Tissue integration of collagen‐based matrices: an experimental study in mice
Identifieur interne : 003616 ( Main/Exploration ); précédent : 003615; suivant : 003617Tissue integration of collagen‐based matrices: an experimental study in mice
Auteurs : Daniel S. Thoma [Suisse] ; Cristina C. Villar [États-Unis] ; David L. Cochran [États-Unis] ; Christoph H. F. H Mmerle [Suisse] ; Ronald E. Jung [Suisse]Source :
- Clinical Oral Implants Research [ 0905-7161 ] ; 2012-12.
English descriptors
- KwdEn :
- Alternative materials, Angiogenic patterns, Augmentation, Autogenous, Autogenous tissue, Blood vessel, Blood vessel formation, Blood vessels, Bone regeneration, Cell migration, Central compartment, Central compartments, Clin, Clinical periodontology, Clinical trial, Cochran, Collagen, Collagen matrices, Collagen matrix, Collagen membrane, Collagen membranes, Collagen network, Collagen network blood vessels, Connective, Connective tissue, Connective tissue formation, Denser network, Dental material science, Descriptive histology, Development core team, Edentulous ridges, Experimental study, Extracellular matrix synthesis, Full thickness onlay grafts, Geistlich pharma, Graft, Hammerle, Higher amount, Histologic, Histologic analyses, Histomorphometric measurements, Impl, Implants research, Intimate integration, John wiley sons, John wiley sons thoma, Jung, Keratinized tissue, Larger amounts, Matrix, Matrix allografts, Mechanical environment, Median, More blood vessels, Nude mice, Oral impl, Outer compartments, Periodontology, Pilot study, Present study, Regeneration, Removable prosthodontics, Residual collagen network, Soft tissue, Soft tissue volume, Soft tissue volume augmentation, Soft tissues, Standard deviations, Statistical analysis, Texas health science center, Thoma, Tissue grafts, Tissue integration, Tissue regeneration, Volumetric stability, Wound healing.
- Teeft :
- Alternative materials, Angiogenic patterns, Augmentation, Autogenous, Autogenous tissue, Blood vessel, Blood vessel formation, Blood vessels, Bone regeneration, Cell migration, Central compartment, Central compartments, Clin, Clinical periodontology, Clinical trial, Cochran, Collagen, Collagen matrices, Collagen matrix, Collagen membrane, Collagen membranes, Collagen network, Collagen network blood vessels, Connective, Connective tissue, Connective tissue formation, Denser network, Dental material science, Descriptive histology, Development core team, Edentulous ridges, Experimental study, Extracellular matrix synthesis, Full thickness onlay grafts, Geistlich pharma, Graft, Hammerle, Higher amount, Histologic, Histologic analyses, Histomorphometric measurements, Impl, Implants research, Intimate integration, John wiley sons, John wiley sons thoma, Jung, Keratinized tissue, Larger amounts, Matrix, Matrix allografts, Mechanical environment, Median, More blood vessels, Nude mice, Oral impl, Outer compartments, Periodontology, Pilot study, Present study, Regeneration, Removable prosthodontics, Residual collagen network, Soft tissue, Soft tissue volume, Soft tissue volume augmentation, Soft tissues, Standard deviations, Statistical analysis, Texas health science center, Thoma, Tissue grafts, Tissue integration, Tissue regeneration, Volumetric stability, Wound healing.
Abstract
To test whether or not tissue integration, biodegradation, and new blood vessel formation in two collagen‐based matrices depend on the level of chemical cross‐linking.
