TY - JOUR
T1 - Needle Tract Ablation in Liver Tissue Using a Cryoprobe Combined with an Electrosurgical Device
T2 - Influence of ex vivo and in vivo Animal Models
AU - Gobara, Hideo
AU - Yamamoto, Akira
AU - Komaki, Toshiyuki
AU - Kitayama, Toshiaki
AU - Sakurai, Jun
AU - Iguchi, Toshihiro
AU - Matsui, Yusuke
AU - Uka, Mayu
AU - Tomita, Koji
AU - Hiraki, Takao
AU - Kanazawa, Susumu
N1 - Publisher Copyright:
© 2021. All Rights Reserved.
PY - 2021
Y1 - 2021
N2 - To assess the feasibility of needle tract ablation in liver tissue in ex vivo and in vivo animal models using a cryoprobe and electrosurgical device. The experimental device is made by inserting a cryoprobe through an introducer sheath for insulation, with 2-cm of probe tip projecting out. A beagle liver was punctured by the device, and electric current was applied at 30-W with the electrosurgical knife touching the non-insulated device base. The discolored area of cut surface along the device was evaluated in 5 application-time groups (5,10,15,20, or 25 seconds). An ex vivo experiment was performed to determine an ablation algorithm with an appropriate application time by comparison with radiofrequency ablation (RFA) results. Thereafter, an in vivo experiment was performed to verify the algorithm's feasibility. In the ex vivo model, the cut surface demonstrated different amounts of discolored area according to the application time. The total discolored area in the 20-seconds group was similar to that by RFA. In the in vivo model, the liver did not bleed, the total discolored area was similar to that ex vivo, and coagulation necrosis was confirmed by photomicrograph. Needle tract ablation can be performed using the experimental device and electrosurgical device.
AB - To assess the feasibility of needle tract ablation in liver tissue in ex vivo and in vivo animal models using a cryoprobe and electrosurgical device. The experimental device is made by inserting a cryoprobe through an introducer sheath for insulation, with 2-cm of probe tip projecting out. A beagle liver was punctured by the device, and electric current was applied at 30-W with the electrosurgical knife touching the non-insulated device base. The discolored area of cut surface along the device was evaluated in 5 application-time groups (5,10,15,20, or 25 seconds). An ex vivo experiment was performed to determine an ablation algorithm with an appropriate application time by comparison with radiofrequency ablation (RFA) results. Thereafter, an in vivo experiment was performed to verify the algorithm's feasibility. In the ex vivo model, the cut surface demonstrated different amounts of discolored area according to the application time. The total discolored area in the 20-seconds group was similar to that by RFA. In the in vivo model, the liver did not bleed, the total discolored area was similar to that ex vivo, and coagulation necrosis was confirmed by photomicrograph. Needle tract ablation can be performed using the experimental device and electrosurgical device.
KW - animal
KW - cryoablation
KW - electrosurgical device
KW - liver
KW - needle tract ablation
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M3 - Article
C2 - 33649608
AN - SCOPUS:85102224153
SN - 0386-300X
VL - 75
SP - 9
EP - 14
JO - Acta medica Okayama
JF - Acta medica Okayama
IS - 1
ER -