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Silicones for Medical Devices

Biomedical silicones: Leveraging additive strategies to propel modern utility

January 20, 2023/in Silicones for Medical Devices/by Academic Web Pages
/wp-content/themes/awp-enfold/blank.png 0 0 Academic Web Pages /wp-content/themes/awp-enfold/blank.png Academic Web Pages2023-01-20 00:00:002023-09-23 14:26:10Biomedical silicones: Leveraging additive strategies to propel modern utility

Amphiphilic silicones for the facile dispersion of carbon nanotubes and formation of soft skin electrodes

December 21, 2022/in Silicones for Medical Devices/by Academic Web Pages
/wp-content/themes/awp-enfold/blank.png 0 0 Academic Web Pages /wp-content/themes/awp-enfold/blank.png Academic Web Pages2022-12-21 00:00:002023-09-23 14:26:10Amphiphilic silicones for the facile dispersion of carbon nanotubes and formation of soft skin electrodes

Characterizing the separation behavior of photocurable PDMS on a hydrogel film during VAT photopolymerization: A benchmark study

November 1, 2022/in Silicones for Medical Devices/by Academic Web Pages
/wp-content/themes/awp-enfold/blank.png 0 0 Academic Web Pages /wp-content/themes/awp-enfold/blank.png Academic Web Pages2022-11-01 00:00:002023-09-23 14:26:11Characterizing the separation behavior of photocurable PDMS on a hydrogel film during VAT photopolymerization: A benchmark study

Amphiphilic silicones to mitigate lens epithelial cell growth onto intraocular lenses

October 1, 2022/in Silicones for Medical Devices/by Academic Web Pages
/wp-content/themes/awp-enfold/blank.png 0 0 Academic Web Pages /wp-content/themes/awp-enfold/blank.png Academic Web Pages2022-10-01 00:00:002023-09-23 14:26:11Amphiphilic silicones to mitigate lens epithelial cell growth onto intraocular lenses

A thin whole blood smear prepared via a pumpless microfluidic

August 1, 2021/in Silicones for Medical Devices/by Academic Web Pages
/wp-content/themes/awp-enfold/blank.png 0 0 Academic Web Pages /wp-content/themes/awp-enfold/blank.png Academic Web Pages2021-08-01 00:00:002023-09-23 14:26:11A thin whole blood smear prepared via a pumpless microfluidic

Brightfield and fluorescence in-channel staining of thin blood smears generated in pumpless microfluidic

June 1, 2021/in Silicones for Medical Devices/by Academic Web Pages
/wp-content/themes/awp-enfold/blank.png 0 0 Academic Web Pages /wp-content/themes/awp-enfold/blank.png Academic Web Pages2021-06-01 00:00:002023-09-23 14:26:11Brightfield and fluorescence in-channel staining of thin blood smears generated in pumpless microfluidic

Amphiphilic, thixotropic additives for extrusion-based 3D printing of silica-reinforced silicone

April 1, 2021/in Silicones for Medical Devices/by Academic Web Pages
/wp-content/themes/awp-enfold/blank.png 0 0 Academic Web Pages /wp-content/themes/awp-enfold/blank.png Academic Web Pages2021-04-01 00:00:002023-09-23 14:26:12Amphiphilic, thixotropic additives for extrusion-based 3D printing of silica-reinforced silicone

Amphiphilic silicones to reduce the absorption of small hydrophobic molecules

January 1, 2021/in Silicones for Medical Devices/by Academic Web Pages
/wp-content/themes/awp-enfold/blank.png 0 0 Academic Web Pages /wp-content/themes/awp-enfold/blank.png Academic Web Pages2021-01-01 00:00:002023-09-23 14:26:12Amphiphilic silicones to reduce the absorption of small hydrophobic molecules

Thromboresistance of polyurethanes modified with PEO-silane amphiphiles

September 1, 2020/in Silicones for Medical Devices/by Academic Web Pages
/wp-content/themes/awp-enfold/blank.png 0 0 Academic Web Pages /wp-content/themes/awp-enfold/blank.png Academic Web Pages2020-09-01 00:00:002023-09-23 14:26:13Thromboresistance of polyurethanes modified with PEO-silane amphiphiles

Mechanical isotropy and post-cure shrinkage of polydimethylsiloxane printed with digital light processing

July 1, 2020/in Silicones for Medical Devices/by Academic Web Pages
/wp-content/themes/awp-enfold/blank.png 0 0 Academic Web Pages /wp-content/themes/awp-enfold/blank.png Academic Web Pages2020-07-01 00:00:002023-09-23 14:26:13Mechanical isotropy and post-cure shrinkage of polydimethylsiloxane printed with digital light processing
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Dr. Melissa A. Grunlan
5030 Emerging Technologies Building
3120 TAMU
College Station, TX 77843-3120
(979) 845-2406
ude.umat@nalnurgm

Affiliations at Texas A&M

  • Texas A&M University
  • Department of Biomedical Engineering
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