1 |
Shariat A, Bhatt H. Successful use of serratus plane block as primary anesthetic for video-assisted thoracoscopic surgery (VATS)-assisted pleural effusion drainage[J]. J Cardiothorac Vasc Anesth, 2018, 32(1): e31-e32.
|
2 |
Xu JH, Yang XY, Hu XB, et al. Multilevel thoracic paravertebral block using ropivacaine with/without dexmedetomidine in video-assisted thoracoscopic surgery[J]. J Cardiothorac Vasc Anesth, 2018, 32(1): 318-324.
|
3 |
Yeung JH, Gates S, Naidu BV, et al. Paravertebral block versus thoracic epidural for patients undergoing thoracotomy[J]. Cochrane Database Syst Rev, 2016, 2: CD009121.
|
4 |
Onishi E, Toda N, Kameyama Y, et al. Comparison of clinical efficacy and anatomical investigation between retrolaminar block and erector spinae plane block[J]. Biomed Res Int, 2019, 2019: 2578396.
|
5 |
Ueshima H, Otake H. Clinical experiences of ultrasound-guided erector spinae plane block for thoracic vertebra surgery[J]. J Clin Anesth, 2017, 38: 137.
|
6 |
Hanley C, Wall T, Bukowska I, et al. Ultrasound-guided continuous deep serratusanterior plane block versus continuous thoracic paravertebral block for perioperative analgesia in videoscopic-assisted thoracic surgery[J]. Eur J Pain, 2020, 24(4): 828-838.
|
7 |
Voscopoulos C, Palaniappan D, Zeballos J, et al. The ultrasound-guided retrolaminar block[J]. Can J Anaesth, 2013, 60(9): 888-895.
|
8 |
Gitman M, Fettiplace MR, Weinberg GL, et al. Local anesthetic systemic toxicity: a narrative literature review and clinical update on prevention, diagnosis, and management[J]. Plast Reconstr Surg, 2019, 144(3): 783-795.
|
9 |
El-Tahan MR. Role of thoracic epidural analgesia for thoracic surgery and its perioperative effects[J]. J Cardiothorac Vasc Anesth, 2017, 31(4): 1417-1426.
|
10 |
柏树令. 系统解剖学[M]. 2版. 北京: 人民卫生出版社, 2010.
|
11 |
Agnoletti V, Piraccini E, Corso R, et al. Methylene blue diffusion after multilevel thoracic paravertebral blocks[J]. J Cardiothorac Vasc Anesth, 2011, 25(2): e5-e6.
|
12 |
Bouman EAC, Sieben JM, Balthasar AJR, et al. Boundaries of the thoracic paravertebral space: potential risks and benefits of the thoracic paravertebral block from an anatomical perspective[J]. Surg Radiol Anat, 2017, 39(10): 1117-1125.
|
13 |
Balaban O, Tulgar S, Ahiskalioğlu A, et al. Blockage of thoracoabdominal nerves through perichondrial approach (TAPA) for surgical anesthesia after failed erector spinae plane block in mini-laparatomy[J]. J Clin Anesth, 2019, 55: 74-75.
|
14 |
Ueshima H, Otake H. Limitations of the erector spinae plane (ESP) block for radical mastectomy[J]. J Clin Anesth, 2018, 51: 97.
|
15 |
Mayes J, Davison E, Panahi P, et al. An anatomical evaluation of the serratus anterior plane block[J]. Anaesthesia, 2016, 71(9): 1064-1069.
|
16 |
Kunigo T, Murouchi T, Yamamoto S, et al. Spread of injectate in ultrasound-guided serratus plane block: a cadaveric study[J]. JA Clin Rep, 2018, 4(1): 10.
|
17 |
Costache I, Sinclair J, Farrash FA, et al. Does paravertebral block require access to the paravertebral space?[J]. Anaesthesia, 2016, 71(7): 858-859.
|
18 |
方婕, 张晓光. 单次神经阻滞后暴发痛的研究进展[J]. 外科理论与实践, 2018, 23(2): 181-184.
|
19 |
Li M, Wan L, Mei W, et al. Update on the clinical utility and practical use of ropivacaine in Chinese patients[J]. Drug Des Devel Ther, 2014, 8: 1269-1276.
|
20 |
Ochroch EA, Gottschalk A. Impact of acute pain and its management for thoracic surgical patients[J]. Thorac Surg Clin, 2005, 15(1): 105-121.
|