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This case report describes a patient who developed Clinostomum laryngitis after eating raw fresh-water fish. Parasite removal was performed under general anesthesia using a laryngomicroscopic method. Because it was difficult to capture the worm intact using forceps, it was sprayed with 8% lidocaine solution. This immediately inhibited peristaltic movement of the parasite allowing easy retrieval without tearing any part of the organism, thus facilitating parasite identification.  相似文献   
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In the available in vivo experimental models for cochlear neuronal degeneration, the peripheral (hair cell side) process of the cochlear nerve has been injured in order to induce neuronal degeneration. However, there has been no dependable experimental model in which cochlear neuronal degeneration begins from the central (brain stem side) process. This lack of a central process injury model has probably been due to the experimental difficulties that had to be overcome in order to reproducibly and selectively injure the central process of the cochlear neurons while maintaining the patency of the internal auditory artery in small experimental animals such as rats. Using rats, we first developed a central process injury model in which the reduction of the spiral ganglion cells due to retrograde degeneration of cochlear neurons can be quantitatively evaluated. In our experimental model, the cochlear nerve was compressed and injured by a compression-recording (CR) electrode placed at the internal auditory meatus. First, the cochlear nerve was compressed until the compound action potentials of the cochlear nerve became flat, and then the CR electrode was advanced by various compression speeds (5, 10, or 200 μm/s) to reach the same depth (400μm). In our model, therefore, the reduction of the spiral ganglion cells was caused compression speed dependently. This method made it possible to produce compression injury to the cochlear nerve without evidence of damage to the blood supply to the cochlea via the internal auditory artery. This model gives us the means to obtain knowledge that was previously impossible to derive from the peripheral process injury models.  相似文献   
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Post-traumatic invasion of macrophages into the cochlear nerve of the rat and measurement of how their invasion was modified by the administration of methylprednisolone were investigated for the first time by using a reproducible and quantifiable experimental model of cochlear nerve injury. Two weeks after precise cochlear nerve compression, a massive invasion of ED1 immunostained macrophages was observed at the compressed portion of the cochlear nerve, and this invasion of macrophages was markedly reduced in the rats to which methylprednisolone had been administered during the pre- and post-compression period. Concomitantly, the residual number of spiral ganglion cells was found to be greater in the compression+methylprednisolone group than in the control compression group. The tissue loss observed in the lesion epicenter was also significantly less in the compression+methylprednisolone group than in the control compression group. The results of our present study demonstrated the effectiveness of methylprednisolone treatment to ameliorate trauma induced cochlear nerve degeneration in the acute phase. However, these results may reflect the sum effects of methylprednisolone on macrophages, including both its beneficial effect by inhibiting the negative aspects of macrophages through attenuating macrophage recruitment to the lesion site, and at the same time an undesirable effect by sacrificing the positive aspects of macrophage function. Moreover, one reservation should be added that the protective effects of steroid to injured cochlear nerve may have operated via a pathway not related to macrophage function. Besides macrophages, various cells and factors participate in the process of CNS injury, and their effects may potentially work either positively or negatively with respect to CNS protection and regeneration at each particular time during the on-going process of CNS injury. Therefore, future investigation in CNS injury should be directed toward understanding such complex mechanisms involved in this process.  相似文献   
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Dapsone (4,4′-diaminodiphenyl sulfone; DDS), an established anti-leprosy drug, showed anticonvulsive effects in the amygdaloid kindling model of epilepsy. Single doses of the drug in rats (6.25–12.5 mg/kg i.p.) suppressed the kindled seizures in a dose-dependent manner without overt behavioral toxicity. With repeated oral administration in cats, relatively higher initial doses (13–23 mg/kg) were required to obtain seizure suppression, and neurotoxic signs occurred within a few days with serum drug levels of approximately 20 μg/ml. Although dapsone showed anticonvulsive effects in both animal species, the effective serum levels overlapped the toxic levels reported in the clinical treatment of leprosy. In the majority of the cats, however, seizure suppression was maintained even after the discontinuation of dapsone with lower serum levels than those observed at the beginning of the seizure suppression. Therefore, dapsone would be useful as an antiepileptic drug only when long-term anticonvulsive efficacy is demonstrated using smaller doses comparable to those used in the treatment of leprosy.  相似文献   
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