😃 New article published in J Biomech!
"Joint contact forces during semi-recumbent seated cycling", by Crossley et al.
https://t.co/m2m7jDqj4I
#journalofbiomechanics
At least two IMUs on the thigh and shank are necessary to classify walking patterns in overweight individuals on real-world surfaces. Our latest paper: https://t.co/BLXV0c6mOb
@NizamAhamed19@fzrabbi@uqshrs
Xsens IMU system compares well to Vicon OMC for sagittal movements during jumps and direction changes. Great potential for on-field research. Caution with frontal and transverse kinematics due to variable agreement.
#biomechanics#journalofbiomechanics
https://t.co/5LFOhBsimu
{1/n]🤔 How can neurotechnology revolutionize the treatment of strokes?
Through the work of @ErynnSorensen, @MCapogrosso, @dougweberlab, @marcppowell et al, research has shown the instant improvements in arm and hand mobility through spinal cord stimulation techniques 🤯
🧵...
Real-time biofeedback of internal tissue loading in the field may inform individualised training for performance and rehabilitation 💪
Congratulations to all involved #GCORE@Griffith_Uni
https://t.co/1pTAsMJnx5
Interested in biomechanics, tech development, and AI to better manage #osteoarthritis ? Come do a PhD with our team @DavidJohnSaxby1@pzcld at @Griffith_Uni Centre of Biomedical & Rehab Eng (GCORE). It’s sunny here and the science is cool! Details 👇🏻
Brain–Muscle Connectivity and Interplay in Human Locomotion.
Locomotion: rhythmic movement requiring coordinated activation of a number of muscles
> M1: primary motor cortex
> S1: primary sensory cortex
> E&F: spinal cord pathways
#brain#locomotion
https://t.co/8aZm5Kr94h
Griffith's National Centre for Neuroimmunology and Emerging Diseases at @MenziesHealth has received a $6.4m grant from the Stafford Fox Medical Research Foundation. It will go towards our research into the potential overlap between ME/CFS and Long Covid.
https://t.co/yQpfAPR3Gz
Proud of this highly collaborative, multidisciplinary study showing that exoskeletons need to react faster than humans to assist balance. The assistance disrupted the ankle sensory signal, revealing the role of center of mass information in driving balance responses.
Thanks @BionicsQld for supporting our technology awarded a major prize in the 2022 Bionics Challenge! We co-design in partnership with consumers to develop a solution that best meets their needs @BradleyCornish3@pzcld@Griffith_Uni@Griffith_Health
Walking Speed Classification from Marker-Free Video Images in Two-Dimension Using Optimum Data and a Deep Learning Method https://t.co/sox39iZSQj #bioengineering#GaitAssessment#GaitSupervision
AI-based irregular surface (and subsequent fall) prediction is suitable for overweight/obese individuals more than normal-weight people. #IMU#WalkPattern#DeepLearning
https://t.co/uo6mHLgRSD
You're interested in pursuing the #regulatory qualification of new #digital#mobility#outcomes, but you don't know where to start?
Check our latest publication, where we (the #MobiliseD consortium) summarized our successful interactions with @EMA_News
https://t.co/lcmog8rg8J