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大学・研究所にある論文を検索できる 「早期肺癌に対する最新の外科治療 信大式低侵襲精密肺区域切除術の実際」の論文概要。リケラボ論文検索は、全国の大学リポジトリにある学位論文・教授論文を一括検索できる論文検索サービスです。

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早期肺癌に対する最新の外科治療 信大式低侵襲精密肺区域切除術の実際

江口, 隆 清水, 公裕 信州大学

2021.08.19

概要

近年の小型早期肺癌の増加と高齢化に伴い,胸腔鏡 手術およびロボット支援下に行われる低侵襲肺区域切 除のニーズは増加している。しかし,肺区域切除術は, 呼吸器外科手術の中でも難易度の高い手術とされてお り,本邦における全術式における割合は10 %程度で ある。難易度が高い理由として,① 頻繁に破格を伴 う複雑な区域および亜区域解剖を熟知する必要性に加 え,② 特に腫瘍が小型で深部に存在する場合,術中 の腫瘍局在確認ができず,十分な切除マージンを得る ことが難しいことなどが挙げられる。本稿では,低侵 襲肺区域切除術を精細かつ安全・確実に施行するうえ で重要となる術前シミュレーション・術中ナビゲー ション,マーキングによる術中の腫瘍局在確認に焦点 を当て,過去の研究結果と最新の技術革新に基づいた エビデンスを概説する。さらに,信州大学で実際に 行っている信大式低侵襲精密肺区域切除術の実際につ いて解説する。

参考文献

1) Ginsberg RJ, Rubinstein LV : Randomized trial of lobectomy versus limited resection for T1 N0 non-small cell lung cancer. Lung Cancer Study Group. Ann Thorac Surg 60 : 615-622 ; discussion 622-623, 1995

2) Shirvani SM, Jiang J, Chang JY, et al : Comparative effectiveness of 5 treatment strategies for early-stage non-small cell lung cancer in the elderly. Int J Radiat Oncol Biol Phys 84 : 1060-1070, 2012

3) Dai C, Shen J, Ren Y, et al : Choice of Surgical Procedure for Patients With Non-Small-Cell Lung Cancer ≤ 1 cm or > 1 to 2 cm Among Lobectomy, Segmentectomy, and Wedge Resection : A Population-Based Study. J Clin Oncol 34 : 3175-3182, 2016

4) Boffa DJ, Dhamija A, Kosinski AS, et al : Fewer complications result from a video-assisted approach to anatomic resection of clinical stage I lung cancer. J Thorac Cardiovasc Surg 148 : 637-643, 2014

5) Bendixen M, Jørgensen OD, Kronborg C, Andersen C, Licht PB : Postoperative pain and quality of life after lobectomy via video-assisted thoracoscopic surgery or anterolateral thoracotomy for early stage lung cancer : a randomised controlled trial. Lancet Oncol 17 : 836-844, 2016

6) Hristov B, Eguchi T, Bains S, et al : Minimally Invasive Lobectomy Is Associated With Lower Noncancer-specific Mortality in Elderly Patients : A Propensity Score Matched Competing Risks Analysis. Ann Surg 270 : 1161-1169, 2019

7) Kumar A, Deng JZ, Raman V, et al : A National Analysis of Minimally Invasive Vs Open Segmentectomy for Stage IA Non-Small-Cell Lung Cancer. Semin Thorac Cardiovasc Surg 33 : 535-544, 2021

8) Shimizu K, Nagashima T, Ohtaki Y, et al : Analysis of the variation pattern in right upper pulmonary veins and establishment of simplified vein models for anatomical segmentectomy. Gen Thorac Cardiovasc Surg 64 : 604-611, 2016

9) Eguchi T, Takasuna K, Kitazawa A, et al : Three-dimensional imaging navigation during a lung segmentectomy using an iPad. Eur J Cardiothorac Surg 41 : 893-897, 2012

