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Laser biostimulation therapy planning supported by imaging

机译:通过成像支持的激光生物硫化治疗计划

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Ultrasonography and MR imaging can help to identify the area and depth of different lesions, like injury, overuse, inflammation, degenerative diseases. The appropriate power density, sufficient dose and direction of the laser treatment can be optimally estimated. If required minimum 5 mW photon density and required optimal energy dose: 2-4 Joule/cm~2 wouldn't arrive into the depth of the target volume - additional techniques can help: slight compression of soft tissues can decrease the tissue thickness or multiple laser diodes can be used. In case of multiple diode clusters light scattering results deeper penetration. Another method to increase the penetration depth is a second pulsation (in kHz range) of laser light. (So called continuous wave laser itself has inherent THz pulsation by temporal coherence). Third solution of higher light intensity in the target volume is the multi-gate technique: from different angles the same joint can be reached based on imaging findings. Recent developments is ultrasonography: elastosonography and tissue harmonic imaging with contrast material offer optimal therapy planning. While MRI is too expensive modality for laser planning images can be optimally used if a diagnostic MRI already was done. Usual DICOM images offer "postprocessing" measurements in mm range.
机译:超声检查和MR成像可以帮助识别不同病变的面积和深度,如伤害,过度使用,炎症,退行性疾病。可以最佳地估计适当的功率密度,足够的激光处理的剂量和方向。如果需要最小5 MW光子密度和所需的最佳能量剂量:2-4焦耳/厘米〜2不会到达目标体积的深度 - 额外的技术可以有助于:软组织的轻微压缩可以降低组织厚度或多个可以使用激光二极管。在多个二极管簇的情况下,光散射导致更深的渗透。增加渗透深度的另一种方法是激光的第二脉动(在kHz范围)。 (所谓的连续波激光本身通过时间相干性具有固有的THz脉动)。目标体积中较高光强度的第三解是多栅极技术:从不同的角度,可以基于成像结果来达到相同的接头。最近的发展是超声检查:具有造影剂的弹性体造影和组织谐波成像提供最佳治疗计划。虽然MRI太昂贵了激光计划图像的模型,但如果已经完成了诊断MRI,则可以最佳地使用。通常的DICOM图像提供MM范围内的“后处理”测量。

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