John III Beumer - Fundamentals of Implant Dentistry

Здесь есть возможность читать онлайн «John III Beumer - Fundamentals of Implant Dentistry» — ознакомительный отрывок электронной книги совершенно бесплатно, а после прочтения отрывка купить полную версию. В некоторых случаях можно слушать аудио, скачать через торрент в формате fb2 и присутствует краткое содержание. Жанр: unrecognised, на английском языке. Описание произведения, (предисловие) а так же отзывы посетителей доступны на портале библиотеки ЛибКат.

Fundamentals of Implant Dentistry: краткое содержание, описание и аннотация

Предлагаем к чтению аннотацию, описание, краткое содержание или предисловие (зависит от того, что написал сам автор книги «Fundamentals of Implant Dentistry»). Если вы не нашли необходимую информацию о книге — напишите в комментариях, мы постараемся отыскать её.

This book has it all and can truly be considered the definitive implant textbook. As with its predecessor, the authors provide a prosthodontic perspective to dozens of aspects of implant treatment, from the biologic mechanisms of osseointegration to implant design and configuration to maintenance and management of complications. Organized into four sections, the book systematically takes the reader through the foundational principles of implant dentistry, to evaluation and restoration of a variety of clinical situations, and into more specialized topics and treatment scenarios. Emerging digital technologies and materials used to design and fabricate implant prostheses are an important focus, as are implant positioning, angulation, and spacing for each situation. Designs of implant-assisted overdentures are described in detail as well as the various bone and soft tissue enhancement procedures currently in use, particularly in patients with unfavorable periodontal biotypes. Like its predecessor, this book focuses on the importance of interdisciplinary treatment, but because some situations can be managed by a solo practitioner, one chapter is devoted to the basic fundamentals of surgical placement, specifically targeted at nonsurgically trained dentists. In addition, a downloadable illustrated glossary is available for easy reference. Functioning as both a textbook for students and a desk reference for practitioners, this book is a must-have to complete any dental library.

Fundamentals of Implant Dentistry — читать онлайн ознакомительный отрывок

Ниже представлен текст книги, разбитый по страницам. Система сохранения места последней прочитанной страницы, позволяет с удобством читать онлайн бесплатно книгу «Fundamentals of Implant Dentistry», без необходимости каждый раз заново искать на чём Вы остановились. Поставьте закладку, и сможете в любой момент перейти на страницу, на которой закончили чтение.

Тёмная тема
Сбросить

Интервал:

Закладка:

Сделать

103.Pae A, Kim SS, Kim HS, Woo YH. Osteoblast-like cell attachment and proliferation on turned, blasted, and anodized titanium surfaces. Int J Oral Maxillofac Implants 2011;26:475–481.

104.Att W, Hori N, Iwasa F, Yamada M, Ueno T, Ogawa T. The effect of UV-photofunctionalization on the time-related bioactivity of titanium and chromium-cobalt alloys. Biomaterials 2009;30:4268–4276.

105.Miyauchi T, Yamada M, Yamamoto A, et al. The enhanced characteristics of osteoblast adhesion to photofunctionalized nanoscale TiO 2layers on biomaterials surfaces. Biomaterials 2010;31:3827–3839.

106.Ueno T, Yamada M, Suzuki T, et al. Enhancement of bone-titanium integration profile with UV-photofunctionalized titanium in a gap healing model. Biomaterials 2010;31:1546–1557.

107.Tsukimura N, Yamada M, Iwasa F, et al. Synergistic effects of UV photofunctionalization and micro-nano hybrid topography on the biological properties of titanium. Biomaterials 2011;32:4358–4368.

108.Funato A, Ogawa T. Photofunctionalized dental implants: A case series in compromised bone. Int J Oral Maxillofac Implants 2013;28:1589–1601.

109.Funato A, Yamada M, Ogawa T. Success rate, healing time, and implant stability of photofunctionalized dental implants. Int J Oral Maxillofac Implants 2013;28:1261–1271.

110.Funato A, Tonotsuka R, Murabe H, Hirota M, Ogawa T. A novel strategy for bone integration and regeneration: Case studies. Photofunctionalization of dental implants and Ti mesh. J Cosmetic Dent 2014;29(4):74–86.

