Skip to main content
Erschienen in: Odontology 3/2022

11.01.2022 | Original Article

Accuracy of an electrical impedance device in estimation of remaining dentin thickness vs cone beam computed tomography

verfasst von: Hebatallah Sarhan, Hamdi Hamama, Wael Aboelmaaty, Ahmed Zaeneldin, Salah Mahmoud

Erschienen in: Odontology | Ausgabe 3/2022

Einloggen, um Zugang zu erhalten

Abstract

The objective of this study is to compare the estimated values of remaining dentin thickness (RDT) recorded by a newly introduced electrical impedance device (Prepometer) with cone beam computed tomography (CBCT) and histological in situ measurement. A total number of thirty human molars were used in this study. A deep class I cavity was prepared. The RDT for each cavity was measured with Prepometer in three different points (mesial, middle, and distal). Same specimens were imaged with high-resolution Cone Beam Computed Tomography CBCT (0.1 mm voxel size) using I CAT next Generation Machine (Imaging Science International, Hatfield, PA, USA), to provide the highest possible accuracy of linear measurements. Finally, the specimens were vertically sectioned parallel to the long axis of the tooth in a mesiodistal direction splitting the cavity into two halves through its center. Then, the actual RDT of each half will be measured in the same three points using a digital caliper. The outcome of one-way ANOVA revealed that there was no significant difference in RDT values measured by prepometer device, CBCT, or histological sectioning methods (p > 0.05). Within the limitations of this laboratory study, prepometer seems to be a potential non-invasive accurate measuring tool for RDT. Based on the findings of this study, the Prepometer can be considered as an easily handled and less-expensive method compared to CBCT to evaluate the RDT. Also, it can be used in dental schools and with less-experienced operators to avoid traumatic exposures of the dental pulp.
Literatur
1.
Zurück zum Zitat Lancaster PE, Craddock HL, Carmichael FA. Estimation of remaining dentine thickness below deep lesions of caries. Br Dent J. 2011;211(10):E20.CrossRefPubMed Lancaster PE, Craddock HL, Carmichael FA. Estimation of remaining dentine thickness below deep lesions of caries. Br Dent J. 2011;211(10):E20.CrossRefPubMed
2.
Zurück zum Zitat Hatton JF, et al. In vitro and in vivo measurement of remaining dentin thickness. J Endod. 1994;20(12):580–4.CrossRefPubMed Hatton JF, et al. In vitro and in vivo measurement of remaining dentin thickness. J Endod. 1994;20(12):580–4.CrossRefPubMed
3.
Zurück zum Zitat Davis GR, et al. Quantification of residual dentine thickness following crown preparation. J Dent. 2012;40(7):571–6.CrossRefPubMed Davis GR, et al. Quantification of residual dentine thickness following crown preparation. J Dent. 2012;40(7):571–6.CrossRefPubMed
4.
Zurück zum Zitat Xu J, et al. Accuracy of cone-beam computed tomography in measuring dentin thickness and its potential of predicting the remaining dentin thickness after removing fractured instruments. J Endod. 2017;43(9):1522–7.CrossRefPubMed Xu J, et al. Accuracy of cone-beam computed tomography in measuring dentin thickness and its potential of predicting the remaining dentin thickness after removing fractured instruments. J Endod. 2017;43(9):1522–7.CrossRefPubMed
5.
Zurück zum Zitat Krause F, et al. Laser fluorescence measurements compared to electrical resistance of residual dentine in excavated cavities in vivo. Caries Res. 2007;41(2):135–40.CrossRefPubMed Krause F, et al. Laser fluorescence measurements compared to electrical resistance of residual dentine in excavated cavities in vivo. Caries Res. 2007;41(2):135–40.CrossRefPubMed
6.
Zurück zum Zitat Fujita R, et al. Measurement of the remaining dentin thickness using optical coherence tomography for crown preparation. Dent Mater J. 2014;33(3):355–62.CrossRefPubMed Fujita R, et al. Measurement of the remaining dentin thickness using optical coherence tomography for crown preparation. Dent Mater J. 2014;33(3):355–62.CrossRefPubMed
7.
Zurück zum Zitat Zhu Y, et al. Origin and clinical applications of neural crest-derived dental stem cells. Chin J Dent Res. 2018;21(2):89–100.PubMed Zhu Y, et al. Origin and clinical applications of neural crest-derived dental stem cells. Chin J Dent Res. 2018;21(2):89–100.PubMed
8.
Zurück zum Zitat Mjör IA, Odont D. Pulp-dentin biology in restorative dentistry. Part 2: initial reactions to preparation of teeth for restorative procedures. Quintessence Int. 2001;32(7):537–51.PubMed Mjör IA, Odont D. Pulp-dentin biology in restorative dentistry. Part 2: initial reactions to preparation of teeth for restorative procedures. Quintessence Int. 2001;32(7):537–51.PubMed
9.
Zurück zum Zitat Cohen S, Hargreaves KM. Pathways of the pulp. 9th ed. St. Louis: Mosby; 2006. p. 460–540. Cohen S, Hargreaves KM. Pathways of the pulp. 9th ed. St. Louis: Mosby; 2006. p. 460–540.
10.
