Foot interfaces, such as pressure-sensitive insoles, still yield unused potential such as for implicit interaction. In this paper, we introduce CapSoles, enabling smart insoles to implicitly identify who is walking on what kind of floor. Our insole prototype relies on capacitive sensing and is able to sense plantar pressure distribution underneath the foot, plus a capacitive ground coupling effect. By using machine-learning algorithms, we evaluated the identification of 13 users, while walking, with a confidence of ~95% after a recognition delay of ~1s. Once the user's gait is known, again we can discover irregularities in gait plus a varying ground coupling. While both effects in combination are usually unique for several ground ...
Abnormal foot postures during gait are common sources of pain and pathologies of the lower limbs. M...
Within the growing technology nowadays, the study and research in the human foot have also become mu...
AbstractReal time plantar pressure provides information critical to the understanding of gait mechan...
Foot interfaces, such as pressure-sensitive insoles, still yield unused potential such as for implic...
Nowadays, the study of the gait by analyzing the distribution of plantar pressure is a well-establis...
We have created a system for identifying people based on their footstep force profiles and have test...
We propose subtle foot-based gestures named foot plantar-based (FPB) gestures that are used with soc...
The foot is an especially intricate piece of the already complex human body. In biomechanical resea...
Center of pressure refers to the centroid of the ground reaction force vector detected underneath th...
In this research project, we present an alternative approach to recognize various walking-based acti...
Measurement of spatiotemporal parameters of human gait is important for designing new, intelligent a...
Flexible pressure sensors can be used to predict possible injuries and inform the wearer about their...
Wearable robotic devices require sensors and algorithms that can recognize the user state in real-ti...
We use our hands to control a computing device (e.g. personal computers and mobile devices). However...
peer reviewedMonitoring plantar load conditions becomes useful in many health care fields, e.g. podi...
Abnormal foot postures during gait are common sources of pain and pathologies of the lower limbs. M...
Within the growing technology nowadays, the study and research in the human foot have also become mu...
AbstractReal time plantar pressure provides information critical to the understanding of gait mechan...
Foot interfaces, such as pressure-sensitive insoles, still yield unused potential such as for implic...
Nowadays, the study of the gait by analyzing the distribution of plantar pressure is a well-establis...
We have created a system for identifying people based on their footstep force profiles and have test...
We propose subtle foot-based gestures named foot plantar-based (FPB) gestures that are used with soc...
The foot is an especially intricate piece of the already complex human body. In biomechanical resea...
Center of pressure refers to the centroid of the ground reaction force vector detected underneath th...
In this research project, we present an alternative approach to recognize various walking-based acti...
Measurement of spatiotemporal parameters of human gait is important for designing new, intelligent a...
Flexible pressure sensors can be used to predict possible injuries and inform the wearer about their...
Wearable robotic devices require sensors and algorithms that can recognize the user state in real-ti...
We use our hands to control a computing device (e.g. personal computers and mobile devices). However...
peer reviewedMonitoring plantar load conditions becomes useful in many health care fields, e.g. podi...
Abnormal foot postures during gait are common sources of pain and pathologies of the lower limbs. M...
Within the growing technology nowadays, the study and research in the human foot have also become mu...
AbstractReal time plantar pressure provides information critical to the understanding of gait mechan...