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Biomedical subjects

G B Colucci

Publications and source records attributed to G B Colucci.

2 recordsLinked to original sources

Visual evoked potentials in NIDDM: a longitudinal study.

In order to assess the possible progression of neurological abnormalities over time and the value of visual evoked potential alterations in predicting stability and severity of diabetes-related optic pathway disease, a longitudinal study in non-insulin-dependent diabetic patients was performed. Neurological examination, visual evoked potentials with pattern reversal, motor and sensory nerve conduction velocities and metabolic control were studied in 18 non-insulin-dependent diabetic patients and in 35 normal control subjects at baseline and again after 4.6 +/- 0.8 years (range 4-6). At the first recording the peak P100 wave latencies were significantly delayed in the diabetic patients compared with the control subjects; signs of peripheral neuropathy were detected in five patients, clinical in three and in two there was only neurophysiological alteration without clinical signs. The second recording revealed no significant alterations of P100 latencies in patients compared with baseline, but the number with clinical signs and/or neurophysiological alterations with no clinical signs of peripheral neurological disease was increased to seven. In conclusion, we observed that visual evoked potential alterations were stable over time whereas peripheral neurological disease progressed and correlated positively with metabolic control.

Case-Control Studies

Study of visual evoked potentials in diabetics without retinopathy: correlations with clinical findings and polyneuropathy.

To evaluate central optic pathways' involvement in diabetics, visual evoked potentials (VEP), in particular the latency of positive peak (LP100), were studied in 35 patients without retinopathy (4 insulin-dependent, 31 non-insulin-dependent) and 35 normal controls using reversal pattern stimulation. LP100 was significantly delayed in diabetics at both binocular and monocular stimulation. Furthermore, the delay in LP100 was significantly longer in the diabetics with polyneuropathy than in those without, particularly after binocular stimulation. A positive correlation was found between latencies of VEP and HbA1, duration of disease, and neurologic score. VEP measurement seems a simple and sensitive method for detecting early alterations in central optic pathways in diabetics.

Adult