Endodontics Department Faculty of Dentistry
Minya, Egypt
Location status: Recruiting
NCT Number: NCT07788027
The main aim of endodontic therapy is to disinfect the entire root canal system (RCS), which requires the elimination of microorganisms and microbial components. This goal is pursued by chemo-mechanical debridement of the RCS.
Attaining this goal remains challenging due to the complex and variable anatomy of the root canal system, which includes intricate structures such as fins, isthmuses, lateral canals, and apical deltas that are often inaccessible to mechanical instrumentation.
To overcome these anatomical limitations, various irrigation protocols have been developed to enhance the penetration and effectiveness of irrigating solutions.The use of different activation techniques-such as manual dynamic agitation, irrigation needle, sonic and ultrasonic activation, and negative pressure irrigation systems-aims to improve the distribution, exchange, and cleaning ability of irrigants within hard-to-reach areas of the canal system.These approaches are designed to maximize microbial reduction and promote more effective removal of debris and smear layer remnants.
Interested in participating?
Request Info18 year–45 year
All sexes
Interventional
Not applicable
Minya, Egypt
Location status: Recruiting
Despite their proven efficacy in improving canal cleanliness and disinfection, these irrigation protocols are not without drawbacks. Mechanical and chemical interactions may lead to extrusion of irrigants or debris beyond the apical foramen, potentially causing irritation of the periapical tissues. As a result, patients may experience varying degrees of postoperative pain or discomfort following treatment, depending on the irrigation method and activation technique employed.
Manual Agitation:
Manual agitation is a simple and cost-effective method used to enhance irrigant penetration and exchange within the root canal system. It involves the use of instruments such as gutta-percha cones or endodontic brushes to manually move the irrigant inside the canal. Although this technique can improve irrigant distribution, its effectiveness is limited by the operator's ability and the lack of continuous flow or activation energy, making it less efficient in complex canal anatomies.
Conventional Needle Irrigation:
Conventional needle irrigation remains the most widely practiced method of delivering irrigants into the canal. Typically, side-vented or open-ended needles are used to dispense the solution within 1-2 mm of the working length. While this technique allows controlled delivery, its major limitation lies in the restricted penetration of irrigant into irregularities and apical areas due to vapor lock and inadequate fluid replacement. Consequently, canal cleanliness and disinfection depend heavily on the needle design, placement depth, and flow rate.
Sonic and Ultrasonic Activation:
Sonic and ultrasonic activation techniques utilize energy transmitted through oscillating tips or files to enhance the dynamic movement of irrigants within the canal. Sonic devices operate at lower frequencies (1-10 kHz), generating acoustic streaming that improves debris removal. Ultrasonic systems function at higher frequencies (25-40 kHz), producing vigorous cavitation and acoustic streaming effects that significantly enhance the cleaning and disinfecting potential of irrigants. However, excessive activation or improper use may increase the risk of irrigant extrusion and subsequent postoperative discomfort.
Negative Pressure Irrigation:
Negative pressure systems, such as the EndoVac or SafeClean, were developed to minimize the risk of apical extrusion and improve irrigant exchange in the apical third.These systems deliver irrigant from the coronal portion while simultaneously applying negative pressure to draw the solution down the canal and aspirate it at the apex. This design enables effective irrigation of the apical region while maintaining safety and preventing periapical irritation.There is limited clinical evidence comparing the effect of different irrigation/activation protocols on postoperative pain in canines and premolars .
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
to compare the effect of all different irrigation and activation protocols manual agitation, conventional needle irrigation, sonic activation, and negative pressure systems (such as Safe Clean) on the incidence and intensity of postoperative pain following endodontic treatment of canines and premolars
Other names: Sonic activation, and negative pressure systems
Time frame: 7 Days
Postoperative pain will be assessed using a 10-cm Visual Analog Scale (VAS), where 0 will indicate "no pain" and 10 will indicate "worst imaginable pain." Participants will be instructed to record their pain intensity at 6, 12, 24, 48,and 72 hours, and on the 7th day after treatment. All recorded pain scores will be collected for statistical analysis and comparison among the study groups
Contact information is provided by the study sponsor or research team.
Dalia Ali Ahmed Moukarab, M.D
CONTACT
Nourhan Sayid Mohammed, B.D.S
CONTACT
Minia University
Other
Influence of Irrigant Delivery Systems on the Incidence of Postoperative Discomfort in Oval Canals : A Randomized Clinical Trial
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View the official ClinicalTrials.gov record (opens in a new tab)This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.
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