China Journal of Oral and Maxillofacial Surgery ›› 2014, Vol. 12 ›› Issue (1): 82-86.
• Review Article • Previous Articles Next Articles
HUANG Jian, SUN Jian
Received:
2013-08-23
Revised:
2013-09-29
Online:
2014-02-10
Published:
2014-02-10
HUANG Jian, SUN Jian. The value of preoperative imaging of perforator vasculature for planning perforator flaps[J]. China Journal of Oral and Maxillofacial Surgery, 2014, 12(1): 82-86.
[1] Koshima I, Soeda S. Inferior epigastric artery skin flaps without rectus abdominis muscle[J]. Br J Plast Surg,1989,42(6):645-648. [2] Whitaker IS, Karavias M, Shayan R, et al. The gracilis myocutaneous free flap: a quantitative analysis of the fasciocutaneous blood supply and implications for autologous breast reconstruction[J]. PLoS One, 2012, 7(5): e36367. [3] Heitmann C, Felmerer G, Durmus C, et al. Anatomical features of perforator blood vessels in the deep inferior epigastric perforator flap[J]. Br J Plast Surg, 2000, 53(3): 205-208. [4] Taylor GI, Doyle M, McCarten G. The Doppler probe for planning flaps: anatomical study and clinical applications[J]. Br J Plast Surg, 1990, 43(1): 1-16. [5] Mathes DW, Neligan PC. Current techniques in preoperative imaging for abdomen-based perforator flap microsurgical breast reconstruction[J]. J Reconstr Microsurg, 2010, 26(1): 3-10. [6] 徐中飞, 段维轶, 尚德浩, 等. 游离股前外侧穿支皮瓣制取中多普勒的应用价值[J]. 中华口腔医学杂志, 2011, 46(5): 290-292. [7] Hallock GG. Attributes and shortcomings of acoustic Doppler sonography in identifying perforators for flaps from the lower extremity[J]. J Reconstr Microsurg, 2009, 25(6): 377-381. [8] Dabernig J, Ong KO, McGowan R, et al. The anatomic and radiologic basis of the circumflex scapular artery perforator flap[J]. Ann Plast Surg, 2010, 64(6): 784-788. [9] Hallock GG. Evaluation of fasciocutaneous perforators using color duplex imaging[J]. Plast Reconstr Surg, 1994, 94(5): 644-651. [10] Iida H, Ohashi I, Kishimoto S, et al. Preoperative assessment of anterolateral thigh flap cutaneous perforators by colour Doppler flowmetry[J]. Br J Plast Surg, 2003, 56(1): 21-25. [11] Matei I, Georgescu A, Chiroiu B, et al. Harvesting of forearm perforator flaps based on intraoperative vascular exploration: clinical experiences and literature review[J]. Microsurgery, 2008, 28(5):321-330. [12] 陆林国, 徐智章, 刘吉斌, 等. 超声造影增强技术在探索穿支皮瓣血管中的应用[J]. 上海医学影像, 2010, 19(3): 161-164. [13] Lutz BS, Ng SH, Cabailo R, et al. Value of routine angiography before traumatic lower-limb reconstruction with microvascular free tissue transplantation[J]. J Trauma, 1998, 44(4): 682-686. [14] Ohjimi H, Era K, Fujita T, et al. Analyzing the vascular architecture of the free TRAM flap using intraoperative ex vivo angiography[J]. Plast Reconstr Surg, 2005, 116(1): 106-113. [15] Seres L, Császár J, Borbély L, et al. Donor site digital subtraction angiography before mandible reconstruction with free fibula transplantation[J]. Fogorv Sz, 2001, 94(1): 15-20. [16] Lutz BS, Wei FC, Machens HG, et al. Indications and limitations of angiography before free-flap transplantation to the distal lower leg after trauma: prospective study in 36 patients[J]. J Reconstr Microsurg, 2000, 16(3): 187-191. [17] Pratt GF, Rozen WM, Chubb D, et al. Preoperative imaging for perforator flaps in