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术中甲状旁腺定位辅助技术研究进展
Research Progress on Intraoperative Parathyroid Gland Localization Assistance Technology

DOI: 10.12677/ACM.2024.142433, PP. 3057-3064

Keywords: 术中甲状旁腺定位,辅助技术,甲状腺手术
Localization of Parathyroid Gland during Surgery
, Auxiliary Technology, Thyroid Surgery

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Abstract:

甲状旁腺是人体重要内分泌腺,分别位于左右两叶甲状腺背面(或埋在其中)的中部和下部;其主要分泌甲状旁腺素,调节机体内钙、磷的代谢;在甲状腺或甲状旁腺手术中为了避免甲状旁腺误伤引起并发症或者甲状旁腺精准切除,术中定位识别甲状旁腺显得非常重要;故本文介绍常见几种术中甲状旁腺定位辅助技术研究进展,旨为更好地服务于临床精准治疗工作。
The parathyroid gland is an important endocrine gland in the human body, located in the middle and lower parts of the left and right lobes of the thyroid gland (or buried in them); Its main secre-tion is parathyroid hormone, which regulates the metabolism of calcium and phosphorus in the body; In thyroid or parathyroid surgery, in order to avoid complications caused by accidental injury to the parathyroid gland or precise removal of the parathyroid gland, intraoperative localization and identification of the parathyroid gland are very important; Therefore, this article introduces the research progress of several common intraoperative parathyroid localization assistance tech-nologies, aiming to better serve clinical precision treatment work.

