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עמוד בית
Fri, 05.12.25

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February 2022
Yaron Rudnicki MD, Hagai Soback MD, and Mahajna Ahmad MD

Background: Achieving laparoscopic competency is challenging. Common laparoscopic simulators usually fall short in achieving true simulation.

Objective: To present a live porcine model laparoscopic skills laboratory for training general surgery residents.

Methods: An in vivo porcine laparoscopic model course was developed to simulate seven different laparoscopic procedures and seven laparoscopic skills for trainees under the tutelage of laparoscopic specialists.

Results: A total of 98 surgical trainees from 19 training programs underwent a full-day course from September 2017 to July 2020. Each program consisted of four trainees and two faculty members. In total, 175 laparoscopic procedures were performed. Trainees reported that the course improved their ability to perform in the operating room.

Conclusions: Using a laparoscopic porcine model in a guided didactic course performing complete common laparoscopic procedures in simulated operating room surroundings was beneficial for surgical trainees. The porcine model mimics human abdominal anatomy and allows trainees to increase their comfort level in performing such procedures.

May 2005
M. Mekel, A. Mahajna, S. Ish-Shalom, M. Barak, E. Segal, A. Abu Salih, B. Bishara, Z. Shen-Or and M.M. Krausz
 Background: Minimal invasive surgery for parathyroidectomy has been introduced in the treatment of hyperparathyroidism.

Objective: To evaluate the contribution of the sestamibi-SPECT (MIBI) localization, cervical ultrasonography, and intraoperative rapid turbo intact parathormone assay in minimal invasive parathyroidectomy.

Methods: Between August 1999 and March 2004, 146 consecutive hyperthyroid patients were treated using the MIBI and ultrasound for preoperative localization and iPTH[1] measurements for intraoperative assessment.

Results: Parathyroid adenoma was detected in 106 patients, primary hyperplasia in 16, secondary hyperplasia in 16, tertiary hyperplasia in 5 and parathyroid carcinoma in 1 patient. Minimal invasive exploration of the neck was performed in 84 of the 106 patients (79.2%) with an adenoma, and in 17 of them this procedure was performed under local cervical block anesthesia in awake patients. Adenoma was correctly diagnosed by MIBI scan in 74% of the patients, and by ultrasound in 61%. The addition of ultrasonography to MIBI increased the accuracy of adenoma detection to 83%. In 2 of the 146 patients (1.4%) iPTH could not be significantly reduced during the initial surgical procedure. Minimal invasive surgery with minimal morbidity, and avoiding bilateral neck exploration, was achieved in 79.2% of patients with a primary solitary adenoma.


 





[1] iPTH = intact parathormone


September 2004
Z. Fireman, Y. Kopelman, L. Fish, A. Sternberg, E. Scapa and E. Mahajna

Background: During ingestible capsule endoscopy, video images are recorded throughout the device's natural propulsion through the digestive system. Shortening the transit time of the wireless video capsule through the stomach and small bowel could reduce the time needed to read and analyze the resultant images, utilize more effectively the short life of the capsule battery (7 ± 1 hours) and make it possible to image the entire small bowel.

Objective: To measure gastric and small bowel transit times, with and without preparation, using capsule endoscopy.

Methods: Capsule transit times through the stomach, small bowel and colon were evaluated by analysis of the videos generated during the capsule's passage. The study group included 62 patients with small and large bowel pathologies (e.g., iron deficiency anemia, Crohn's disease). The patients were divided into three groups: prepared with polyethylene glycol (Group A, n = 9), prepared with sodium phosphate (Group B, n = 13), and with no preparation (Group C, n = 40).

Results: The gastric emptying times were 20.4 ± 15.2 minutes in group A, 55.7 ± 45.1 in group B, and 48.3 ± 28.7 in group C (P = 0.01). The capsule produced views of the cecum in only 49 of the 62 patients. The mean small bowel transit time for these 49 patients was 238.8 ± 82.1 minutes, making the mean times for the groups (A,B,C) 148.9 ± 32.6, 289.4 ± 77.2 and 249.3 ± 73.9 minutes respectively (P = 0.0001).

Conclusion: Compared to both SP[1] and no preparation, preparation of the colon with PEG[2] significantly shortened the transit time of the capsule through the stomach and small bowel.







[1] SP = sodium phosphate

[2] PEG = polyethylene glycol


August 2003
A. Mahajna, D.D. Hershko, S. Israelit, A. Abu-Salih, Z. Keidar and M.M. Krausz

Background: The histologic status of axillary lymph nodes is one of the most important prognostic factors in breast cancer, influencing the management of these patients. Axillary lymph node dissection was traditionally performed in all patients to obtain this information but this procedure carries a considerable rate of complications. Recently, sentinel lymph node biopsy has emerged as an accurate and minimally invasive tool for predicting the axillary nodal status and has become the standard of care in selected patients with breast cancer.

Objective: To examine the accuracy of SLN[1] biopsies performed by surgical residents during surgical resident training.

Methods: This prospective, randomized controlled study included 100 consecutive patients with clinically early breast cancer (T1-T2, N0, M0) study. Lymphatic mapping was performed using radiotracers, blue dye, or both. Formal axillary lymph node dissection completed the operations in all patients. All operations were performed by surgical residents under the supervision of senior surgeons.

Results: The overall rate of identification of sentinel lymph nodes was 92%. The accuracy of SLN biopsy in reflecting the axillary nodal status was 96% with a false negative rate of 5.7%.

Conclusions: Sentinel lymph node biopsy is an accurate method for the evaluation and staging of regional lymph nodes in breast cancer patients. A dedicated instruction program for surgical residents may increase the standard of care and lead to highly trained surgeons in the management of early breast cancer.

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[1] SLN = sentinel lymph node

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