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Beirowski, B., Babetto, E., Coleman, M. P., &Martin, K. R. (2008). The WldS gene delays
axonal but not somatic degeneration in a rat glaucoma model. The European Journal of
Neuroscience , 28 , 1166-1179.
Bernstein, S. L., Guo, Y., Kelman, S. E., Flower, R. W., & Johnson, M. A. (2003). Func-
tional and cellular responses in a novel rodent model of anterior ischemic optic neurop-
athy. Investigative Ophthalmology and Visual Science , 44 , 4153-4162.
Boden, C., Sample, P. A., Boehm, A. G., Vasile, C., Akinepalli, R., & Weinreb, R. N.
(2002). The structure-function relationship in eyes with glaucomatous visual field loss
that crosses the horizontal meridian. Archives of Ophthalmology , 120 , 907-912.
Burgoyne, C. F., & Downs, J. C. (2008). Premise and prediction-how optic nerve head bio-
mechanics underlies the susceptibility and clinical behavior of the aged optic nerve head.
Journal of Glaucoma , 17 , 318-328.
Catrinescu, M. M., Chan, W., Mahammed, A., Gross, Z., & Levin, L. A. (2012). Superoxide
signaling and cell death in retinal ganglion cell axotomy: Effects of metallocorroles.
Experimental Eye Research , 97 , 31-35.
Cengiz, N., Ozturk, G., Erdogan, E., Him, A., & Elif, O. K. (2010). Consequences of
neurite transection in vitro.
Journal of Neurotrauma . http://dx.doi.org/10.1089/
neu.2009.0947 .
Chen, C. S., Johnson, M. A., Flower, R. A., Slater, B. J., Miller, N. R., & Bernstein, S. L.
(2008). A primate model of nonarteritic anterior ischemic optic neuropathy. Investigative
Ophthalmology and Visual Science , 49 , 2985-2992.
Cheng, H. C., & Burke, R. E. (2010). The WldS mutation delays anterograde, but not ret-
rograde, axonal degeneration of the dopaminergic nigro-striatal pathway in vivo. Journal
of Neurochemistry , 113 , 683-691.
Coleman, M. P., & Freeman, M. R. (2010). Wallerian degeneration, Wld(S), and Nmnat.
Annual Review of Neuroscience , 33 , 245-267.
Coleman, M. P., & Perry, V. H. (2002). Axon pathology in neurological disease: A neglected
therapeutic target. Trends in Neurosciences , 25 , 532-537.
Conforti, L., Adalbert, R., & Coleman, M. P. (2007). Neuronal death: Where does the end
begin? Trends in Neurosciences , 30 , 159-166.
Costello, F., Coupland, S., Hodge, W., Lorello, G. R., Koroluk, J., Pan, Y. I., et al. (2006).
Quantifying axonal loss after optic neuritis with optical coherence tomography. Annals of
Neurology , 59 , 963-969.
Cui, Q., &Harvey, A. R. (1995). At least two mechanisms are involved in the death of retinal
ganglion cells following target ablation in neonatal rats. The Journal of Neuroscience , 15 ,
8143-8155.
Danesh-Meyer, H. V., Papchenko, T., Savino, P. J., Law, A., Evans, J., & Gamble, G. D.
(2008). In vivo retinal nerve fiber layer thickness measured by optical coherence tomog-
raphy predicts visual recovery after surgery for parachiasmal tumors. Investigative Ophthal-
mology and Visual Science , 49 , 1879-1885.
Deckwerth, T. L., & Johnson, E. M., Jr. (1994). Neurites can remain viable after destruction
of the neuronal soma by programmed cell death (apoptosis). Developmental Biology , 165 ,
63-72.
Deng, J., Younge, B. R., Olshen, R. A., Goronzy, J. J., &Weyand, C. M. (2010). Th17 and
Th1 T-cell responses in giant cell arteritis. Circulation , 121 , 906-915.
Downs, J. C., Burgoyne, C. F., Seigfreid, W. P., Reynaud, J. F., Strouthidis, N. G., &
Sallee, V. (2011). 24-hour IOP telemetry in the nonhuman primate: Implant system per-
formance and initial characterization of IOP at multiple timescales. Investigative Ophthal-
mology and Visual Science , 52 , 7365-7375.
Ey, B., Kobsar, I., Blazyca, H., Kroner, A., & Martini, R. (2007). Visualization of
degenerating axons in a dysmyelinating mouse mutant with axonal loss. Molecular and
Cellular Neurosciences , 35 , 153-160.
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