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Miniature, minimally invasive, tunable endoscope for investigation of the middle ear

机译:微型,微创,可调谐内窥镜,用于中耳检查

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摘要

We demonstrate a miniature, tunable, minimally invasive endoscope for diagnosis of the auditory system. The probe is designed to sharply image anatomical details of the middle ear without the need for physically adjusting the position of the distal end of the endoscope. This is achieved through the addition of an electrowetted, tunable, electronically-controlled lens to the optical train. Morphological imaging is enabled by scanning light emanating from an optical coherence tomography system. System performance was demonstrated by imaging part of the ossicular chain and wall of the middle ear cavity of a normal mouse. During the experiment, we electronically moved the plane of best focus from the incudo-stapedial joint to the stapedial artery. Repositioning the object plane allowed us to image anatomical details of the middle ear beyond the depth of field of a static optical system. We also demonstrated for the first time to our best knowledge, that an optical system with an electrowetted, tunable lens may be successfully employed to measure sound-induced vibrations within the auditory system by measuring the vibratory amplitude of the tympanic membrane in a normal mouse in response to pure tone stimuli.
机译:我们展示了用于诊断听觉系统的微型,可调,微创内窥镜。该探头设计为可以清晰地成像中耳的解剖细节,而无需物理调整内窥镜远端的位置。这是通过在光学系统中增加一个电润湿的,可调的电子控制透镜来实现的。形态学成像是通过扫描从光学相干断层扫描系统发出的光来实现的。通过对正常小鼠的听骨链和中耳腔壁进行成像,证明了系统性能。在实验过程中,我们以电子方式将聚焦最佳的平面从inc骨-ped骨关节移到了骨动脉。重新定位物平面使我们能够成像超出静态光学系统景深的中耳解剖学细节。我们还首次据我们所知,可以通过在正常小鼠中测量鼓膜的振动幅度,成功地将带有电润湿可调透镜的光学系统用于测量听觉系统内的声诱发振动。对纯音刺激的反应。

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