reconstructive surgery: a systematic review of the evidence for current techniques[J]. Ann Plast Surg,2012,69(1):3-9. [18] Masia J, Clavero JA, Larrañaga JR, et al. Multidetector-row computed tomography in the planning of abdominal perforator flaps[J]. J Plast Reconstr Aesthet Surg, 2006, 59(6): 594-599. [19] Chiu WK, Lin WC, Chen SY, et al. Computed tomography angiography imaging for the chimeric anterolateral thigh flap in reconstruction of full thickness buccal defect[J]. ANZ J Surg, 2011, 81(3): 142-147. [20] Wolff KD, Bauer F, Dobritz M, et al. Further experience with the free soleus perforator flaps using CT-angiography as a planning tool - a preliminary study[J]. J Craniomaxillofac Surg,2012,40(8): e253-257. [21] Wolff KD, Bauer F, Wylie J, et al. Peroneal perforator flap for intraoral reconstruction[J]. Br J Oral Maxillofac Surg,2012,50(1): 25-29. [22] Rozen WM, Stella DL, Bowden J, et al. Advances in the pre-operative planning of deep inferior epigastric artery perforator flaps:magnetic resonance angiography[J]. Microsurgery,2009,29(2): 119-123. [23] Kim JG, Lee SH. Comparison of the multidetector-row computed tomographic angiography axial and coronal planes' usefulness for detecting thoracodorsal artery perforators[J]. Arch Plast Surg, 2012, 39(4): 354-359. [24] Kim H, Lim SY, Pyon JK, et al. Preoperative computed tomographic angiography of both donor and recipient sites for microsurgical breast reconstruction[J]. Plast Reconstr Surg, 2012, 130(1): 11e-20e. [25] Pennington DG, Rome P, Kitchener P. Predicting results of DIEP flap reconstruction: the flap viability index[J]. J Plast Reconstr Aesthet Surg, 2012, 65(11): 1490-1495. [26] ten Dam MA, Wetzels JF. Toxicity of contrast media: an update[J]. Neth J Med, 2008, 66(10): 416-422. [27] Masia J, Larrañaga J, Clavero JA, et al. The value of the multidetector row computed tomography for the preoperative planning of deep inferior epigastric artery perforator flap: our experience in 162 cases[J]. Ann Plast Surg, 2008, 60(1): 29-36. [28] Ahn CY, Narayanan K, Shaw WW. In vivo anatomic study of cutaneous perforators in free flaps using magnetic resonance imaging[J]. J Reconstr Microsurg, 1994, 10(3): 157-163. [29] Chernyak V, Rozenblit AM, Greenspun DT, et al. Breast reconstruction with deep inferior epigastric artery perforator flap: 3.0-T gadolinium-enhanced MR imaging for preoperative localization of abdominal wall perforators[J]. Radiology, 2009, 250(2): 417-424. [30] Schaverien MV, Ludman CN, Neil-Dwyer J, et al. Contrast-enhanced magnetic resonance angiography for preoperative imaging in DIEP flap breast reconstruction[J]. Plast Reconstr Surg, 2011, 128(1): 56-62. [31] Ledneva E, Karie S, Launay-Vacher V, et al. Renal safety of gadolinium-based contrast media in patients with chronic renal insufficiency[J]. Radiology, 2009, 250(3): 618-628. [32] Rozen WM, Ashton MW, Stella DL, et al. Developments in perforator imaging for the anterolateral thigh flap: CT angiography and CT-guided stereotaxy[J]. Microsurgery,2008,28(4):227-232. [33] Rozen WM, Buckland A, Ashton MW, et al. Image-guided, stereotactic perforator flap surgery: a prospective comparison of current techniques and review of the literature[J]. Surg Radiol Anat, 2009, 