10) Shimizu K, Nakazawa S, Nagashima T, Kuwano H, Mogi A : 3D-CT anatomy for VATS segmentectomy. J Vis Surg 3 : 88, 2017

11) Nakazawa S, Hanawa R, Nagashima T, Shimizu K, Yajima T, Shirabe K : Segmentectomy Guided by 3D Images Reconstructed from Non-enhanced Computed Tomography Data. Ann Thorac Surg 111 : e301-e304, 2020

12) Akiba T, Marushima H, Odaka M, Harada J, Kobayashi S, Morikawa T : Pulmonary vein analysis using three- dimensional computed tomography angiography for thoracic surgery. Gen Thorac Cardiovasc Surg 58 : 331-335, 2010

13) Fukuhara K, Akashi A, Nakane S, Tomita E : Preoperative assessment of the pulmonary artery by three-dimensional computed tomography before video-assisted thoracic surgery lobectomy. Eur J Cardiothorac Surg 34 : 875-877, 2008

14) Matsumoto T, Kanzaki M, Amiki M, et al : Comparison of three software programs for three-dimensional graphic imaging as contrasted with operative findings. Eur J Cardiothorac Surg 41 : 1098-1103, 2012

15) Sato M : Precise sublobar lung resection for small pulmonary nodules : localization and beyond. Gen Thorac Cardiovasc Surg 68 : 684-691, 2020

16) Powell TI, Jangra D, Clifton JC, et al : Peripheral lung nodules : fluoroscopically guided video-assisted thoracoscopic resection after computed tomography-guided localization using platinum microcoils. Ann Surg 240 : 481-488 ; discussion 8-9, 2004

17) Yutaka Y, Sato T, Matsushita K, et al : Three-dimensional Navigation for Thoracoscopic Sublobar Resection Using a Novel Wireless Marking System. Semin Thorac Cardiovasc Surg 30 : 230-237, 2018

18) Nakazawa S, Shimizu K, Mogi A, Kuwano H : VATS segmentectomy : past, present, and future. Gen Thorac Cardio­ vasc Surg 66 : 81-90, 2018

19) Handa Y, Tsutani Y, Mimae T, Miyata Y, Okada M : Complex segmentectomy in the treatment of stage IA non- small-cell lung cancer. Eur J Cardiothorac Surg 57 : 114-121, 2020

20) Shimizu K, Mogi A, Yajima T, et al : Thoracoscopic Subsuperior Segment Segmentectomy. Ann Thorac Surg 104 : e407-e410, 2017

21) Shimizu K, Nagashima T, Yajima T, et al : Thoracoscopic Medial-Basal Segment Segmentectomy. Ann Thorac Surg 104 : e403-e406, 2017

22) Yajima T, Shimizu K, Mogi A, Kosaka T, Nakazawa S, Shirabe K : Thoracoscopic right middle lobe segmentectomy. Gen Thorac Cardiovasc Surg 67 : 344-347, 2019

23) Ceppa DP, Balderson S, D’Amico TA : Technique of thoracoscopic basilar segmentectomy. Semin Thorac Cardiovasc Surg 23 : 64-66, 2011

24) Okada M, Sakamoto T, Yuki T, Mimura T, Miyoshi K, Tsubota N : Hybrid surgical approach of video-assisted minithoracotomy for lung cancer : significance of direct visualization on quality of surgery. Chest 128 : 2696-2701, 2005

25) Okada M, Mimura T, Ikegaki J, Katoh H, Itoh H, Tsubota N : A novel video-assisted anatomic segmentectomy technique : selective segmental inflation via bronchofiberoptic jet followed by cautery cutting. J Thorac Cardiovasc Surg 133 : 753-758, 2007

26) Endoh M, Oizumi H, Kato H, et al : Posterior approach to thoracoscopic pulmonary segmentectomy of the dorsal basal segment : A single-institute retrospective review. J Thorac Cardiovasc Surg 154 : 1432-1439, 2017

