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猫下丘神经元对耳蜗内电刺激的时间分辨率:新生期致聋和慢性刺激的影响

Temporal resolution of neurons in cat inferior colliculus to intracochlear electrical stimulation: effects of neonatal deafening and chronic stimulation.

作者信息

Snyder R, Leake P, Rebscher S, Beitel R

机构信息

Epstein Laboratory, University of California, San Francisco 94143-0526, USA.

出版信息

J Neurophysiol. 1995 Feb;73(2):449-67. doi: 10.1152/jn.1995.73.2.449.

Abstract
  1. Cochlear implants have been available for > 20 yr to profoundly deaf adults who have lost their hearing after acquiring language. The success of these cochlear prostheses has encouraged the application of implants in prelingually deaf children as young as 2 yr old. To further characterize the consequences of chronic intracochlear electrical stimulation (ICES) on the developing auditory system, the temporal-response properties of single neurons in the inferior colliculus (IC) were recorded in deafened anesthetized cats. 2. The neurons were excited by unilateral ICES with the use of a scala tympani stimulating electrode implanted in the left cochlea. The electrodes were modeled after those used in cochlear implant patients. Responses of 443 units were recorded extracellularly in the contralateral (right) IC with the use of tungsten microelectrodes. Recordings were made in three groups of adult animals: neonatally deafened/chronically stimulated animals (192 units), neonatally deafened/unstimulated animals (80 units), and adult-deafened/prior normal-hearing animals (171 units). The neonatally deafened cats were deafened by multiple intramuscular injections of neomycin sulfate and never developed demonstrable hearing. Most of the deafened, chronically stimulated animals were implanted at 6 wk of age and stimulated at suprathreshold levels for 4 h/day for 3-6 mo. The unstimulated animals were implanted as adults at least 2 wk before the acute physiological experiment and were left unstimulated until the acute experiment was conducted. Prior-normal adults were deafened and implanted at least 2 wk before the acute experiment. 3. IC units were isolated with the use of a search stimulus consisting of three cycles of a 100-Hz sinusoid. Most units responded to sinusoidal stimulation with either an onset response or a sustained response. Onset units were the predominant unit found in the external nucleus, whereas sustained units were found almost exclusively in the central nucleus. The temporal resolution of sustained response units was measured with the use of pulse trains of increasing frequency and calculating the discharges/pulse. 4. The range of electrical pulse frequencies to which IC units responded in a temporally synchronized manner was comparable with that produced by acoustic stimulation. The discharge rate/pulse-versus-pulse frequency transfer functions of IC units were uniformly low-pass, although they varied widely in their cutoff frequencies. This variation in pulse response was partially correlated with the unit's response to sinusoids. Most onset neurons responded only to pulse frequencies below 20 pulses per second (pps). Most sustained units responded best to pulse frequencies < 100 pps, and most ceased to respond to pulse frequencies > 300 pps.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 人工耳蜗已应用于20多年来获得语言能力后失聪的重度成年聋人。这些人工耳蜗的成功促使人们将其应用于年仅2岁的语前聋儿童。为了进一步描述慢性耳蜗内电刺激(ICES)对发育中听觉系统的影响,在麻醉的聋猫中记录了下丘(IC)单个神经元的时间反应特性。2. 通过植入左耳蜗鼓阶的刺激电极进行单侧ICES来激发神经元。这些电极是仿照人工耳蜗植入患者使用的电极制作的。使用钨微电极在对侧(右)IC细胞外记录了443个单位的反应。记录在三组成年动物中进行:新生聋/慢性刺激动物(192个单位)、新生聋/未刺激动物(80个单位)和成年聋/先前有正常听力的动物(171个单位)。新生聋猫通过多次肌肉注射硫酸新霉素致聋,且从未表现出可检测到的听力。大多数聋的、慢性刺激的动物在6周龄时植入电极,并以阈上水平每天刺激4小时,持续3 - 6个月。未刺激的动物在急性生理实验前至少2周作为成年动物植入电极,且在进行急性实验前一直未刺激。先前听力正常的成年动物在急性实验前至少2周致聋并植入电极。3. 使用由100赫兹正弦波的三个周期组成的搜索刺激来分离IC单位。大多数单位对正弦波刺激的反应为起始反应或持续反应。起始单位是在外核中发现的主要单位,而持续单位几乎只在中央核中发现。使用频率增加的脉冲序列并计算放电/脉冲来测量持续反应单位的时间分辨率。4. IC单位以时间同步方式做出反应的电脉冲频率范围与声刺激产生的频率范围相当。IC单位的放电率/脉冲与脉冲频率传递函数均为低通型,尽管它们的截止频率差异很大。这种脉冲反应的差异与单位对正弦波的反应部分相关。大多数起始神经元仅对每秒低于20个脉冲(pps)的脉冲频率做出反应。大多数持续单位对低于100 pps的脉冲频率反应最佳,且大多数在脉冲频率高于300 pps时停止反应。(摘要截短为400字)

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