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应用盐水冷却射频双极电凝器治疗巨大脑室内肿瘤的止血效果:技术探讨。

Hemostasis in a giant intraventricular tumor using a saline-cooled radiofrequency bipolar coagulator: technical note.

机构信息

Department of Pediatric Neurosciences, Pediatric Neurosurgery Unit, Santobono-Pausilipon Children's Hospital, Via Mario Fiore, n.6, 80129, Naples, Italy.

Department of Neurosciences and Reproductive and Dental Sciences, Division of Neurosurgery, Federico II University of Naples, Naples, Italy.

出版信息

Childs Nerv Syst. 2023 Aug;39(8):2181-2185. doi: 10.1007/s00381-023-06027-7. Epub 2023 Jun 17.

Abstract

BACKGROUND

Meningiomas are relatively rare in children and tend to be intraventricular and cystic, with often malignant behavior. Complete excision is associated with the most favorable outcome; moreover, the size and extent of these lesions often make complete excision in one step impossible because of the risk of intraoperative death from uncontrollable hemorrhage.

CASE PRESENTATION

A 10-year-old girl was admitted for headache in the last 3 months and was found to have a giant left intraventricular lesion with a volume of 166.63 cm, which caused hydrocephalus and significant mass effect. Very large draining veins were evident within the tumor, draining into the thalamostriates and internal cerebral veins. Cerebral angiography showed multiple feeders originating mainly from branches of the posterior left choroidal artery with distal afferents that could not be embolized. Therefore, a left parietal transcortical approach was chosen. Given the vascularity of the tumor, saline-cooled radiofrequency coagulation (Aquamantys) was used to reduce blood loss intraoperatively. Gross total resection (GTR) was achieved with an estimated blood loss of 640 mL. Pathology analysis was consistent with WHO grade 1 transitional meningioma. Postoperatively, the patient was neurologically intact, and MRI confirmed complete resection.

CONCLUSION

Aquamantys is a novel bipolar coagulation device that employs a new bipolar coagulation technique combining radiofrequency energy and saline to achieve hemostatic sealing by denaturing collagen fibers. This offers the possibility of achieving adequate hemostasis even in giant intraventricular tumors in infants to obtain GTR resection with minimal blood loss.

摘要

背景

脑膜瘤在儿童中相对罕见,往往位于脑室并呈囊性,常具有恶性行为。完全切除与最佳预后相关;此外,由于术中因无法控制的出血而导致死亡的风险,这些病变的大小和范围往往使得一步完成完全切除成为不可能。

病例介绍

一名 10 岁女孩因头痛入院 3 个月,发现左侧脑室有一个巨大的病变,体积为 166.63cm,导致脑积水和明显的肿块效应。肿瘤内有明显的大引流静脉,引流至丘脑纹状体和大脑内静脉。脑血管造影显示多个主要来源于左后脉络膜动脉分支的供血动脉,其远端供血动脉无法栓塞。因此,选择了左顶叶皮质切开入路。鉴于肿瘤的血管丰富,采用盐水冷却射频凝固(Aquamantys)以减少术中出血。估计出血量为 640ml 时实现了大体全切除(GTR)。病理分析符合 WHO 1 级过渡型脑膜瘤。术后患者神经功能完整,MRI 证实完全切除。

结论

Aquamantys 是一种新型的双极电凝设备,采用一种新的双极电凝技术,结合射频能量和盐水,通过使胶原纤维变性来实现止血密封。即使在婴儿的巨大脑室肿瘤中,这也提供了实现充分止血的可能性,从而实现最小出血量的 GTR 切除。

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