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I A Grant

Publications and source records attributed to I A Grant.

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Peripheral neuropathy associated with sicca complex.

Peripheral neuropathy occurs in Sjögren's syndrome, a disorder in which systemic immunologic phenomena, including vasculitis, are common. Neuropathy also occurs with isolated sicca complex (keratoconjunctivits sicca and xerostomia); whether this represents a distinct syndrome is unclear. We retrospectively studied 54 patients with sicca complex and peripheral neuropathy to determine mode of presentation, neuropathic patterns, frequency and pattern of serologic abnormalities, and frequency of systemic disease, including necrotizing vasculitis. Peripheral neuropathy was the presenting problem in 87%. Although sicca symptoms occurred in 93%, they were a presenting complaint in only 11% and were usually mild, reported only after specific inquiry. Minor salivary gland biopsy was positive in 73%. Sensory neuropathies strongly predominated; 61% of patients manifested either sensory polyneuropathy or polyganglionopathy. Less common patterns included sensorimotor polyneuropathy (17%) and polyradiculoneuropathy (11%). Vasculitic neuropathy was demonstrated in only two patients, but nonspecific epineurial inflammation was present in 70% of nerve biopsies. Clinical evidence of systemic disease was uncommon, particularly in the sensory polyganglionopathy group, in whom extraglandular features other than weight loss occurred in only 1 of 12 patients. Antibodies to extractable nuclear antigens, the most specific serologic marker of Sjögren's syndrome, were present in 10.4%. We conclude that peripheral neuropathy and isolated sicca complex form a distinctive syndrome in which neuropathy is the presenting feature and sicca is easily overlooked; sensory polyneuropathy and polyganglionopathy predominate; serology is confirmatory but very insensitive; and extraglandular disease, including vasculitis, is uncommon compared with typical Sjögren's syndrome. Tests of ocular or salivary involvement are needed for diagnosis, and demonstration of inflammation in biopsied nerve is supportive. Improved definition of this disorder should permit further studies of natural history and efficacy of immunotherapy.

Adult

Ten steps in characterizing and diagnosing patients with peripheral neuropathy.

Cost-effective approaches for arriving at correct diagnoses should be used. Herein, we compare three approaches for the differential diagnosis of a common neurologic syndrome, peripheral neuropathy. In the "shotgun" approach, a standard battery of hematologic, biochemical, serologic, antibody, enzyme, molecular genetic, and other tests are ordered after the presence of a neuropathy is established, without a detailed characterization of the neuropathy. In the "gestalt" approach, the specific variety of neuropathy is identified by recognition of a clinical pattern of symptoms, course, or disease associations. The "10-step" approach, encompassing components of the two other methods and adding others, evolved from our assessment of many patients with peripheral neuropathy. In the 10-step approach, the history and neurologic examination place the patient's disorder into one of perhaps 21 anatomic-pathologic patterns. Next, electrophysiologic and other tests confirm the correctness of this anatomic-pathologic patterns. Finally, a series of evaluations exclude or include an increasingly shorter list of diagnoses until only one likely one remains or the disorder remains undiagnosed. We advocate the 10-step over the shotgun or gestalt approach, because it emphasizes careful initial characterization of neuropathy and emphasizes use of a logical step-by-step inclusion or exclusion to arrive at a short list of diagnostic possibilities. The approach depends ultimately on the judgement of adequately trained and experienced physicians, not on the results of single tests. The 10-step approach is not a mindless algorithm, leading inevitably to the correct diagnosis, but depends on judgment based on extensive background and neurobiologic and clinical knowledge and training.

Humans