effect of temp on ncf - edgeendo ncf from 3˚c to 22˚c, and a significant decrease in ncf from...

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1 Abstract Introduction: The purpose of this study was to examine the effect of different temperatures (3˚C, 22˚C, 37˚C, and 60˚C) on cyclic fatigue of three different nickel- titanium rotary files. Methods: Three groups of nickel-titanium rotary files (EdgeFile [EdgeEndo, Albuquerque, NM], Vortex Blue [Dentsply Tulsa Dental Specialties, Tulsa, OK], and ESX [Brasseler USA, Savannah, GA]) of size #25 with .04 taper and 25 mm length were tested in a metal block that simulated a canal curvature of 60˚ and 5 mm radius of curvature. The block was submerged in a controlled-temperature water bath filled with water at 3˚C ± 0.5˚C, 22˚C ± 0.5˚C, 37˚C ± 0.5˚C, and 60˚C ± 0.5˚C. Thirty files from each experimental group were tested in the block at each of the four temperature cycles, and rotated at 500 rpm. Time to file fracture was recorded, and converted to number of cycles to fracture (NCF). Statistical analysis was completed using a one-way ANOVA with post-hoc Tukey test. Results: Vortex Blue files showed a significant decrease in NCF as temperature increased from 3˚C to 60˚C. ESX files showed a significant decrease in NCF as temperature increased from 3˚C to 37˚C. EdgeFile files showed a significant increase in NCF from 3˚C to 22˚C, and a significant decrease in NCF from 22˚C to 37˚C. For each temperature tested, EdgeFile files showed higher NCF than Vortex Blue files, and Vortex Blue files showed higher NCF than ESX files. Conclusions: In this in vitro study, temperature was found to have a significant effect on the cyclic fatigue of the NiTi rotary files tested. At each tested temperature, NCF of EdgeFile files was higher than NCF of Vortex Blue files, which was higher than NCF of ESX files. Future cyclic fatigue studies should consider being conducted at body temperature. Keywords: temperature, cyclic fatigue, nickel-titanium, files

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AbstractIntroduction:Thepurposeofthisstudywastoexaminetheeffectofdifferenttemperatures(3˚C,22˚C,37˚C,and60˚C)oncyclicfatigueofthreedifferentnickel-titaniumrotaryfiles.Methods:Threegroupsofnickel-titaniumrotaryfiles(EdgeFile[EdgeEndo,Albuquerque,NM],VortexBlue[DentsplyTulsaDentalSpecialties,Tulsa,OK],andESX[BrasselerUSA,Savannah,GA])ofsize#25with.04taperand25mmlengthweretestedinametalblockthatsimulatedacanalcurvatureof60˚and5mmradiusofcurvature.Theblockwassubmergedinacontrolled-temperaturewaterbathfilledwithwaterat3˚C±0.5˚C,22˚C±0.5˚C,37˚C±0.5˚C,and60˚C±0.5˚C.Thirtyfilesfromeachexperimentalgroupweretestedintheblockateachofthefourtemperaturecycles,androtatedat500rpm.Timetofilefracturewasrecorded,andconvertedtonumberofcyclestofracture(NCF).Statisticalanalysiswascompletedusingaone-wayANOVAwithpost-hocTukeytest.Results:VortexBluefilesshowedasignificantdecreaseinNCFastemperatureincreasedfrom3˚Cto60˚C.ESXfilesshowedasignificantdecreaseinNCFastemperatureincreasedfrom3˚Cto37˚C.EdgeFilefilesshowedasignificantincreaseinNCFfrom3˚Cto22˚C,andasignificantdecreaseinNCFfrom22˚Cto37˚C.Foreachtemperaturetested,EdgeFilefilesshowedhigherNCFthanVortexBluefiles,andVortexBluefilesshowedhigherNCFthanESXfiles.Conclusions:Inthisinvitrostudy,temperaturewasfoundtohaveasignificanteffectonthecyclicfatigueoftheNiTirotaryfilestested.Ateachtestedtemperature,NCFofEdgeFilefileswashigherthanNCFofVortexBluefiles,whichwashigherthanNCFofESXfiles.Futurecyclicfatiguestudiesshouldconsiderbeingconductedatbodytemperature.Keywords:temperature,cyclicfatigue,nickel-titanium,files

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Introduction Nickel-titanium(NiTi)endodonticrotaryfilespossesssuperelasticity,whichisofgreatbenefitduringinstrumentationofcurvedendodonticcanals(1).Theseinstrumentshaveanaustenitephaseathighertemperatures,anduponcoolingorapplyingstresses,cantransformintothemartensitephase.Thisphasetransitionallowsforgreaterflexibility.Thetransitionphasetemperaturesoffilescandifferdependingonthealloysandheattreatmentsusedforprocessing(1).

