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Biomedical subjects

J Jamal

Publications and source records attributed to J Jamal.

2 recordsLinked to original sources

Extrapulmonary tuberculosis: five case reports.

Since the 1950s, tuberculosis (TB) morbidity has been decreasing steadily in Israel. However, recent waves of Ethiopian immigrants have brought new cases and have renewed our awareness of the disease. As in other immigrant populations, the incidence of extrapulmonary TB is relatively high, challenging the clinician to make the correct diagnosis at an early stage. Many of the new immigrants settled in the Ashkelon are and were diagnosed and treated in our hospital. We present five cases of TB with extrapulmonary manifestations. Proof of TB infection was found in sites remote from the major clinical manifestation in four of the patients, emphasizing the difficulty in diagnosing the disease. Four of the patients recovered after treatment, but the patient admitted with neurological involvement remained comatose until her death.

Adult

The role of Renshaw cells in locomotion: antagonism of their excitation from motor axon collaterals with intravenous mecamylamine.

The contribution of Renshaw cell (RC) activity to the production of fictive locomotion in the mesencephalic preparation was examined using the nicotinic antagonist mecamylamine (MEC). After the i.v. administration of 3 doses of MEC (1.0 mg/kg) the following observations were made: 1) ventral root (VR) evoked discharge of RCs was decreased by up to 87.7%, 2) recurrent inhibitory postsynaptic potentials recorded in alpha motoneurons were greatly reduced or abolished, and 3) the rhythmic firing of RCs during the fictive step cycle was abolished in 83% of the cells examined. Locomotor drive potentials (LDPs) in motoneurons persisted during the fictive step cycle after MEC administration. Bursts of motoneuron firing during each fictive step cycle were characterized by increased frequency and number of spikes after MEC, although the burst duration was unaltered for similar step cycle lengths. A greater number and frequency of spikes per burst was also observed in Ia inhibitory interneurons (IaINs), which remained rhythmically active after MEC administration. It is concluded that Renshaw cells are not an integral part of the spinal central pattern generator for locomotion, nor do they control the timing of the motoneuron or IaIN bursts of firing during fictive locomotion. The data are consistent with a role for RCs in limiting the firing rates of motoneurons and IaINs during each burst.

Animals