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"[Penelitian ini bertujuan untuk menganalisa pengaruh waktu penyinaran resin komposit nanofil menggunakan Light Curing Unit (LCU) LED protototipe terhadap temperatur atap pulpa gigi. Spesimen berupa 30 gigi premolar 1 rahang atas yang dibagi menjadi 3 kelompok dengan jumlah spesimen 10 untuk setiap kelompok. Gigi kemudian direstorasi resin komposit nanofil dan disinari menggunakan LCU LED prototipe selama 10 atau 20 detik dan komersial selama 20 detik. Pengukuran temperatur dilakukan sebelum dan setelah penyinaran resin komposit dan temperatur atap pulpa yang dihasilkan oleh LCU LED prototipe selama 10 atau 20 detik lebih rendah secara signifikan dari yang dihasilkan oleh LCU LED komersial., The aim of the present research was to analyze the effect of curing duration of nanofilled composite resin by the prototype curing light on pulp roof temperature. Thirty extracted human maxillary premolars were divided into 3 groups, 10 specimens for each group. Each teeth restored using nanofilled composite resin and were cured by the prototype LED curing light in 10 or 20 seconds or the commercially available in 20 seconds as a comparison. Pulp roof temperature was measured before and after the curing process. As a result, the temperature induced by the prototype curing light in both 10 or 20 seconds were significantly lower compared to the commercially available.]"
[Fakultas Kedokteran Gigi Universitas Indonesia, ], 2015
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UI - Skripsi Membership  Universitas Indonesia Library
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Venita Tanusuwito
"Dentists are often taught that 'overcure' is better than 'undercure'. Undercure is said to cause serious problem with resin composite fillings. Actually it does not always happen this way. Overcure also has several bad impacts that have never been thought before by practitioners. Researchers claim that curing time informed by resin composite manufacturers is not always correct. Filling material is not the only factor that determines the correct curing time for each filling. Light cure unit performance also plays a major role."
Journal of Dentistry Indonesia, 2003
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Artikel Jurnal  Universitas Indonesia Library
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Sarah Azkianisa
"ABSTRAK
Latar Belakang: LCU prototip dengan metode PWM-kombinasi dengan iradiansi sinar 800, 900, dan 1.000 mW/cm2 telah dibuat untuk mencegah kenaikan suhu pulpa akibat polimerisasi.
Tujuan: Menganalisis kekerasan komposit resin yang dipolimerisasi dengan LCU berbeda iradiansi sinar.
Metode: Spesimen merupakan komposit resin yang dipolimerisasi dengan LCU prototip (PWMkombinasi) beriradiansi sinar 800, 900, atau 1.000 mW/cm2 atau dengan LCU pembanding (900 mW/cm2). Kekerasan komposit resin diukur menggunakan sistem Knoop.
Hasil: Kekerasan komposit resin antar kelompok berbeda bermakna (p<0,05) kecuali yang diberi iradiansi sinar 900 mW/cm2 dari LCU
prototip dan LCU pembanding.
Kesimpulan: Kekerasan komposit resin dipengaruhi oleh iradiansi sinar dari LCU prototip. LCU prototip atau LCU pembanding dengan iradiansi 900 mW/cm2 menghasilkan kekerasan komposit resin yang sama.

ABSTRACT
Background: Prototype light curing unit (LCU) with PWM-combined light
irradiance of 800, 900, and 1.000 mW/cm2 was made to prevent the pulp temperature rise due to the polymerization. Objective: To analyze the hardness of resin composites polymerized by LCU different light irradiation.
Methods: The specimen is resin composites polymerized by prototype LCU light irradiance 800, 900, or 1.000 mW/cm2 or with comparison LCU (900 mW/cm2). Hardness of resin composite test performed by Knoop system.
Result: There is significant differences (p<0.05) among the groups except those between using the prototype LCU and comparison LCU that have irradiance of 900 mW/cm2.
Conclusions: The hardness of resin composite was influenced by the irradiance of prototype LCU. The hardness of resin composite from prototype LCU is equal to those from comparison LCU irradiance of 900 mW/cm2."
Fakultas Kedokteran Gigi Universitas Indonesia, 2014
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UI - Skripsi Membership  Universitas Indonesia Library