Zurück zum Zitat Pashley DH. Dynamics of the pulpo-dentin complex. Crit Rev Oral Biol Med. 1996;7(2):104–33.CrossRefPubMed Pashley DH. Dynamics of the pulpo-dentin complex. Crit Rev Oral Biol Med. 1996;7(2):104–33.CrossRefPubMed
11.
Zurück zum Zitat Vongsavan N, Matthews B. Changes in pulpal blood flow and in fluid flow through dentine produced by autonomic and sensory nerve stimulation in the cat. Proc Finn Dent Soc. 1992;88(Suppl 1):491–7.PubMed Vongsavan N, Matthews B. Changes in pulpal blood flow and in fluid flow through dentine produced by autonomic and sensory nerve stimulation in the cat. Proc Finn Dent Soc. 1992;88(Suppl 1):491–7.PubMed
12.
Zurück zum Zitat Murray PE, et al. Human odontoblast cell numbers after dental injury. J Dent. 2000;28(4):277–85.CrossRefPubMed Murray PE, et al. Human odontoblast cell numbers after dental injury. J Dent. 2000;28(4):277–85.CrossRefPubMed
13.
Zurück zum Zitat Murray PE, et al. Postoperative pulpal and repair responses. J Am Dent Assoc. 2000;131(3):321–9.CrossRefPubMed Murray PE, et al. Postoperative pulpal and repair responses. J Am Dent Assoc. 2000;131(3):321–9.CrossRefPubMed
14.
Zurück zum Zitat Murray PE, et al. Remaining dentine thickness and human pulp responses. Int Endod J. 2003;36(1):33–43.CrossRefPubMed Murray PE, et al. Remaining dentine thickness and human pulp responses. Int Endod J. 2003;36(1):33–43.CrossRefPubMed
15.
Zurück zum Zitat Wierinck E, et al. Effect of augmented visual feedback from a virtual reality simulation system on manual dexterity training. Eur J Dent Educ. 2005;9(1):10–6.CrossRefPubMed Wierinck E, et al. Effect of augmented visual feedback from a virtual reality simulation system on manual dexterity training. Eur J Dent Educ. 2005;9(1):10–6.CrossRefPubMed
16.
Zurück zum Zitat Buyukgural B, Cehreli ZC. Effect of different adhesive protocols vs calcium hydroxide on primary tooth pulp with different remaining dentin thicknesses:24-month results. Clin Oral Investig. 2008;12(1):91–6.CrossRefPubMed Buyukgural B, Cehreli ZC. Effect of different adhesive protocols vs calcium hydroxide on primary tooth pulp with different remaining dentin thicknesses:24-month results. Clin Oral Investig. 2008;12(1):91–6.CrossRefPubMed
17.
Zurück zum Zitat Waltrick KB, et al. Accuracy of linear measurements and visibility of the mandibular canal of cone-beam computed tomography images with different voxel sizes: an in vitro study. J Periodontol. 2013;84(1):68–77.CrossRefPubMed Waltrick KB, et al. Accuracy of linear measurements and visibility of the mandibular canal of cone-beam computed tomography images with different voxel sizes: an in vitro study. J Periodontol. 2013;84(1):68–77.CrossRefPubMed
18.
Zurück zum Zitat Majkut PDDS, et al. Validation of optical coherence tomography against micro–computed tomography for evaluation of remaining coronal dentin thickness. J Endod. 2015;41(8):1349–52.CrossRefPubMed Majkut PDDS, et al. Validation of optical coherence tomography against micro–computed tomography for evaluation of remaining coronal dentin thickness. J Endod. 2015;41(8):1349–52.CrossRefPubMed
19.
Zurück zum Zitat Fernandes TMF, et al. Comparison between 3D volumetric rendering and multiplanar slices on the reliability of linear measurements on CBCT images: an in vitro study. J Appl Oral Sci. 2015;23(1):56–63.CrossRefPubMed Fernandes TMF, et al. Comparison between 3D volumetric rendering and multiplanar slices on the reliability of linear measurements on CBCT images: an in vitro study. J Appl Oral Sci. 2015;23(1):56–63.CrossRefPubMed
20.
Zurück zum Zitat Shaheen E, et al. Accuracy of segmentation of tooth structures using 3 different CBCT machines. Oral Surg Oral Med Oral Pathol Oral Radiol. 2017;123(1):123–8.CrossRefPubMed Shaheen E, et al. Accuracy of segmentation of tooth structures using 3 different CBCT machines. Oral Surg Oral Med Oral Pathol Oral Radiol. 2017;123(1):123–8.CrossRefPubMed
21.
Zurück zum Zitat Poleti ML, et al. Analysis of linear measurements on 3D surface models using CBCT data segmentation obtained by automatic standard pre-set thresholds in two segmentation software programs: an in vitro study. Clin Oral Invest. 2016;20(1):179–85.CrossRef Poleti ML, et al. Analysis of linear measurements on 3D surface models using CBCT data segmentation obtained by automatic standard pre-set thresholds in two segmentation software programs: an in vitro study. Clin Oral Invest. 2016;20(1):179–85.CrossRef
22.
Zurück zum Zitat Shaikh SY, Shaikh SS. Direct linear measurement of root dentin thickness and dentin volume changes with post space preparation: a cone-beam computed tomography study. Contemp Clin Dent. 2018;9(1):77–82.PubMedCentralPubMed Shaikh SY, Shaikh SS. Direct linear measurement of root dentin thickness and dentin volume changes with post space preparation: a cone-beam computed tomography study. Contemp Clin Dent. 2018;9(1):77–82.PubMedCentralPubMed
23.
