Precision machining of pig intestine using ultrafast laser pulses

Endoluminal surgery for the treatment of early stage colorectal cancer is typically based on electrocautery tools which imply restrictions on precision and the risk of harm through collateral thermal damage to the healthy tissue. As a potential alternative to mitigate these drawbacks we present laser machining of pig intestine by means of picosecond laser pulses. The high intensities of an ultrafast laser enable nonlinear absorption processes and a predominantly nonthermal ablation regime. Laser ablation results of square cavities with comparable thickness to early stage colorectal cancers are presented for a wavelength of 1030 nm using an industrial picosecond laser. The corresponding histology sections exhibit only minimal collateral damage to the surrounding tissue. The depth of the ablation can be controlled precisely by means of the pulse energy. Overall, the application of ultrafast lasers to ablate pig intestine enables significantly improved precision and reduced thermal damage to the surrounding tissue compared to conventional techniques.

[1]  A. Vogel,et al.  Mechanisms of pulsed laser ablation of biological tissues. , 2003, Chemical reviews.

[2]  Louis J. Esposito,et al.  Lasers in Ophthalmology—Basic,Diagnostic and Surgical Aspects: A Review , 2004 .

[3]  E. Tanzi,et al.  Lasers in dermatology: four decades of progress. , 2003, Journal of the American Academy of Dermatology.

[4]  James B. Kobler,et al.  Clinical Ultrafast Laser Surgery: Recent Advances and Future Directions , 2014, IEEE Journal of Selected Topics in Quantum Electronics.

[5]  M R Treat,et al.  Laser tissue welding: A comprehensive review of current and future , 1995, Lasers in surgery and medicine.

[6]  Lou Reinisch,et al.  Clinical applications of lasers in otolaryngology—head and neck surgery , 1994, Lasers in surgery and medicine.