1.
T.A. Desai, W.H. Chu, J.K. Tu, G.M. Beattie, A. Hayek, and M. Ferrari, “Microfabricated
Immunoisolating Biocapsules”, Biotechnology and Bioengineering, Vol. 57, No.
1, pp.118-120, 1997.
2.T.A.
Desai, W.H. Chu, J. Tu, P. Shrewsbury, and M. Ferrari, “Microfabricated Biocapsules
for Cell Xenografts: a Review”, Micro and Nanofabricated Electro-Optical-
Mechanical Systems for Biomedical and Environmental Application, Ed. P. Gourley,
SPIE Proceeding Series, Vol. 2978, pp. 216-226, 1997.
3.W.H.
Chu, T. Huen, J. Tu, and M. Ferrari, “Silicon-micromachined Direct Pore Filters
for Ultrafiltration”, Micro and Nanofabricated Electro-Optical- Mechanical
Systems for Biomedical and Environmental Application, P. Gourley, Ed. SPIE
Proceeding Series, Vol. 2978, pp. 111-122, 1997.
4.
T.A. Desai, W.H. Chu, G. Rasi, P. Sinibaldi-Vallebona, P. Borboni, G. Beattie,
A. Hayek, and M. Ferrari, “Implantation of Microfabricated Immunoisolating
Biocapsules”, Micro and Nanofabricated Electro-Optical- Mechanical Systems
for Biomedical and Environmental Application, Ed. P. Gourley, SPIE Proceeding
Series, Vol. 3258, pp. 40-47, 1998.
5.
D. Hansford, T. Desai, J. Tu, and M. Ferrari, “Biocompatible Silicon Wafer
Bonding for Biomedical Microdevices”, Micro and Nanofabricated Electro-Optical-
Mech. Systems for Biomedical and Environmental Application, Ed. P. Gourley,
SPIE Proceeding Series, Vol. 3258, pp. 164-168, 1998.
6.W.H.
Chu, R. Chin, T. Huen and M. Ferrari, “Silicon Membrane Nanofilters from Sacrificial
Oxide Removal”, Journal of MicroelectroMechanical Systems, Vol. 8, No. 1,
1999.
7.T.A.
Desai, W.H. Chu, G. Rasi, P.S. Vallebona, E. Guarino, and M. Ferrari, “Microfabricated
Biocapsules Provide Short-Term Immunoisolation of Insulinoma Xenografts”,
Biomedical Microdevices, Vol. 1, No. 2, 131-181, 1999.
8.J.K.
Tu, T. Huen, R. Szema, and M. Ferrari, “Filtration of Sub-100nm Particles
Using a Bulk-Micromachined, Direct-Bonded Silicon Filter”, Biomedical Microdevices,
Vol. 1, No. 2, 113-120, 1999.
9.T.A.
Desai, D. Hansford, M. Ferrari, “Characterization of Micromachined Silicon
Membranes for Immunoisolation and Bioseparation Applications”, Journal of
Membrane Science, Vol. 1, No. 11, 1999.
10.T.
A. Desai, D. J. Hansford, L. Kulinsky, A. H. Nashat, G. Rasi, J. Tu, Y. Wang,
M. Zhang, and M. Ferrari, “Nanopore Technology for Biomedical Applications”,
Biomedical Microdevices 2:1, 11-40, 1999.
11.H-Y.
Ying, N. Holman, M. Zhang, M. Ferrari, et al., “Detecting Exposure to Environmental
Organic Toxins in Individual Cells: Towards Development of a Micro-fabricated
Device,” Micro and Nanofabricated Structures and Devices for Biomedical Environmental
Applications II, Ed. M. Ferrari, SPIE Proceeding Series, Vol. 3606, pp. 55-62,
1999.
12.L.
Kulinsky, Y. Wang, and M. Ferrari, “Electroviscous Effects in Microchannels,”
Micro and Nanofabricated Structures and Devices for Biomedical Environmental
Applications II, Ed. M. Ferrari, SPIE Proceedings Series, Vol. 3606, pp. 158-168,
1999.
13.Y.
Wang and M. Ferrari, “Surface Modification of Micromachined Silicon Filters”
Journal of Materials Science 35:1-8, 2000.
14.M.
Ferrari, “Nanomechanics, and Biomedical Nanomechanics: Eshelby’s inclusion
and inhomogeneity problems at the discrete/continuum interface”, Biomedical
Microdevices, 2:4, 273-281, 2000.
15.P.
Goldschmidt-Clermont, D. Kandzari, S. Khouri, M. Ferrari, “Nanotechnology
Needs for Cardiovascular Sciences”, Biomedical Microdevices, 3:2, 83-87, 2001.
16.T. A. Desai, D. J. Hansford, L. Leoni, M. Essenpreis, M. Ferrari, “Nanoporous
Anti-fouling Silicon Membranes for Implantable Biosensor Applications”, Biosensors
and Bioelectronics, Vol. 15 (9-10), pp. 453-462, 2000.
17.N.
Moldovan, M. Ferrari, “Prospects for Microtechnology and Nanotechnology in
Bioengineering of Replacement Microvessels” , Arch. Pathol. Lab. Med., 126:111-115,
2002.
18.S.
Lee, J. Lewis, M. Ferrari, “Biologic Nanotechnology”, Proceedings of the National
Academy of Sciences (invited)
19.M.
Ferrari, “Drug-Delivery from Micromachined and Nanotechnological Devices,”
Pharmaceutical Science and Technology Today, Elsevier, (invited).
20.N.
Kyureghyan and M. Ferrari, “Biomechanical Factors That Determine Molecular
Therapeutic Uptake in Cancer: A Poroelasticity-Based Model and Parameter Study”,
Computer Modeling in Engineering and Sciences, (submitted).