2004
DOI: 10.1364/ao.43.002251
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Laser ablation of dental tissues with picosecond pulses of 106-μm radiation transmitted through a hollow-core photonic-crystal fiber

Abstract: Sequences of picosecond pulses of 1.06-microm Nd:YAG laser radiation with a total energy of approximately 2 mJ are transmitted through a hollow-core photonic-crystal fiber with a core diameter of approximately 14 microm and are focused onto a tooth's surface in vitro to ablate dental tissue. The hollow-core photonic-crystal fiber is shown to support the single-fundamental-mode regime for 1.06-microm laser radiation, serving as a spatial filter and allowing the laser beam's quality to be substantially improved.… Show more

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Cited by 60 publications
(19 citation statements)
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“…£ÑÎÐÑÄÑAEÐÞÇ ÔÕÓÖÍ-ÕÖÓÞ àÕÑÅÑ ÍÎÂÔÔ ÒÓÇAEÔÕÂÄÎâáÕ ÑÔÑÃÞÌ ËÐÕÇÓÇÔ AEÎâ ÓÇÛÇÐËâ ÊÂAEÂÚË ÒÇÓÇAEÂÚË ÑÒÕËÚÇÔÍËØ ÔËÅÐÂÎÑÄ Ð ÃÑÎß-ÛËÇ ÓÂÔÔÕÑâÐËâ Ä ÖÔÎÑÄËâØ ÒÓÇAEÇÎßÐÑ ÐËÊÍËØ ÒÑÕÇÓß Ë ÒÓÇAEÇÎßÐÑ ÏÂÎÑÌ ÑÒÕËÚÇÔÍÑÌ ÐÇÎËÐÇÌÐÑÔÕË. ±ÑÎÞÇ ®³-ÔÄÇÕÑÄÑAEÞ ËÔÒÑÎßÊÖáÕÔâ AEÎâ ÕÓÂÐÔÒÑÓÕËÓÑÄÍË ÏÑÜÐÞØ ÎÂÊÇÓÐÞØ ËÏÒÖÎßÔÑÄ Ä ÎÂÊÇÓÐÞØ ÔËÔÕÇÏÂØ ÃËÑÏÇAEËÙËÐ-ÔÍÑÅÑ ÐÂÊÐÂÚÇÐËâ [45] Ë ÔËÔÕÇÏÂØ AEÎâ ÎÂÊÇÓÐÑÌ ÑÃÓÂÃÑÕÍË ÏÂÕÇÓËÂÎÑÄ [46].°AEÐÑÄÓÇÏÇÐÐÑ ÓÂÊÓÂÃÂÕÞÄÂáÕÔâ ÒÑÎÞÇ ®³-ÔÄÇÕÑÄÑAEÞ, ÑÃÇÔÒÇÚËÄÂáÜËÇ ÒÇÓÇAEÂÚÖ ÏÇÅÂ-Ë ÅËÅÂ-ÄÂÕÕÐÞØ ÔÄÇÕÑÄÞØ ËÏÒÖÎßÔÑÄ Ä ÔÑÎËÕÑÐÐÑÏ ÓÇÉËÏÇ [47 ë 50],  ÕÂÍÉÇ ÒÑÎÞÇ ÄÑÎÐÑÄÑAEÐÞÇ ÔÕÓÖÍÕÖÓÞ AEÎâ à××ÇÍ-ÕËÄÐÑÅÑ ÐÇÎËÐÇÌÐÑ-ÑÒÕËÚÇÔÍÑÅÑ ÔÒÇÍÕÓÂÎßÐÑÅÑ Ë ÄÓÇÏÇÐ-Ðo ÅÑ ÒÓÇÑÃÓÂÊÑÄÂÐËâ ÔÄÇÓØÍÑÓÑÕÍËØ ËÏÒÖÎßÔÑÄ ÄÞÔÑÍÑÌ ÒËÍÑÄÑÌ ÏÑÜÐÑÔÕË [51,52].…”
Section: ±ñîþç ïëíóñôõóöíõöóëóñäâððþç ôäçõñäñAeþ ä ñòõëúçôíñì ×ëêëíçunclassified