27) Pardolesi A, Park B, Petrella F, Borri A, Gasparri R, Veronesi G : Robotic anatomic segmentectomy of the lung : technical aspects and initial results. Ann Thorac Surg 94 : 929-934, 2012

28) Veronesi G, Novellis P, Voulaz E, Alloisio M : Robot-assisted surgery for lung cancer : State of the art and perspectives. Lung Cancer 101 : 128-134, 2016

29) Perroni G, Veronesi G : Robotic segmentectomy : indication and technique. J Thorac Dis 12 : 3404-3410, 2020

30) Boyden EA : Analysis of variations of the bronchopulmonary segments in the left upper lobes of fifty lungs. Anat Rec 94 : 450, 1946

31) Nagashima T, Shimizu K, Ohtaki Y, et al : An analysis of variations in the bronchovascular pattern of the right upper lobe using three-dimensional CT angiography and bronchography. Gen Thorac Cardiovasc Surg 63 : 354-360, 2015

32) Nagashima T, Shimizu K, Ohtaki Y, et al : Analysis of variation in bronchovascular pattern of the right middle and lower lobes of the lung using three-dimensional CT angiography and bronchography. Gen Thorac Cardiovasc Surg 65 : 343-349, 2017

33) Nakazawa S, Shimizu K, Kawatani N, et al : Right upper lobe segmentectomy guided by simplified anatomic models. JTCVS Tech 4 : 288-297, 2020

34) Suzuki K, Shimohira M, Hashizume T, et al : Usefulness of CT-guided hookwire marking before video-assisted No. 4, 2021 thoracoscopic surgery for small pulmonary lesions. J Med Imaging Radiat Oncol 58 : 657-662, 2014

35) Mack MJ, Gordon MJ, Postma TW, et al : Percutaneous localization of pulmonary nodules for thoracoscopic lung resection. Ann Thorac Surg 53 : 1123-1124, 1992

36) Hajjar W, Al-Nassar S, Almousa O, et al : Thoracoscopic resection of suspected metastatic pulmonary nodules after microcoil localization technique : a prospective study. J Cardiovasc Surg (Torino) 58 : 606-612, 2017

37) Kerrigan DC, Spence PA, Crittenden MD, Tripp MD : Methylene blue guidance for simplified resection of a lung lesion. Ann Thorac Surg 53 : 163-164, 1992

38) Hachey KJ, Digesu CS, Armstrong KW, et al : A novel technique for tumor localization and targeted lymphatic mapping in early-stage lung cancer. J Thorac Cardiovasc Surg 154 : 1110-1118, 2017

39) Nomori H, Horio H, Naruke T, Suemasu K : Fluoroscopy-assisted thoracoscopic resection of lung nodules marked with lipiodol. Ann Thorac Surg 74 : 170-173, 2002

40) Manca G, Davini F, Tardelli E, et al : Clinical Impact of Radioguided Localization in the Treatment of Solitary Pulmonary Nodule : A 20-Year Retrospective Analysis. Clin Nucl Med 43 : 317-322, 2018

41) Sugi K, Kaneda Y, Hirasawa K, Kunitani N : Radioisotope marking under CT guidance and localization using a handheld gamma probe for small or indistinct pulmonary lesions. Chest 124 : 155-158, 2003

42) Iguchi T, Hiraki T, Matsui Y, et al : Preoperative short hookwire placement for small pulmonary lesions : evaluation of technical success and risk factors for initial placement failure. Eur Radiol 28 : 2194-2202, 2018

43) Horan TA, Pinheiro PM, Araújo LM, Santiago FF, Rodrigues MR : Massive gas embolism during pulmonary nodule hook wire localization. Ann Thorac Surg 73 : 1647-1649, 2002

44) Thistlethwaite PA, Gower JR, Hernandez M, Zhang Y, Picel AC, Roberts AC : Needle localization of small pulmonary nodules : Lessons learned. J Thorac Cardiovasc Surg 155 : 2140-2147, 2018

