Alfred Vogel, and Vasan Venugopalan,
Pulsed Laser Ablation of Soft Biological Tissues, in Optical-Thermal Response of Laser-Irradiated Tissue , 2011, pp. 551-615.
Bibtex: BibTeX
@inbook{Vogel-2011,
   author = {Vogel, Alfred and Venugopalan, Vasan},
   title = {Pulsed Laser Ablation of Soft Biological Tissues},
   booktitle = {Optical-Thermal Response of Laser-Irradiated Tissue},
   pages = {551-615},
   year = { 2011}
}
A Vogel, and V. Venugopalan,
Pulsed laser ablation of tissue., .... 2 Springer, Heidelberg, New York, 2011.
Bibtex: BibTeX
@book{Vogel-2011-2,
   author = {Vogel, A and Venugopalan, V.},
   title = {Pulsed laser ablation of tissue},
   publisher = {Springer, Heidelberg, New York},
   edition = {2},
   year = { 2011}
}
Alfred Vogel, Ingo Apitz, and Vasan Venugopalan,
Phase transitions, material ejection, and plume dynamics in pulsed laser ablation of soft biological tissues, in Oscillations, Waves and Interactions, T. Kurz, U. Parlitz, and U. Kaatze, eds.(Universitätsverlag Göttingen, Göttingen, 2007) , Kurtz, T., Parlitz, U. and Kaatze, U., Eds. Göttingen: Universitätsverlag, 2007, pp. 217-258.
Bibtex: BibTeX
@inbook{Vogel2007-1,
   author = {Vogel, Alfred and Apitz, Ingo and Venugopalan, Vasan},
   title = {Phase transitions, material ejection, and plume dynamics in pulsed laser ablation of soft biological tissues},
   booktitle = {Oscillations, Waves and Interactions, T. Kurz, U. Parlitz, and U. Kaatze, eds.(Universitätsverlag Göttingen, Göttingen, 2007)},
   pages = {217-258},
   year = { 2007}
}
K.R. Rau, Alfred Vogel, and V. Venugopalan,
Investigation of laser-induced cell lysis using time-resolved imaging, Appl Phys Lett , vol. 84, no. 15, pp. 2940-2942, 2004.
Bibtex: BibTeX
@article{Rau,
   author = {Rau, K.R. and Vogel, A. and Venugopalan, V.},
   title = {Investigation of laser-induced cell lysis using time-resolved imaging},
   journal = {Appl Phys Lett},
   volume = {84},
   number = {15},
   pages = {2940-2942},
   year = {2004}
}
Alfred Vogel, and V. Venugopalan,
Additions and Corrections, Chemical Reviews , vol. 103, no. 5, pp. 2079, 2003.
Bibtex: BibTeX
@article{Vogel,
   author = {Vogel, A. and Venugopalan, V.},
   title = {Additions and Corrections},
   journal = {Chemical Reviews},
   volume = {103},
   number = {5},
   pages = {2079},
   year = {2003}
}
Alfred Vogel, and V. Venugopalan,
Mechanisms of Pulsed Laser Ablation of Biological Tissues, Chem. Rev. , vol. 103, pp. 577-644, 2003.
Bibtex: BibTeX
@article{Vogel,
   author = {Vogel, A. and Venugopalan, V.},
   title = {Mechanisms of Pulsed Laser Ablation of Biological Tissues},
   journal = {Chem. Rev.},
   volume = {103},
   pages = {577-644},
   year = {2003}
}
Alfred Vogel, and Vasan Venugopalan,
Kinetics of phase transitions in pulsed IR laser ablation of biological tissues, Steven, L. Jacques and Donald, D. Duncan and Sean, J. Kirkpatrick and Andres, Kriete, Eds. SPIE, 2003. pp. 66-74.
