Zobrazeno 1 - 10
of 19
pro vyhledávání: '"Ilan, Gabay"'
Autor:
Ilan Gabay, Kaushik Subramanian, Liam Andrus, Andrew DuPlissis, Murat Yildirim, Adela Ben-Yakar
Publikováno v:
Journal of Biomedical Optics. 27
The creation of subepithelial voids within scarred vocal folds via ultrafast laser ablation may help in localization of injectable biomaterials toward a clinically viable therapy for vocal fold scarring.We aim to prove that subepithelial voids can be
Autor:
Guy-Mael de Naurois, Abraham Katzir, Federico Capasso, Marco Piccardo, Ilan Gabay, Paul Chevalier
Publikováno v:
Sensors and Actuators B: Chemical. 262:195-199
The ability of detecting harmful chemicals is an important safety requirement for drinking water systems. An apparatus for in-water chemical sensing based on the absorption of evanescent waves generated by a quantum cascade laser array propagating in
Autor:
Ilan Gabay, Kaushik Subramanian, Tomasz S. Tkaczyk, Adela Ben-Yakar, Michal E. Pawlowski, Ye Wang, Adam Shadfan
Publikováno v:
SPIE Proceedings.
We present the development of a 5 mm, piezo-actuated, ultrafast laser scalpel for microsurgery with a capability to deliver energies in excess of 1 μJ per pulse. Having previously established that the maximum energy deliverable was limited by claddi
Autor:
Ilana Nisky, Mickey Harlev, Doron Ofer, Svetlana Basov, Yair Dankner, David Varssano, Abraham Katzir, Irina S. Barequet, Max Platkov, Marcel Rattunde, Mordechai Rosner, Joachim Wagner, Ilan Gabay
Publikováno v:
Journal of Biomedical Optics
Suturing of corneal incisions requires significant skill. We demonstrate a noncontact method that will simplify the bonding process. 5-mm-long penetrating vertical and slanted incisions were made in corneas of eyes, extracted from dead piglets. A fib
Autor:
Ilan Gabay, Kaushik Subramanian, Adela Ben-Yakar, Murat Yildirim, Valery V. Tuchin, Chris Martin
Publikováno v:
Proceedings of SPIE. 2016. Vol. 9707 : Dynamics and fluctuations in biomedical photonics XIII. P. 97070X-1-97070X-8
Background: Deep tissue ablation is the next challenge in ultrafast laser microsurgery. By focusing ultrafast pulses below the tissue surface one can create an ablation void confined to the focal volume. However, as the ablation depth increases in a
Autor:
Abraham Katzir, David Varssano, Joachim Wagner, Mordechai Rosner, Mickey Harlev, Uri Rossman, Svetlana Basov, Ilan Gabay, Max Platkov, Irina S. Barequet, Marcel Rattunde
Publikováno v:
SPIE Proceedings.
In phacoemulsification-based cataract surgery, a corneal incision is made and is then closed by hydration of the wound lips, or by suturing. We developed a system for sealing such an incision by soldering with a semiconductor disk laser (λ=1.9μm),
Autor:
Ilan Gabay, Ye Wang, Michal E. Pawlowski, Kaushik Subramanian, Adela Ben-Yakar, Adam Shadfan, Tomasz S. Tkaczyk
A miniature laser ablation probe relying on an optical fiber to deliver light requires a high coupling efficiency objective with sufficient magnification in order to provide adequate power and field for surgery. A diffraction-limited optical design i
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::a6a34a7eb9d648aa324bb7527035a656
https://europepmc.org/articles/PMC5450972/
https://europepmc.org/articles/PMC5450972/
Autor:
Tomasz S. Tkaczyk, Michal E. Pawlowski, Kaushik Subramanian, Ilan Gabay, Adam Shadfan, Adela Ben-Yakar, Ye Wang
Publikováno v:
Conference on Lasers and Electro-Optics.
We present the development of a 5 mm, piezo-actuated, ultrafast laser scalpel that delivers upwards of 1 μJ at the target surface. Experiments show fast and effective surface ablation of tissue tens of microns deep.
Publikováno v:
Lasers in Surgery and Medicine. 43:907-913
Background and Objective Laser tissue soldering is a method for bonding of incisions in tissues. A biological solder is spread over the cut, laser radiation heats the solder and the underlying cut edges and the incision is bonded. This method offers
Publikováno v:
Otolaryngology–Head and Neck Surgery. 144:872-876
Laser soldering of a thick multilayer organ using conventional CO(2) lasers is ineffective. The purpose of this work was to develop a method for bonding the multilayer tissue of the upper aerodigestive tracts (UADT) without the need of sutures or sta