45) Miyoshi T, Kondo K, Takizawa H, et al : Fluoroscopy-assisted thoracoscopic resection of pulmonary nodules after computed tomography--guided bronchoscopic metallic coil marking. J Thorac Cardiovasc Surg 131 : 704-710, 2006

46) Toba H, Kondo K, Miyoshi T, et al : Fluoroscopy-assisted thoracoscopic resection after computed tomography- guided bronchoscopic metallic coil marking for small peripheral pulmonary lesions. Eur J Cardiothorac Surg 44 : e126-e132, 2013

47) Sakamoto T, Takada Y, Endoh M, Matsuoka H, Tsubota N : Bronchoscopic dye injection for localization of small pulmonary nodules in thoracoscopic surgery. Ann Thorac Surg 72 : 296-297, 2001

48) Sato M, Omasa M, Chen F, et al : Use of virtual assisted lung mapping (VAL-MAP), a bronchoscopic multispot dye- marking technique using virtual images, for precise navigation of thoracoscopic sublobar lung resection. J Thorac Cardiovasc Surg 147 : 1813-1819, 2014

49) Okumura T, Kondo H, Suzuki K, et al : Fluoroscopy-assisted thoracoscopic surgery after computed tomography- guided bronchoscopic barium marking. Ann Thorac Surg 71 : 439-442, 2001

50) Asano F, Shindoh J, Shigemitsu K, et al : Ultrathin bronchoscopic barium marking with virtual bronchoscopic navigation for fluoroscopy-assisted thoracoscopic surgery. Chest 126 : 1687-1693, 2004

51) Endo M, Kotani Y, Satouchi M, et al : CT fluoroscopy-guided bronchoscopic dye marking for resection of small peripheral pulmonary nodules. Chest 125 : 1747-1752, 2004

52) Sato M, Nagayama K, Kobayashi M, Nakajima J : Virtual-Assisted Lung Mapping 2.0 : Preoperative Bronchoscopic Three-Dimensional Lung Mapping. Ann Thorac Surg 108 : 269-273, 2019

53) Yutaka Y, Sato T, Zhang J, et al : Localizing small lung lesions in video-assisted thoracoscopic surgery via radio­ frequency identification marking. Surg Endosc 31 : 3353-3362, 2017

54) Kojima F, Sato T, Takahata H, et al : A novel surgical marking system for small peripheral lung nodules based on radio frequency identification technology : Feasibility study in a canine model. J Thorac Cardiovasc Surg 147 : 1384- 1389, 2014

55) Kojima F, Sato T, Tsunoda S, et al : Development of a novel marking system for laparoscopic gastrectomy using endoclips with radio frequency identification tags : feasibility study in a canine model. Surg Endosc 28 : 2752-2759, 2014

56) Khereba M, Ferraro P, Duranceau A, et al : Thoracoscopic localization of intraparenchymal pulmonary nodules using direct intracavitary thoracoscopic ultrasonography prevents conversion of VATS procedures to thoracotomy in selected patients. J Thorac Cardiovasc Surg 144 : 1160-1165, 2012

57) Kondo R, Yoshida K, Hamanaka K, et al : Intraoperative ultrasonographic localization of pulmonary ground-glass opacities. J Thorac Cardiovasc Surg 138 : 837-842, 2009

58) Kato A, Yasuo M, Tokoro Y, et al : Virtual bronchoscopic navigation as an aid to CT-guided transbronchial biopsy improves the diagnostic yield for small peripheral pulmonary lesions. Respirology 23 : 1049-1054, 2018

59) Sato T, Yutaka Y, Ueda Y, et al : Diagnostic yield of electromagnetic navigational bronchoscopy : results of initial 35 cases in a Japanese institute. J Thorac Dis 10 : S1615-S1619, 2018

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