References

[1]  Taterra, D., Wong, L.M., Vikse, J., et al. (2019) The Prevalence and Anatomy of Parathyroid Glands: A Meta-Analysis with Implications for Parathyroid Surgery. Langenbeck’s Archives of Surgery, 404, 63-70.
https://doi.org/10.1007/s00423-019-01751-8
[2]  朱精强. 甲状腺手术中甲状旁腺保护专家共识[J]. 中国实用外科杂志, 2015, 35(7): 731-736.
[3]  Petranovi? Ov?ari?ek, P., Giovanella, L., Carrió Gasset, I., et al. (2021) The EANM Practice Guidelines for Parathyroid Imaging. European Journal of Nuclear Medicine and Molecular Imaging, 48, 2801-2822.
https://doi.org/10.1007/s00259-021-05334-y
[4]  Stephen, A.E., Mannstadt, M. and Hodin, R.A. (2017) Indica-tions for Surgical Management of Hyperparathyroidism: A Review. JAMA Surgery, 152, 878-882.
https://doi.org/10.1001/jamasurg.2017.1721
[5]  徐国栋, 凌煜玮, 朱江, 等. 甲状腺癌术后迁延性甲状旁腺功能减退风险的列线图预测模型研究[J]. 中国普外基础与临床杂志, 2022, 29(1): 24-31.
[6]  张丽, 高太虎. 甲状腺切除术后甲状旁腺功能减退的临床研究[J]. 肿瘤研究与临床, 2020, 32(11): 790-793.
[7]  郑建伟, 蔡淑艳, 宋慧敏, 等. 甲状腺全切除术后第一天血清全段甲状旁腺激素水平评估术后发生永久性甲状旁腺功能减退症的价值[J]. 中华外科杂志, 2020, 58(8): 626-630.
[8]  Lorenz, K., Schneider, R. and Elwerr, M. (2020) Intraoperative Measurement of Parathyroid Hormone in Hyperparathyroidism. Chirurg, 91, 448-455.
https://doi.org/10.1007/s00104-020-01123-9
[9]  陈安举, 王田田, 薄少军, 等. 术中甲状旁腺激素测定在继发性甲状旁腺功能亢进手术中的临床应用价值[J]. 临床耳鼻咽喉头颈外科杂志, 2019, 33(12): 1168-1172.
[10]  Nussbaum, S.R., Thompson, A.R., Hutcheson, K.A., et al. (1988) Intraoperative Measurement of Par-athyroid Hormone in the Surgical Management of Hyperparathyroidism. Surgery, 104, 1121-1127.
[11]  Irvin, G.L., Dembrow, V.D. and Prudhomme, D.L. (1991) Operative Monitoring of Parathyroid Gland Hyperfunction. The Ameri-can Journal of Surgery, 162, 299-302.
https://doi.org/10.1016/0002-9610(91)90135-Z
[12]  Sartori, P.V., Saibene, A.M., Leopaldi, E., et al. (2019) Intraoperative Parathyroid Hormone Testing in Primary Hyperparathyroidism Surgery: Time for Giving up? European Archives of Oto-Rhino-Laryngology, 276, 267-272.
https://doi.org/10.1007/s00405-018-5179-x
[13]  Barczynski, M., Konturek, A., Hubalewska-Dydejczyk, A., et al. (2009) Evaluation of Halle, Miami, Rome, and Vienna Intraoperative IPTH Assay Criteria in Guiding Minimally Invasive Parathyroidectomy. Langenbeck’s Archives of Surgery, 394, 843-849.
https://doi.org/10.1007/s00423-009-0510-z
[14]  Quinn, A.J., Ryan, é.J., Garry, S., et al. (2021) Use of Intraopera-tive Parathyroid Hormone in Minimally Invasive Parathyroidectomy for Primary Hyperparathyroidism: A Systematic Re-view and Meta-Analysis. JAMA Otolaryngology—Head & Neck Surgery, 147, 135-143.
https://doi.org/10.1001/jamaoto.2020.4021
[15]  Dudley, N.E. (1971) Methylene Blue for Rapid Identification of the Parathyroids. British Medical Journal, 3, 680-681.
https://doi.org/10.1136/bmj.3.5776.680
[16]  Schell, S.R. and Dudley, N.E. (2003) Clinical Outcomes and Fiscal Consequences of Bilateral Neck Exploration for Primary Idiopathic Hyperparathyroidism without Preoperative Radionu-clide Imaging or Minimally Invasive Techniques. Surgery, 133, 32-39.
https://doi.org/10.1067/msy.2003.88
[17]  Kuriloff, D.B. and Sanborn, K.V. (2004) Rapid Intraoperative Localiza-tion of Parathyroid Glands Utilizing Methylene Blue Infusion. Otolaryngology—Head and Neck Surgery, 131, 616-622.
https://doi.org/10.1016/j.otohns.2004.04.026
[18]  郭卫东, 吴立刚. 甲状旁腺染色定位在甲状腺手术中的应用[J]. 宁夏医学杂志, 2009, 31(7): 633-634.
[19]  Kartha, S.S., Chacko, C.E., Bumpous, J.M., et al. (2006) Toxic Meta-bolic Encephalopathy after Parathyroidectomy with Methylene Blue Localization. Otolaryngology—Head and Neck Sur-gery, 135, 765-768.
https://doi.org/10.1016/j.otohns.2006.05.026
[20]  Martindale, S.J. and Stedeford, J.C. (2003) Neurological Seque-lae Following Methylene Blue Injection for Parathyroidectomy. Anaesthesia, 58, 1041-1042.
https://doi.org/10.1046/j.1365-2044.2003.03415_23.x
[21]  赵烨, 赵菁, 张俐娜, 等. 显影技术在甲状腺癌术中对甲状旁腺的保护作用[J]. 新医学, 2018, 49(12): 847-852.
[22]  Das, K., Stone, N., Kendall, C., et al. (2006) Raman Spectroscopy of Parathyroid Tissue Pathology. Lasers in Medical Science, 21, 192-197.
https://doi.org/10.1007/s10103-006-0397-7
[23]  Paras, C., Keller, M., White, L., et al. (2011) Near-Infrared Auto-fluorescence for the Detection of Parathyroid Glands. Journal of Biomedical Optics, 16, Article ID: 067012.
https://doi.org/10.1117/1.3583571
