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Volumetric microscopy of cerebral arteries with a miniaturized optical coherence tomography imaging probe

光学相干层析成像 医学 显微镜 生物医学工程 放射科 病理
作者
Vítor Mendes Pereira,Pedro Lylyk,Pedro Lylyk,Nicole M Cancelliere,Pedro Lylyk,Pedro Lylyk,Iván Lylyk,Vania Anagnostakou,Carlos Bleise,Hidehisa Nishi,Mark Epshtein,R King,Mohammed Salman Shazeeb,Ajit S Puri,Conrad W Liang,Ricardó A. Hanel,Julian Spears,Thomas R. Marotta,Demetrius K. Lopes,Matthew J. Gounis
出处
期刊:Science Translational Medicine [American Association for the Advancement of Science]
卷期号:16 (747): eadl4497-eadl4497 被引量:16
标识
DOI:10.1126/scitranslmed.adl4497
摘要

Endovascular interventions are increasingly becoming the preferred approach for treating strokes and cerebral artery diseases. These procedures rely on sophisticated angiographical imaging guidance, which encounters challenges because of limited contrast and spatial resolution. Achieving a more precise visualization of the underlying arterial pathology and neurovascular implants is crucial for accurate procedural decision-making. In a human study involving 32 patients, we introduced the clinical application of a miniaturized endovascular neuro optical coherence tomography (nOCT) imaging probe. This technology was designed to navigate the tortuous paths of the cerebrovascular circulation and to offer high-resolution imaging in situ. The nOCT probe is compatible with standard neurovascular microcatheters, integrating with the procedural workflow used in clinical routine. Equipped with a miniaturized optical fiber and a distal lens, the probe illuminates the tissue and collects the backscattered, near-infrared light. While rotating the fiber and the lens at high speed, the probe is rapidly retracted, creating a spiral-shaped light pattern to comprehensively capture the arterial wall and implanted devices. Using nOCT, we demonstrated volumetric microscopy of cerebral arteries in patients undergoing endovascular procedures. We imaged the anterior and posterior circulation of the brain, including distal segments of the internal carotid and middle-cerebral arteries, as well as the vertebral, basilar, and posterior cerebral arteries. We captured a broad spectrum of neurovascular pathologies, such as brain aneurysms, ischemic stroke, arterial stenoses, dissections, and intracranial atherosclerotic disease. nOCT offered artifact-free, high-resolution visualizations of intracranial artery pathology and neurovascular devices.
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