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Bone tissue

Body fluids and tissues Tantalum is a very stable passive metal and completely inert to body fluids and tissues. Bone and tissue do not recede from tantalum, which makes it attractive as an implant material for the human body" . [Pg.899]

The remainder of this chapter will deal with natural polymers. These are large molecules, produced by plants and animals, that carry out the many life-sustaining processes in a living cell. The cell membranes of plants and the woody structure of trees are composed in large part of cellulose, a polymeric carbohydrate. We will look at the structures of a variety of different carbohydrates in Section 23.3. Another class of natural polymers are the proteins. Section 23.4 deals with these polymeric materials that make up our tissues, bone, blood, and even hair. ... [Pg.611]

Scleroproteins, insoluble in most solvents. Localized in connective tissue, bone, hair, and skin. The two principal classes are the collagens and keratins Nucleoproteins, nucleic acid... [Pg.208]

Imaging studies also may help to identify anatomic localization of the infection. These studies usually are performed in conjunction with other tests to establish or rule out the presence of an infection. X-rays are performed commonly to establish the diagnosis of pneumonia, as well as the severity of disease (single versus multilobe involvement). CT scans are a type of x-ray that produces a three-dimensional image of the combination of soft tissue, bone, and blood vessels. In contrast, MRI use electromagnetic radio waves to produce two- or three-dimensional images of soft tissue and blood vessels with... [Pg.1023]

In vitro analyses of americium are routinely performed in situations where in vivo analyses cannot be obtained or in support of an in vivo monitoring program. Urine is the preferred sample for in vitro analyses of americium, although other sample types, such as feces, tissue, bone, or blood, can also be used on a more limited basis. Urine provides for an analysis of soluble or transportable americium, fecal analysis can be used to measure ingestion or clearance of americium, and tissue is used to assess whole or regional body burdens of americium (Guilmette and Bay 1981 Ide 1986 Ide et al. 1985 Mclnroy et al. 1985). [Pg.204]

In contrast, some cytokines (e.g. some CSFs and EPO) appear to be expressed constitutively. In yet other instances cytokines such as PDGF and TGF-P are stored in cytoplasmic granules and can be rapidly released in response to appropriate stimuli. Other cytokines (mainly ones with growth factor activity, e.g. TGF-P, FGF and IL-1) are found bound to the extracellular matrix in connective tissue, bone and skin. These are released, bringing about a biological response upon tissue injury. [Pg.209]

Endocrine therapy is the treatment of choice for patients who have hormone receptor-positive metastases in soft tissue, bone, pleura, or, if asymptomatic, viscera. Compared with chemotherapy, endocrine therapy has an equal probability of response and a better safety profile. [Pg.698]

Dr. O Sullivan Volume Fractions Implant" Osseointegration New Bone in Available Space = Bone/(Soft tissue + Bone)... [Pg.340]

Each specimen was dehydrated, infiltrated and embedded in Technovit based methylmethacrylate. One section was cut and around in preparation for scanning electron microscopy (SEM). In each case, three overview photos were necessary and four high magnification fields (40X) were photographed and digitized. These fields were later analyzed for volume fraction of soft tissue, bone... [Pg.341]

Cefalotin is used for bacterial infections of the lower respiratory tract, urinary tract, skin, soft tissues, bones and joints, sepsis, peritonitis, osteomyelitis, mastitis, infected wounds, and post-operational infections. Synonyms of this drag are ceflin, seffein, coaxin, and others. [Pg.443]


See other pages where Bone tissue is mentioned: [Pg.451]    [Pg.88]    [Pg.1126]    [Pg.372]    [Pg.1299]    [Pg.101]    [Pg.294]    [Pg.488]    [Pg.341]    [Pg.239]    [Pg.249]    [Pg.351]    [Pg.458]    [Pg.458]    [Pg.10]    [Pg.238]    [Pg.482]    [Pg.607]    [Pg.207]    [Pg.194]    [Pg.340]    [Pg.121]    [Pg.283]    [Pg.284]    [Pg.286]    [Pg.288]    [Pg.290]    [Pg.292]    [Pg.294]    [Pg.296]    [Pg.298]    [Pg.300]    [Pg.302]    [Pg.304]    [Pg.306]    [Pg.308]    [Pg.310]    [Pg.341]    [Pg.109]    [Pg.303]    [Pg.182]   


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Applications bone tissue

Applications in Bone Tissue Engineering

Applications of self-assembled nanostructures for bone tissue engineering

Bioactive Nano-hybrids for Bone Tissue Regeneration

Bioactive molecule-releasing scaffolds for bone tissue engineering

Biological behavior bone tissues

Biomimetic bone tissues

Biomimetic phosphate nanocomposites for bone-tissue regeneration

Bone Tissue Models

Bone implants, tissue-engineered product

Bone marrow tissue typing

Bone mechanics trabecular tissue material

Bone tissue cellular functions

Bone tissue composition

Bone tissue engineering

Bone tissue engineering applications

Bone tissue engineering biodegradable polymers

Bone tissue engineering chitosan

Bone tissue engineering clinical applications

Bone tissue engineering collagen

Bone tissue engineering hydroxyapatite

Bone tissue engineering strategy

Bone tissue engineering testing

Bone tissue engineering three dimensional scaffolds

Bone tissue engineering using functional marine biomaterials

Bone tissue engineering, injectable

Bone tissue hierarchical structure

Bone tissue nanocomposites

Bone tissue regeneration biomaterials

Bone tissue regeneration carbon-based materials

Bone tissue regeneration metals

Bone tissue regeneration, polyphosphazene

Bone tissue repair and regeneration

Bone tissue scaffolds

Bone tissue-bonding mechanism

Bone-tissue regeneration

Bone-tissue regeneration ceramics

Bone-tissue regeneration composite-based scaffolds

Bone-tissue regeneration polymers

Bone-tissue regeneration processing

Carbon and inorganic nanomaterial-reinforced polymeric nanocomposites for bone tissue engineering

Ceramic-polymer nanocomposites for bone-tissue regeneration

Implant material bone tissue

In bone tissues

Materials for bone-tissue regeneration ceramics and polymers

Mineralization bone tissue

Modified Layered Silicate Biomaterials for Regenerative Medicine of Bone Tissue

Nanocomposites for bone-tissue regeneration properties and processing

Polymer composite structures for bone and cartilage tissue engineering

Polyphosphazenes bone tissue regeneration

Polyurethanes for bone tissue engineering

Practice Bone Tissue

Requirements for scaffolds in bone-tissue engineering

Scaffolds bone-tissue-engineering

Self-assembled nanostructures for bone tissue engineering

Tissue engineering bone, biodegradable injectable

Tissue-engineered bone replacements

Tissues bone marrow

Tissues density, trabecular bone

WAW and SAW Bound in Bone Tissue

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