[24]  Solórzano, C.C., Thomas, G., Berber, E., et al. (2021) Current State of In-traoperative Use of Near Infrared Fluorescence for Parathyroid Identification and Preservation. Surgery, 169, 868-878.
https://doi.org/10.1016/j.surg.2020.09.014
[25]  Thomas, G., Mcwade, M.A., Paras, C., et al. (2018) Developing a Clinical Prototype to Guide Surgeons for Intraoperative Label-Free Identification of Parathyroid Glands in Real Time. Thyroid, 28, 1517-1531.
https://doi.org/10.1089/thy.2017.0716
[26]  Falco, J., Dip, F., Quadri, P., et al. (2017) Increased Identification of Parathyroid Glands Using Near Infrared Light during Thyroid and Parathyroid Surgery. Surgical Endoscopy, 31, 3737-3742.
https://doi.org/10.1007/s00464-017-5424-1
[27]  De Leeuw, F., Breuskin, I., Abbaci, M., et al. (2016) Intraopera-tive Near-Infrared Imaging for Parathyroid Gland Identification by Auto-Fluorescence: A Feasibility Study. World Jour-nal of Surgery, 40, 2131-2138.
https://doi.org/10.1007/s00268-016-3571-5
[28]  Mcwade, M.A., Sanders, M.E., Broome, J.T., et al. (2016) Estab-lishing the Clinical Utility of Autofluorescence Spectroscopy for Parathyroid Detection. Surgery, 159, 193-202.
https://doi.org/10.1016/j.surg.2015.06.047
[29]  Falco, J., Dip, F., Quadri, P., et al. (2016) Cutting Edge in Thyroid Surgery: Autofluorescence of Parathyroid Glands. Journal of the American College of Surgeons, 223, 374-380.
https://doi.org/10.1016/j.jamcollsurg.2016.04.049
[30]  Demarchi, M.S., Karenovics, W., Bédat, B., et al. (2022) Near-Infrared Fluorescent Imaging Techniques for the Detection and Preservation of Parathyroid Glands during Endo-crine Surgery. Innovative Surgical Sciences, 7, 87-98.
https://doi.org/10.1515/iss-2021-0001
[31]  Sarder, P., Gullicksrud, K., Mondal, S., et al. (2013) Dynamic Optical Projection of Acquired Luminescence for Aiding Oncologic Surgery. Journal of Biomedical Optics, 18, Article ID: 120501.
https://doi.org/10.1117/1.JBO.18.12.120501
[32]  Mcwade, M.A., Thomas, G., Nguyen, J.Q., et al. (2019) En-hancing Parathyroid Gland Visualization Using a Near Infrared Fluorescence-Based Overlay Imaging System. Journal of the American College of Surgeons, 228, 730-743.
https://doi.org/10.1016/j.jamcollsurg.2019.01.017
[33]  Gan, Q., Wang, D., Ye, J., et al. (2016) Benchtop and An-imal Validation of A Projective Imaging System for Potential Use in Intraoperative Surgical Guidance. PLOS ONE, 11, e0157794.
https://doi.org/10.1371/journal.pone.0157794
[34]  Chen, W., Ma, X., Shao, P., et al. (2022) Autofluo-rescence Detection and Co-Axial Projection for Intraoperative Localization of Parathyroid Gland. BioMedical Engineering OnLine, 21, Article No. 37.
https://doi.org/10.1186/s12938-022-01004-8
[35]  Zhang, F., Zhu, X., Gao, J., et al. (2019) Coaxial Projective Im-aging System for Surgical Navigation and Telementoring. Journal of Biomedical Optics, 24, Article ID: 105002.
https://doi.org/10.1117/1.JBO.24.10.105002
[36]  Yan, S., Zhao, W., Wang, B., et al. (2018) A Novel Technology for Localization of Parathyroid Adenoma: Ultrasound-Guided Fine Needle Aspiration Combined with Rapid Parathyroid Hormone Detection and Nano-Carbon Technology. Surgical Innovation, 25, 357-363.
https://doi.org/10.1177/1553350618779703
[37]  Sun, Z., Zhao, Z. and Jiang, H. (2020) Analysis of the Factors for the Lymph Node Metastasis in RVIB Region of Thyroid Micropapillary Carcinoma and the Application Value of In-traoperative Nano-Carbon. Journal of Clinical Otorhinolaryngology, Head, and Neck Surgery, 34, 355-359.
[38]  Zhang, L., Huang, Y., Yang, C., et al. (2018) Application of a Carbon Nanoparticle Suspension for Sentinel Lymph Node Map-ping in Patients with Early Breast Cancer: A Retrospective Cohort Study. World Journal of Surgical Oncology, 16, Arti-cle No. 112.
https://doi.org/10.1186/s12957-018-1414-6
[39]  Yang, P., Tian, Y., Tan, B., et al. (2021) Clinical Application of Nano-Carbon to Improve the Accuracy of Lymph Node Staging in Patients with Advanced Gastric Cancer Receiving Neoadjuvant Chemotherapy: A Prospective Randomized Controlled Trial. Journal of Gastrointestinal Oncol-ogy, 12, 2052-2060.
https://doi.org/10.21037/jgo-21-457
[40]  Yan, S., Zhao, W., Wang, B., et al. (2018) Preopera-tive Injection of Carbon Nanoparticles Is Beneficial to the Patients with Thyroid Papillary Carcinoma: From a Prospective Study of 102 Cases. Medicine (Baltimore), 97, e11364.
https://doi.org/10.1097/MD.0000000000011364
