Brianna Chai, Mary Laing Holland, Elizabeth L Camposeo, Kaylene King, Kara C Schvartz-Leyzac
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Electronic medical records, CI programming records, and clinic database of postoperative computerized tomography were reviewed to gather information regarding patient demographics, ESRTs, and electrode array metrics including medial-lateral distance and scalar location. Linear mixed models were constructed to determine how demographic variables and electrode position influence ESRTs recorded in 138 adult CI recipients.</p><p><strong>Results: </strong>ESRTs were significantly affected by recipient age, with older listeners demonstrating higher ESRT levels. On average, males had higher ESRT levels when compared to females. In a subset of the study sample, ESRT levels increased with increasing medial-lateral distance; however, there was not a statistically significant effect of electrode type (lateral/straight arrays compared to perimodiolar arrays). ESRTs were not affected by scalar location.</p><p><strong>Discussion/conclusions: </strong>The results suggest that key demographic and electrode position characteristics influence the level of ESRTs in adult CI recipients. While ESRTs are widely used to assist with CI programming, underlying factors are not well understood. The significant factors of aging and sex could be due to middle ear mechanics or neural health differences. 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引用次数: 0
摘要
导言:人工耳蜗 (CI) 的最佳疗效至少部分归功于适当的设备编程。电诱发镫骨反射阈值(ESRTs)等客观指标可用于更准确地设定程序水平。然而,导致 ESRT 水平的潜在因素并不十分清楚。本研究旨在分析患者性别和年龄等人口统计学变量以及人工耳蜗电极位置如何影响成年人工耳蜗用户的电诱发镫骨反射阈值(ESRTs):方法:对单个机构进行回顾性研究。对电子病历、人工耳蜗植入程序记录和诊所术后计算机断层扫描数据库进行了审查,以收集有关患者人口统计学、ESRT 和电极阵列指标(包括内外侧距离和标度位置)的信息。建立了线性混合模型,以确定人口统计学变量和电极位置如何影响 138 名成年 CI 接受者记录的 ESRT:结果:ESRTs 明显受到受试者年龄的影响,年龄越大,ESRT 水平越高。平均而言,男性的 ESRT 水平高于女性。在部分研究样本中,ESRT 水平随内侧-外侧距离的增加而增加,但电极类型(外侧/直阵列与耳周阵列相比)的影响在统计学上并不显著。讨论/结论:讨论/结论:研究结果表明,主要的人口统计学特征和电极位置特征会影响成年 CI 接受者的 ESRT 水平。虽然 ESRTs 被广泛用于辅助 CI 编程,但其背后的因素却不甚明了。年龄和性别的重要因素可能是中耳力学或神经健康差异造成的,但要更好地理解这些关联还需要进一步的数据。
Patient and Device Factors Contributing to Electrically Evoked Stapedial Reflex Thresholds in Cochlear Implanted Adults.
Introduction: Optimal cochlear implant (CI) outcomes are due to, at least in part, appropriate device programming. Objective measures, such as electrically evoked stapedial reflex thresholds (ESRTs), can be used to more accurately set programming levels. However, underlying factors that contribute to ESRT levels are not well understood. The objective of the current study was to analyze how demographic variables of patient sex and age, along with CI electrode location, influence ESRTs in adult CI recipients.
Methods: A single institution retrospective review was performed. Electronic medical records, CI programming records, and clinic database of postoperative computerized tomography were reviewed to gather information regarding patient demographics, ESRTs, and electrode array metrics including medial-lateral distance and scalar location. Linear mixed models were constructed to determine how demographic variables and electrode position influence ESRTs recorded in 138 adult CI recipients.
Results: ESRTs were significantly affected by recipient age, with older listeners demonstrating higher ESRT levels. On average, males had higher ESRT levels when compared to females. In a subset of the study sample, ESRT levels increased with increasing medial-lateral distance; however, there was not a statistically significant effect of electrode type (lateral/straight arrays compared to perimodiolar arrays). ESRTs were not affected by scalar location.
Discussion/conclusions: The results suggest that key demographic and electrode position characteristics influence the level of ESRTs in adult CI recipients. While ESRTs are widely used to assist with CI programming, underlying factors are not well understood. The significant factors of aging and sex could be due to middle ear mechanics or neural health differences. However, further data are needed to better understand these associations.
期刊介绍:
''Audiology and Neurotology'' provides a forum for the publication of the most-advanced and rigorous scientific research related to the basic science and clinical aspects of the auditory and vestibular system and diseases of the ear. This journal seeks submission of cutting edge research opening up new and innovative fields of study that may improve our understanding and treatment of patients with disorders of the auditory and vestibular systems, their central connections and their perception in the central nervous system. In addition to original papers the journal also offers invited review articles on current topics written by leading experts in the field. The journal is of primary importance for all scientists and practitioners interested in audiology, otology and neurotology, auditory neurosciences and related disciplines.