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Titlebook: Biophysical Osteoblast Stimulation for Bone Grafting and Regeneration; From Basic Science t Nahum Rosenberg Book 2023 The Author(s), under

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发表于 2025-3-21 17:48:53 | 显示全部楼层 |阅读模式
期刊全称Biophysical Osteoblast Stimulation for Bone Grafting and Regeneration
期刊简称From Basic Science t
影响因子2023Nahum Rosenberg
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发行地址Presents innovative data of in vitro live bone generation.Offers an overview of biophysical osteoblast stimulation techniques.Integrates basic science and clinical knowledge
图书封面Titlebook: Biophysical Osteoblast Stimulation for Bone Grafting and Regeneration; From Basic Science t Nahum Rosenberg Book 2023 The Author(s), under
影响因子.This book integrates the current basic and clinical knowledge in the area of biophysical stimulation of osteoblast for in vitro and in vivo live bone generation. This innovative methodology and its applications are presented and discussed in several clinical conditions: treatment of fracture nonunion, spine stabilization, bone replacement after tumor resections, stabilization of failed joint endoprostheses in revision surgery and in treatment of bone loss (osteoporosis and osteopenia)...The author analyses different types of biophysical stimulation of osteoblasts for bone regeneration, e.g. mechanical (static and alternating, including distraction osteogenesis), electromagnetic (pulsed, alternating, static), light (at different spectrum range, including laser), acoustic (including ultrasound), RF etc. Moreover, he summarizes and discusses the most significant findings for in vitro bone generation and its resulting clinical use as autologous bone graft without surgical morbidity..Reflecting the author’s extensive experience this book is an excellent source of knowledge and a valuable aid to clinical practice for all orthopedic surgeons, fellows, and researchers wanting to gain insi
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Determination of In Vitro Generated Bone Tissue in monolayer culture to induce proliferation, maturation, and matrix elaboration by applying alternating external biophysical stimulation with specific optimal parameters (frequency, amplitude) for each cellular activity. For this purpose, the bioreactor should contain cells seeded on an osteocondu
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Local Vibration for Fracture Healingntensity vibration [1]. The logical clinical application of such a biological phenomenon is to enhance bone fracture healing by applying this stimulus to the bone fracture site. This approach was investigated in animal experiments and showed promising results [2]. Unfortunately, this theoretical met
发表于 2025-3-22 15:51:44 | 显示全部楼层
Whole-Body Vibration Enhances Bone Regeneration: For Treatment of Osteoporosisnical stimulation of adjacent bones [1, 2]. This vibrational/mechanical loading is clinically utilized to enhance bone strength and mass [3] and was found to facilitate bone mass production, fracture healing, and osseointegration of bone-anchored implants [4, 5]. There is ample preclinical in vivo e
发表于 2025-3-22 17:11:03 | 显示全部楼层
Distraction Osteogenesislaw” [1], reflects the interconnected responses of the BMU components (osteoblasts, osteoclasts, endothelial cells) to static tension; when osteoblast elaborate bone matrix, osteoclasts resorb it according to tension vector and endothelial cells induce angiogenesis, which is essential for the overal
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To Summarizephysical energy can be mechanical or electromagnetic, with similar but not identical activation of cellular pathways. But the parameters of biophysical stimulation vary from constant to alternating, and the alternating can be of different frequencies to elicit different cell responses, i.e., prolife
发表于 2025-3-23 07:49:41 | 显示全部楼层
Wladilen Stepanowitsch LetochowBone has a high potential to regenerate after damage; however, the efficacious repair of large defects resulting from resection, trauma, extended fractures, or inadequately vascularized bone gaps will not achieve satisfactory healing and will be considered non-union [1] (Fig. 5.1).
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