bioquant osteo ii image analysis software (OsteoMetrics inc)
90
Structured Review
OsteoMetrics inc
bioquant osteo ii image analysis software
Bioquant Osteo Ii Image Analysis Software, supplied by OsteoMetrics inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/bioquant+osteo+ii+image+analysis+software/bioquant+osteo+ii+image+analysis+software/pmc06084354-112-6-12
Average 90 stars, based on 1 article reviews
Bioquant Osteo Ii Image Analysis Software, supplied by OsteoMetrics inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/bioquant+osteo+ii+image+analysis+software/bioquant+osteo+ii+image+analysis+software/pmc06084354-112-6-12
Average 90 stars, based on 1 article reviews
bioquant osteo ii image analysis software - by Bioz Stars,
2026-10
90/100 stars
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Software:Article Title: New bone formation and trabecular bone microarchitecture of highly porous tantalum compared to titanium implant threads: A pilot canine study Article Snippet: .. All histomorphometric analyses were performed using Article Title: Comparative study of the osseous healing process following three different techniques of bone augmentation in the mandible: an experimental study. Article Snippet: The aim of this study was to evaluate the osseointegration of three different bone grafting techniques.. Forty-eight mature New Zealand rabbits were divided randomly into three groups of 16 each.. Horizontal augmentation was performed on the corpus of the mandible using three different techniques: free bone graft (FBG), free periosteal bone graft (PBG), pedicled bone flap (BF). Article Title: Outcome after placement of tantalum porous engineered dental implants in fresh extraction sockets: a canine study. Article Snippet: T (Ta)-based, porous engineered implants have been scientifically and clinically documented for more than 15 years in orthopedic medicine.1,2 In the biologic environment, Ta exhibits excellent compatibility and corrosion resistance.3,4 Independent studies have documented the structural and mechanical properties of Ta porous biomaterial; its three-dimensional cellular structure is similar to cancellous bone, with a high coefficient of friction, high porosity (up to 80%), average pore size of 430 μm, and low modulus of elasticity (3 GPa).5–7 These combined features uniquely differentiate the Ta porous biomaterial from other metallic biomaterials with lesser porosity, including sintered titanium bead surfaces, titanium plasma– sprayed surfaces, titanium fiber mesh, and titanium foam.5,7–9 In light of its success in orthopedic applications, the Ta porous biomaterial was applied to a multithreaded, tapered dental implant design.. In addition to conventional bone‐to‐implant contact (osseointegration), a geometric network of interconnected pores is designed for bone ingrowth and propagation throughout the porous structure to augment anchorage of the implant.10–12 The combination of bone-to-implant contact and bone ingrowth and propagation within the porous material has been termed osseoincorporation.13 In a previous canine study, Ta porous dental implants placed in healed extraction sites demonstrated new bone formation within the Ta pores and stability similar to that of a conventional threaded implant.14 To shorten treatment time, an implant may be placed immediately into a fresh extraction socket.. However, animal and human studies have reported 1Manager of Research, Zimmer Dental, Carlsbad, California, USA. Article Title: Cartilage-specific deletion of ephrin-B2 in mice results in early developmental defects and an osteoarthritis-like phenotype during aging in vivo Article Snippet: The bone mineral density (BMD) was determined using a Lunar PixiMUS 1.46 (GE Lunar Corporation, Madison, WI, USA). .. The morphometric analyses, including the bone length and hip bone measurements, were performed directly on the acquired images using a calibrated program of the Article Title: Sodium iodoacetate induced osteoarthrosis model in rabbit temporomandibular joint: CT and histological study (part I). Article Snippet: Studies to elucidate the pathophysiology of osteoarthrosis have been hampered by the lack of a rapid, reproducible animal model that mimics the histopathology and symptoms associated with the disease.. The aim of this study is to evaluate the radiological, histological and histomorphometrical findings of four different concentrations of sodium iodoacetate (MIA) to create osteoarthrosis by using an arthrocentesis technique on rabbit temporomandibular joint (TMJ).. 12 New Zealand white male rabbits received an injection of MIA (50 ml dose of 1.5, 2, 2.5, 3 mg/ml concentrations) to a single joint of each group by arthrocentesis. Microscopy:Article Title: New bone formation and trabecular bone microarchitecture of highly porous tantalum compared to titanium implant threads: A pilot canine study Article Snippet: .. All histomorphometric analyses were performed using Article Title: Outcome after placement of tantalum porous engineered dental implants in fresh extraction sockets: a canine study. Article Snippet: T (Ta)-based, porous engineered implants have been scientifically and clinically documented for more than 15 years in orthopedic medicine.1,2 In the biologic environment, Ta exhibits excellent compatibility and corrosion resistance.3,4 Independent studies have documented the structural and mechanical properties of Ta porous biomaterial; its three-dimensional cellular structure is similar to cancellous bone, with a high coefficient of friction, high porosity (up to 80%), average pore size of 430 μm, and low modulus of elasticity (3 GPa).5–7 These combined features uniquely differentiate the Ta porous biomaterial from other metallic biomaterials with lesser porosity, including sintered titanium bead surfaces, titanium plasma– sprayed surfaces, titanium fiber mesh, and titanium foam.5,7–9 In light of its success in orthopedic applications, the Ta porous biomaterial was applied to a multithreaded, tapered dental implant design.. In addition to conventional bone‐to‐implant contact (osseointegration), a geometric network of interconnected pores is designed for bone ingrowth and propagation throughout the porous structure to augment anchorage of the implant.10–12 The combination of bone-to-implant contact and bone ingrowth and propagation within the porous material has been termed osseoincorporation.13 In a previous canine study, Ta porous dental implants placed in healed extraction sites demonstrated new bone formation within the Ta pores and stability similar to that of a conventional threaded implant.14 To shorten treatment time, an implant may be placed immediately into a fresh extraction socket.. However, animal and human studies have reported 1Manager of Research, Zimmer Dental, Carlsbad, California, USA. |