F-wave conduction velocity in the deep peroneal nerve: Charcot-Marie-Tooth disease and dystrophia myotonica. 1978

C P Panayiotopoulos

The F-wave has been used to estimate the motor nerve conduction velocity (MNCV) along the proximal segment (spinal cord to knee) of the axons of the deep peroneal nerve in patients with Charcot-Marie-Tooth disease and those with dystrophia myotonica. A new, modified method has been applied to estimate proximal MNCV in patients in whom F-waves or M-responses cannot be obtained from the small muscles of the foot. Terminal latencies and MNCV along the distal nerve segment (knee to ankle) have also been estimated using conventional techniques. The results have been compared with those obtained for control subjects. Proximal MNCV was severely slowed in every patient with Charcot-Marie-Tooth disease; the degrees of proximal and distal MNCV decreases were related. In patients with dystrophia myotonica, distal and proximal MNCVs were significantly reduced in comparison with control subjects, the MNCV slowing was not related to the degree of muscle atrophy. This is consistent with the hypothesis that the nerves and muscles are independently affected in dystrophia myotonica. It is concluded that the F-wave MNCV technique is as useful as, and may be more sensitive than, the conventional MNCV method.

UI MeSH Term Description Entries
D008297 Male Males
D008875 Middle Aged An adult aged 45 - 64 years. Middle Age
D009046 Motor Neurons Neurons which activate MUSCLE CELLS. Neurons, Motor,Alpha Motorneurons,Motoneurons,Motor Neurons, Alpha,Neurons, Alpha Motor,Alpha Motor Neuron,Alpha Motor Neurons,Alpha Motorneuron,Motoneuron,Motor Neuron,Motor Neuron, Alpha,Motorneuron, Alpha,Motorneurons, Alpha,Neuron, Alpha Motor,Neuron, Motor
D009133 Muscular Atrophy Derangement in size and number of muscle fibers occurring with aging, reduction in blood supply, or following immobilization, prolonged weightlessness, malnutrition, and particularly in denervation. Atrophy, Muscle,Neurogenic Muscular Atrophy,Neurotrophic Muscular Atrophy,Atrophies, Muscle,Atrophies, Muscular,Atrophies, Neurogenic Muscular,Atrophies, Neurotrophic Muscular,Atrophy, Muscular,Atrophy, Neurogenic Muscular,Atrophy, Neurotrophic Muscular,Muscle Atrophies,Muscle Atrophy,Muscular Atrophies,Muscular Atrophies, Neurogenic,Muscular Atrophies, Neurotrophic,Muscular Atrophy, Neurogenic,Muscular Atrophy, Neurotrophic,Neurogenic Muscular Atrophies,Neurotrophic Muscular Atrophies
D009223 Myotonic Dystrophy Neuromuscular disorder characterized by PROGRESSIVE MUSCULAR ATROPHY; MYOTONIA, and various multisystem atrophies. Mild INTELLECTUAL DISABILITY may also occur. Abnormal TRINUCLEOTIDE REPEAT EXPANSION in the 3' UNTRANSLATED REGIONS of DMPK PROTEIN gene is associated with Myotonic Dystrophy 1. DNA REPEAT EXPANSION of zinc finger protein-9 gene intron is associated with Myotonic Dystrophy 2. Dystrophia Myotonica,Myotonic Dystrophy, Congenital,Myotonic Myopathy, Proximal,Steinert Disease,Congenital Myotonic Dystrophy,Dystrophia Myotonica 1,Dystrophia Myotonica 2,Myotonia Atrophica,Myotonia Dystrophica,Myotonic Dystrophy 1,Myotonic Dystrophy 2,PROMM (Proximal Myotonic Myopathy),Proximal Myotonic Myopathy,Ricker Syndrome,Steinert Myotonic Dystrophy,Steinert's Disease,Atrophica, Myotonia,Atrophicas, Myotonia,Congenital Myotonic Dystrophies,Disease, Steinert,Disease, Steinert's,Dystrophia Myotonica 2s,Dystrophia Myotonicas,Dystrophica, Myotonia,Dystrophicas, Myotonia,Dystrophies, Congenital Myotonic,Dystrophies, Myotonic,Dystrophy, Congenital Myotonic,Dystrophy, Myotonic,Dystrophy, Steinert Myotonic,Myopathies, Proximal Myotonic,Myopathy, Proximal Myotonic,Myotonia Atrophicas,Myotonia Dystrophicas,Myotonic Dystrophies,Myotonic Dystrophies, Congenital,Myotonic Dystrophy, Steinert,Myotonic Myopathies, Proximal,Myotonica, Dystrophia,Myotonicas, Dystrophia,PROMMs (Proximal Myotonic Myopathy),Proximal Myotonic Myopathies,Steinerts Disease,Syndrome, Ricker