ApilotstudyconductedattheUniversityofDetroitMercyin2015showedEdgeFilefilestohavesignificantlygreatercyclestofracturecomparedtoVortexBlueandEndoSequencefilesinasimulated60˚curveinametalblockatroomtemperature.HeatedNaOCl(sodiumhypochlorite)irriganthasbeenshowntobeadvantageousfordisinfection(2,3).Theuseofheated1%NaOClsolutionat60˚Cwasfoundtohavesignificantlygreaterdissolutioncapacityofhumanpulptissuecomparedwith20˚Csolution(2).Additionally,heatedNaOClat45˚CshowedgreaterkillingofE.faecalisthanat20˚C(2).ClinicallythisheatingmaycausetheNiTifiletotransitiontowardsthestifferaustenitephase.ThiscanmakethefilemoresusceptibletofatiguecrackpropagationcomparedtoaNiTifilepredominantlyinthemartensitephase(4).Coolingcanallowforgreaterflexibilityofnickeltitanium.Nitinolstentswereshowntobemoreeasilymountedandremovedoncecooledwithice-waterat4˚C,duetoincreasedpliabilityofthestentoncecooled(5).OnestudyusedNiTiwiretocreaterotaryinstruments,andtestedthematthreedifferenttemperatures;ahighernumberofcyclestofracturewasseenat10˚Ccomparedto50˚C(6).AnotherstudytestedavarietyofrotaryNiTifilesavailableinthemarketat20˚Cand37˚C,andfoundadecreaseinthenumberofcyclestofractureat37˚Ccomparedto20˚C(7).

Theincreasedductilityofafileinitsmartensitephaseallowsittobehighlyelastic.Thisalsoimprovesdampingproperties,resistancetocrackgrowthduetofatigue,andahigherresistancetocyclicfatigue(4).TheuseofheatedorcooledirrigantsmayfavortheNiTiphasetransitionoftheinstrumenttowardsmoreausteniticormartensiticphase,respectively,whichcanaffectitscyclestofracture.

ThepurposeofthisstudywastoexaminetheeffectoftemperaturechangesonthecyclicfatigueofEdgeFile,VortexBlue,andESXrotaryNiTiinstruments,testedinametalblocksubmergedinawaterbath.MaterialsandMethods Onehundredtwentynickel-titaniumrotaryendodonticfileswereusedforeachofthethreeexperimentalfilegroups:EF(EdgeFilefiles;EdgeEndo,Albuquerque,NM),VB(VortexBluefiles;DentsplyTulsaDentalSpecialties,Tulsa,OK),andESX(ESXfiles;BrasselerUSA,Savannah,GA).Allfilesweresize#25with.04taperand25mmlength,andweresterilizedbeforeuse.Theentirelengthofeachfilewasplacedintoasimulatedcanalinametalblock,whichwassubmergedinawaterbath.Thefileswererotatedat500rpm(whichiswithintherecommendedrangeofrotationalspeedsinthedirectionsforuseofeachfilesystem)withtheuseofanendodonticmotor(TulsaE3motor).Themetalblockwasmadeoftemperedsteelwithamilledcanalthatsimulateda60˚canalcurvatureand5mmradiusofcurvature,andawidthof1.5mm.Adigitalthermometerwasusedtomeasurethe

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temperatureofthewaterbeforeinitiatingtestingofeachfile.Withineachgroupof120files,fileswererandomlysubdividedfortestingatthefourdifferenttemperaturecycles,with30filespertemperaturecycle.Thefourdifferenttemperaturecycleswereicewater(3˚±0.5˚C),roomtemperature(22˚±0.5˚C),bodytemperature(37˚±0.5˚C),andhotwater(60˚C±0.5˚C).ApictureofthesetupisshowninFigure1.Avideorecordwasmadeofeachfilerotation,andtimetofracturewasrecordedinseconds.Thiswasidentifiedbyvisualand/oraudiblesoundoffracture.TimetofracturewasconvertedintoNCF.

