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国家自然科学基金(30970982)

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基于听觉响应时间的麻醉效果监测
2011年
目的探索麻醉代谢过程中听觉系统相关参数的变化,为动物实验中麻醉效果的正确评估建立监测指标。方法选取4~6周的BALB/C小鼠,手术方法暴露下丘组织,用乌拉坦进行麻醉,选取纯音作为刺激条件,记录麻醉代谢过程中小鼠下丘的听觉局部电位波形,并用matlab软件提取波形的潜伏期和幅度数值,分析二者随麻醉剂的代谢而呈现的变化。结果与幅度相比,小鼠听觉局部电位的潜伏期数值变异性小,且与时间有较好的相关性。在乌拉坦代谢过程中,潜伏期随麻醉代谢过程逐渐下降,其中前2 h下降较快,后期逐渐趋于稳定。结论听觉局部电位的潜伏期比幅度更适合作为麻醉效果的监测指标。
解小丽徐月晋肖中举周凌宏
基于模型的耳蜗核反应特性研究被引量:3
2011年
目的耳蜗核内的信息处理,是中枢对听觉信息处理的最先一环。根据神经元对短纯音刺激反应的时间特性来分类,耳蜗核神经元可以分为多种反应类型。我们用模型的方法来探讨这些不同反应类型的机制。方法基于Matlab7.0平台,在经典的积分-放电模型基础上构建时间编码模型。结果模型通过改变与神经元特性有关的参数可以很好的模拟耳蜗核中初级反应型、梳状型、给声开始型和建立型神经元。结论耳蜗核神经元反应特性主要是由神经元本身的特性决定。模型仿真结果与文献十分吻合,为后续研究听觉系统的作用机制打下基础。
徐月晋周凌宏肖中举
关键词:耳蜗核积分放电模型
An approach to identify the functional transduction and transmission of an activated pathway被引量:1
2013年
In this study, we investigated the features of latency-amplitude (L-A) functions at different sound frequencies, using extracellular recording from auditory neurons in the central nucleus of the inferior colliculus (ICC) in mice. Isofrequency L-A functions from single neurons could be fit with a newly developed equation based on Pieron's law. The high degree of fitness indicates that the curvatures of all isofrequency L-A functions for a given neuron are similar, and that the difference between L-A functions is due to a shift in their positions in the coordinate system. When we normalized the L-A functions to match the position of the L-A function obtained at the neuronal characteristic frequency (CF), all isofrequency L-A functions from a given ICC neuron were highly superimposed. The similar shapes of the L-A functions at different frequencies may reflect the physical laws of sound being transferred into bioelectric signals. The position of a non-CF L-A function could be measured as the differences of the asymptotic L and A ( L and A) compared to the L-A function at a reference frequency such as the CF. The nerve fibers and synapses connecting to a neuron for acoustic information processing can be functionally simplified as a single "wire" (as the total length of nerve fibers) and "joint" (as the summated size/strength of synapses). The wire and joint mediate information transmission and transduction, respectively. Thus, L and A may be measurements of the total length of nerve fibers and the strength of summated synapses in the activated auditory pathway. L and A differed between frequency channels and neurons, suggesting that the differences of acoustic neuronal responses are always caused by activation of different pathways, and that the pathways that process sounds are diverse.
WANG NingQianBO LinZHANG FanTAN XiaoDongYANG XiaoLiXIAO ZhongJu
关键词:听觉神经元声音频率细胞外记录生物电信号
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