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Gradient-index fiber-optic microprobes for minimally invasive in vivo low-coherence interferometry

机译:梯度折射率光纤微探针用于微创体内低相干干涉测量

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摘要

We describe the design, construction, and application of what are believed to be the smallest fiber-optic probes used to date during imaging or diagnosis involving low-coherence interferometry (LCI). The probes use novel fiber-optic gradient-index (GRIN) lenses fabricated by a recently developed modified chemical-vapor-deposition (MCVD) process that avoids on-axis aberrations commonly marring MCVD-fabricated GRIN substrate. Fusing GRIN fiber lenses onto single-mode fiber yields automatically aligned all-fiber probes that insert into tissue through hypodermic needles as small as 31-gauge (inner diameter, 127 μm). We demonstrate the use of such probes with LCI by measuring microscopic brain motions in vivo.
机译:我们描述了迄今为止在涉及低相干干涉测量(LCI)的成像或诊断过程中使用的最小的光纤探头的设计,构造和应用。这些探头使用通过最近开发的改进的化学气相沉积(MCVD)工艺制造的新型光纤梯度折射率(GRIN)透镜,该透镜可避免通常会损坏MCVD制成的GRIN基板的轴上像差。将GRIN光纤透镜融合到单模光纤上可自动对准所有光纤探头,这些探头通过小至31号(内径127μm)的皮下注射针插入组织。我们通过测量体内的微观大脑运动证明了LCI此类探针的使用。

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