Related Experiment Video
Updated: Aug 9, 2026

Creating Radio-cephalic Arteriovenous Fistula in the Forearm with a Modified No-Touch Technique
Published on: April 1, 2022
Endoscopic radial artery harvest for coronary artery bypass surgery
Kuan-Ming Chiu1, Shao-Jung Li, Jer-Shen Chen
1Department of Cardiovascular Surgery, Far-Eastern Memorial Hospital, Taipei, Taiwan.
Insights
Endoscopic radial artery harvesting for coronary artery bypass grafting (CABG) is a minimally invasive technique. This method yields excellent results with minimal harvest site complications, offering a patient-accepted alternative to open procedures.
Area of Science:
- Cardiovascular Surgery
- Minimally Invasive Techniques
- Vascular Grafting
Background:
- Coronary artery bypass grafting (CABG) is a gold standard for significant coronary artery disease.
- Radial artery is a common arterial conduit for CABG.
- Open radial artery harvesting leads to large surgical wounds, reducing patient acceptance, especially in subtropical regions.
Purpose of the Study:
- To investigate the efficacy and outcomes of endoscopic radial artery harvesting for CABG.
- To evaluate the surgical results at the harvest site using a minimally invasive approach.
Main Methods:
- Implementation of an endoscopic radial artery harvest program.
- 122 patients underwent the procedure over 12 months.
- Preoperative Allen's test and modified palmar arch perfusion test were used for patient selection.
Main Results:
- Successful endoscopic harvest of 122 radial arteries with a mean length of 15.7 cm.
- No significant arterial injury was observed.
- Two arteries were unsuitable due to atherosclerotic plaques; all others were used for CABG.
Conclusions:
- Endoscopic radial artery harvest is technically demanding but yields excellent results.
- This minimally invasive technique provides suitable conduits for CABG with improved patient acceptance.
Background/Purpose:
Coronary artery bypass grafting (CABG) provides better long-term patency than percutaneous intervention in patients with significant coronary artery disease. The radial artery is the second most common arterial conduit used for CABG in Western countries. However, radial artery harvesting necessitates a large surgical wound and has gained few patients' acceptance in subtropical areas. This study investigated the use of the minimally invasive approach of endoscopic radial artery harvest for CABG, and the surgical results at the harvest site.
Methods:
An endoscopic harvest program for radial arteries was implemented in this hospital in September 2003. During the first 12 months of the program until September 2004, 122 patients underwent the procedure. Preoperative evaluation included Allen's test and the modified palmar arch perfusion test. The age of patients ranged from 32 to 88 years old. Patients were excluded from participation if they had undergone recent transradial catheterization, had end-stage renal disease or documented peripheral artery occlusive disease. The VasoView system was utilized for the procedure. Details of the surgical techniques used were recorded and analyzed.
Results:
Using the endoscopic technique, 122 radial arteries were harvested successfully. The mean resting length of the harvested radial artery was 15.7 cm. No obvious arterial injury was visually confirmed. All radial arteries were used for CABG, except for two which were noted to have atherosclerotic plaques causing stenoses. Forty-seven patients presented with mild numbness over the dorsum of the thumb base, which improved significantly during the 3-month follow-up. No arterial insufficiency in the forearms or hands was noted.
Conclusion:
Endoscopic harvest of the radial artery is technically demanding, but excellent results can be achieved. The endoscopic approach can provide suitable conduits in a less invasive way than the open harvest technique.
Related Concept Videos
Assessment of radial pulse
The radial pulse, located at the wrist, is often the preferred site for assessing peripheral pulse because of its accessibility and dependability. The process of determining the radial pulse involves several steps:
Assessment of apical radial pulse
The A-R pulse assessment involves simultaneous evaluation of the apical and radial pulses. When the apical and radial pulse rates vary, this assessment helps identify a pulse deficit.
Pre-Procedural Preparation
Arteries of the Upper Limbs

