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Compact piezoelectric transducer fiber scanning probe for optical coherence tomography

机译:紧凑型压电换能器光纤扫描探头用于光学相干断层扫描

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摘要

We developed a compact, optical fiber scanning piezoelectric transducer (PZT) probe for endoscopic and minimally invasive optical coherence tomography (OCT). Compared with previous forward-mount fiber designs, we present a reverse-mount design that achieves a shorter rigid length. The fiber was mounted at the proximal end of a quadruple PZT tube and scanned inside the hollow PZT tube to reduce the probe length. The fiber resonant frequency was 338 Hz using a 17-mm-long fiber. A 0.9 mm fiber deflection was achieved with a driving amplitude of 35 V. Using a GRIN lens-based optical design with a 1.3× magnification, a ~6 µm spot was scanned over a 1.2 mm diameter field. The probe was encased in a metal hypodermic tube with a ~25 mm rigid length and covered with a 3.2 mm outer diameter (OD) plastic sheath. Imaging was performed with a swept source OCT system based on a Fourier domain modelocked laser (FDML) light source at a 240 kHz axial scan rate and 8 µm axial resolution (in air). En face OCT imaging of skin in vivo and human colon ex vivo was demonstrated.
机译:我们开发了一种紧凑的光纤扫描压电换能器(PZT)探针,用于内窥镜和微创光学相干断层扫描(OCT)。与以前的前向安装光纤设计相比,我们提出了反向安装设计,可实现较短的刚性长度。将光纤安装在四重PZT管的近端,并在中空PZT管内部进行扫描以减少探针的长度。使用17毫米长的光纤,光纤谐振频率为338 Hz。在35 V的驱动振幅下实现了0.9 mm的光纤偏转。使用基于GRIN透镜的光学设计,放大倍率为1.3倍,在1.2 mm的直径场上扫描了约6 µm的光斑。探头被包裹在金属皮下注射管中,其刚性长度约为25 mm,并覆盖有外径为3.2 mm的塑料护套。使用基于傅立叶域模型对折激光(FDML)光源的扫频OCT系统以240 kHz轴向扫描速率和8 µm轴向分辨率(在空气中)进行成像。证明了体内和体外人类结肠的面对OCT成像。

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