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Flexible transbronchial optical frequency domain imaging smart needle for biopsy guidance

机译:柔性跨晶光学频域成像智能针,用于活组织检查指导

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Lung cancer is the leading cause of cancer related death. Macroscopic imaging techniques such as computed tomography are highly sensitivity at detecting small, ≤ 2cm, peripheral pulmonary lesions (PPLs) in the lung but lack the specificity necessary for diagnosis. Bronchoscopy is a procedure routinely performed to diagnose PPLs but is hindered with a low diagnostic yield due to challenging lesion localization. We have developed a flexible transbronchial optical frequency domain imaging (TB-OFDI) catheter that functions as a 'smart needle' to confirm the needle placement within the target lesion prior to biopsy. The TB-OFDI smart needle consists of a flexible and removable OFDI catheter that operates within a 21-gauge transbronchial needle aspiration (TBNA) needle. The OFDI catheter can be easily removed from the needle to facilitate subsequent aspiration or biopsy acquisition. The OFDI imaging core consists of an angled-polished ball lens with a spot size of 25 μm at a working distance of 160 urn from the catheter sheath. The ball-lens was designed to have an ellipsoid shape in order to compensate for the astigmatism caused by encasing the optics within a protective sheath. Transbronchial imaging of inflated excised swine lung parenchyma with the TB-OFDI smart needle yielded clear images of alveoli. In-vivo transbronchial imaging was also performed on three swine with artificial lesions injected transthoracially. Our results suggest that the TB-OFDI smart needle may be a useful tool for guiding biopsy acquisition to increase the diagnostic yield of PPLs.
机译:肺癌是癌症相关死亡的主要原因。诸如计算机断层扫描的宏观成像技术在检测肺中的小,≤2cm,外周肺病变(PPLS)处是高度敏感性,但缺乏诊断所需的特异性。支气管镜检查是一种常规进行的程序,以诊断PPLS,但由于挑战性病变定位而受到低诊断产量的阻碍。我们开发了一种柔性跨界光学频率域成像(TB-OFDI)导管,其用作“智能针”,以在活组织检查之前确认目标病变内的针头放置。 TB-OFDI智能针由柔性且可拆卸的OFDI导管组成,该导管在21型跨晶针头吸入(TBNA)针内。 OFDI导管可以容易地从针中移除,以促进随后的抽吸或活组织检查采集。 OFDI成像核心由具有25μm的分角抛光的球透镜,其在导管护套的160瓮的工作距离处。球透镜被设计成具有椭球形状,以补偿通过在保护鞘内包围光学器件引起的散光。用TB-OFDI智能针头膨胀的切除的猪肺实质的跨晶成像产生清晰的Alveoli图像。在三种猪中也进行体内跨界成像,其用人工病变注射了经过抗扭。我们的研究结果表明,TB-OFDI智能针可以是引导活检采集的有用工具,以提高PPLS的诊断产量。

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