Figure1.PictureofwaterbathandelectricmotorsetupResults Aone-wayANOVAwithpost-hocTukeytestwasusedtocomparethecyclicfatigueoftheinstrumentsatdifferenttemperatures.TheresultsaregraphicallyshowninFigure2.Whenthetemperaturecycleincreasedfrom3˚Cto22˚C,theaverageNCFsignificantly(p<0.01)decreasedforbothVBandESX,from4842(SD=1136)and932(SD=163)to2062(SD=358)and466(SD=66),respectively.However,theNCFsignificantly(p<0.05)increasedforEFfrom6185(SD=2143)to7243(SD=2088).Whenthetemperaturecycleincreasedfrom22˚Cto37˚C,allfilesshowedasignificant(p<0.01)decreaseintheNCF,toaveragesof1233(SD=218),271(SD=55),and1675(SD=384)forVB,ESX,andEF,respectively.Furtherincreasingthetemperaturefrom37˚Cto60˚Ccausedasignificant(p<0.01)reductionintheNCFforVBtoanaverageof651(SD=111).ESXandEFalsohadreductionsintheirNCFtorespectiveaveragesof218(SD=45)and901(SD=201),

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butthesewerenotstatisticallysignificant.Ateachtemperature,EFhadasignificantly(p<0.01)higherNCFthanVB.VBhadasignificantly(p<0.01)higherNCFthanESX.

Discussion ThefindingsofthisstudyshowedthattemperaturehasasignificanteffectonthenumberofcyclestofractureforallrotaryNiTiendodonticfilestested.Thisisinagreementwithpreviousstudies(6,7)whereincreasingthetemperaturewasfoundtodecreasetheNCF.However,thisstudyexaminedagreatervarietyoftemperaturesthantheotherstudies.Thisisofimportance,becausecyclicfatiguestudiesareusuallyconductedinanexvivosettingwheretemperatureisnotconsideredasavariable.Futurestudiescanbemademoreclinicallyrelevantbybeingconductedatbodytemperatureinsteadofroomtemperature.TheNCFfortheESXandVortexBluefilesnearlyhalvedwhenthetemperaturewasincreasedfromroomtemperaturetobodytemperature,whilethatforEdgeFilefilesdecreasedbyoverfourtimes.ThislargedifferenceinNCFisapparentwhencomparedtotheotherfiles.Forexample,whencomparedtoVortexBluefiles,atroomtemperaturetheNCFofEdgeFilefileswasover3.5timeshigher.Whenheatedtobodytemperature,theNCFofEdgeFilefileswasonly1.35timeshigherthanVortexBluefiles;however,thiswasstillsignificant.ThemetallurgicpropertiesofendodonticfilesappeartoaffecttheirNCFinadditiontotemperature. Filetypeswereselectedtogetavariationinmetallurgy.TheEdgeFilefilesarepredominantlyinamartensiticphaseatroomtemperature,whichisresponsible

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Figure2.EffectofTemperatureonCyclicFatigue

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fortheirlackof‘shapememory.’FurthercoolingoftheEdgeFilefilesto3˚CresultedinadecreaseintheNCF.ThisdecreaseinNCFmaybeduetoamechanismsimilartohowtraditionalmetalsbecomemore‘brittle’astheycool,causingthemtofracture.Heatingmostlikelycausedatransitiontoanausteniticphase,reducingtheNCF.AlthoughtherewasareductionintheNCFfrom37˚Cto60˚C,thiswasnotfoundtobestatisticallysignificant.BoththeESXandVortexBluefilesatleastdoubledtheirNCFwhentheywereplacedinicewater,sincetheymaypossessmoreausteniticphaseatroomtemperaturecomparedtoEdgeFilefiles.Bycoolingthem,theytransitionedtoamoremartensiticphase.ThedifferenceinNCFforESXfilesfrom37˚Cto60˚Cwasnotsignificant.Thismaybeduetothefilesalreadybeinginmostlyanausteniticphaseatbodytemperature;consequently,furtherheatingdidnothaveaneffect. OurfindingssuggestthatanirrigantchilledbelowroomtemperatureseemsfavorabletoincreaseNCF,exceptforfilesthatarealreadyinamartensiticphasesuchasEdgeFilefiles.Veraetal.(8)examinedusing2.5˚Cirrigantexvivoandfoundthatirrigationfor5minutesresultedina10˚Cdecreaseinexternalroottemperatureafter30seconds.Theyconcludedthatusingthechilledirriganttodecreaseexternalroottemperaturemightbeawaytoreduceinflammationintheperiradicularregion.InadditiontoincreasingNCF,anotherbenefitofacoldirrigantmaybetoprovideananti-inflammatoryeffect.

