Two weeks of cumulative tendon load monitored by insole sensors is associated with plantar flexor function in Achilles tendinopathy
Song, K.; Kwon, M. P.; Smith, A. K.; Pohlig, R. T.; Silbernagel, K. G.; Baxter, J. R.
Show abstract
Tendon loading dictates rehabilitation outcomes in Achilles tendinopathy but is difficult to track in the real world. In this study, we used instrumented insole sensors to monitor Achilles tendon load for two weeks in fifteen individuals with Achilles tendinopathy, who also completed assessments of their plantar flexor strength, dynamic function, and survey-based outcomes. We used insole data to estimate two types of cumulative Achilles tendon load: overall ([≥]0.3xbody weight) and high-level load ([≥]3xbody weight). We determined Pearson correlations between (1) overall and high-level tendon loads, (2) plantar flexor moment, power, work, (3) heel raise height, repetitions, countermovement jump height, and (4) self-reported symptoms and activity. Overall cumulative tendon load moderately correlated to isometric plantar flexor moment (r = 0.543) and weakly to isokinetic and dynamic functions (0.128-0.413). Cumulative high-level tendon load strongly correlated to heel raise height (0.687) and fast isokinetic moment (0.625), and moderately to other functional measures (0.470-0.592). Symptoms weakly correlated to overall (0.392) and moderately to high-level load (0.436). Self-reported activity weakly correlated to overall (0.297) and strongly to high-level load (0.617). Stronger associations with the high-level Achilles tendon load than the overall load suggest that clinical function assessments provide insight into the real-world performance of high-loading activities. In contrast, the disconnect between overall tendon loading and plantar flexor function may explain the variability in recovery outcomes. Self-reported activity and standard heel raises represent high-level tendon load well, yet they do not always suggest functional deficit. Sensor-monitored tendon load shows promise as a new biomarker for real-world plantar flexor function in Achilles tendinopathy.
Matching journals
The top 8 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Adding carbon fiber to shoe soles does not improve running economy: a muscle-level explanation 96%
- Ultrasound imaging links soleus muscle neuromechanics and energetics during human walking with elastic ankle exoskeletons 96%
- Foot strike pattern during running alters muscle-tendon dynamics of the gastrocnemius and the soleus 95%
Similar papers in this journal
- Evidence of sensory error threshold in triggering locomotor adaptations in humans 95%
- Mediolateral foot placement control can be trained: Older adults learn to walk more stable, when ankle moments are constrained 95%
- Hip, knee, and ankle joint forces during exoskeletal-assisted walking: comparison of approaches to simulate human-robot interactions 95%
Similar papers in this journal
- Eccentric exercise is not equal to eccentric contraction 95%
- In vivo characterization of Achilles subtendon function and morphology within the tendon cross section and along the free tendon 95%
- Functional Electrical Stimulation of the Soleus Redistributes Lower-Limb Joint Work Distally in Young and Older Adults 94%
Similar papers in this journal
- Clinical measures of balance and gait cannot differentiate somatosensory impairments in people with lower-limb amputation 94%
- The Investigation of Nonlinear Variability Underlying Postural Control in The Injure-Limb in Individuals with and without Chronic Ankle Instability 94%
- Predicting vertical and shear ground reaction forces during walking and jogging using wearable plantar pressure insoles 94%
Similar papers in this journal
- Application of a novel force-field to manipulate the relationship between pelvis motion and step width in human walking 95%
- Gait adaptation to asymmetric hip stiffness applied by a robotic exoskeleton 94%
- Effects of targeted assistance and perturbations on the relationship between pelvis motion and step width in people with chronic stroke 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.