbs of infants between 4 and 9 months. A purposive biomechatronic gym has been developed by integrating pressure and force sensors and visual/auditory stimulations to the usual gym structure and hanging toys (cow, flower and ring puppets), so that the infants' actions on the gym can be monitored, measured and stimulated. With the developed system, a longitudinal clinical validation has been carried out with seven healthy infants. From data analysis it is possible to identify a trend in manual forces development and this result confirms the usefulness of the system proposed as a clinical tool for monitoring infants' grasping development.
机译:在各种情况下,研究和衡量人类的抓握行为和力量非常重要。对于婴儿,它可以提供典型的和非典型的运动发育方面的见识,同时它对功能和操作提出了一些要求,而当前的传感技术无法完全满足这些要求。测量婴儿的抓握动作的新颖方法是基于可在自然环境中使用的感测平台。为评估/刺激4到9个月之间的婴儿的上肢,设计了一套新的仪器玩具。通过将压力和力传感器以及视觉/听觉刺激集成到普通的健身房结构和悬挂玩具(牛,花和木偶圈)中,开发了一种有目的的生物机电健身房,以便可以监视,测量和测量婴儿在健身房的动作并受到刺激。通过开发的系统,已经对7名健康婴儿进行了纵向临床验证。从数据分析中可以发现手动力发展的趋势,这一结果证实了该系统作为监测婴儿抓握发展的临床工具的有用性。

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