UsingaheatedNaOClirrigant,however,hasbeenshowntobeeffectivefordisinfectionandtissuedissolution(2,3).Accordingtoourfindings,theuseofaheatedirrigantduringfileinstrumentationmayincreasetheincidenceoffileseparationduetothereductioninNCFthatmayresult.Furthermore,exposureofNiTifilestoheatedNaOClmaycausemorecorrosionleadingtofasterseparation(9).Therefore,aheatedNaOClirrigantmaybebestsuitedasafinalstepintheirrigationprotocol.InaninvivostudybydeHemptinneetal.(10),roomtemperatureNaOClsolutioninjectedintoacanalincreasedtemperatureto30.9˚Cafteronly10seconds.Thetemperatureofaheatedsolutiondecreasedfrom56.4˚Cto45.4˚Cafter5secondsandtookaminutetodecreasedownto37˚C.Thisrapidequilibrationoftemperaturemakesitespeciallyimportanttotestcyclicfatigueofinstrumentsatbodytemperatureinsteadofatroomtemperature,sinceirrigantatroomtemperaturequicklyequilibratestobodytemperaturewhenusedintherootcanalspace.Thisexperimentalmodelusedametalblocktosimulatearootcanal.Theeffectsofconductionandinsulationofheatarelikelydifferentinthismodelthanthoseofrootdentin,andmaybeafactorforinvivoresults.

Notably,thisstudyonlyexaminedcyclicfatigue;torsionalfatigueandcuttingeffectivenessoffilesarealsoimportantaspectsofafile’sperformance.Futurestudiesshouldexaminetheeffectsoftemperatureandfilemetallurgyonthesecharacteristics. Inconclusion,whenplacedinawaterbath,ESXfilesshowedadecreaseinNCFwhenheatedfrom3˚Cupto37˚C,butnosignificantdifferencewasseenfrom37˚Cto60˚C;VortexBluefilesshowedthesame,excepttheycontinuedtohaveareductioninNCFto60˚C.EdgeFilefilesshowedanincreaseinNCFfrom3˚Cto22˚C,andamarkeddecreaseinNCFfrom22˚Cto37˚C.TherewasnostatisticallysignificantdifferenceinNCFfrom37˚Cto60˚C.Atalltemperatures,EdgeFilefiles

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werefoundtohavesignificantlyhigherNCFthanVortexBluefiles,whichhadsignificantlyhigherNCFthanESXfiles.Sincethecyclicfatigueofvariousfiletypeswasfoundtobesignificantlyaffectedbytemperature,futurecyclicfatiguestudiesarerecommendedtobeconductedatbodytemperature.Considerationshouldbetakenininterpretationofstudiesconductedatroomtemperature.References

1. MontalveoD,AlçadaFS,FernandesFMB,etal.StructuralCharacterisationandMechanicalFEAnalysisofConventionalandM-WireNi-TiAlloysUsedinEndodonticRotaryInstruments.ScientificWorldJournal2014;ArticleID976459:1-8.

2. SirtesG,WaltimoT,SchaetzleM,etal.TheEffectsofTemperatureonSodiumHypochloriteShort-TermStability,PulpDissolutionCapacity,andAntimicrobialEfficacy.JEndod2005;31(9):669-671.

3. DumitriuD,DobreT.EffectsofTemperatureandHypochloriteConcentrationontheRateofCollagenDissolution.JEndod2015;41(6):903-906.

4. ShenY,ZhouHM,ZhengYF,etal.CurrentChallengesandConceptsoftheThermomechanicalTreatmentofNickel-TitaniumInstruments.JEndod2013;39(2):163-172.

5. MerkelD,BrinkmannE,WiensD,etal.Insitucoolingwithicewaterfortheeasierremovalofself-expandingnitinolstents.EndoscIntOpen2015;03:E51–E55.

6. JamlehA,YahataY,EbiharaA,etal.PerformanceofNiTiendodonticinstrumentunderdifferenttemperatures.Odontology2015;1-5.

7. deVasconcelosRA,MurphyS,CarvalhoCAT,etal.EvidenceforReducedFatigueResistanceofContemporaryRotaryInstrumentsExposedtoBodyTemperature.JEndod2016;42(5):782-787.

8. VeraJ,Ochoa-RiveraJ,Vazquez-Carcaño,etal.EffectofIntracanalCryotherapyonReducingRootSurfaceTemperature.JEndod2015;41(11):1884-1887.

9. PetersOA,RoehlikeJO,BaumannMA.EffectofImmersioninSodiumHypochloriteonTorqueandFatigueResistanceofNickel-TitaniumInstruments.JEndod2007;33(5):589-593.

10. deHemptinneF,SlausG,VandendaelM,etal.InVivoIntracanalTemperatureEvolutionduringEndodonticTreatmentaftertheInjectionofRoomTemperatureorPreheatedSodiumHypochlorite.JEndod2015;41(7):1112-1115.