Enlarged bony portion of the eustachian tube in oculoauriculovertebral spectrum.
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Biomedical subjects
Publications and source records attributed to Hideaki Hoshijima.
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We observed in rats the changes in cochlear blood flow (CoBF) and cutaneous blood flow of the abdominal wall (AbBF) after the administration of the NO synthase inhibitor, N-nitro-L-arginine-methyl ester (L-NAME). Ten minutes after i.v. infusion of L-NAME (0.2, 1, 5, 10 mg/kg), L-arginine, which is a substrate of NO, was infused (100 mg/kg) i.v. Employing a laser Doppler flowmeter, the changes in blood flow were recorded from the basal turn of the right cochlea or the abdominal wall and blood pressure (BP) was recorded from the left femoral artery simultaneously. Vascular conductance (VC) was calculated from CoBF/mean BP (cochlear VC) or AbBF/mean BP (abdominal VC). The findings in rats generally agreed with those in guinea pigs [Brechtelsbauer et al., Hear. Res. 77 (1994) 38-42]. Intravenous infusion of L-NAME produced a dose-dependent depression of cochlear VC at 0.2 mg/kg (-18.9), 1 mg/kg (-37.9%), 5 mg/kg (-45.8%) and 10 mg/kg (-48.3%). AbBF also decreased after infusion of L-NAME (5 mg/kg) but to a lesser degree (-41.1% in VC) with no significance compared to CoBF (5 mg/kg). Infusion of L-arginine partially reversed the CoBF decrease caused by L-NAME. The group of 0.2 mg/kg infusion of L-NAME showed the largest degree of recovery with L-arginine, while the 10 mg/kg group showed the smallest. The decrease in AbBF did not recover substantially with L-arginine, the degree being less than that of each group in the CoBF experiment. It was suggested that the NO/soluble guanylate cyclase/cGMP system is more active in the cochlear microcirculation. With the round window (RW) application of 1% L-NAME (2 microl), cochlear VC was decreased by 21.6%, which was closest to that of the 0.2 mg/kg group of L-NAME i.v. infusion. The cochlear VC depression after local application of L-NAME did not show any recovery (-0.3%) by RW application of 5% L-arginine (2 microl) 25 min after L-NAME application; a slight gradual increase was observed when a higher concentration (20%) of L-arginine was applied to the RW. We propose that i.v. infusions of L-NAME and L-arginine primarily affect the precapillary arteriole of the spiral modiolar artery which effectively regulates microcirculation as a resistance vessel, and that RW application affects the vessels of the lateral wall, not the spiral modiolar artery because of the difficulty of substance diffusion.
We observed changes in cochlear blood flow (CoBF), abdominal blood flow (AbBF) and auricular blood flow (AuBF) in rats after administration of the nitric oxide (NO) synthase inhibitor N-nitro-L-arginine-methyl ester (L-NAME). Ten min after i.v. infusion of L-NAME, L-arginine, a substrate of NO, was infused (100 mg/kg) intravenously. Using a laser Doppler flowmeter, changes in blood flow were recorded from the basal turn of the right cochlea, abdominal wall or right auricle, and systemic blood pressure (BP) was recorded simultaneously from the left femoral artery. As another parameter of vascular response, vascular conductance (VC) was calculated from blood flow/mean BP. I.v. infusion of L-NAME produced a dose-dependent depression of cochlear VC at concentrations of 0.2 (-18.9%), 1 (-37.9%), 5 (-45.8%) and 10 mg/kg (-48.3%). Infusion of L-arginine partially reversed the decrease of CoBF caused by L-NAME. The group that received a 0.2 mg/kg infusion of L-NAME showed the largest degree of recovery (23.8%) with L-arginine, while the 10 mg/kg group showed the smallest degree of recovery (10.1%). AbBF also decreased after infusion of L-NAME (5 mg/kg) but to a lesser degree (-41.1% depression of VC) and with no significance compared to the decrease in CoBF (5 mg/kg L-NAME). Likewise, AuBF showed a decrease (-44.0% depression of VC) after infusion of L-NAME (10 mg/kg), the decrease being less than that of CoBF (10 mg/kg L-NAME). Recoveries from these decreased levels of VC in the AbBF and AuBF groups appeared to be smaller than those in the CoBF groups at the same dose of L-NAME (5.5% vs 17.3% in abdominal VC; 5.3% vs 10.1% in auricular VC). In a previous study comparing the CoBF changes caused by i.v. infusion and round window application of L-NAME, we proposed that i.v. infusion of L-NAME in rats primarily affects the precapillary arteriole of the spiral modiolar artery, which effectively regulates cochlear microcirculation as a resistance artery. Thus we assume that there may exist an active pathway of the NO/soluble guanylate cyclase/cyclic guanosine monophosphate system in the above vessels. With regard to the finding of a smaller recovery of VC with L-arginine in both the AbBF and AuBF groups, we consider that differences in L-arginine availability or uptake, and in the synthesis of NO, may exist between the cochlear and cutaneous vasculatures.