[41]  Boni, L., David, G., Mangano, A., et al. (2015) Clinical Ap-plications of Indocyanine Green (ICG) Enhanced Fluorescence in Laparoscopic Surgery. Surgical Endoscopy, 29, 2046-2055.
https://doi.org/10.1007/s00464-014-3895-x
[42]  Vidal Fortuny, J., Karenovics, W., Triponez, F., et al. (2016) Intra-Operative Indocyanine Green Angiography of the Parathyroid Gland. World Journal of Surgery, 40, 2378-2381.
https://doi.org/10.1007/s00268-016-3493-2
[43]  Sadowski, S.M., Vidal Fortuny, J. and Triponez, F. (2017) A Reappraisal of Vascular Anatomy of the Parathyroid Gland Based on Fluorescence Techniques. Gland Surgery, 6, S30-S37.
https://doi.org/10.21037/gs.2017.07.10
[44]  De Boer, E., Harlaar, N.J., Taruttis, A., et al. (2015) Op-tical Innovations in Surgery. British Journal of Surgery, 102, E56-E72.
https://doi.org/10.1002/bjs.9713
[45]  Ris, F., Hompes, R., Lindsey, I., et al. (2014) Near Infra-Red Laparoscopic Assessment of the Adequacy of Blood Perfusion of Intestinal Anastomosis—A Video Vignette. Colorectal Disease, 16, 646-647.
https://doi.org/10.1111/codi.12593
[46]  Halle, B.M., Poulsen, T.D. and Pedersen, H.P. (2014) Indocyanine Green Plasma Disappearance Rate as Dynamic Liver Function Test in Critically Ill Patients. Acta Anaesthesiologica Scandina-vica, 58, 1214-1219.
https://doi.org/10.1111/aas.12406
[47]  Eguchi, T., Kawaguchi, K., Basugi, A., et al. (2017) Intraoperative Re-al-Time Assessment of Blood Flow Using Indocyanine Green Angiography after Anastomoses in Free-Flap Reconstruc-tions. British Journal of Oral and Maxillofacial Surgery, 55, 628-630.
https://doi.org/10.1016/j.bjoms.2017.03.011
[48]  Vidal Fortuny, J., Belfontali, V., Sadowski, S.M., et al. (2016) Parathyroid Gland Angiography with Indocyanine Green Fluorescence to Predict Parathyroid Function after Thyroid Surgery. British Journal of Surgery, 103, 537-543.
https://doi.org/10.1002/bjs.10101
[49]  Yu, H.W., Chung, J.W., Yi, J.W., et al. (2017) Intraoperative Localization of the Parathyroid Glands with Indocyanine Green and Firefly(R) Technology during BABA Robotic Thyroidectomy. Surgical Endoscopy, 31, 3020-3027.
https://doi.org/10.1007/s00464-016-5330-y
[50]  Lang, B.H., Wong, C.K., Hung, H.T., et al. (2017) Indocyanine Green Fluorescence Angiography for Quantitative Evaluation of in Situ Parathyroid Gland Perfusion and Function after Total Thyroidectomy. Surgery, 161, 87-95.
https://doi.org/10.1016/j.surg.2016.03.037
[51]  Jin, H., Dong, Q., He, Z., et al. (2019) Research on Indocyanine Green Angiography for Predicting Postoperative Hypoparathyroidism. Clinical Endocrinology (Oxford), 90, 487-493.
https://doi.org/10.1111/cen.13925
[52]  费媛, 赵婉君, 苏安平, 等. 吲哚菁绿荧光显像技术在甲状腺手术中对甲状旁腺血供判断的应用[J]. 中国普外基础与临床杂志, 2020, 27(9): 1094-1099.
[53]  皮启飞, 殷素鹏, 孙乙曾, 等. 吲哚菁绿荧光成像技术用于甲状腺全切除术中甲状旁腺血供判断的研究[J]. 中国普外基础与临床杂志, 2022, 29(10): 1313-1317.
[54]  Ouyang, H., Wang, B., Sun, B., et al. (2022) Application of Indocyanine Green Angi-ography in Bilateral Axillo-Breast Approach Robotic Thyroidectomy for Papillary Thyroid Cancer. Frontiers in Endo-crinology (Lausanne), 13, Article ID: 916557.
https://doi.org/10.3389/fendo.2022.916557
[55]  Spartalis, E., Nto-kos, G., Georgiou, K., et al. (2020) Intraoperative Indocyanine Green (ICG) Angiography for the Identification of the Parathyroid Glands: Current Evidence and Future Perspectives. In Vivo, 34, 23-32.
https://doi.org/10.21873/invivo.11741
[56]  Perry, D., Bharara, M., Armstrong, D.G., et al. (2012) Intraoperative Fluorescence Vascular Angiography: During Tibial Bypass. Journal of Diabetes Science and Technology, 6, 204-208.
https://doi.org/10.1177/193229681200600125
[57]  Podoleanu, A.G. (2012) Optical Coherence Tomography. Journal of Microscopy, 247, 209-219.
[58]  Sommerey, S., Al Arabi, N., Ladurner, R., et al. (2015) Intraoperative Opti-cal Coherence Tomography Imaging to Identify Parathyroid Glands. Surgical Endoscopy, 29, 2698-2704.
https://doi.org/10.1007/s00464-014-3992-x
[59]  Yamamoto, M., Onoda, N., Miyauchi, A., et al. (2022) Gauze Blotting Technique: A Novel Method to Identify Parathyroid Glands during Thyroid Surgery without Tissue Damage. Endocrine Journal, 69, 1329-1333.
https://doi.org/10.1507/endocrj.EJ22-0043
[60]  彭钰蓓, 叶梦醒, 马可欣, 等. 甲状旁腺功能亢进症术前和术中定位病变甲状旁腺的研究进展[J]. 中国普通外科杂志, 2022, 31(11): 1518-1526.

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