Page 131 - Read Online
P. 131
Priya et al. J Cancer Metastasis Treat 2021;7:70 https://dx.doi.org/10.20517/2394-4722.2021.122 Page 15 of 17
Financial support and sponsorship
None.
Conflicts of interest
All authors declared that there are no conflicts of interest.
Ethical approval and consent to participate
Not applicable.
Consent for publication
Not applicable.
Copyright
© The Author(s) 2021.
REFERENCES
1. Gourin CG, Tufano RP, Forastiere AA, Koch WM, Pawlik TM, Bristow RE. Volume-based trends in thyroid surgery. Arch
Otolaryngol Head Neck Surg 2010;136:1191-8. DOI PubMed
2. Misiolek M, Waler J, Namyslowski G, Kucharzewski M, Podwinski A, Czecior E. Recurrent laryngeal nerve palsy after thyroid cancer
surgery: a laryngological and surgical problem. Eur Arch Otorhinolaryngol 2001;258:460-2. DOI PubMed
3. Toniato A, Boschin IM, Piotto A, et al. Complications in thyroid surgery for carcinoma: one institution's surgical experience. World J
Surg 2008;32:572-5. DOI PubMed
4. Lefevre JH, Tresallet C, Leenhardt L, Jublanc C, Chigot JP, Menegaux F. Reoperative surgery for thyroid disease. Langenbecks Arch
Surg 2007;392:685-91. DOI PubMed
5. Pantvaidya G, Mishra A, Deshmukh A, Pai PS, D'Cruz A. Does the recurrent laryngeal nerve recover function after initial dysfunction
in patients undergoing thyroidectomy? Laryngoscope Investig Otolaryngol 2018;3:249-52. DOI PubMed PMC
6. Steurer M, Passler C, Denk DM, Schneider B, Niederle B, Bigenzahn W. Advantages of recurrent laryngeal nerve identification in
thyroidectomy and parathyroidectomy and the importance of preoperative and postoperative laryngoscopic examination in more than
1000 nerves at risk. Laryngoscope 2002;112:124-33. DOI PubMed
7. Baba M, Natsugoe S, Shimada M, et al. Does hoarseness of voice from recurrent nerve paralysis after esophagectomy for carcinoma
influence patient quality of life? J Am Coll Surg 1999;188:231-6. DOI PubMed
8. Nouraei SAR, Allen J, Kaddour H, et al. Vocal palsy increases the risk of lower respiratory tract infection in low-risk, low-morbidity
patients undergoing thyroidectomy for benign disease: a big data analysis. Clin Otolaryngol 2017;42:1259-66. DOI PubMed
9. . Equipment, recording techniques, data analysis, and stimulation. Intraoperative neurophysiological monitoring. Totowa: Humana
Press; 2006. p. 299-328. DOI
10. Irkorucu O, Aziret M, Arslan E. Nerve monitoring in the hands of less experienced surgeons. Indian J Surg 2014;76:257-8. DOI
PubMed PMC
11. Dionigi G, Wu CW, Kim HY, Rausei S, Boni L, Chiang FY. Severity of recurrent laryngeal nerve injuries in thyroid surgery. World J
Surg 2016;40:1373-81. DOI PubMed
12. Chiang FY, Lu IC, Kuo WR, Lee KW, Chang NC, Wu CW. The mechanism of recurrent laryngeal nerve injury during thyroid
surgery-the application of intraoperative neuromonitoring. Surgery 2008;143:743-9. DOI PubMed
13. Zheng S, Xu Z, Wei Y, Zeng M, He J. Effect of intraoperative neuromonitoring on recurrent laryngeal nerve palsy rates after thyroid
surgery-a meta-analysis. J Formos Med Assoc 2013;112:463-72. DOI PubMed
14. Schneider R, Machens A, Randolph GW, Kamani D, Lorenz K, Dralle H. Opportunities and challenges of intermittent and continuous
intraoperative neural monitoring in thyroid surgery. Gland Surg 2017;6:537-45. DOI PubMed PMC
15. Johnson RL, Warner ME, Staff NP, Warner MA. Neuropathies after surgery: anatomical considerations of pathologic mechanisms.
Clin Anat 2015;28:678-82. DOI PubMed
16. Lamadé W, Béchu M, Lauzana E, et al. The weepy nerve-different sensitivity of left and right recurrent laryngeal nerves under tensile
stress in a porcine model. Langenbecks Arch Surg 2016;401:983-90. DOI PubMed
17. Phelan E, Schneider R, Lorenz K, et al. Continuous vagal IONM prevents recurrent laryngeal nerve paralysis by revealing initial EMG
changes of impending neuropraxic injury: a prospective, multicenter study. Laryngoscope 2014;124:1498-505. DOI PubMed
18. Schneider R, Randolph G, Dionigi G, et al. Prospective study of vocal fold function after loss of the neuromonitoring signal in thyroid
surgery: The International Neural Monitoring Study Group's POLT study. Laryngoscope 2016;126:1260-6. DOI PubMed
19. Waller A. Experiments on the section of the glosso-pharyngeal and hypoglossal nerves of the frog, and observations of the alterations
produced thereby in the structure of their primitive fibres. Edinb Med Surg J 1851;76:369-76. PubMed PMC
20. Schneider R, Randolph GW, Dionigi G, et al. International neural monitoring study group guideline 2018 part I: staging bilateral
thyroid surgery with monitoring loss of signal. Laryngoscope 2018;128 Suppl 3:S1-17. DOI PubMed