Url:
DOI: 10.1111/j.1600-0501.2011.02356.x
Affiliations:
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Le document en format XML
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<profileDesc><textClass><keywords scheme="KwdEn" xml:lang="en"><term>Alternative materials</term>
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<term>Augmentation</term>
<term>Autogenous</term>
<term>Autogenous tissue</term>
<term>Blood vessel</term>
<term>Blood vessel formation</term>
<term>Blood vessels</term>
<term>Bone regeneration</term>
<term>Cell migration</term>
<term>Central compartment</term>
<term>Central compartments</term>
<term>Clin</term>
<term>Clinical periodontology</term>
<term>Clinical trial</term>
<term>Cochran</term>
<term>Collagen</term>
<term>Collagen matrices</term>
<term>Collagen matrix</term>
<term>Collagen membrane</term>
<term>Collagen membranes</term>
<term>Collagen network</term>
<term>Collagen network blood vessels</term>
<term>Connective</term>
<term>Connective tissue</term>
<term>Connective tissue formation</term>
<term>Denser network</term>
<term>Dental material science</term>
<term>Descriptive histology</term>
<term>Development core team</term>
<term>Edentulous ridges</term>
<term>Experimental study</term>
<term>Extracellular matrix synthesis</term>
<term>Full thickness onlay grafts</term>
<term>Geistlich pharma</term>
<term>Graft</term>
<term>Hammerle</term>
<term>Higher amount</term>
<term>Histologic</term>
<term>Histologic analyses</term>
<term>Histomorphometric measurements</term>
<term>Impl</term>
<term>Implants research</term>
<term>Intimate integration</term>
<term>John wiley sons</term>
<term>John wiley sons thoma</term>
<term>Jung</term>
<term>Keratinized tissue</term>
<term>Larger amounts</term>
<term>Matrix</term>
<term>Matrix allografts</term>
<term>Mechanical environment</term>
<term>Median</term>
<term>More blood vessels</term>
<term>Nude mice</term>
<term>Oral impl</term>
<term>Outer compartments</term>
<term>Periodontology</term>
<term>Pilot study</term>
<term>Present study</term>
<term>Regeneration</term>
<term>Removable prosthodontics</term>
<term>Residual collagen network</term>
<term>Soft tissue</term>
<term>Soft tissue volume</term>
<term>Soft tissue volume augmentation</term>
<term>Soft tissues</term>
<term>Standard deviations</term>
<term>Statistical analysis</term>
<term>Texas health science center</term>
<term>Thoma</term>
<term>Tissue grafts</term>
<term>Tissue integration</term>
<term>Tissue regeneration</term>
<term>Volumetric stability</term>
<term>Wound healing</term>
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<keywords scheme="Teeft" xml:lang="en"><term>Alternative materials</term>
<term>Angiogenic patterns</term>
<term>Augmentation</term>
<term>Autogenous</term>
<term>Autogenous tissue</term>
<term>Blood vessel</term>
<term>Blood vessel formation</term>
<term>Blood vessels</term>
<term>Bone regeneration</term>
<term>Cell migration</term>
<term>Central compartment</term>
<term>Central compartments</term>
<term>Clin</term>
<term>Clinical periodontology</term>
<term>Clinical trial</term>
<term>Cochran</term>
<term>Collagen</term>
<term>Collagen matrices</term>
<term>Collagen matrix</term>
<term>Collagen membrane</term>
<term>Collagen membranes</term>
<term>Collagen network</term>
<term>Collagen network blood vessels</term>
<term>Connective</term>
<term>Connective tissue</term>
<term>Connective tissue formation</term>
<term>Denser network</term>
<term>Dental material science</term>
<term>Descriptive histology</term>
<term>Development core team</term>
<term>Edentulous ridges</term>
<term>Experimental study</term>
<term>Extracellular matrix synthesis</term>
<term>Full thickness onlay grafts</term>
<term>Geistlich pharma</term>
<term>Graft</term>
<term>Hammerle</term>
<term>Higher amount</term>
<term>Histologic</term>
<term>Histologic analyses</term>
<term>Histomorphometric measurements</term>
<term>Impl</term>
<term>Implants research</term>
<term>Intimate integration</term>
<term>John wiley sons</term>
<term>John wiley sons thoma</term>
<term>Jung</term>
<term>Keratinized tissue</term>
<term>Larger amounts</term>
<term>Matrix</term>
<term>Matrix allografts</term>
<term>Mechanical environment</term>
<term>Median</term>
<term>More blood vessels</term>
<term>Nude mice</term>
<term>Oral impl</term>
<term>Outer compartments</term>
<term>Periodontology</term>
<term>Pilot study</term>
<term>Present study</term>
<term>Regeneration</term>
<term>Removable prosthodontics</term>
<term>Residual collagen network</term>
<term>Soft tissue</term>
<term>Soft tissue volume</term>
<term>Soft tissue volume augmentation</term>
<term>Soft tissues</term>
<term>Standard deviations</term>
<term>Statistical analysis</term>
<term>Texas health science center</term>
<term>Thoma</term>
<term>Tissue grafts</term>
<term>Tissue integration</term>
<term>Tissue regeneration</term>
<term>Volumetric stability</term>
<term>Wound healing</term>
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<front><div type="abstract">To test whether or not tissue integration, biodegradation, and new blood vessel formation in two collagen‐based matrices depend on the level of chemical cross‐linking.</div>
</front>
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<li>États-Unis</li>
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<name sortKey="H Mmerle, Christoph H F" sort="H Mmerle, Christoph H F" uniqKey="H Mmerle C" first="Christoph H. F." last="H Mmerle">Christoph H. F. H Mmerle</name>
<name sortKey="Jung, Ronald E" sort="Jung, Ronald E" uniqKey="Jung R" first="Ronald E." last="Jung">Ronald E. Jung</name>
<name sortKey="Thoma, Daniel S" sort="Thoma, Daniel S" uniqKey="Thoma D" first="Daniel S." last="Thoma">Daniel S. Thoma</name>
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<country name="États-Unis"><noRegion><name sortKey="Villar, Cristina C" sort="Villar, Cristina C" uniqKey="Villar C" first="Cristina C." last="Villar">Cristina C. Villar</name>
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