Zurück zum Zitat Kamal RP, Faraj BM, Fahim R. Estimation of remaining dentine thickness (RDT) under caries lesion with a cone-beam computed tomography and standardized paralleling technique in comparisons to actual measurement. In vitro comparative study. Mod App Dent. Oral Health. 2021;1(5):431–6. Kamal RP, Faraj BM, Fahim R. Estimation of remaining dentine thickness (RDT) under caries lesion with a cone-beam computed tomography and standardized paralleling technique in comparisons to actual measurement. In vitro comparative study. Mod App Dent. Oral Health. 2021;1(5):431–6.
24.
Zurück zum Zitat Fokas G, et al. Accuracy of linear measurements on CBCT images related to presurgical implant treatment planning: a systematic review. Clin Oral Implants Res. 2018;29(Suppl 16):393–415.CrossRefPubMed Fokas G, et al. Accuracy of linear measurements on CBCT images related to presurgical implant treatment planning: a systematic review. Clin Oral Implants Res. 2018;29(Suppl 16):393–415.CrossRefPubMed
25.
Zurück zum Zitat Ludlow JB, Walker C. Assessment of phantom dosimetry and image quality of i-CAT FLX cone-beam computed tomography. Am J Orthod Dentofacial Orthop. 2013;144(6):802–17.CrossRefPubMed Ludlow JB, Walker C. Assessment of phantom dosimetry and image quality of i-CAT FLX cone-beam computed tomography. Am J Orthod Dentofacial Orthop. 2013;144(6):802–17.CrossRefPubMed
26.
Zurück zum Zitat Purton DG, et al. A novel instrument to determine pulp proximity. Eur J Prosthodont Restor Dent. 2009;17(1):30.PubMed Purton DG, et al. A novel instrument to determine pulp proximity. Eur J Prosthodont Restor Dent. 2009;17(1):30.PubMed
27.
Zurück zum Zitat Violich DR, et al. Effect of the smear layer on a pulp proximity-indicating instrument. Odontology. 2012;100(1):47–53.CrossRefPubMed Violich DR, et al. Effect of the smear layer on a pulp proximity-indicating instrument. Odontology. 2012;100(1):47–53.CrossRefPubMed
28.
Zurück zum Zitat Gente M, Wenz HJ. Non-invasive method of measuring dentin resistance to the limit of the preparation depth. Dtsch Zahnarztl Z. 1991;46(11):771–3.PubMed Gente M, Wenz HJ. Non-invasive method of measuring dentin resistance to the limit of the preparation depth. Dtsch Zahnarztl Z. 1991;46(11):771–3.PubMed
29.
Zurück zum Zitat Tielemans S, et al. Evaluation of a preparation depth controlling device: a pilot study. Quintessence Int. 2007;38(2):135–42.PubMed Tielemans S, et al. Evaluation of a preparation depth controlling device: a pilot study. Quintessence Int. 2007;38(2):135–42.PubMed
30.
Zurück zum Zitat Schulte A, et al. The electrical resistance of enamel-dentine cylinders Influence of NaCl content in storage solutions. J Dent. 1998;26(2):113–8.CrossRefPubMed Schulte A, et al. The electrical resistance of enamel-dentine cylinders Influence of NaCl content in storage solutions. J Dent. 1998;26(2):113–8.CrossRefPubMed
31.
Zurück zum Zitat Hilgers ML, et al. Accuracy of linear temporomandibular joint measurements with cone beam computed tomography and digital cephalometric radiography. Am J Orthod Dentofacial Orthop. 2005;128(6):803–11.CrossRefPubMed Hilgers ML, et al. Accuracy of linear temporomandibular joint measurements with cone beam computed tomography and digital cephalometric radiography. Am J Orthod Dentofacial Orthop. 2005;128(6):803–11.CrossRefPubMed
32.
Zurück zum Zitat Brown AA, et al. Linear accuracy of cone beam CT derived 3D images. Angle Orthod. 2009;79(1):150–7.CrossRefPubMed Brown AA, et al. Linear accuracy of cone beam CT derived 3D images. Angle Orthod. 2009;79(1):150–7.CrossRefPubMed
33.
Zurück zum Zitat Bunn DL, et al. Accuracy of cone-beam computed tomography in measuring the thickness of radicular dentin. Braz Dent J. 2020;31(5):516–22.CrossRefPubMed Bunn DL, et al. Accuracy of cone-beam computed tomography in measuring the thickness of radicular dentin. Braz Dent J. 2020;31(5):516–22.CrossRefPubMed
34.
Zurück zum Zitat Damstra J, et al. Accuracy of linear measurements from cone-beam computed tomography-derived surface models of different voxel sizes. Am J Orthod Dentofacial Orthop. 2010;137(1):16 e1-26 (discussion 16-7). Damstra J, et al. Accuracy of linear measurements from cone-beam computed tomography-derived surface models of different voxel sizes. Am J Orthod Dentofacial Orthop. 2010;137(1):16 e1-26 (discussion 16-7).
35.
Zurück zum Zitat Mumford J. Path of direct current in electrical pulp testing using one coronal electrode. Br Dent J. 1959;106:23–6. Mumford J. Path of direct current in electrical pulp testing using one coronal electrode. Br Dent J. 1959;106:23–6.
Metadaten
Titel
Accuracy of an electrical impedance device in estimation of remaining dentin thickness vs cone beam computed tomography
verfasst von
Hebatallah Sarhan
Hamdi Hamama
Wael Aboelmaaty
Ahmed Zaeneldin
Salah Mahmoud
Publikationsdatum
11.01.2022
Verlag
Springer Nature Singapore
Erschienen in
Odontology / Ausgabe 3/2022
Print ISSN: 1618-1247
Elektronische ISSN: 1618-1255
DOI
https://doi.org/10.1007/s10266-021-00681-6