“…£ÑÎÐÑÄÑAEÐÞÇ ÔÕÓÖÍ-ÕÖÓÞ àÕÑÅÑ ÍÎÂÔÔ ÒÓÇAEÔÕÂÄÎâáÕ ÑÔÑÃÞÌ ËÐÕÇÓÇÔ AEÎâ ÓÇÛÇÐËâ ÊÂAEÂÚË ÒÇÓÇAEÂÚË ÑÒÕËÚÇÔÍËØ ÔËÅÐÂÎÑÄ Ð ÃÑÎß-ÛËÇ ÓÂÔÔÕÑâÐËâ Ä ÖÔÎÑÄËâØ ÒÓÇAEÇÎßÐÑ ÐËÊÍËØ ÒÑÕÇÓß Ë ÒÓÇAEÇÎßÐÑ ÏÂÎÑÌ ÑÒÕËÚÇÔÍÑÌ ÐÇÎËÐÇÌÐÑÔÕË. ±ÑÎÞÇ ®³-ÔÄÇÕÑÄÑAEÞ ËÔÒÑÎßÊÖáÕÔâ AEÎâ ÕÓÂÐÔÒÑÓÕËÓÑÄÍË ÏÑÜÐÞØ ÎÂÊÇÓÐÞØ ËÏÒÖÎßÔÑÄ Ä ÎÂÊÇÓÐÞØ ÔËÔÕÇÏÂØ ÃËÑÏÇAEËÙËÐ-ÔÍÑÅÑ ÐÂÊÐÂÚÇÐËâ [45] Ë ÔËÔÕÇÏÂØ AEÎâ ÎÂÊÇÓÐÑÌ ÑÃÓÂÃÑÕÍË ÏÂÕÇÓËÂÎÑÄ [46].°AEÐÑÄÓÇÏÇÐÐÑ ÓÂÊÓÂÃÂÕÞÄÂáÕÔâ ÒÑÎÞÇ ®³-ÔÄÇÕÑÄÑAEÞ, ÑÃÇÔÒÇÚËÄÂáÜËÇ ÒÇÓÇAEÂÚÖ ÏÇÅÂ-Ë ÅËÅÂ-ÄÂÕÕÐÞØ ÔÄÇÕÑÄÞØ ËÏÒÖÎßÔÑÄ Ä ÔÑÎËÕÑÐÐÑÏ ÓÇÉËÏÇ [47 ë 50],  ÕÂÍÉÇ ÒÑÎÞÇ ÄÑÎÐÑÄÑAEÐÞÇ ÔÕÓÖÍÕÖÓÞ AEÎâ à××ÇÍ-ÕËÄÐÑÅÑ ÐÇÎËÐÇÌÐÑ-ÑÒÕËÚÇÔÍÑÅÑ ÔÒÇÍÕÓÂÎßÐÑÅÑ Ë ÄÓÇÏÇÐ-Ðo ÅÑ ÒÓÇÑÃÓÂÊÑÄÂÐËâ ÔÄÇÓØÍÑÓÑÕÍËØ ËÏÒÖÎßÔÑÄ ÄÞÔÑÍÑÌ ÒËÍÑÄÑÌ ÏÑÜÐÑÔÕË [51,52].…”
Section: ±ñîþç ïëíóñôõóöíõöóëóñäâððþç ôäçõñäñAeþ ä ñòõëúçôíñì ×ëêëíçunclassified
“…An important trend in laser ablation applications involves attempts to create a new polymer with properties specially designed for a desired technique [67].There is a high amount of research interest in the laser ablation of polymers in specific for the development of micro lens [68][69][70]. As bio engineering application laser ablation has been used to ablate the dental Tissues [71].…”
Section: E Laser Ablationmentioning
confidence: 99%
“…PCF have been shown to allow transmission of near infrared (NIR) pulse trains where the laser radiation fluence coupled into the core of the fiber exceeded the breakdown threshold of fused silica by nearly an order of magnitude (16). This has been exploited in the PCF-guided laser ablation of dental plaques (17) and may also offer promise for new applications in biomedical imaging using multi-photon fluorescence or optical coherence tomography.…”
Section: Fiber-optic Probes For Rs In Turbid Media or Near Interphasesmentioning
confidence: 99%