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首页> 外文期刊>Thermochimica Acta: An International Journal Concerned with the Broader Aspects of Thermochemistry and Its Applications to Chemical Problems >Thermal effects of shoulder electrothermal arthroscopic capsulorrhaphy monitored by differential scanning calorimetry-A preliminary study
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Thermal effects of shoulder electrothermal arthroscopic capsulorrhaphy monitored by differential scanning calorimetry-A preliminary study

机译:差示扫描量热法监测肩电热关节镜囊膜炎的热效应-初步研究

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The shoulder is the most frequently dislocated joint of the human body. The instability of the joint can be caused by ligamentous capsular redundancy. When non-operative management fails for this patient, quality of life is significantly impaired and surgical treatment is required to tighten the ligaments and the joint capsule. Radiofrequency (RF) energy of electrothermal arthroscopic capsulorrhaphy (ETC) represents a relatively non-invasive method to stabilize joints with excessive laxity by thermally shrinking redundant joint capsular tissue. Due to the thermal treatment of joint capsular tissue collagen fibers the capsule shrinks, so the stability of the joint rises. RF energy induces shrinkage, but also significant decline in the structural properties of the collagenous capsular tissue, which is thought to abate the final results of the treatment. The indication of the ETC treatment, the optimal device settings and shrinkage rate are still not clarified. Differential scanning calorimetric (DSC) examination is a validly efficient method for the demonstration of structural changes in biological systems. The purpose of this study was to establish the feasibility of DSC in the field of monitoring the structural alteration of the ETC treated collagenous capsular tissue. We used cadaver tissue samples to establish the thermograms of the thermal treated and the intact capsular joint tissue. Our preliminary findings show that the untreated tissue has a much cooperated transition with about T-1/2, of 1.5 degrees C. In case of treated sample this was about VC of course with two superimposed transitions. The lower melting transition stands for the heat-treated part of collagen. This proves, that in the heat-treated part, the collagen transformed into a random coil conformation with less thermal stability and suggest that DSC can be a viable method by monitoring the structural effects of ETC. (c) 2007 Elsevier B.V. All rights reserved.
机译:肩膀是人体最经常脱臼的关节。关节的不稳定性可能由韧带韧带冗余引起。当该患者的非手术治疗失败时,生活质量将显着受损,需要手术治疗以收紧韧带和关节囊。电热关节镜胆囊切除术(ETC)的射频(RF)能量是一种相对无创的方法,通过热收缩多余的关节囊组织来稳定具有过度松弛的关节。由于关节囊组织胶原纤维的热处理,囊体收缩,因此关节的稳定性提高。 RF能量不仅引起收缩,而且还导致胶原荚膜组织的结构特性明显下降,这被认为可以减轻治疗的最终结果。 ETC处理的指示,最佳设备设置和收缩率仍未弄清。差示扫描量热法(DSC)检查是证明生物系统结构变化的有效有效方法。这项研究的目的是建立DSC在监测ETC处理的胶原荚膜组织的结构改变领域的可行性。我们使用尸体组织样本来建立经热处理和完整的囊状关节组织的热分析图。我们的初步发现表明,未经处理的组织在1.5摄氏度左右的T-1 / 2处具有非常配合的过渡。在经过处理的样品中,这当然约为VC,具有两个叠加的过渡。较低的熔融转变代表胶原蛋白的热处理部分。这证明,在热处理的部分中,胶原蛋白转变成具有较小热稳定性的无规卷曲构象,并且表明DSC可以通过监测ETC的结构效应而成为可行的方法。 (c)2007 Elsevier B.V.保留所有权利。

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