Bibtex: BibTeX
@inproceedings{Vogel-2003,
   author = {Vogel, Alfred and Venugopalan, Vasan},
   title = {Kinetics of phase transitions in pulsed IR laser ablation of biological tissues},
   editor = {Steven, L. Jacques and Donald, D. Duncan and Sean, J. Kirkpatrick and Andres, Kriete},
   publisher = {SPIE},
   volume = {4961},
   pages = {66-74},
year = { 2003}
}
V. Venugopalan, A. Guerra, K. Nahen, and Alfred Vogel,
Role of Laser-Induced Plasma Formation in Pulsed Cellular Microsurgery and Micromanipulation, Phys Rev Let , vol. 88, no. 7, pp. 078103 (1-4), 2002.
Bibtex: BibTeX
@article{Venogupalan,
   author = {Venugopalan, V. and Guerra, A. and Nahen, K. and Vogel, A.},
   title = {Role of Laser-Induced Plasma Formation in Pulsed Cellular Microsurgery and Micromanipulation},
   journal = {Phys Rev Let},
   volume = {88},
   number = {7},
   pages = {078103 (1-4)},
   year = {2002}
}
Arnold Guerra III, Vasan Venugopalan, Kester Nahen, and Alfred Vogel,
Experimental investigation of optical breakdown using nanosecond 532-nm and 1064-nm laser pulses delivered at high numerical aperture, in BiOS 2001 The International Symposium on Biomedical Optics , International Society for Optics and Photonics, 2001. pp. 74-82.
Datei: 12.426778.short
Bibtex: BibTeX
@inproceedings{Guerra2001,
   author = {Guerra III, Arnold and Venugopalan, Vasan and Nahen, Kester and Vogel, Alfred},
   title = {Experimental investigation of optical breakdown using nanosecond 532-nm and 1064-nm laser pulses delivered at high numerical aperture},
   booktitle = {BiOS 2001 The International Symposium on Biomedical Optics},
   publisher = {International Society for Optics and Photonics},
   pages = {74-82},
   type = {Conference Proceedings},
year = { 2001},
url = { https://www.spiedigitallibrary.org/conference-proceedings-of-spie/4260/0000/Experimental-investigation-of-optical-breakdown-using-nanosecond-532-nm-and/10.1117/12.426778.short}
}
Q. Ren, V. Venugopalan, K. Schomacker, T. F. Deutsch, T. J. Flotte, and C. A. Puliafito,
Mid-infrared laser ablation of the cornea: a comparative study, Lasers Surg Med , vol. 12, no. 3, pp. 274-81, 1992.
Datei: query.fcgi
Bibtex: BibTeX
@article{Ren1992,
   author = {Ren, Q. and Venugopalan, V. and Schomacker, K. and Deutsch, T. F. and Flotte, T. J. and Puliafito, C. A. and Birngruber, R.},
   title = {Mid-infrared laser ablation of the cornea: a comparative study},
   journal = {Lasers Surg Med},
   volume = {12},
   number = {3},
   pages = {274-81},
   note = {0196-8092 (Print)
Comparative Study
Journal Article},
   abstract = {The ablation thresholds and patterns of collateral damage in cornea produced by Er:YAG (2.94 microns) and Er:YSGG (2.79 microns) lasers were measured. Two different pulse durations, 200 microseconds (normal spiking mode) and 100 ns (Q-switched mode), were used at both wavelengths. In the normal spiking mode, damage zones of 16 +/- 2 microns and 39 +/- 7 microns and ablation thresholds of 250 +/- 20 mJ/cm2 and 420 +/- 35 mJ/cm2 were measured at 2.94 microns and 2.79 microns, respectively. In the Q-switched mode, damage zones of 4 +/- 2 microns and ablation thresholds of 150 +/- 10 mJ/cm2 were found irrespective of the laser used. The similarity between the results using the Er:YAG and Er:YSGG lasers in the Q-switched mode suggest that either laser can be used with equal effectiveness for corneal trephination.},
   keywords = {Animals
Cattle
Cornea/pathology/*surgery
*Light Coagulation/*methods},
   url = {http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=PubMed&dopt=Citation&list_uids=1508021},
   year = {1992},
   type = {Journal Article}
}