-
, combined with advanced motion analysis in the laboratory and wearable sensors in daily life. By linking physiological markers of fatigue to movement quality and real-world activity, you will gain new
-
sensors in daily life. By linking physiological markers of fatigue to movement quality and real-world activity, you will gain new insights into why mobility deteriorates during daily activities and how
-
national and international user groups. Researchers at HFML-FELIX use an array of experimental techniques in high magnetic fields, such as magneto-transport, magneto-optics, magnetisation and torque
-
manipulate molecules and/or materials. Researchers at HFML-FELIX use an array of experimental techniques in high magnetic fields, such as magneto-transport, magneto-optics, magnetisation and torque
-
, combined with advanced motion analysis in the laboratory and wearable sensors in daily life. By linking physiological markers of fatigue to movement quality and real-world activity, you will gain new
-
an array of experimental techniques in high magnetic fields, such as magneto-transport, magneto-optics, magnetisation and torque magnetometry, dilatometry, and infrared and ultrafast laser spectroscopy
-
an array of experimental techniques in high magnetic fields, such as magneto-transport, magneto-optics, magnetisation and torque magnetometry, dilatometry, and infrared and ultrafast laser spectroscopy