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Biomedical subjects

R Kennett

Publications and source records attributed to R Kennett.

At least 19 recordsLinked to original sources

A practical definition of conduction block in IvIg responsive multifocal motor neuropathy.

BACKGROUND: Multifocal motor neuropathy with conduction block (MMN) can be mistaken for motor neurone disease or other lower motor neurone syndromes, but is treatable with intravenous immunoglobulin (IvIg). Formal electrophysiological criteria for conduction block (CB) are so stringent that substantial numbers of patients may miss out on appropriate treatment. METHODS: Electrophysiological data were collected from 10 healthy volunteers and compared to data from 10 patients who satisfied the clinical criteria for MMN and who responded to IvIg. This produced a definition of CB in MMN patients which was compared with existing definitions to assess "miss rates". RESULTS: Mean values for compound muscle action potential area, amplitude, and duration were calculated in normal subjects. Results beyond 3 SD of their respective means were considered abnormal. Using these criteria, CB in the context of MMN was defined as a reduction in negative peak area >23% along a distal nerve segment or >29% across a proximal segment; or a reduction in amplitude >32% across a distal segment or >33% across a proximal segment. All IvIg responsive patients had at least one nerve segment showing such CB. Employing some criteria from the literature would have denied treatment to over 30% of responsive patients. CONCLUSION: In the clinical setting of suspected MMN, less stringent criteria for CB can improve the diagnosis of this treatable disorder. Exclusions on grounds of temporal dispersion may be over-restrictive. A little over one third of CBs occur proximally.

Action Potentials↗

The effect of treatment upon temporal dispersion in IvIg responsive multifocal motor neuropathy.

BACKGROUND: Multifocal motor neuropathy with conduction block (MMN) is a treatable disorder that can be mistaken for other lower motor neurone syndromes. Existing electrophysiological diagnostic criteria for MMN are restrictive. In particular, many are cautious about diagnosing conduction block (CB) in the presence of abnormal temporal dispersion (TD). OBJECTIVE: To study the significance of TD in MMN, its relationship to CB in intravenous immunoglobulin (IvIg) responsive patients, and its utility in detecting a treatment response. METHODS: We compared pre- and post-treatment changes in CB and TD in nine patients who satisfied clinical and electrophysiological criteria for MMN and responded to IvIg. RESULTS: TD improved in one or more nerve segments in eight of nine patients tested. There was marked improvement in 65% of all nerve segments, and 60% of those segments with CB. By comparison, significant improvement in CB occurred in only 33% of segments. Of segments with significantly better CB after treatment, all but one showed similar improvements in TD. Such changes were not related to the degree of TD before treatment, being seen in segments with abnormal as well as normal TD. There was no correlation between improvements seen in TD and CB. CONCLUSION: We believe that TD should be considered an inherent feature of MMN. Improvement in TD is an independent marker of electrophysiological improvement in this disorder and is likely to be more useful than CB. When MMN is clinically suspected, the use of stringent criteria for CB in the presence of TD should be avoided.

Action Potentials↗

Steroid responsive polyneuropathy in a family with a novel myelin protein zero mutation.

OBJECTIVE: To report a novel hereditary motor and sensory neuropathy (HMSN) phenotype, with partial steroid responsiveness, caused by a novel dominant mutation in the myelin protein zero (MPZ) gene. Most MPZ mutations lead to the HMSN type I phenotype, with recent reports of Déjérine-Sottas, congenital hypomyelination, and HMSN II also ascribed to MPZ mutations. Differing phenotypes may reflect the effect of particular mutations on MPZ structure and adhesivity. METHODS: Clinical, neurophysiological, neuropathological, and molecular genetic analysis of a family presenting with an unusual hereditary neuropathy. RESULTS: Progressive disabling weakness, with positive sensory phenomena and areflexia, occurred in the proband with raised CSF protein and initial steroid responsiveness. Nerve biopsy in a less severely affected sibling disclosed a demyelinating process with disruption of compacted myelin. The younger generation were so far less severely affected, becoming symptomatic only after 30 years. All affected family members were heterozygous for a novel MPZ mutation (Ile99Thr), in a conserved residue. CONCLUSIONS: This broadens the range of familial neuropathy associated with MPZ mutations to include steroid responsive neuropathy, initially diagnosed as chronic inflammatory demyelinating polyneuropathy.

Adult↗

Varying occurrence of vocal cord paralysis in a family with autosomal dominant hereditary motor and sensory neuropathy.

A white British family with the axonal form of hereditary motor and sensory neuropathy (HMSN, type II) contained one member who developed a recurrent laryngeal nerve palsy at the age of 41 years, in addition to 4 years of symptomatic polyneuropathy and an abducens nerve palsy. Neither of the other family members (the mother and sister) with electrophysiologically confirmed polyneuropathy had any neuropathic symptoms in the limbs or laryngeal or respiratory muscle involvement. An autosomal dominant pattern of inheritance is likely. This is a second report of this rare form of HMSN (type IIC) in which there is associated laryngeal or respiratory muscle weakness. This family differs from the two previously reported pedigrees in which laryngeal or diaphragm weakness had commenced within the first two decades. The discovery of asymptomatic family members attests to the diagnostic value of clinical and electrophysiological study of first-degree relatives when laryngeal or bulbar symptoms develop in the context of chronic axonal polyneuropathy. HMSN type IIC should be distinguished from the more common forms of HMSN - type IIA, in which axonal polyneuropathy is restricted to the limbs, and type IIB, which is of early onset and associated with foot ulceration.

Adult↗