Comparison of heat production and bone architecture changes in the implant site preparation with compressive osteotomes, osseodensification technique, piezoelectric devices, and standard drills: an ex vivo study on porcine ribs

Сравнение тепловыделения и изменений архитектоники кости при подготовке ложа имплантата с использованием компрессионных остеотомов, техники оссеоденсификации, пьезоэлектрических устройств и стандартных сверл: исследование ex vivo на ребрах свиньи
Nishith Bhargava, Vittoria Perrotti, Vito Carlo Alberto Caponio, Victor Haruo Matsubara, Diana Patalwala, A. Alberigi Quaranta
2022-07-19

bone architectureheat generationimplant site preparationosseodensificationprimary implant stability
Abstract This study aimed at investigating differences in heat generation and bone architecture following four different implant site preparation techniques: compressive osteotomes, conventional drills, osseodensification (OD mode with osseodensification drills), and piezoelectric systems. Porcine rib bones were used as a model for implant surgery. Thermocouples were employed to measure temperature changes, and micro-CT to assess the bone architecture. The primary stability and insertion torque values of the implants placed in the differently prepared sites were assessed. The temperature changes were higher with Piezo. The average primary stability using the ISQ scale was the greatest for drills (76.17 ± 0.90) and the lowest for osteotomes (71.50 ± 11.09). Insertion torque was significantly higher with the osseodensification method (71.67 ± 7.99 Ncm) in comparison to drills, osteotomes, and piezo. Osteotomes showed the highest bone to implant contact percentage (39.83 ± 3.14%) and average trabecular number (2.02 ± 0.21 per mm), while drills exhibited the lowest (30.73 ± 1.65%; 1.37 ± 0.34 per mm). Total implant site bone volume was the highest with osseodensification (37.26 ± 4.13mm 3 ) and the lowest for osteotomes (33.84 ± 3.84mm 3 ). Statistical analysis showed a high primary stability and decrease in temperature during implant site preparation with osseodensification technique. The results support the use of osseodensification technique for implant site preparation.
1
Conventional drills achieved the highest average primary stability (ISQ 76.17 ± 0.90), whereas compressive osteotomes achieved the lowest (ISQ 71.50 ± 11.09).
2
Osseodensification produced significantly higher insertion torque (71.67 ± 7.99 Ncm) than drills, osteotomes, and piezoelectric preparation.
3
Osteotomes yielded the highest bone-to-implant contact and trabecular number, while osseodensification produced the greatest total implant-site bone volume and was associated with decreased preparation temperature.
4
Piezoelectric preparation produced the greatest temperature changes among the evaluated techniques.
5
The study compared heat generation, bone architecture, and implant stability after four implant-site preparation techniques in ex vivo porcine ribs.

Porcine rib bone implant sites prepared using compressive osteotomes, conventional drills, osseodensification drills, or piezoelectric systems

Heat generation, bone architecture, and implant primary stability and insertion torque associated with the four implant site preparation techniques

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2022-07-19
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Nishith Bhargava
Vittoria Perrotti
Vito Carlo Alberto Caponio
Victor Haruo Matsubara
Diana Patalwala
A. Alberigi Quaranta
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