Zhang Lifang, Wang Jie, Zhao Fei, Li Yongxin
Department of Otolaryngology Head and Neck Surgery, Beijing Tongren Hospital, Capital Medical University, Beijing, 100730, China.
Department of Otolaryngology Head and Neck Surgery, Beijing Tongren Hospital, Capital Medical University, Beijing, 100730, China; Beijing Engineering Research Center of Audiology Technology, Beijing, 100730, China.
Int J Pediatr Otorhinolaryngol. 2020 Jan;128:109690. doi: 10.1016/j.ijporl.2019.109690. Epub 2019 Sep 19.
To investigate middle ear function in children with Large Vestibular Aqueduct Syndrome (LVAS) to explore the feasibility of measuring inner ear pressure using Wideband tympanometry (WBT).
13 young children with LVAS were recruited. WBT and other audiological measurements i.e., Auditory Steady State Response (ASSR), Auditory Brain Stem Response (ABR), and Distorted Product Otoacoustic Emissions (DPOAE) were performed. Absorbance under ambient and peak pressure were compared with normative data, and analyzed using a one sample t-test.
Average absorbance in children with LVAS was significantly lower than normative data under ambient pressure at 1000, 1189, 1296, 2000 Hz and 4000 Hz. Absorbance under peak pressure was also significantly lower at 707, 794, 917, 1000, 1189, 1297, 1498 and 2000 Hz. However, absorbance was higher than standard values above 4000 Hz under ambient and peak pressure. It was also higher under ambient pressure at frequencies below 500 Hz.
The special characteristics of middle ear function found in children with Large Vestibular Aqueduct Syndrome (LVAS) indicate that WBT offers a sensitive and non-invasive method to evaluate inner ear pressure indirectly.
研究大前庭导水管综合征(LVAS)患儿的中耳功能,探讨使用宽频鼓室图(WBT)测量内耳压力的可行性。
招募13例患有LVAS的幼儿。进行了WBT及其他听力学测量,即听觉稳态反应(ASSR)、听觉脑干反应(ABR)和畸变产物耳声发射(DPOAE)。将环境压力和峰值压力下的吸收率与标准数据进行比较,并使用单样本t检验进行分析。
LVAS患儿在1000、1189、1296、2000Hz和4000Hz的环境压力下平均吸收率显著低于标准数据。在707、794、917、1000、1189、1297、1498和2000Hz的峰值压力下吸收率也显著降低。然而,在4000Hz以上的环境压力和峰值压力下,吸收率高于标准值。在500Hz以下的频率下,环境压力下的吸收率也较高。
大前庭导水管综合征(LVAS)患儿中耳功能的特殊特征表明,WBT提供了一种敏感且无创的方法来间接评估内耳压力。