双极等离子体和铥光纤激光切除良性前列腺增生后前列腺结构变化的比较评估

I. K. Notov, S. V. Zalavina, S. V. Mashak, N. Bgatova, S. V. Pozdnyakova, S. V. Savchenko, K. G. Notov
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摘要

背景。良性前列腺增生症(BPH)是老年男性的常见疾病。经尿道前列腺手术是治疗良性前列腺增生症的金标准,但不同技术使用的能量不同。考虑到双极等离子体和铥光纤激光能量对前列腺组织的作用机制不同,研究它们影响下的结构变化具有现实意义。研究良性前列腺增生的双极等离子体和铥光纤激光去核术中前列腺结构变化的特征。31名良性前列腺增生患者分为两组。第一组(17 人)接受经尿道等离子前列腺剜除术;第二组(14 人)接受经尿道铥光纤激光剜除术。术中收集手术前列腺囊碎片,并按照标准检查方案使用光学显微镜和电子显微镜进行处理。结果。研究表明,相比之下,前列腺增生症手术治疗方法的临床和围手术期功能具有同源性。光镜和电子前列腺显微镜的数据显示,双极等离子能量的破坏作用更大,表现为凝固性坏死区的宽度更大,剥离线出现撕裂和隆起,细胞元素和细胞间基质成分的完整性明显受到破坏。激光照射引起的变化不太明显,这表明铥纤维激光对前列腺成分的作用更温和。显微镜检查结果表明,与双极等离子曝光相比,铥纤维激光的术中作用对手术前列腺囊的细胞和细胞间基质的创伤较小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparative assessment of structural changes in the prostate after bipolar plasma and thulium fiber laser enucleation of benign prostatic hyperplasia
Background. Benign prostatic hyperplasia (BPH) is a common disease in older men. Transurethral surgery in BPH is the gold standard for treatment, but the techniques differ in the energy used. Considering the different mechanisms of action of bipolar plasma and thulium fiber laser energy on prostate tissue, the study of structural changes under their influence is relevant.The aim. To study the features of structural changes in the prostate during bipolar plasma and thulium fiber laser enucleation of benign prostatic hyperplasia.Methods. Thirty one patients with BPH were divided into two groups. Group 1 (n = 17) underwent transurethral plasma enucleation of the prostate; Group 2 (n = 14) underwent transurethral thulium fiber laser enucleation. Fragments of the surgical prostate capsule were collected intraoperatively and were processed according to standard examination protocols using light and electron microscopy. The width of coagulation necrosis, the relief of the dissection line, the severity of cell and the prostate intercellular matrix destruction were taken into account.Results. Studies have shown the clinical and functional perioperative homology of the compared methods of surgical treatment of BPH. Data from light and electron prostate microscopy showed a greater damaging effect of bipolar plasma energy, which is manifested by a larger width of the zone of coagulation necrosis, a torn and raised appearance of the dissection line, and pronounced integrity violations of cellular elements and intercellular matrix components. Laser exposure causes less pronounced changes, which indicates a more gentle effect of the thulium fiber laser on the prostate components.Conclusion. The obtained microscopy results indicate that the intraoperative action of a thulium fiber laser is less traumatic for the cells and intercellular matrix of the surgical prostate capsule compared to bipolar plasma exposure.
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