31(6): 401-408. [34] Gómez-Cía T, Gacto-Sánchez P, Sicilia D, et al. The virtual reality tool VirSSPA in planning DIEP microsurgical breast reconstruction[J]. Int J Comput Assist Radiol Surg, 2009, 4(4): 375-382. [35] Smit JM, Klein S, Werker PM. An overview of [36] Cina A, Salgarello M, Barone-Adesi L, et al. Planning breast reconstruction with deep inferior epigastric artery perforating vessels: multidetector CT angiography versus color Doppler US[J]. Radiology, 2010, 255(3): 979-987. [37] Malhotra A, Chhaya N, Nsiah-Sarbeng P, et al. CT-guided deep inferior epigastric perforator (DIEP) flap localization - better for the patient, the surgeon, and the hospital[J]. Clin Radiol, 2013, 68(2): 131-138. [38] Schaverien MV, Ludman CN, Neil-Dwyer J, et al. Contrast-enhanced magnetic resonance angiography for preoperative imaging of deep inferior epigastric artery perforator flaps: advantages and disadvantages compared with computed tomography angiography: a United Kingdom perspective[J]. Ann Plast Surg, 2011, 67(6): 671-674. [39] Rozen WM, Ashton MW, Stella DL, et al. Stereotactic image-guided navigation in the preoperative imaging of perforators for DIEP flap breast reconstruction[J]. Microsurgery, 2008, 28(6): 417-423. [40] Gacto-Sánchez P, Sicilia-Castro D, Gómez-Cía T, et al. Computed tomographic angiography with VirSSPA three-dimensional software for perforator navigation improves perioperative outcomes in DIEP flap breast reconstruction[J]. Plast Reconstr Surg, 2010, 125(1): 24-31. [41] Gacto-Sánchez P, Sicilia-Castro D, Gómez-Cía T, et al. Use of a three-dimensional virtual reality model for preoperative imaging in DIEP flap breast reconstruction[J]. J Surg Res, 2010, 162(1): 140-147. |
[1] | ZHANG Qiang, LI Qing, ZHANG Jia. Imaging and clinical analysis of 25 cases of osteosarcoma of the jaw [J]. China Journal of Oral and Maxillofacial Surgery, 2024, 22(2): 186-191. |
[2] | LU Yu, LIU Qing-hai, LIANG Hai-sheng, DENG Gang. Diagnostic value of 3D-ASL for tongue mass and its correlation with pathology [J]. China Journal of Oral and Maxillofacial Surgery, 2024, 22(1): 42-48. |
[3] | SI Cheng-yun, LIU Meng-qiu, WENG Hai-yan, ZHANG Li-yu, AN Xing-fei, ZHOU Yu. Accuracy of MRI to measure and evaluate clinical staging of oral squamous cell carcinoma [J]. China Journal of Oral and Maxillofacial Surgery, 2023, 21(4): 390-396. |
[4] | WU Zhu-hao, ZHANG Xing-wei, SUN Ya-wei, LI Zi-hui, CHEN Xin, PU Yu-mei, HU Qin-gang, DONG Ying-chun, SUN Guo-wen. Application of ICG fluorescence navigation during salvage surgery for advanced oral squamous cell carcinoma [J]. China Journal of Oral and Maxillofacial Surgery, 2023, 21(3): 248-252. |
[5] | LIU Jiang-long, JIA Fang, WANG Xiao-rong, REYILAI Abudukeremu, WUERGULI Alifu, MAIMAITITUXUN Tuerdi. Diagnostic value of contrast-enhanced ultrasound in cervical lymph node metastasis from oral and maxillofacial squamous cell carcinoma [J]. China Journal of Oral and Maxillofacial Surgery, 2023, 21(2): 168-174. |
[6] | GONG Xia, LI Jia, XIONG Ping, DING Ang-ang. Ultrasonography diagnosis of head and neck vascular malformations [J]. China Journal of Oral and Maxillofacial Surgery, 2022, 20(5): 417-421. |
