Modification of the Thermal Spread by the Blade Shape of an Ultrasonically Activated Device
Author:
Publisher
Springer Science and Business Media LLC
Subject
Surgery
Link
https://link.springer.com/content/pdf/10.1007/s00268-021-05971-2.pdf
Reference12 articles.
1. Oh SY, Choi B, Lee KG, Choe HN, Lee HJ, Suh YS, Kong SH, Lee HJ, Kim WH, Yang HK (2017) Ultrasonically activated shears reduce blood loss without increasing inflammatory reactions in open distal gastrectomy for cancer: a randomized controlled study. Ann Surg Oncol 24(2):494–501. https://doi.org/10.1245/s10434-016-5518-3
2. Gao T, Lau BE, Yamaguchi T, Hanari N, Gunji H, Kano M, Matsubara H, Hayashi H (2017) Experimental analyses of the cavitation generated by ultrasonically activated surgical devices. Surg Today 47(1):122–129. https://doi.org/10.1007/s00595-016-1345-1
3. Fujita Y, Ohta M, Ozaki Y, Takahashi Y, Miyazaki S, Harada T, Iino I, Kikuchi H, Hiramatsu Y, Kamiya K, Konno H (2015) Collateral thermal damage to the pancreas by ultrasonic instruments during lymph node dissection in laparoscopic gastrectomy. Asian J Endosc Surg 8(3):281–288. https://doi.org/10.1111/ases.12177
4. Noshiro H, Kai K, Yoda Y, Kono H, Uchiyama A (2016) Palsy of the recurrent laryngeal nerves in association with an ultrasonic activated device during thoracoscopic esophagectomy with three-field lymphadenectomy. Esophagus 13:351–360. https://doi.org/10.1007/s10388-016-0543-7
5. Applewhite MK, White MG, James BC, Abdulrasool L, Kaplan EL, Angelos P, Grogan RH (2017) Ultrasonic, bipolar, and integrated energy devices: comparing heat spread in collateral tissues. J Surg Res 207:249–254. https://doi.org/10.1016/j.jss.2016.06.077
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