Pages that link to "Q46880575"
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The following pages link to Slower conduction velocity and motor unit discharge frequency are associated with muscle fatigue during isometric exercise in type 1 diabetes mellitus (Q46880575):
Displaying 22 items.
- Skeletal muscle as a therapeutic target for delaying type 1 diabetic complications (Q26775403) (← links)
- Gene expression of sternohyoid and diaphragm muscles in type 2 diabetic rats (Q31143158) (← links)
- Network-level structural abnormalities of cerebral cortex in type 1 diabetes mellitus (Q34994167) (← links)
- Decreased muscle endurance associated with diabetic neuropathy may be attributed partially to neuromuscular transmission failure (Q35437672) (← links)
- Resting-state brain networks in type 1 diabetic patients with and without microangiopathy and their relation to cognitive functions and disease variables (Q36047643) (← links)
- Organ-based response to exercise in type 1 diabetes (Q36455541) (← links)
- Force-EMG changes during sustained contractions of a human upper airway muscle (Q37131813) (← links)
- Physiology in Medicine: neuromuscular consequences of diabetic neuropathy (Q37139753) (← links)
- Diabetic myopathy: impact of diabetes mellitus on skeletal muscle progenitor cells (Q37405521) (← links)
- Effect of diabetic neuropathy severity classified by a fuzzy model in muscle dynamics during gait. (Q37580026) (← links)
- Effects of type 1 diabetes mellitus on skeletal muscle: clinical observations and physiological mechanisms (Q37791182) (← links)
- Skeletal muscle fatigue. (Q38116829) (← links)
- Exercise and type 1 diabetes (T1DM). (Q38125149) (← links)
- Neuromuscular dysfunction in type 2 diabetes: underlying mechanisms and effect of resistance training. (Q38463986) (← links)
- Declining Skeletal Muscle Function in Diabetic Peripheral Neuropathy (Q38676080) (← links)
- The impact of type 1 diabetes and diabetic polyneuropathy on muscle strength and fatigability (Q38912861) (← links)
- Diabetic myopathy differs between Ins2Akita+/- and streptozotocin-induced Type 1 diabetic models (Q46107357) (← links)
- Striated muscle fiber size, composition, and capillary density in diabetes in relation to neuropathy and muscle strength (Q47190384) (← links)
- Why should people with type 1 diabetes exercise regularly? (Q48045198) (← links)
- Altered eigenvector centrality is related to local resting-state network functional connectivity in patients with longstanding type 1 diabetes mellitus (Q48250050) (← links)
- α-Motoneurons maintain biophysical heterogeneity in obesity and diabetes in Zucker rats (Q51835681) (← links)
- Optical Recording of Action Potential Initiation and Propagation in Mouse Skeletal Muscle Fibers (Q93191987) (← links)