Biomedical Engineering Reference
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3. Batchelor PE, Liberatore GT, Wong JY, Porritt MJ, Fredrichs F, Droman GA,
Howells DW. 1999. Activated macrophages and microglia induce dopaminergic
sprouting in the injured striatum and express brain-derived neurotrophic factor
and glial cell line-derived neurotrophic factor. J. Neurosci. 19: 1708-1716.
4. Imai F, Suzuki H, Ota J, Nimomia T, Ono K, Sano H, Sawada M. 2007.
Neuroprotective effect of exogenous microglia in global brain ischemia. J Cereb.
Blood Flow Metab . 27: 488-500.
5. Basu S, Yang ST. 2005. Astrocyte growth and glial cell line derived neurotrophic
factor secretion in three-dimensional polyethylene terephthalate fibrous matri-
ces. Tissue Eng . 11: 940-952.
6. Bresjanac M, Antauer G. 2000. Reactive astrocytes of the quinolinic acid-lesioned
rat striatum express GFRalphaI as well as GDNF in vivo. Exp Neurol 164: 53-59.
7. Biran R, Martin DC, Tresco PA. 2005. Neuronal cell loss accompanies the brain
tissue response to chronically implanted silicon microelectrode arrays. Exp
Neurol 195: 115-126.
8. Biran R, Martin DC, Tresco PA. 2007. The brain tissue response to implanted
silicon microelectrode arrays is increased when the devices is tethered to the
skull. J Biomed Mater Res A . 82: 169-78.
9. Colias JC, Maneurlidis EE. 1957. Histopathological chances produced by
implanted electrodes in cat brains; comparison with histopathologic changes in
human and experimental puncture wounds. J Neurosurg 14: 302-28.
10. Dymond AM, Kaechele LE, Jurist JM, Crandall PH. 1970. Brain tissue reaction to
some chronically implanted metals. J Neurosurg 33: 574-80.
11. Leung BK, Biran R, Underwood CJ, Tresco PA. 2008. Characterization of microg-
lial attachment and cytokine release on biomaterials of differing surface chemis-
try. J Biomaterials 29: 3289-3297.
12. Yang CY, Song B, Ao Y, Nowak AP, Abelowitz RB, Korsak RA, Havton LA,
Deming TJ, Sofroniew MV. 2009. Biocompatibility of amphiphilic diblock
copolypeptide hydrogels in the central nervous system. Biomaterials 30: 2891-98.
13. Vandevord PJ, Gupta N, Wilson RB, Vinua RZ, Schaefer CJ, Canady AI, Wooley
PH. 2003. Immune reactions associated with silicone-based ventriculo-perito-
neal shunt malfunctions in children. Biomaterials 25: 3853-60.
14. Liang X, Wang A, Chao T, Tang H, McAllister II JP, Sulley SO, Ng KY. 2006.
Effect of cast molded rimpicin/silicone on Staphylococcus epidermidis biofiolm
formation. J Biomed Mater Res A 76: 580-88.
15. Kalousdian S, Karlan MS, Williams MA. 1998. Silicone elastomer cerebro-
spinal fluid shunt systems. Council on Scientific Affairs, American Medical
Association. Neurosurgery 42: 887-92.
16. Garton HJ, Piatt, JH Jr. Hydrocephalus. 2004. Pediatri Clin North Am 51: 305-25.
17. Sgouras S, Dipple SJ. An investigation of structural degradation of cerebro-
spinal fluid shunt valves performed using scanning electron microscopy and
d energy-dispensive X-ray microanalysis. 2004. J Neurosurg 100: 534-540.
18. Del Bigio MR. Biological reactions to cerebrospinal fluid shunt devices: A review
of the cellular pathology. 1998. Neurosurgery 42: 319-25.
19. Browd SR, Ragel RT, Gottfried ON, Kostle JR. Failure of cerebrospinal fluid
shunts: Part I: Obstruction and mechanical failure. 2006. Pediatr Neurol. 34:
83-92.
20. Bayston R, Ashraf W, Bhundia C. 2004. Mode of action of an antimicrobial bio-
material for use in hydrocephalus shunts. J Antimicrob Chemother 52: 7780-82.
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