1. Chen Z, Zhao Q, Du J, Wang Y, Han R, Xu C, et al. Risk factors for postoperative hypocalcaemia after thyroidectomy: a systematic review and meta-analysis. J Int Med Res. 2021; 49(3):300060521996911.

2. Vetter D, Triponez F. Near-infrared fluorescence techniques to reduce hypocalcaemia after thyroidectomy. Br J Surg. 2023; 110(12):1590–3.

3. Falco J, Dip F, Quadri P, de la Fuente M, Prunello M, Rosenthal RJ. Increased identification of parathyroid glands using near infrared light during thyroid and parathyroid surgery. Surg Endosc. 2017; 31(9):3737–42.

4. Park JW. [Preservation of parathyroid glands during thyroid surgery]. Clin Exp Thyroidol. 2014; 7(2):149–52. Korean.

5. Shaha AR, Jaffe BM. Parathyroid preservation during thyroid surgery. Am J Otolaryngol. 1998; 19(2):113–7.

6. Paras C, Keller M, White L, Phay J, Mahadevan-Jansen A. Near-infrared autofluorescence for the detection of parathyroid glands. J Biomed Opt. 2011; 16(6):067012.

7. McWade MA, Paras C, White LM, Phay JE, Solórzano CC, Broome JT, et al. Label-free intraoperative parathyroid localization with near-infrared autofluorescence imaging. J Clin Endocrinol Metab. 2014; 99(12):4574–80.

8. Kim SW, Song SH, Lee HS, Noh WJ, Oak C, Ahn YC, et al. Intraoperative real-time localization of normal parathyroid glands with autofluorescence imaging. J Clin Endocrinol Metab. 2016; 101(12):4646–52.

9. Kim SW, Lee HS, Ahn YC, Park CW, Jeon SW, Kim CH, et al. Near-infrared autofluorescence image-guided parathyroid gland mapping in thyroidectomy. J Am Coll Surg. 2018; 226(2):165–72.

10. Han YS, Kim Y, Lee HS, Kim Y, Ahn YC, Lee KD. Detectable depth of unexposed parathyroid glands using near-infrared autofluorescence imaging in thyroid surgery. Front Endocrinol (Lausanne). 2023; 14:1170751.

11. Stolik S, Delgado JA, Pérez A, Anasagasti L. Measurement of the penetration depths of red and near infrared light in human “ex vivo” tissues. J Photochem Photobiol B. 2000; 57(2-3):90–3.

12. Lee KD. [Near infrared autofluoroscence (NIRAF) in thyroid surgery]. Int J Thyroidol. 2022; 15(2):61–7.

13. Kim SW, Jeong YW, Koh YW, Lee KD. [Real-time localization of parathyroid glands with near infrared light during thyroid and parathyroid surgery]. Int J Thyroidol. 2018; 11(2):92–8. Korean.

14. De Leeuw F, Breuskin I, Abbaci M, Casiraghi O, Mirghani H, Ben Lakhdar A, et al. Intraoperative near-infrared imaging for parathyroid gland identification by auto-fluorescence: a feasibility study. World J Surg. 2016; 40(9):2131–8.

15. Kahramangil B, Dip F, Benmiloud F, Falco J, de La Fuente M, Verna S, et al. Detection of parathyroid autofluorescence using near-infrared imaging: a multicenter analysis of concordance between different surgeons. Ann Surg Oncol. 2018; 25(4):957–62.

16. Benmiloud F, Godiris-Petit G, Gras R, Gillot JC, Turrin N, Penaranda G, et al. Association of autofluorescence-based detection of the parathyroid glands during total thyroidectomy with postoperative hypocalcemia risk: results of the PARAFLUO multicenter randomized clinical trial. JAMA Surg. 2020; 155(2):106–12.

17. Kim DH, Kim SW, Kang P, Choi J, Lee HS, Park SY, et al. Near-infrared autof luorescence imaging may reduce temporary hypoparathyroidism in patients undergoing total thyroidectomy and central neck dissection. Thyroid. 2021; 31(9):1400–8.

18. Solórzano CC, Thomas G, Baregamian N, Mahadevan-Jansen A. Detecting the near infrared autof luorescence of the human parathyroid: hype or opportunity? Ann Surg. 2020; 272(6):973–85.
19. Halsted WS, Evans HM. The parathyroid glandules. Their blood supply, and their preservation in operation upon the thyroid gland. Ann Surg. 1907; 46(4):489–506.

20. Park I, Rhu J, Woo JW, Choi JH, Kim JS, Kim JH. Preserving parathyroid gland vasculature to reduce post-thyroidectomy hypocalcemia. World J Surg. 2016; 40(6):1382–9.
