Monitoring gait patterns in daily life will provide a lot of biological information related to human health. At present, common gait pressure analysis systems, such as pressure platforms and in-shoe systems, adopt rigid sensors and are wired and uncomfortable. In this paper, a biomimetic porous graphene–SBR (styrene-butadiene rubber) pressure sensor (PGSPS) with high flexibility, sensitivity (1.05 kPa−1), and a wide measuring range (0–150 kPa) is designed and integrated into an insole system to collect, process, transmit, and display plantar pressure data for gait analysis in real-time via a smartphone. The system consists of 16 PGSPSs that were used to analyze different gait signals, including walking, running, and jumping, to verify its d...
Abstract—Spatial and temporal plantar pressure distributions are important and useful measures in fo...
Measurement of spatiotemporal parameters of human gait is important for designing new, intelligent a...
This paper introduces the design and development of a novel pressure-sensitive foot insole for real-...
In the present study, we propose and develop a flexible pressure sensor based on the piezoresistive ...
In the present study, we propose and develop a flexible pressure sensor based on the piezoresistive ...
In the present study, we propose and develop a flexible pressure sensor based on the piezoresistive ...
peer reviewedMonitoring plantar load conditions becomes useful in many health care fields, e.g. podi...
The evolution of low power electronics and the availability of new smart materials are opening new f...
Monitoring plantar load conditions becomes useful in many health care fields, e.g. podiatric and ort...
Monitoring plantar load conditions becomes useful in many health care fields, e.g. podiatric and ort...
The aim of this paper is to present a multisensory system that studies abnormal walking patterns to ...
The aim of this paper is to present a multisensory system that studies abnormal walking patterns to ...
Abstract — We present the development of an in-shoe device to monitor plantar pressure distribution ...
AbstractHuman gaits are complicated, and the gait phases cannot be exactly distinguished by comparin...
This paper introduces the design and development of a novel pressure-sensitive foot insole for real-...
Abstract—Spatial and temporal plantar pressure distributions are important and useful measures in fo...
Measurement of spatiotemporal parameters of human gait is important for designing new, intelligent a...
This paper introduces the design and development of a novel pressure-sensitive foot insole for real-...
In the present study, we propose and develop a flexible pressure sensor based on the piezoresistive ...
In the present study, we propose and develop a flexible pressure sensor based on the piezoresistive ...
In the present study, we propose and develop a flexible pressure sensor based on the piezoresistive ...
peer reviewedMonitoring plantar load conditions becomes useful in many health care fields, e.g. podi...
The evolution of low power electronics and the availability of new smart materials are opening new f...
Monitoring plantar load conditions becomes useful in many health care fields, e.g. podiatric and ort...
Monitoring plantar load conditions becomes useful in many health care fields, e.g. podiatric and ort...
The aim of this paper is to present a multisensory system that studies abnormal walking patterns to ...
The aim of this paper is to present a multisensory system that studies abnormal walking patterns to ...
Abstract — We present the development of an in-shoe device to monitor plantar pressure distribution ...
AbstractHuman gaits are complicated, and the gait phases cannot be exactly distinguished by comparin...
This paper introduces the design and development of a novel pressure-sensitive foot insole for real-...
Abstract—Spatial and temporal plantar pressure distributions are important and useful measures in fo...
Measurement of spatiotemporal parameters of human gait is important for designing new, intelligent a...
This paper introduces the design and development of a novel pressure-sensitive foot insole for real-...