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M I Periquet

Publications and source records attributed to M I Periquet.

7 recordsLinked to original sources

Nonsystemic vasculitic neuropathy: insights from a clinical cohort.

BACKGROUND: Nonsystemic vasculitic neuropathy (NSVN) is an uncommon disorder. Few series with small numbers of patients have been reported. The prognosis and treatment of patients presenting with NSVN remain uninvestigated. The authors sought to address these issues by assembling a large retrospective cohort with extended follow-up. METHODS: All nerve biopsies performed over 20 years were reviewed; cases with definite, probable, or possible vasculitis were segregated for clinical correlation. Patients satisfying clinical criteria for NSVN at presentation were selected. Clinicopathologic, treatment, and outcome measures were analyzed in patients followed for > or = 6 months. RESULTS: A total of 48 patients (30 women, 18 men) with a median of 63 months of follow-up were identified. Most patients (85%) had extensive, overlapping involvement of multiple nerves. Only one had a symmetric polyneuropathy. Most neuropathies (96%) were painful. In 96%, nerve damage was distally accentuated, but most had concurrent proximal weakness. Diagnostic sensitivity was 58% for superficial peroneal nerve/peroneus brevis muscle biopsy and 47% for sural nerve biopsy. Combination corticosteroid/cytotoxic therapy was more effective than corticosteroid monotherapy in inducing remission and improving disability, with trends toward reduced relapses and chronic pain. Treatment with cyclophosphamide for >6 months decreased the relapse rate, which was 46% for all patients. Disease/treatment-related mortality was 10%. Six percent developed cutaneous involvement. Although chronic pain persisted in 60% of survivors, 80% had good outcomes. CONCLUSIONS: NSVN nearly always presents as an asymmetric, distally accentuated, painful, sensorimotor polyneuropathy. Risks for systemic spread and death are small, and, aside from pain, neurologic prognosis is unexpectedly good. Although this was not a randomized controlled trial, combination therapy produced the best outcome in this cohort.

Adult↗

Superficial peroneal nerve/peroneus brevis muscle biopsy in vasculitic neuropathy.

OBJECTIVE: To determine the sensitivity and specificity of superficial peroneal nerve (SPN)/peroneus brevis muscle (PBM) biopsy in a cohort of patients with suspected peripheral nerve vasculitis. BACKGROUND: In patients with suspected vasculitic neuropathy, combined nerve and muscle biopsies have been advocated as a way to increase the diagnostic yield, but the sensitivity and specificity of this approach have not been evaluated. Pathologic predictors of biopsy-proven peripheral nerve vasculitis have also not been analyzed in a systematic fashion. METHODS: The clinical, laboratory, and pathologic data for all patients undergoing SPN/PBM biopsy for possible vasculitis from 1986 through 1996 were analyzed. Biopsies were classified as positive, negative, or suspicious for vasculitis. Patients were then divided into vasculitis and nonvasculitis cohorts by final clinical diagnosis. RESULTS: Of 70 SPN/PBM biopsies, 22 (30%) showed definite vasculitis; nerve was diagnostic in 90% (n = 20) and muscle in 50% (n = 11). Nerve biopsy had a higher yield than muscle in patients with nonsystemic vasculitic neuropathy (p = 0. 0047) but not in those with systemic vasculitis. The estimated sensitivity of a positive SPN/PBM biopsy for vasculitis was 60%. Considering biopsies either positive or suspicious for vasculitis increased the sensitivity to 86% with a corresponding specificity of 85%. Pathologic features associated with necrotizing vasculitis were muscle fiber necrosis/regeneration (relative risk 18.1; 95% CI 3.4 to 96.1), predominant axonal nerve pathology (>8.8; >1.0 to 77.4), Wallerian-like degeneration (5.6; 1.4 to 21.9), and asymmetric nerve fiber loss (4.6; 1.4 to 15.9). CONCLUSIONS: These findings establish the yield, sensitivity, and specificity of SPN/PBM biopsy for diagnosing vasculitic neuropathy and validate the use of suggestive pathologic features for diagnosing cases lacking definite necrotizing vascular changes.

Aged↗

Painful sensory neuropathy: prospective evaluation using skin biopsy.

OBJECTIVE: In patients presenting with painful, burning feet with minimal signs of neuropathy, the following questions were addressed: 1) How many of these patients have a peripheral neuropathy? 2) What is the role of skin biopsy in establishing a diagnosis of neuropathy? 3) What conditions are associated with the neuropathy? and 4) What laboratory studies are useful in this patient population? METHODS: A total of 117 consecutive patients referred for evaluation were prospectively studied. All underwent nerve conduction studies (NCS) and a battery of blood tests, including antinerve antibodies. If NCS were normal, a punch biopsy of the skin of the distal leg was performed to ascertain the intraepidermal nerve fiber (IENF) density. In a subset of 32 patients, the sensitivity of skin biopsy was compared to quantitative sudomotor axon test (QSART) and quantitative sensory tests (QST). RESULTS: Three groups emerged. Group 1, with abnormal NCS (n = 60, 34 F/26 M, mean age 60 +/- 14 years), represented 51% of the cohort. The majority had neuropathies of undetermined cause, but 18 (30%) had associated conditions. Group 2, with normal NCS and reduced IENF density (n = 44, 29 F/15 M, mean age 57 +/- 14 years), represented 38% of the cohort. Three in this group had associated conditions. Group 3, with normal NCS and IENF density (n = 13, 6 F/7 M, mean age 53 +/- 13 years), represented 11% of the cohort; most had no diagnoses but two had MS. In a comparative subset analysis, skin biopsy was more sensitive than QSART or QST in diagnosing a neuropathy. CONCLUSIONS: Patients presenting with painful feet are heterogeneous, consisting of both large and small fiber sensory neuropathies. In rare cases, a central cause for pain can be found. Over one-third of patients required a skin biopsy to diagnose a small fiber sensory neuropathy. A limited battery of blood tests facilitated diagnosis, but serum antinerve antibodies were not helpful.

Aged↗

Quantitative electrophysiologic studies in sporadic inclusion body myositis.

Sporadic inclusion body myositis (S-IBM) is a progressive, acquired disease of unknown etiology. Prior studies have suggested neurogenic involvement based on electrophysiologic data, although the biopsy is compatible with a myopathic process. Quantitative electrophysiologic studies were performed in the biceps brachii of 17 subjects with biopsy-proven S-IBM. Quantitative motor unit action potential (MUAP) analysis was compatible with myopathy in 16 subjects, with the remaining subject being within normal limits. Quantitative interference pattern was myopathic in all 13 subjects studied. Macro-EMG MUAP amplitude was reduced in 3 of 17 studies; the remainder were within normal range, and none was increased as would be expected in neurogenic disease. Fiber density was normal to borderline increased in all subjects. Possible reasons for encountering neurogenic-appearing MUAPs may include choice of muscle studies, because some patients have co-existing polyneuropathy and large-amplitude MUAPs from hypertrophied muscle fibers. The data from this study indicate that S-IBM is a myopathic process.

Action Potentials↗

Influence of the surface EMG electrode on the compound muscle action potential.

The recording characteristics of surface EMG electrodes were investigated. Compound muscle action potential (CMAP) and surface recorded motor unit action potentials were recorded from different muscles, using different surface electrode shapes and sizes. The CMAP was smaller for larger surface electrodes. This was more pronounced in smaller muscles. The CMAP was minimally affected by the geometry of the recording surface. With larger surface electrodes, shunting contributes to the reduction in MUAP amplitude. This is offset by a larger uptake area which gives a much smaller reduction in the CMAP amplitude for the larger muscles.

Adult↗