Cartee L A, van den Honert C, Finley C C, Miller R L
Center for Auditory Prosthesis Research, Research Triangle Institute, Research Triangle Park, NC 27709, USA.
Hear Res. 2000 Aug;146(1-2):143-52. doi: 10.1016/s0378-5955(00)00109-x.
To understand the auditory neural response to electrical stimuli similar to those used in a cochlear implant, it will be necessary to understand the neural refraction and summation response kinetics. Evidence exists indicating that the cell soma may alter the auditory neural response kinetics and could be the site of conduction failure for excitation initiated on the peripheral process. There is, however, reason to believe that the excitation site in some healthy, type I neurons and in pathological, type III neurons is the central process of the cell. To characterize the neural response to activation at a controlled central process site, cat auditory neurons were stimulated with an intrameatal electrode, and the summation and refraction response kinetics were measured. This approach was used to: (1) characterize the behavior of the neural response to central process excitation; (2) make comparisons between intrameatal excitation at a known central site and scala tympani excitation at an unknown site; and (3) provide membrane characterization free from the possible alteration of membrane kinetics produced by the cell soma. The membrane kinetics measured using intrameatal stimulation differ from those recorded with scala tympani stimulation indicating that the mechanisms for scala tympani and intrameatal stimulation differ.
为了理解听觉神经对类似于人工耳蜗所使用的电刺激的反应,有必要了解神经的折射和总和反应动力学。有证据表明,细胞体可能会改变听觉神经反应动力学,并且可能是在外周突起始的兴奋传导失败的部位。然而,有理由相信,在一些健康的I型神经元和病理性III型神经元中,兴奋部位是细胞的中枢突。为了表征在受控的中枢突部位激活时的神经反应,使用鼓室内电极刺激猫的听觉神经元,并测量总和和折射反应动力学。采用这种方法的目的是:(1)表征神经对中枢突兴奋的反应行为;(2)比较已知中枢部位的鼓室兴奋与未知部位的鼓阶兴奋;(3)提供不受细胞体产生的膜动力学可能改变影响的膜特性表征。使用鼓室刺激测量的膜动力学与鼓阶刺激记录的膜动力学不同,这表明鼓阶刺激和鼓室刺激的机制不同。