D009431 Neural Conduction The propagation of the NERVE IMPULSE along the nerve away from the site of an excitation stimulus. Nerve Conduction,Conduction, Nerve,Conduction, Neural,Conductions, Nerve,Conductions, Neural,Nerve Conductions,Neural Conductions
D010543 Peroneal Nerve The lateral of the two terminal branches of the sciatic nerve. The peroneal (or fibular) nerve provides motor and sensory innervation to parts of the leg and foot. Fibular Nerve,Fibular Nerves,Nerve, Fibular,Nerve, Peroneal,Nerves, Fibular,Nerves, Peroneal,Peroneal Nerves
D002607 Charcot-Marie-Tooth Disease A hereditary motor and sensory neuropathy transmitted most often as an autosomal dominant trait and characterized by progressive distal wasting and loss of reflexes in the muscles of the legs (and occasionally involving the arms). Onset is usually in the second to fourth decade of life. This condition has been divided into two subtypes, hereditary motor and sensory neuropathy (HMSN) types I and II. HMSN I is associated with abnormal nerve conduction velocities and nerve hypertrophy, features not seen in HMSN II. (Adams et al., Principles of Neurology, 6th ed, p1343) Atrophy, Muscular, Peroneal,HMSN Type I,HMSN Type II,Hereditary Motor and Sensory-Neuropathy Type II,Hereditary Motor, and Sensory Neuropathy Type I,Muscular Atrophy, Peroneal,Peroneal Muscular Atrophy,Roussy-Levy Syndrome,Charcot-Marie Disease,Charcot-Marie-Tooth Disease, Autosomal Dominant, With Focally Folded Myelin Sheaths, Type 1A,Charcot-Marie-Tooth Disease, Autosomal Dominant, with Focally Folded Myelin Sheaths, Type 1B,Charcot-Marie-Tooth Disease, Demyelinating, Type 1A,Charcot-Marie-Tooth Disease, Demyelinating, Type 1B,Charcot-Marie-Tooth Disease, Slow Nerve Conduction Type, Linked To Duffy,Charcot-Marie-Tooth Disease, Type 1A,Charcot-Marie-Tooth Disease, Type 1B,Charcot-Marie-Tooth Disease, Type I,Charcot-Marie-Tooth Disease, Type IA,Charcot-Marie-Tooth Disease, Type IB,Charcot-Marie-Tooth Disease, Type II,Charcot-Marie-Tooth Hereditary Neuropathy,Charcot-Marie-Tooth Neuropathy, Type 1A,Charcot-Marie-Tooth Neuropathy, Type 1B,Charcot-Marie-Tooth Syndrome,HMN Distal Type I,HMSN 1A,HMSN 1B,HMSN I,HMSN IA,HMSN IB,HMSN II,HMSN1A,HMSN1B,Hereditary Areflexic Dystasia,Hereditary Motor And Sensory Neuropathy IB,Hereditary Motor and Sensory Neuropathy 1A,Hereditary Motor and Sensory Neuropathy 1B,Hereditary Motor and Sensory Neuropathy IA,Hereditary Type I Motor and Sensory Neuropathy,Neuropathy, Type I Hereditary Motor and Sensory,Neuropathy, Type II Hereditary Motor and Sensory,Roussy Levy Hereditary Areflexic Dystasia,Roussy-Levy Disease,Roussy-Levy Hereditary Areflexic Dystasia,Areflexic Dystasia, Hereditary,Areflexic Dystasias, Hereditary,Atrophies, Peroneal Muscular,Atrophy, Peroneal Muscular,Charcot Marie Disease,Charcot Marie Tooth Disease,Charcot Marie Tooth Disease, Type 1A,Charcot Marie Tooth Disease, Type 1B,Charcot Marie Tooth Disease, Type I,Charcot Marie Tooth Disease, Type IA,Charcot Marie Tooth Disease, Type IB,Charcot Marie Tooth Disease, Type II,Charcot Marie Tooth Hereditary Neuropathy,Charcot Marie Tooth Neuropathy, Type 1A,Charcot Marie Tooth Neuropathy, Type 1B,Charcot Marie Tooth Syndrome,Dystasia, Hereditary Areflexic,Dystasias, Hereditary Areflexic,Hereditary Areflexic Dystasias,Hereditary Motor and Sensory Neuropathy Type II,Hereditary Neuropathy, Charcot-Marie-Tooth,Muscular Atrophies, Peroneal,Peroneal Muscular Atrophies,Roussy Levy Disease,Roussy Levy Syndrome,Syndrome, Charcot-Marie-Tooth,Syndrome, Roussy-Levy
D002648 Child A person 6 to 12 years of age. An individual 2 to 5 years old is CHILD, PRESCHOOL. Children
D004576 Electromyography Recording of the changes in electric potential of muscle by means of surface or needle electrodes. Electromyogram,Surface Electromyography,Electromyograms,Electromyographies,Electromyographies, Surface,Electromyography, Surface,Surface Electromyographies

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