Hendler T, Squires N K, Moore J K, Coyle P K
Department of Psychology, State University of New York, Stony Brook 11794, USA.
J Basic Clin Physiol Pharmacol. 1996;7(3):245-78. doi: 10.1515/jbcpp.1996.7.3.245.
The present study addresses issues regarding the location of neural sources (i.e. generators) of human auditory evoked potentials (AEPs), and the pattern of neural conduction in the auditory pathway. AEPs were recorded from fifteen patients with multiple sclerosis (MS) and compared to normals. The recordings included auditory brainstem responses (ABRs), mid-latency responses (MLRs), and long-latency responses (LLRs). AEP latency abnormalities were related to the locus of demyelinating lesions, as determined by magnetic resonance imaging (MRI) scans. The data demonstrated several anatomical patterns relating abnormal ABR wave intervals and abnormal MRI signals. From these patterns specific loci for ABR neural sources in the brainstem might be postulated. In addition, the earlier the ABR waves, the more unilateral the abnormalities appeared, suggesting bilateral sources for later waves. The MLRs were highly correlated with ABR wave V and were associated with greater abnormality in MRI signals in midbrain and forebrain regions. In general, patients with abnormal LLRs also had widespread AEP and MRI abnormalities, supporting a multiple source approach for the N1 wave of the LLRs. The observation that LLRs were only abnormal in the presence of bilateral ABR abnormalities suggests a cross wiring which would serve as a compensatory mechanism for unilateral disturbances. The AEP data showed dissociation between early and late wave abnormalities, thus supporting parallel channels for neural conduction in the central auditory system. Such a model calls for some degree of independence of AEP generators along the auditory pathway.
本研究探讨了人类听觉诱发电位(AEP)神经源(即发生器)的位置以及听觉通路中的神经传导模式问题。从15例多发性硬化症(MS)患者中记录AEP,并与正常人进行比较。记录包括听觉脑干反应(ABR)、中潜伏期反应(MLR)和长潜伏期反应(LLR)。AEP潜伏期异常与磁共振成像(MRI)扫描确定的脱髓鞘病变部位有关。数据显示了几种与ABR波间期异常和MRI信号异常相关的解剖学模式。根据这些模式,可以推测脑干中ABR神经源的特定位置。此外,ABR波越早,异常越倾向于单侧出现,提示较晚波的神经源为双侧。MLR与ABR波V高度相关,并与中脑和前脑区域的MRI信号更大异常相关。一般来说,LLR异常的患者也有广泛的AEP和MRI异常,支持LLR的N1波有多个神经源的观点。LLR仅在双侧ABR异常时才出现异常的观察结果提示存在交叉连线,这可能是一种针对单侧干扰的代偿机制。AEP数据显示早期和晚期波异常之间存在分离,从而支持中枢听觉系统中神经传导的平行通道。这样一个模型要求AEP发生器在听觉通路上有一定程度的独立性。