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Quantifying bone thickness, light transmission, and contrast interrelationships in transcranial photoacoustic imaging

机译:量化骨骼厚度,透光和对比度相互关系在经颅光声成像中

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We previously introduced photoacoustic imaging to detect blood vessels surrounded by bone and thereby eliminate the deadly risk of carotid artery injury during endonasal, transsphenoidal surgeries. Light would be transmitted through an optical fiber attached to the surgical drill, while a transcranial probe placed on the temporal region of the skull receives photoacoustic signals. This work quantifies changes in photoacoustic image contrast as the sphenoid bone is drilled. Frontal bone from a human adult cadaver skull was cut into seven 3 cm x 3 cm chips and sanded to thicknesses ranging 1-4 mm. For 700-940 nm wavelengths, the average optical transmission through these specimens increased from 19% to 44% as bone thickness decreased, with measurements agreeing with Monte Carlo simulations within 5%. These skull specimens were individually placed in the optical pathway of a 3.5 mm diameter, cylindrical, vessel-mimicking photoacoustic target, as the laser wavelength was varied between 700-940 nm. The mean optical insertion loss and photoacoustic image contrast loss due to the bone specimens were 56-80% and 46-79%, respectively, with the majority of change observed when the bone was ≤ 2 mm thick. The decrease in contrast is directly proportional to insertion loss over this thickness range by factors of 0.8-1.1 when multiple wavelengths are considered. Results suggest that this proportional relationship may be used to determine the amount of bone that remains to be drilled when the thickness is 2 mm or less.
机译:我们之前引入了光声成像以检测骨包围的血管,从而消除了颈动脉损伤期间的颈动脉损伤期间的致命风险。光线将通过附着在外科钻钻的光纤传输,而放置在颅骨的时间区域上的经变探针接收光声信号。随着钻石骨钻,这项工作量化了光声图像对比的变化。来自人类成人尸体颅骨的正面骨切成七3厘米×3厘米的碎片,砂成厚度,范围为1-4毫米。对于700-940nm波长,通过这些样品的平均光学传输从19%增加到44%,因为骨厚度降低,测量与蒙特卡罗模拟在5%以内。将这些颅骨标本单独放置在3.5mm直径,圆柱形的血管模仿光声靶的光学通路中,因为激光波长在700-940nm之间变化。由于骨标本引起的平均光学插入损耗和光声图像对比度分别为56-80%和46-79%,当骨≤2mm厚时观察到大多数变化。对比度的降低与在考虑多个波长时0.8-1.1的因素的厚度范围的插入损耗与插入损耗成比例。结果表明,这种比例关系可用于确定当厚度为2mm或更小时残留待钻孔的骨量。

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