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中华医学超声杂志(电子版) ›› 2022, Vol. 19 ›› Issue (04) : 374 -376. doi: 10.3877/cma.j.issn.1672-6448.2022.04.017

综述

术中常规超声及超声造影在脑胶质瘤切除术中的应用
黄剑秋1, 崔立刚1,()   
  1. 1. 100191 北京大学第三医院超声科
  • 收稿日期:2020-09-09 出版日期:2022-04-01
  • 通信作者: 崔立刚
  • 基金资助:
    国家重点研发计划数字诊疗装备研发重点专项(2016YFC0104902)

Application of intraoperative conventional ultrasound and contrast-enhanced ultrasound in glioma resection

Jianqiu Huang1, Ligang Cui1()   

  • Received:2020-09-09 Published:2022-04-01
  • Corresponding author: Ligang Cui
引用本文:

黄剑秋, 崔立刚. 术中常规超声及超声造影在脑胶质瘤切除术中的应用[J]. 中华医学超声杂志(电子版), 2022, 19(04): 374-376.

Jianqiu Huang, Ligang Cui. Application of intraoperative conventional ultrasound and contrast-enhanced ultrasound in glioma resection[J]. Chinese Journal of Medical Ultrasound (Electronic Edition), 2022, 19(04): 374-376.

1
Zheng S, Alfaro-Munoz K, Wei W, et al. Prospective clinical sequencing of adult glioma [J]. Mol Cancer Ther, 2019, 18(5): 991-1000.
2
Eljamel MS, Mahboob SO. The effectiveness and cost-effectiveness of intraoperative imaging in high-grade glioma resection; a comparative review of intraoperative ALA, fluorescein, ultrasound and MRI [J]. Photodiagnosis Photodyn Ther, 2016, 16: 35-43.
3
Le Roux PD, Berger MS, Wang K, et al. Low grade gliomas: comparison of intraoperative ultrasound characteristics with preoperative imaging studies [J]. J Neurooncol, 1992, 13(2): 189-198.
4
韩志桐, 赵卫平, 张瑞剑, 等. 脑胶质瘤切除术中肿瘤切缘定位中B超的应用价值 [J]. 中华实验外科杂志, 2021, 38(12): 2505-2507.
5
李晨光. 神经导航结合术中超声切除脑深部胶质瘤 [D]. 乌鲁木齐: 新疆医科大学, 2020.
6
陈运洪. 脑胶质瘤术中超声的基础及临床应用研究 [D]. 广州: 南方医科大学, 2008.
7
Louis DN, Perry A, Wesseling P, et al. The 2021 WHO classification of tumors of the central nervous system: a summary [J]. Neuro-Oncology, 2021, 23(8): 1231-1251.
8
Baskan O, Silav G, Sari R, et al. Relationship of intraoperative ultrasound characteristics with pathological grades and Ki-67 proliferation index in intracranial gliomas [J]. J Med Ultrason (2001), 2015, 42(2): 231-237.
9
Narasimhan S, Weis JA, Luo M, et al. Accounting for intraoperative brain shift ascribable to cavity collapse during intracranial tumor resection [J]. J Med Imaging (Bellingham), 2020, 7(3): 031506.
10
Dorward NL, Alberti O, Velani B, et al. Postimaging brain distortion: magnitude, correlates, and impact on neuronavigation [J]. J Neurosurg, 1998, 88(4): 656-662.
11
Mursch K, Scholz M, Brück W, et al. The value of intraoperative ultrasonography during the resection of relapsed irradiated malignant gliomas in the brain [J]. Ultrasonography, 2017, 36(1): 60-65.
12
Baker GJ, Yadav VN, Motsch S, et al. Mechanisms of glioma formation: iterative perivascular glioma growth and invasion leads to tumor progression, VEGF-independent vascularization, and resistance to antiangiogenic therapy [J]. Neoplasia, 2014, 16(7): 543-561.
13
Prada F, Perin A, Martegani A, et al. Intraoperative contrast-enhanced ultrasound for brain tumor surgery [J]. Neurosurgery, 2014, 74(5): 542-552.
14
葛亚娟, 杨磊, 高军喜, 等. 术中超声造影定量分析在诊断不同级别胶质瘤瘤体及瘤周水肿的临床价值 [J]. 中国超声医学杂志, 2015, 31(3): 193-196.
15
胡金钰, 王晓华. 术中超声造影在脑胶质瘤手术切除中的应用及患者术后短期疗效评估 [J]. 国际医药卫生导报, 2020, 26(11): 1581-1584.
16
Cheng LG, He W, Zhang HX, et al. Intraoperative contrast enhanced ultrasound evaluates the grade of glioma [J]. Biomed Res Int, 2016, 2016: 2643862.
17
Wang J, Yang Y, Liu X, et al. Intraoperative contrast-enhanced ultrasound for cerebral glioma resection and the relationship between microvascular perfusion and microvessel density [J]. Clin Neurol Neurosurg, 2019, 186: 105512.
18
Stummer W, Pichlmeier U, Meinel T, et al. Fluorescence-guided surgery with 5-aminolevulinic acid for resection of malignant glioma: a randomised controlled multicentre phase Ⅲ trial [J]. Lancet Oncol, 2006, 7(5): 392-401.
19
Sanai N, Berger MS. Glioma extent of resection and its impact on patient outcome [J]. Neurosurgery, 2008, 62(4): 753-764; discussion 264-756.
20
Moiraghi A, Prada F, Delaidelli A, et al. Navigated intraoperative 2-Dimensional ultrasound in high-grade glioma surgery: impact on extent of resection and patient outcome [J]. Oper Neurosurg (Hagerstown), 2020, 18(4): 363-373.
21
Liang C, Li M, Gong J, et al. A new application of ultrasound-magnetic resonance multimodal fusion virtual navigation in glioma surgery [J]. Ann Transl Med, 2019, 7(23): 736.
22
Sweeney JF, Smith H, Taplin A, et al. Efficacy of intraoperative ultrasonography in neurosurgical tumor resection [J]. J Neurosurg Pediatr, 2018, 21(5): 504-510.
23
Prada F, Bene MD, Fornaro R, et al. Identification of residual tumor with intraoperative contrast-enhanced ultrasound during glioblastoma resection [J]. Neurosurg Focus, 2016, 40(3): E7.
24
Coburger J, König RW, Scheuerle A, et al. Navigated high frequency ultrasound: description of technique and clinical comparison with conventional intracranial ultrasound [J]. World Neurosurg, 2014, 82(3-4): 366-375.
25
Coburger J, Scheuerle A, Thal DR, et al. Linear array ultrasound in low-grade glioma surgery: histology-based assessment of accuracy in comparison to conventional intraoperative ultrasound and intraoperative MRI [J]. Acta Neurochir (Wien), 2015, 157(2): 195-206.
26
Selbekk T, Jakola AS, Solheim O, et al. Ultrasound imaging in neurosurgery: approaches to minimize surgically induced image artefacts for improved resection control [J]. Acta Neurochir (Wien), 2013, 155(6): 973-980.
27
侯萌. 荧光素钠联合超声造影在颅内恶性肿瘤手术中的应用 [D]. 长春: 吉林大学, 2018.
28
Imbault M, Chauvet D, Gennisson JL, et al. Intraoperative functional ultrasound imaging of human brain activity [J]. Sci Rep, 2017, 7(1): 7304.
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