111.Suzuki S, Kobayashi H, Ogawa T. Implant stability change and osseointegration speed of immediately loaded photofunctionalized implants. Implant Dent 2013;22:481–490.

112.Tabuchi M, Ikeda T, Hirota M, et al. Effect of UV photofunctionalization on biologic and anchoring capability of orthodontic miniscrews. Int J Oral Maxillofac Implants 2015;30:868–879.

113.Hirota M, Ikeda T, Tabuchi M, Iwai T, Tohnai I, Ogawa T. Effect of ultraviolet-mediated photofunctionalization for bone formation around medical titanium mesh. J Oral Maxillofac Surg 2014;72:1691–1702.

114.Tabuchi M, Ikeda T, Nakagawa K, et al. Ultraviolet photofunctionalization increases removal torque values and horizontal stability of orthodontic miniscrews. Am J Orthod Dentofacial Orthop 2015;148;274–282.

115.Mabilleau G, Bourdon S, Joly-Guillou ML, Filmon R, Baslé MF, Chappard D. Influence of fluoride, hydrogen peroxide and lactic acid on the corrosion resistance of commercially pure titanium. Acta Biomater 2006;2:121–129.

116.Smith DC. Dental implants: Materials and design considerations. Int J Prosthodont 1993;6:106–117.

117.Videla HA, Herrera LK. Microbiologically influenced corrosion: Looking to the future. Int Microbiol 2005;8:169–180.

118.Juanito GMP, Morsch CS, Benfatti CA, Fredel MC, Magini RS, Souza JCM. Effect of fluoride and bleaching agents on the degradation of titanium: Literature review. Dentistry 2015;5:1000273.

119.Souza JC, Barbosa SL, Ariza EA, et al. How do titanium and Ti6Al4V corrode in fluoridated medium as found in the oral cavity? An in vitro study. Mater Sci Eng C Mater Biol Appl 2015;47:384–393.

120.Franchi M, Bacchelli B, Martini D, et al. Early detachment of titanium particles from various different surfaces of endosseous dental implants. Biomaterials 2004;25:2239–2246.

121.Goodman SB. Wear particles, periprosthetic osteolysis and the immune system. Biomaterials 2007;28:5044–5048.

122.Kumazawa R, Watari F, Takashi N, Tanimura Y, Uo M, Yasunori T. Effects of Ti ions and particles on neutrophil function and morphology. Biomaterials 2002;23:3757–3764.

123.Schwarz F, Sahm N, Mihatovic I, Golubovic V, Becker J. Surgical therapy of advanced ligature-induced peri-implantitis defects: Cone-beam computed tomographic and histological analysis. J Clin Periodontol 2011;38:939–949.

124.Tawse-Smith A, Kota A, Jayaweera Y, van Vuuren WJ, Ma S. The effect of standardised implantoplasty protocol on titanium surface roughness: An in-vitro study. Braz Oral Res 2016;30:e137.

125.Urban RM, Jacobs JJ, Tomlinson MJ, Gavrilovic J, Black J, Peoc’h M. Dissemination of wear particles to the liver, spleen, and abdominal lymph nodes of patients with hip or knee replacement. J Bone Joint Surg Am 2000;82:457–476.

126.Wachi T, Shuto T, Shinohara Y, Matono Y, Makihira S. Release of titanium ions from an implant surface and their effect on cytokine production related to alveolar bone resorption. Toxicology 2015;327:1–9.

127.Tawse-Smith A, Ma S, Duncan WJ, Gray A, Reid MR, Rich AM. Implications of wear at the titanium-zirconia implant-abutment interface on the health of peri-implant tissues. Int J Oral Maxillofac Implants 2017;32:599–609.

128.Tawse-Smith A, Atieh MA, Leichter J, Girvan L, Rich AM. Peri- implant bone loss and its uncommon causes: A case report. Clin Adv Periodontics 2015;5:242–247.

129.Souza JCM, Henriques M, Oliveira R, Teughels W, Celis JP, Rocha LA. Do oral biofilms influence the wear and corrosion behavior of titanium? Biofouling 2010;26:471–478.

