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2013
A Alivisatos P, Andrews AM, Boyden ES, Chun M, Church GM, Deisseroth K, Donoghue JP, Fraser SE, Lippincott-Schwartz J, Looger LL et al..  2013.  Nanotools for neuroscience and brain activity mapping.. ACS Nano. 7(3):1850-66.
A Alivisatos P, Andrews AM, Boyden ES, Chun M, Church GM, Deisseroth K, Donoghue JP, Fraser SE, Lippincott-Schwartz J, Looger LL et al..  2013.  Nanotools for neuroscience and brain activity mapping.. ACS Nano. 7(3):1850-66.
A Alivisatos P, Andrews AM, Boyden ES, Chun M, Church GM, Deisseroth K, Donoghue JP, Fraser SE, Lippincott-Schwartz J, Looger LL et al..  2013.  Nanotools for neuroscience and brain activity mapping.. ACS Nano. 7(3):1850-66.
A Alivisatos P, Andrews AM, Boyden ES, Chun M, Church GM, Deisseroth K, Donoghue JP, Fraser SE, Lippincott-Schwartz J, Looger LL et al..  2013.  Nanotools for neuroscience and brain activity mapping.. ACS nano. 7(3):1850-66.
A Alivisatos P, Andrews AM, Boyden ES, Chun M, Church GM, Deisseroth K, Donoghue JP, Fraser SE, Lippincott-Schwartz J, Looger LL et al..  2013.  Nanotools for neuroscience and brain activity mapping.. ACS nano. 7(3):1850-66.
A Alivisatos P, Andrews AM, Boyden ES, Chun M, Church GM, Deisseroth K, Donoghue JP, Fraser SE, Lippincott-Schwartz J, Looger LL et al..  2013.  Nanotools for neuroscience and brain activity mapping.. ACS nano. 7(3):1850-66.
A Alivisatos P, Andrews AM, Boyden ES, Chun M, Church GM, Deisseroth K, Donoghue JP, Fraser SE, Lippincott-Schwartz J, Looger LL et al..  2013.  Nanotools for neuroscience and brain activity mapping.. ACS nano. 7(3):1850-66.
Deosaran E, Larsen KB, Hua R, Sargent G, Wang Y, Kim S, Lamark T, Jauregui M, Law K, Lippincott-Schwartz J et al..  2013.  NBR1 acts as an autophagy receptor for peroxisomes.. Journal of cell science. 126(Pt 4):939-52.
Sternson SM, J Betley N, Cao ZFang Huang.  2013.  Neural circuits and motivational processes for hunger.. Current Opinion in Neurobiology. 23(3):353-60.
O’Connor DH, S Hires A, Guo ZV, Li N, Yu J, Sun Q-Q, Huber D, Svoboda K.  2013.  Neural coding during active somatosensation revealed using illusory touch.. Nature Neuroscience. 16(7):958-65.
O’Connor DH, S Hires A, Guo ZV, Li N, Yu J, Sun Q-Q, Huber D, Svoboda K.  2013.  Neural coding during active somatosensation revealed using illusory touch.. Nature Neuroscience. 16(7):958-65.
Wardill TJ, Chen T-W, Schreiter ER, Hasseman JP, Tsegaye G, Fosque BF, Behnam R, Shields BC, Ramirez M, Kimmel BE et al..  2013.  A neuron-based screening platform for optimizing genetically-encoded calcium indicators.. PLoS One. 8:e77728.
Wardill TJ, Chen T-W, Schreiter ER, Hasseman JP, Tsegaye G, Fosque BF, Behnam R, Shields BC, Ramirez M, Kimmel BE et al..  2013.  A neuron-based screening platform for optimizing genetically-encoded calcium indicators.. PLoS One. 8:e77728.
Wardill TJ, Chen T-W, Schreiter ER, Hasseman JP, Tsegaye G, Fosque BF, Behnam R, Shields BC, Ramirez M, Kimmel BE et al..  2013.  A neuron-based screening platform for optimizing genetically-encoded calcium indicators.. PLoS One. 8:e77728.
Soto F., Watkins K.L, Johnson R.E, Schottler F., Kerschensteiner D..  2013.  NGL-2 Regulates Pathway-Specific Neurite Growth and Lamination, Synapse Formation, and Signal Transmission in the Retina. Journal of Neuroscience. 33(29):11949-11959.
Soto F., Watkins K.L, Johnson R.E, Schottler F., Kerschensteiner D..  2013.  NGL-2 Regulates Pathway-Specific Neurite Growth and Lamination, Synapse Formation, and Signal Transmission in the Retina. Journal of Neuroscience. 33(29):11949-11959.
Burns R, Roncal WGray, Kleissas D, Lillaney K, Manavalan P, Perlman E, Berger DR, Bock DD, Chung K, Grosenick L et al..  2013.  The Open Connectome Project Data Cluster: Scalable analysis and vision for high-throughput neuroscience.. Scientific and Statistical Database Management: International Conference, SSDBM ... : Proceedings. International Conference on Scientific and Statistical Database Management.
Burns R, Roncal WGray, Kleissas D, Lillaney K, Manavalan P, Perlman E, Berger DR, Bock DD, Chung K, Grosenick L et al..  2013.  The Open Connectome Project Data Cluster: Scalable analysis and vision for high-throughput neuroscience.. Scientific and Statistical Database Management: International Conference, SSDBM ... : Proceedings. International Conference on Scientific and Statistical Database Management.
Marvin JS, Borghuis BG, Tian L, Cichon J, Harnett MT, Akerboom J, Gordus A, Renninger SL, Chen T-W, Bargmann CI et al..  2013.  An optimized fluorescent probe for visualizing glutamate neurotransmission.. Nature Methods. 10:162-70.
Portugues R, Severi KE, Wyart C, Ahrens MB.  2013.  Optogenetics in a transparent animal: circuit function in the larval zebrafish.. Current Opinion in Neurobiology. 23(1):119-26.
Ruiz O, Lustig BR, Nassi JJ, Cetin A, Reynolds JH, Albright TD, Callaway EM, Stoner GR, Roe AW.  2013.  Optogenetics through windows on the brain in the nonhuman primate.. Journal of neurophysiology. 110(6):1455-67.
Hooks BM, Mao T, Gutnisky DA, Yamawaki N, Svoboda K, Shepherd GMG.  2013.  Organization of cortical and thalamic input to pyramidal neurons in mouse motor cortex.. The Journal of Neuroscience. 33(2):748-60.
Hooks BM, Mao T, Gutnisky DA, Yamawaki N, Svoboda K, Shepherd GMG.  2013.  Organization of cortical and thalamic input to pyramidal neurons in mouse motor cortex.. The Journal of Neuroscience. 33(2):748-60.
Swart EC, Bracht JR, Magrini V, Minx P, Chen X, Zhou Y, Khurana JS, Goldman AD, Nowacki M, Schotanus K et al..  2013.  The Oxytricha trifallax macronuclear genome: a complex eukaryotic genome with 16,000 tiny chromosomes.. PLoS Biology. 11(1):e1001473.
Swart EC, Bracht JR, Magrini V, Minx P, Chen X, Zhou Y, Khurana JS, Goldman AD, Nowacki M, Schotanus K et al..  2013.  The Oxytricha trifallax macronuclear genome: a complex eukaryotic genome with 16,000 tiny chromosomes.. PLoS Biology. 11(1):e1001473.