Weitere Artikel der Ausgabe 3/2022

Odontology 3/2022 Zur Ausgabe

„Übersichtlicher Wegweiser“: Lauterbachs umstrittener Klinik-Atlas ist online

17.05.2024 Klinik aktuell Nachrichten

Sie sei „ethisch geboten“, meint Gesundheitsminister Karl Lauterbach: mehr Transparenz über die Qualität von Klinikbehandlungen. Um sie abzubilden, lässt er gegen den Widerstand vieler Länder einen virtuellen Klinik-Atlas freischalten.

Klinikreform soll zehntausende Menschenleben retten

15.05.2024 Klinik aktuell Nachrichten

Gesundheitsminister Lauterbach hat die vom Bundeskabinett beschlossene Klinikreform verteidigt. Kritik an den Plänen kommt vom Marburger Bund. Und in den Ländern wird über den Gang zum Vermittlungsausschuss spekuliert.

Darf man die Behandlung eines Neonazis ablehnen?

08.05.2024 Gesellschaft Nachrichten

In einer Leseranfrage in der Zeitschrift Journal of the American Academy of Dermatology möchte ein anonymer Dermatologe bzw. eine anonyme Dermatologin wissen, ob er oder sie einen Patienten behandeln muss, der eine rassistische Tätowierung trägt.

Ein Drittel der jungen Ärztinnen und Ärzte erwägt abzuwandern

07.05.2024 Klinik aktuell Nachrichten

Extreme Arbeitsverdichtung und kaum Supervision: Dr. Andrea Martini, Sprecherin des Bündnisses Junge Ärztinnen und Ärzte (BJÄ) über den Frust des ärztlichen Nachwuchses und die Vorteile des Rucksack-Modells.

Update Zahnmedizin

Bestellen Sie unseren kostenlosen Newsletter und bleiben Sie gut informiert – ganz bequem per eMail.