首页> 外文会议>Conference on dynamics and fluctuations in biomedical photonics XII >In vivo imaging of microvascular changes in inflammatory human skin induced by tape stripping and mosquito saliva using optical microangiography
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In vivo imaging of microvascular changes in inflammatory human skin induced by tape stripping and mosquito saliva using optical microangiography

机译:用光学微轴造影胶带剥离和蚊子唾液诱导炎症人体皮肤微血管变化的体内成像

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Tape stripping on human skin induces mechanical disruptions of the epidermal barrier that lead to minor skin inflammation which leads to temporary changes in microvasculature. On the other hand, when mosquitoes probe the skin for blood feeding, they inject saliva in dermal tissue. Mosquito saliva is known to exert various biological activities, such as dermal mast cell degranulation, leading to fluid extravasation and neutrophil influx. This inflammatory response remain longer than the tape stripping caused inflammation. In this study, we demonstrate the capabilities of swept-source optical coherence tomography (OCT) in detecting in vivo microvascular response of inflammatory human skin. Optical microangiography (OMAG), noninvasive volumetric microvasculature in vivo imaging method, has been used to track the vascular responses after tape stripping and mosquito bite. Vessel density has been quantified and used to correlate with the degree of skin irritation. The proved capability of OMAG technique in visualizing the microvasculature network under inflamed skin condition can play an important role in clinical trials of treatment and diagnosis of inflammatory skin disorders as well as studying mosquito bite's perception by the immune system and its role in parasite transmission.
机译:人体皮肤上的胶带剥离诱导表皮屏障的机械破坏,导致微细炎症,导致微血管系统的暂时变化。另一方面,当蚊子探测血液的皮肤时,它们在真皮组织中注射唾液。众所周知,蚊子唾液施加各种生物活性,例如皮肤桅杆细胞脱粒,导致液体渗透和中性粒细胞流入。这种炎症反应仍然长于导致炎症的胶带。在这项研究中,我们展示了扫描源光学相干断层扫描(OCT)检测炎症人体皮肤的体内微血管反应的能力。光学微观造影(OMAG),在体内成像方法中非侵入体积微血管结构,已用于追踪胶带剥离和蚊虫后的血管反应。血管密度已经量化并用于与皮肤刺激程度相关。奥片技术在发炎皮肤状况下的奥片技术的证明能力可以在治疗和诊断炎症皮肤病的临床试验中发挥重要作用,以及研究蚊虫叮咬对免疫系统的看法及其在寄生虫传播中的作用。

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