Aiming at continuous unobtrusive respiration monitoring, motion robustness is paramount. However, some types of motion can completely hide the respiration information and the detection of these events is required to avoid incorrect rate estimations. Therefore, this work proposes a motion detector optimized to specifically detect severe motion of infants combined with a respiration rate detection strategy based on automatic pixels selection, which proved to be robust to motion of the infants involving head and limbs. A dataset including both thermal and RGB (Red Green Blue) videos was used amounting to a total of 43 h acquired on 17 infants. The method was successfully applied to both RGB and thermal videos and compared to the chest impedanc...
Preterm infants in a neonatal intensive care unit (NICU) are continuously monitored for their vital ...
Monitoring of vital signs is a key tool in medical diagnostics to asses the onset and the evolution ...
Innovative digital health technologies present an opportunity to create affordable, sustainable, an...
Aiming at continuous unobtrusive respiration monitoring, motion robustness is paramount. However, so...
Vital signs monitoring is ubiquitous in clinical environments and emerging in home-based healthcare ...
Until today, vital signs monitoring in neonatal intensive care units (NICUs) is based on wired senso...
Respiration is monitored in neonatal wards using chest impedance (CI), which is obtrusive and can ca...
Breathing monitoring by non-contact video processing has been the subject of recent research. This p...
Both Respiratory Flow (RF) and Respiratory Motion (RM) are visible in thermal recordings of infants....
In this study, we present a medical imaging method to estimate the preterm infant respiratory rate w...
Background Heart rate (HR) is an important vital sign for evaluating the physiological condition of ...
Preterm infants in a neonatal intensive care unit (NICU) are continuously monitored for their vital ...
Monitoring of vital signs is a key tool in medical diagnostics to asses the onset and the evolution ...
Innovative digital health technologies present an opportunity to create affordable, sustainable, an...
Aiming at continuous unobtrusive respiration monitoring, motion robustness is paramount. However, so...
Vital signs monitoring is ubiquitous in clinical environments and emerging in home-based healthcare ...
Until today, vital signs monitoring in neonatal intensive care units (NICUs) is based on wired senso...
Respiration is monitored in neonatal wards using chest impedance (CI), which is obtrusive and can ca...
Breathing monitoring by non-contact video processing has been the subject of recent research. This p...
Both Respiratory Flow (RF) and Respiratory Motion (RM) are visible in thermal recordings of infants....
In this study, we present a medical imaging method to estimate the preterm infant respiratory rate w...
Background Heart rate (HR) is an important vital sign for evaluating the physiological condition of ...
Preterm infants in a neonatal intensive care unit (NICU) are continuously monitored for their vital ...
Monitoring of vital signs is a key tool in medical diagnostics to asses the onset and the evolution ...
Innovative digital health technologies present an opportunity to create affordable, sustainable, an...