Liberman M C, Guinan J J
Harvard Medical School, Massachusetts Eye and Ear Infirmary, Boston, USA.
J Commun Disord. 1998 Nov-Dec;31(6):471-82; quiz 483; 553. doi: 10.1016/s0021-9924(98)00019-7.
Both MEM and MOC systems are sound-evoked reflexes to the auditory periphery which can be elicited by sound in either ear. Both MEM and MOC systems can increase thresholds in the auditory periphery: the MEM system acts by stiffening the ossicular chain, the MOC system by decreasing outer hair cell amplification of sound-induced motion in the inner ear. MEM-induced attenuations are largest for low frequency stimuli, MOC-induced attenuations are largest for mid- to high-frequency sounds. Both MEM and MOC systems can have anti-masking effects. The MEM reflex can decrease the masking of high-frequency signals by low-frequency noise (i.e., the upward spread of masking). The MOC reflex is complementary in that it minimizes masking of high-frequency transient signals by high-frequency continuous noise. MEM anti-masking arises by reducing suppressive masking and can improve masked thresholds at high frequencies. MOC anti-masking arises by counteracting excitatory masking. It does not improve masked thresholds, but can improve the detectability of small suprathreshold intensity increments. Anti-masking effects of both MEM and MOC systems should be reduced in cases of sensorineural hearing loss.
MEM和MOC系统都是对听觉外周的声诱发反射,双耳的声音均可引出。MEM和MOC系统均可提高听觉外周的阈值:MEM系统通过使听骨链变硬起作用,MOC系统则通过减少内耳中外毛细胞对声音诱发运动的放大起作用。MEM诱发的衰减在低频刺激时最大,MOC诱发的衰减在中高频声音时最大。MEM和MOC系统都可产生抗掩蔽效应。MEM反射可减少低频噪声对高频信号的掩蔽(即掩蔽的向上扩展)。MOC反射的互补之处在于,它可使高频连续噪声对高频瞬态信号的掩蔽最小化。MEM抗掩蔽是通过减少抑制性掩蔽产生的,可提高高频时的掩蔽阈值。MOC抗掩蔽是通过抵消兴奋性掩蔽产生的。它不会提高掩蔽阈值,但可提高小的阈上强度增量的可检测性。在感音神经性听力损失的情况下,MEM和MOC系统的抗掩蔽效应均应降低。