首页> 外文会议>Optical Interactions with Tissue and Cells XVI; Progress in Biomedical Optics and Imaging; vol.6, no.10 >Usefulness of the photoacoustic measurement method for monitoring the regenerative process of full-thickness defects in articular cartilage using tissue-engineering technology
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Usefulness of the photoacoustic measurement method for monitoring the regenerative process of full-thickness defects in articular cartilage using tissue-engineering technology

机译:使用组织工程技术的光声测量方法在监测关节软骨全层缺损的再生过程中的有用性

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We demonstrated the capability of photoacoustic measurement for viscoelastic characterization. Since tissue viscoelasticity affects the propagation and attenuation of photoacoustic waves generated in the tissue, the relaxation times of the photoacoustic waves give the viscosity-elasticity ratio of the tissue. The relaxation times of photoacoustic waves of articular cartilage tissues engineered under various culture conditions were closely correlated with intrinsic viscosity-elasticity ratios measured by using a conventional viscoelastic analyzer (R > 0.98). In order to apply the photoacoustic measurement method to evaluation of the regeneration of articular cartilage as a method to validate the surgery, the method should enable not only evaluation of engineered tissue during cultivation in vitro but also evaluation after transplantation of engineered tissue in vivo. The aim of this study was to verify the usefulness of the photoacoustic method for repeated measurement of viscoelastic properties in order to evaluate the process of regeneration of a full-thickness defect in rabbit articular cartilage using allografted tissue-engineered cartilage. Photoacoustic waves were induced by 266- and 355-nm, 5-7 ns, light pulses delivered through an optical silica fiber from an Q-switched Nd:YAG laser and were detected by a piezoelectric transducer, which we had designed. About a 40% difference between the viscosity-elasticity ratio of allografted cartilage that of tissue surrounding the defect was shown just after surgery. The difference was significantly reduced at 4 and 12 postoperative weeks. Therefore, since the photoacoustic measurement method enables assessment of the progress of restoration of the viscoelasticity of articular cartilage, its main function, this method would be useful as an evaluation method in regenerative medicine.
机译:我们证明了粘弹性表征光声测量的能力。由于组织粘弹性影响组织中产生的光声波的传播和衰减,因此光声波的弛豫时间给出了组织的粘弹性比。在各种培养条件下工程化的关节软骨组织的光声波的弛豫时间与使用常规粘弹性分析仪测得的特性粘弹性比密切相关(R> 0.98)。为了将光声测量方法应用于关节软骨再生的评估作为验证手术的方法,该方法不仅应该能够在体外培养期间评估工程组织,而且还应该能够在体内移植工程组织之后进行评估。这项研究的目的是验证光声法重复测量粘弹性的有效性,以评估使用同种异体组织工程软骨在兔关节软骨中再生全厚度缺损的过程。光声波是由266 nm和355 nm,5-7 ns的感应光,由Q开关Nd:YAG激光通过石英光纤传输的光脉冲并由我们设计的压电传感器检测到的。刚手术后,异体移植软骨与缺损周围组织的粘弹性比之间大约有40%的差异。术后4周和12周,差异显着降低。因此,由于光声测量方法能够评估其主要功能的关节软骨的粘弹性的恢复进展,所以该方法将用作再生医学中的评估方法。

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