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脑内水刀分离术:实验与临床数据综述,特别提及脑膜瘤手术

Waterjet dissection in the brain: review of the experimental and clinical data with special reference to meningioma surgery.

作者信息

Oertel Joachim, Gaab Michael Robert, Warzok Rolf, Piek Jürgen

机构信息

Department of Neurosurgery, Ernst Moritz Arndt University, Ferdinand-Sauerbruch-Strasse 8, 17487 Greifswald, Germany.

出版信息

Neurosurg Rev. 2003 Jul;26(3):168-74. doi: 10.1007/s10143-002-0244-7. Epub 2002 Dec 6.

Abstract

Waterjet dissection enables precise parenchymal dissection under preservation of vessels and reduction of intraoperative blood loss in general surgery. The present study reports our experimental and clinical results with this device in neurosurgery. Our experimental studies in the porcine cadaver brain show that the device allows very accurate, precise, and reliable dissection of the brain. A linear relationship between waterjet pressure and dissection depth was demonstrated. Vessel preservation was observed at pressures below 20 bar. Clinically, precise dissection of brain parenchyma and various tumors was performed without complications. Even in meningiomas, with their very variable firmness, vascularization, and adherence to the surrounding brain, accurate dissection could be achieved. However, while tumor separation from the brain was attained with high accuracy and vessel preservation in all cases, only in softer lesions resection by aspiration under vessel preservation was possible with pressures below 20 bar. In all, the waterjet device enables precise tissue dissection and vessel preservation in various pathologies including meningiomas. It could represent an addition to the neurosurgical armamentarium. Further studies will have to show dissection qualities of this device that are superior to conventional methods.

摘要

水刀分离术能够在普通外科手术中在保留血管的同时实现精确的实质分离,并减少术中失血。本研究报告了我们在神经外科使用该设备的实验和临床结果。我们在猪尸体脑上进行的实验研究表明,该设备能够对脑进行非常准确、精确且可靠的分离。研究证明了水刀压力与分离深度之间存在线性关系。在压力低于20巴时可观察到血管保留。在临床上,对脑实质和各种肿瘤进行了精确分离,且无并发症发生。即使是质地、血管化程度以及与周围脑组织粘连情况差异很大的脑膜瘤,也能实现精确分离。然而,虽然在所有病例中肿瘤与脑的分离都能高精度完成且血管得以保留,但只有在较软的病变中,在压力低于20巴的情况下,才有可能在保留血管的同时通过抽吸进行切除。总之,水刀设备能够在包括脑膜瘤在内的各种病变中实现精确的组织分离和血管保留。它可能成为神经外科手术器械库中的一项补充。进一步的研究将必须证明该设备的分离质量优于传统方法。

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