130.Celis JP, Ponthiaux P, Wenger F. Tribo-corrosion of materials: Interplay between chemical, electrochemical, and mechanical reactivity of surfaces. Wear 2006;261:939–946.

131.Renvert S, Polyzois I, Claffey N. How do implant surface characteristics influence peri-implant disease? J Clin Periodontol 2011;38(suppl 11):214–222.

132.Billi F, Benya P, Ebramzadeh E, Campbell P, Chan F, McKellop HA. Metal wear particles: What we know, what we do not know, and why. SAS J 2009;3:133–142.

133.Ollivere B, Wimhurst JA, Clark IM, Donell ST. Current concepts in osteolysis. J Bone Joint Surg Br 2012;94:10–15.

134.Lindhe J, Meyle J, Group D of European Workshop on Periodontology. Peri-implant diseases: Consensus Report of the Sixth European Workshop on Periodontology. J Clin Periodontol 2008;35(8 suppl):282–285.

135.Kedici SP, Aksüt AA, Kílíçarslan MA, Bayramoglu G, Gökdemir K. Corrosion behaviour of dental metals and alloys in different media. J Oral Rehabil 1998;25:800–808.

136.Schwarz F, Sahm N, Iglhaut G, Becker J. Impact of the method of surface debridement and decontamination on the clinical outcome following combined surgical therapy of peri-implantitis: A randomized controlled clinical study. J Clin Periodontol 2011;38:276–284.

137.John G, Becker J, Schwarz F. Rotating titanium brush for plaque removal from rough titanium surfaces—An in vitro study. Clin Oral Implants Res 2014;25:838–842.

138.Louropoulou A, Slot DE, Van der Weijden F. The effects of mechanical instruments on contaminated titanium dental implant surfaces: A systematic review. Clin Oral Implants Res 2014;25:1149–1160.

139.Tawse-Smith A, Atieh MA, Tompkins G, Duncan WJ, Reid MR, Stirling CH. The effect of piezoelectric ultrasonic instrumentation on titanium discs: A microscopy and trace elemental analysis in vitro study. Int J Dent Hyg 2016;14:191–201.

140.Wilson TG Jr, Valderrama P, Burbano M, et al. Foreign bodies associated with peri-implantitis human biopsies. J Periodontol 2015;86:9–15.

141.Makihira S, Mine Y, Nikawa H, et al. Titanium ion induces necrosis and sensitivity to lipopolysaccharide in gingival epithelial-like cells. Toxicol In Vitro 2010;24:1905–1910.

142.Mine Y, Makihira S, Nikawa H, et al. Impact of titanium ions on osteoblast-, osteoclast- and gingival epithelial-like cells. J Prosthodont Res 2010;54:1–6.

143.Pettersson M, Kelk P, Belibasakis GN, Bylund D, Molin Thorén M, Johansson A. Titanium ions form particles that activate and execute interleukin-1β release from lipopolysaccharide-primed macrophages. J Periodontal Res 2017;52:21–32.

144.Afaq F, Abidi P, Matin R, Rahman Q. Cytotoxicity, pro-oxidant effects and antioxidant depletion in rat lung alveolar macrophages exposed to ultrafine titanium dioxide. J Appl Toxicol 1998;18:307–312.

Читать дальше
Тёмная тема
Сбросить

Интервал:

Закладка:

Сделать

Похожие книги на «Fundamentals of Implant Dentistry»

Представляем Вашему вниманию похожие книги на «Fundamentals of Implant Dentistry» списком для выбора. Мы отобрали схожую по названию и смыслу литературу в надежде предоставить читателям больше вариантов отыскать новые, интересные, ещё непрочитанные произведения.


Отзывы о книге «Fundamentals of Implant Dentistry»

Обсуждение, отзывы о книге «Fundamentals of Implant Dentistry» и просто собственные мнения читателей. Оставьте ваши комментарии, напишите, что Вы думаете о произведении, его смысле или главных героях. Укажите что конкретно понравилось, а что нет, и почему Вы так считаете.

x