Diabetes patients display gait alterations compared to controls including a higher metabolic cost of walking. This study aimed to investigate whether differences in external moment arm (ExtMA) and effective mechanical advantage (EMA) at the ankle in diabetes patients could partly explain the increased cost of walking compared to controls. Thirty one non-diabetic controls (Ctrl); 22 diabetes patients without peripheral neuropathy (DM) and 14 patients with moderate/severe diabetic peripheral neuropathy (DPN) underwent gait analysis using a motion analysis system and force plates. The internal Achilles tendon moment arm length was determined using magnetic resonance imaging during weight-bearing and ExtMA was calculated using gait analysis. A ...
Diabetic patients have an altered gait strategy during walking and are known to be at high risk of f...
Background: It is known that when barefoot, gait biomechanics of diabetic neuropathic patients diffe...
People with diabetes walk slower and display biomechanical gait alterations compared to controls, bu...
Diabetes patients display gait alterations compared to controls including a higher metabolic cost of...
Background: The external lever arm of the foot around the ankle joint plays a key role in the amount...
The Achilles tendon (AT) has the capacity to store and release elastic energy during walking, contri...
Background: Long-term patients with diabetes and peripheral neuropathy show altered foot biomechanic...
Background: Diabetes mellitus is associated with notable neuromuscular and motor dysfunctions that c...
Background: The purpose of this study was to investigate the ankle range of motion during neuropathi...
Background: The purpose of our study was to compare ankle range of motion and stiffness in individua...
Background: The ankle-foot complex plays an important role in the mechanics of postural control. The...
The Achilles tendon (AT) has the capacity to store and release elastic energy during walking, contri...
ABSTRACT: BACKGROUND: Patients with diabetic polyneuropathy (DPN) are often confronted with ulcerati...
Abstract\ud \ud Background\ud Muscle force estimation ...
Diabetic patients have an altered gait strategy during walking and are known to be at high risk of f...
Background: It is known that when barefoot, gait biomechanics of diabetic neuropathic patients diffe...
People with diabetes walk slower and display biomechanical gait alterations compared to controls, bu...
Diabetes patients display gait alterations compared to controls including a higher metabolic cost of...
Background: The external lever arm of the foot around the ankle joint plays a key role in the amount...
The Achilles tendon (AT) has the capacity to store and release elastic energy during walking, contri...
Background: Long-term patients with diabetes and peripheral neuropathy show altered foot biomechanic...
Background: Diabetes mellitus is associated with notable neuromuscular and motor dysfunctions that c...
Background: The purpose of this study was to investigate the ankle range of motion during neuropathi...
Background: The purpose of our study was to compare ankle range of motion and stiffness in individua...
Background: The ankle-foot complex plays an important role in the mechanics of postural control. The...
The Achilles tendon (AT) has the capacity to store and release elastic energy during walking, contri...
ABSTRACT: BACKGROUND: Patients with diabetic polyneuropathy (DPN) are often confronted with ulcerati...
Abstract\ud \ud Background\ud Muscle force estimation ...
Diabetic patients have an altered gait strategy during walking and are known to be at high risk of f...
Background: It is known that when barefoot, gait biomechanics of diabetic neuropathic patients diffe...
People with diabetes walk slower and display biomechanical gait alterations compared to controls, bu...