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脉冲钬:钇铝石榴石激光。在踝关节镜检查中的应用。

The pulsed holmium: yttrium-aluminum-garnet laser. Applications to ankle arthroscopy.

作者信息

Janis L R, Kravitz R D, Wagner S S

机构信息

American Podiatric Arthroscopy Association, Columbus, Ohio.

出版信息

Clin Podiatr Med Surg. 1994 Jul;11(3):483-98.

PMID:7954213
Abstract

The holmium:YAG laser has many advantages over conventional surgical instrumentation and techniques in ankle arthroscopy. These include minimal mechanical damage to surrounding tissue structures, better access to tight recesses, and the ability to coagulate, smooth, ablate, and weld tissues. The laser also offers improved contouring of damaged articular surfaces, all with a single instrument. The holmium:YAG laser uses a wavelength of 2.1 microns, which is strongly absorbed by water, the major component of tissue. This wavelength allows the laser to deliver a consistent tissue effect to both pigmented and nonpigmented tissues. It currently may transmit up to 60 watts of power to tissue in high-energy, short-duration pulses. The holmium:YAG laser also operates in a fluid medium, which provides a near physiologic environment and maintains continual irrigation. The holmium:YAG laser beam is transmitted through a flexible fiberoptic handpiece, which greatly increases maneuverability. A variety of angled laser tips are available, depending on the pathology type and location. Different tissue effects can be created by varying the tip to target distance. All these qualities provide precise control without significant thermal damage and make the laser ideal for application to articular structures of the ankle joint. The holmium:YAG laser is a safe and effective arthroscopic instrument with a promising future. We have used it, along with traditional shavers and abraders, to effectively treat numerous pathologies of the ankle joint. The laser's versatility in cutting, ablation, and coagulation has been uniformly successful. Patients surveyed postoperatively have reported less overall symptoms and faster healing. They have reported a decrease in ecchymosis, edema, and postoperative pain. Patients' return to full activity has appeared to be quicker with the use of holmium:YAG laser therapy. Although our results have thus far been very encouraging, further research and clinical applications in the use of the holmium:YAG laser need to be continued.

摘要

钬激光在踝关节镜检查中比传统手术器械和技术具有许多优势。这些优势包括对周围组织结构的机械损伤最小、能更好地进入狭窄间隙以及具备凝固、平整、消融和焊接组织的能力。该激光还能通过单一器械改善受损关节面的轮廓。钬激光的波长为2.1微米,水是组织的主要成分,该波长能被水强烈吸收。这种波长使激光能对有色和无色组织产生一致的组织效应。目前,它能以高能量、短脉冲的形式向组织传输高达60瓦的功率。钬激光也在流体介质中操作,这提供了接近生理的环境并保持持续冲洗。钬激光束通过柔性光纤手持件传输,这大大增加了可操作性。根据病理类型和位置,有多种角度的激光头可供选择。通过改变激光头与目标的距离可产生不同的组织效应。所有这些特性可实现精确控制且不会造成明显的热损伤,使激光非常适合应用于踝关节的关节结构。钬激光是一种安全有效的关节镜器械,具有广阔的前景。我们已将其与传统的刨削器和磨蚀器一起用于有效治疗踝关节的多种病变。激光在切割、消融和凝固方面的多功能性一直都很成功。术后接受调查的患者报告总体症状减轻且愈合更快。他们报告瘀斑、水肿和术后疼痛有所减轻。使用钬激光治疗后,患者似乎能更快恢复到完全活动状态。尽管我们目前的结果非常令人鼓舞,但仍需继续对钬激光的使用进行进一步研究和临床应用。

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