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Clinical Programming Software to Manage Patient's Data with a Cochlear Implantat

机译:临床编程软件可通过人工耳蜗管理患者数据

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摘要

Auditory prostheses (AP) using Cochlear Implant System a.k.a bionic ears are widely used electronic devices that electrically stimulate the auditory nerve using an electrode array, surgically placed in the inner ear for patients suffering from severe to profound senosorineural deafness. The AP mainly contains an external Body Worn Speech Processor (BWSP) and an internal Implantable Receiver Stimulator (IRS). The BWSP receives an external sound or speech and generates encoded speech data bits for transmission to the IRS via a Radio Frequency transcutaneous link to excite the electrode array. After surgical placement of the electrode array in the inner ear, the BWSP should be fine-tuned to achieve the 80 to 100% speech reception abilities of the patient by an audiologist using Clinical Programming Software (CPS). The tuning process involves several tasks such as identifying the active electrode contacts, determining the detection and pain threshold of each active electrode, and loading these values into BWSP by reprogramming the BWSP. The main objective of this paper is to describe a simple personal-computer based, user-friendly CPS, which fine tunes the BWSP to achieve the best possible speech reception abilities of each patient and to perform post-operative fitting procedures by an audiologist. The CPS was developed to perform the post-operative fine tuning procedures such as (ⅰ) measurement of electrode tissue impedance, (ⅱ) fitting to determine the hearing threshold and comfort levels for each active electrode, and (ⅲ) reprogramming the speech processor using the identified threshold and comfort values. Finally, experimental results are presented.
机译:使用Cochlear植入系统(又称仿生耳)的听觉假体(AP)是一种广泛使用的电子设备,可通过电极阵列将电极阵列电刺激听觉神经,并通过手术将其放置在内耳中,以治疗严重或严重的神经性耳聋的患者。该AP主要包含一个外部人体受话器(BWSP)和一个内部植入式接收器刺激器(IRS)。 BWSP接收外部声音或语音,并生成编码的语音数据位,以通过射频经皮链路传输到IRS,以激发电极阵列。在将电极阵列手术放置在内耳中后,应由听力学家使用临床编程软件(CPS)对BWSP进行微调,以实现患者80至100%的语音接收能力。调整过程涉及多个任务,例如识别有源电极触点,确定每个有源电极的检测阈值和疼痛阈值,以及通过对BWSP重新编程将这些值加载到BWSP中。本文的主要目的是描述一种简单的基于个人计算机的,用户友好的CPS,它可以微调BWSP,以实现每个患者的最佳语音接收能力,并由听觉医师执行术后验配程序。开发CPS是为了执行术后微调程序,例如(ⅰ)测量电极组织阻抗,(ⅱ)拟合以确定每个活动电极的听力阈值和舒适度,以及(ⅲ)使用以下程序对语音处理器进行重新编程确定的阈值和舒适度值。最后,给出了实验结果。

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