Ren T, Laurikainen E, Quirk W S, Miller J M, Nuttall A L
Kresge Hearing Research Institute, University of Michigan Medical School, Ann Arbor 48109-0506.
Ann Otol Rhinol Laryngol. 1993 May;102(5):378-84. doi: 10.1177/000348949310200511.
The effect of intraneural electrical stimulation of the stellate ganglion (SG) on bilateral cochlear blood flow (CBF) was investigated with laser-Doppler flowmetry. The SG of 15 anesthetized guinea pigs was exposed by a novel surgical approach and stimulated with a specially designed intraneural bipolar platinum-iridium electrode. Bilateral CBF was continuously monitored. Stimulation of 0.25 mA caused a detectable increase of the systemic blood pressure (BP) and a bilateral decrease of the cochlear vascular conductance (R, defined as the ratio CBF/BP). A stimulus of 0.5 mA elicited a statistically significant ipsilateral CBF (CBFi) decrease of 3.6% +/- 5.1% from the baseline and a contralateral CBF (CBFc) decrease of 3.1% +/- 5.5%. That no statistical difference was found between CBFi and CBFc indicates that a unilateral sympathetic stimulation of the SG can cause equal bilateral responses. These responses were accompanied by a significantly increased BP (8.7% +/- 5.2% of baseline) and consequently a greatly decreased R (12.2% +/- 6.5%) of the ipsilateral cochlea. Bilateral sections of the cervical sympathetic trunk below the level of the superior cervical ganglion did not alter the evoked changes in CBF, BP, and R. It is concluded that SG stimulation can decrease the conductivity of the cochlear vessels or the supplying vessels of the cochlea. Additionally, the SG nerve fibers that cause these effects do not pass through the superior cervical ganglion.
采用激光多普勒血流仪研究了星状神经节(SG)神经内电刺激对双侧耳蜗血流(CBF)的影响。通过一种新颖的手术方法暴露15只麻醉豚鼠的SG,并用专门设计的神经内双极铂铱电极进行刺激。连续监测双侧CBF。0.25 mA的刺激导致全身血压(BP)出现可检测到的升高以及耳蜗血管传导率(R,定义为CBF与BP的比值)双侧降低。0.5 mA的刺激引起同侧CBF(CBFi)较基线水平统计学显著降低3.6%±5.1%,对侧CBF(CBFc)降低3.1%±5.5%。CBFi与CBFc之间未发现统计学差异,表明SG的单侧交感神经刺激可引起双侧同等反应。这些反应伴随着BP显著升高(为基线的8.7%±5.2%),结果同侧耳蜗的R大幅降低(12.2%±6.5%)。在颈上神经节水平以下对双侧颈交感干进行切断,并未改变诱发的CBF、BP和R的变化。得出的结论是,SG刺激可降低耳蜗血管或耳蜗供血血管的传导性。此外,引起这些效应的SG神经纤维不经过颈上神经节。