[7] | WANG Can, ZHANG Chun-ye, TAO Xiao-feng, WANG Bo-cheng, ZHU Ling. CT and MRI features of 29 patients with inflammatory myofibroblastic tumor in the head and neck [J]. China Journal of Oral and Maxillofacial Surgery, 2022, 20(5): 494-499. |
[8] | CHEN Jian-rong, DING Shui-qing, CHEN Liang, HE Jia-jia, QI Rong-xing. Imaging features of temporomandibular joint disorder: comparison of the efficacy of cone-beam CT, MRI [J]. China Journal of Oral and Maxillofacial Surgery, 2022, 20(3): 273-276. |
[9] | QU Jun-chen, JIA Chuan-hai, DING Qing-guo, CAO Rui, QIU Jia-ming. Evaluation of MRI image texture analysis in differential diagnosis of benign, malignant parotid gland tumors [J]. China Journal of Oral and Maxillofacial Surgery, 2022, 20(2): 173-176. |
[10] | WANG Yu-xin, WANG Zhi-yong, WANG Yong-gong, WANG Hui-ming, WANG Li-zhen, TIAN Hao, YE Jin-hai, FU Kun, RUAN Min, SUN Chang-fu, SUN Guo-wen, LIU Fa-yu, XU Bi-yun, HOU Jun, LIU Bing, LIU Liang, CHEN Yong-feng, CHEN Zhan-wei, XIAO Can, LI Si-yi, LI Zhi-yong, LI Yong, LI Nan, ZHANG Chen-ping, ZHANG Dong-sheng, ZHANG Sheng, ZHANG Kai, YANG Xi, HE Wei, SU Tong, JI Tong, LIN Li-song, LUO Rui-hua, ZHAO Zhi-li, HU Qin-gang, TANG Zhan-gui, XU Wei-jia, HUANG Zhi-quan, HUANG Xiao-feng, LIANG Yu-jie, HAN Zheng-xue, HAN Wei, JIANG Can-hua, YU Jian-jun, CAI Zhi-gang, LIAO Gui-qing, LIAO Sheng-kai, CAI Hui-ming, WEI Jian-hua. Chinese expert consensus statement on the application of of indocyanine green(ICG) fluorescence imaging in the treatment of oral squamous cell carcinoma [J]. China Journal of Oral and Maxillofacial Surgery, 2022, 20(1): 1-6. |
[11] | SHI Wei-hong, LIU Yan, AMANNISAHAN·Jiapaer, AYIDANA·Wulaerbieke, HE Qi, LING Bin. Clinical application of 3D printed positioning guides in assisted preparation of anterolateral thigh perforator flap [J]. China Journal of Oral and Maxillofacial Surgery, 2022, 20(1): 52-57. |
[12] | WANG Tian-ge, ZHOU Zhi-jie, LIN Yi-jun, SUN Yi-ting, CHEN Yu, SUN Hua, MAO Li-xia, LIU Jia-qiang. Effect of pre-surgical orthodontic treatment on the position and morphology of articular disc and condyle of temporomandibular joint [J]. China Journal of Oral and Maxillofacial Surgery, 2021, 19(5): 439-444. |
[13] | SUN Qi, MA Chao, DONG Min-jun, TAO Xiao-feng. Effects of region of interest sizes on apparent diffusion coefficient measurements of pleomorphic adenoma, Warthin tumor, and normal parotid parenchyma [J]. China Journal of Oral and Maxillofacial Surgery, 2021, 19(1): 29-35. |
[14] | HE Yue, JIANG Can-hua, HOU Jin-song, WANG Hui-ming, PENG Xin, LIU Bing, LI Jin-song, ZHENG Lei, XU Zhong-fei, WU Yu-nong, HU Jing-zhou, QIN Xing-jun, AI Song-tao, ZHOU Hui-hong, LI Chun-jie, ZHANG Shi-zhou, WANG Jun, LI Xiao-guang, LIU Zhong-long, ZHU Feng-shuo. Expert consensus statement on application of perforator flap in oromaxillofacial head and neck defect reconstruction [J]. China Journal of Oral and Maxillofacial Surgery, 2020, 18(5): 385-389. |
[15] | LI Jun, HUANG Jing, GAO Bing-ju, QIU Yu, LIN Yang, RUAN Zhao-wei, YE Zhuo, LIN Li-song. Application of deep inferior epigastric perforator flaps (DIEP) in total tongue reconstruction after resection of tongue carcinoma [J]. China Journal of Oral and Maxillofacial Surgery, 2019, 17(6): 550-553. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||