首页> 外文会议>Ultrasonics Symposium (IUS), 2008 IEEE; Beijing,China >In vivo photoacoustic micro-imaging of microvascular changes in achilles tendon of mice
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In vivo photoacoustic micro-imaging of microvascular changes in achilles tendon of mice

机译:小鼠跟腱微血管变化的体内光声显微成像

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摘要

Achilles tendon injuries are common clinical problems for athletes, especially in runners. Several studies indicate that Achilles tendinopathy is accompanied with neovascularization or hypervascularity; thus, assessments of vascularity are important when assessing inflammation changes in tendon injuries. Photoacoustic imaging, taking the advantages of good ultrasonic resolution and high optical absorption contrast, has been shown a promising tool for vascular imaging. In this study, we demonstrate the potential of photoacoustic microscopy in monitoring the microvascular and morphological changes in tendon injuries in a mouse model in vivo. A 25-MHz dark-field confocal PAM was used to image microvascular changes in Achilles tendon of mice before and during collagenase-induced tendinitis. A wavelength of 532 nm was applied for photoacoustic excitation because blood vessels own strong optical absorption at this wavelength, guaranteeing that detected photoacoustic signals mainly come from vessels. Co-registration of PAM B-mode images with 25-MHz ultrasound (USM) ones was also performed. Morphological changs in Achilles tendons due to inflammation and edema were revealed by the PAM and USM images. Proliferation of new blood vessels within the tendons was also observed. Observed microvascular changes during tendinitis were similar to the findings in the literatures. Future work includes time-course assessments of microcirculation changes in tendonitis before and after treatment. More cases and histological verifications will be used to obtain statistically significant data.
机译:跟腱损伤是运动员(尤其是跑步者)常见的临床问题。几项研究表明跟腱炎伴有新血管形成或血管过度增生。因此,评估肌腱损伤中的炎症变化时,评估血管的重要性很重要。利用良好的超声分辨率和高的光吸收对比度的优势,光声成像已被证明是用于血管成像的有前途的工具。在这项研究中,我们证明了光声显微镜在监测体内小鼠模型中腱损伤的微血管和形态变化方面的潜力。在胶原酶诱导的肌腱炎发生之前和期间,使用25 MHz的暗场共聚焦PAM成像小鼠跟腱的微血管变化。 532 nm波长用于光声激发,因为血管在该波长下具有较强的光吸收,从而确保检测到的光声信号主要来自血管。还执行了PAM B模式图像与25 MHz超声(USM)图像的共配准。 PAM和USM图像显示由于发炎和浮肿导致跟腱的形态变化。还观察到肌腱内新血管的增殖。肌腱炎期间观察到的微血管变化与文献中的发现相似。未来的工作包括对治疗前后肌腱炎微循环变化的时程评估。更多的病例和组织学验证将用于获得具有统计意义的数据。

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