This will be the first comprehensive treatment of the emerging area of therapeutic micro- and nanotechnology. Subjects covered include: cell-based therapeutics, regenerative medicine - merging cells with micro- and nanosystems, and integrating MEMS with cells and tissues; Drug delivery - intravasc
BioMEMS and Biomedical Nanotechnology
✍ Scribed by Tejal Desai, Mauro Ferrari;Tejal Desai;Sangeeta Bhatia
- Publisher
- Springer
- Year
- 2006
- Tongue
- English
- Leaves
- 387
- Series
- Biomems and Biological Nanotechnology
- Edition
- 1
- Category
- Library
No coin nor oath required. For personal study only.
✦ Synopsis
This will be the first comprehensiveВ treatmentВ ofВ the emerging area of therapeutic micro- and nanotechnology. Subjects covered include: cell-based therapeutics,В regenerative medicine -В В merging cells with micro- and nanosystems, and integrating MEMS with cells and tissues; Drug delivery - intravascular nanoparticles for drug targeting andВ В nonvascular delivery (implantable, oral, inhalable); molecular surface engineering for the biological interface, biomolecule patterning and cell patterning
В
В
В
В
В
✦ Subjects
Специальные дисциплины;Наноматериалы и нанотехнологии;Нанобиотехнология;
📜 SIMILAR VOLUMES
Volume 1 of the multi-volume reference, BioMEMS and Biomedical Nanotechnology, focuses on synthetic nanodevices and the synthesis of nanomaterials and the generation of nanoscale features. The nanomaterials include polymeric microspheres and nanostructures, carbon nanotubes, silicon, silicon dioxide
<P>Contributions reporting on fundamental and applied investigations of the material science, biochemistry, and physics of biomedical microdevices with applications to Genomics and Proteomics. Topics include gene expression profiling utilizing microarray technology; imaging and sensing for gene dete
<P>This will be the first comprehensiveВ treatmentВ ofВ the emerging area of therapeutic micro- and nanotechnology. Subjects covered include: cell-based therapeutics,В regenerative medicine -В В merging cells with micro- and nanosystems, and integrating MEMS with cells and tissues; Drug delivery -
<p><P><STRONG>Abe Lee</STRONG> has been working on micro/ and nanotechnology for biomedical and biotech applications since 1992. His recent research focuses on the development of integrated micro and nano fluidic chip processors for the following applications: point-of-care diagnostics, "smart" nano