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Abercrombie, M (1946). Estimation of nuclear population from microtome sections. Anat. Rec 94, 239-247.

Altman, J. and Bayer, S (1982). Development of the cranial nerve ganglia and related nuclei in the rat. Adv. Anat. Embryol. Cell Biol 74, 1-90.[Medline]

Barde, Y.-A (1989). Trophic factors and neuronal survival. Neuron 2, 1525-1534.[Medline]

Barde, Y.-A., Edgar, D. and Thoenen, H (1982). Purification of a new neurotrophic factor from mammalian brain. EMBO J 1, 549-553.[Medline]

Barres, B. A., Raff, M. C., Gaese, F., Bartke, I., Dechant, G. and Barde, Y.-A (1994). A crucial role for neurotrophin-3 in oligodendrocyte development. Nature 367, 371-375.[Medline]

Berkemeier, L., Winslow, J., Kaplan, D., Nicolics, K., Goeddel, D. and Rosental, A (1991). Neurotropin-5: A novel neurotropic factor that activates trk and trkB. Neuron 7, 857-866.[Medline]

Buchman, V. L. and Davies, A. M (1993). Different neurotrophins are expressed and act in a developmental sequence to promote the survival of embryonic sensory neurons. Development 118, 989-1001.[Abstract]

Coggeshall, R. E., (1992). A consideration of neural counting methods. Trends Neurosci 15, 9-13.[Medline]

Coggeshall, R. E., Pover, C. M. and Fitzgerald, M (1994). Dorsal root ganglion cell death and surviving numbers in relation to the development of sensory innervation in the rat hindlimb. Dev. Brain. Res 82, 193-212.[Medline]

Conover, J. C., Erickson, J. T., Katz, D. M., Bianchi, L. M., Poueymirou, W. T., McClain, J., Pan, L., Helgren, M., Ip, N. Y., Boland, P., Friedman, B., Wiegand, S., Vejsada, R., Kato, A. C., DeCjiara, T. M. and Yancopolous, G. D (1995). Neuronal deficits, not involving motor neurons, in mice lacking BDNF and/or NT -4. Nature 375, 235-238.[Medline]

Cordon-Cardo, C., Tapley, P., Jing, S., Nanduri, V., O\253Rourke, E., Lamballe, F., Kovary, K., Klein, R., Jones, K., Reichardt, L. and Barbacid, M (1991). The trk tyrosine kinase mediates the mitogenic properties of nerve growth factor and neurotrophin-3. Cell 66, 173-183.[Medline]

Crowley, C., Spencer, S. D., Nishimura, M. C., Chen, K. S., Pitts-Meek, S., Armanini, M. P., Ling, L. H., Mac Mahon, S. B., Shelton, D. L., and Levinson, A. D (1994). Mice lacking nerve growth factor display perinatal loss of sensory and sympathetic neurons yet develop basal forebrain cholinergic neurons. Cell 76, 1001-1011.[Medline]

Davies, A. and Lumsden, A (1984). Relation of target encouter and neuronal death to nerve growth factor responsiveness in the developing mouse trigeminal ganglion. J. Comp. Neurol 223, 124-137.[Medline]

Davies, A. M., Minichiello, L. and Klein, R (1995). Developmental changes in NT-3 signalling via trkA and trkB in embryonic neurons. EMBO J 14, 4482-4489.[Medline]

Davies, A. M (1988). The trigeminal system: an advantageous experimental model for studying neuronal development. Development 103, 175-183.

ElShamy, W. M., Linnarsson, S., Lee, K.-F., Jaensich, R. and Ernfors, P (1996). Prenatal and postnatal requirements of NT-3 for sympathetic neuroblast survival and innervation of specific targets. Development 122, 491-500.[Abstract]

Ernfors, P., Ibanez, C. F., Ebendal, T., Olson, L. and Persson, H (1990). Molecular cloning and neurotrophic activities of a protein with structural similarities to nerve growth factor: developmental and topographical expression in the brain. Proc. Natl. Acad. Sci. USA 87, 5454-5458.[Abstract/Free Full Text]

Ernfors, P., Merlio, J.-P. and Persson, H (1992). Cells expressing mRNA for neurotrophins and their receptors during embryonic rat development. Eur. J. Neurosci 4, 1140-1158.[Medline]

Ernfors, P., Lee, K.-F., Kucera, J. and Jaenisch, R (1994). Lack of neurotrophin-3 leads to deficiencies in the peripheral nervous system and loss of limb proprioceptive afferents. Cell 77, 503-512.[Medline]

Ernfors, P., Lee, K. F. and Jaenisch, R (1994). Mice lacking brain-derived neurotrophic factor develop with sensory deficits. Nature 368, 147-150.[Medline]

Ernfors, P., Van De Water, T. R., Loring, J. and Jaenisch, R (1995). Complementary roles of BDNF and NT-3 in the auditory and vestibular development. Neuron 14, 1153-1164.[Medline]

Farinas, I., Jones, K. R., Backus, C., Wang, X. Y. and Reichardt, L. F (1994). Severe sensory and sympathetic deficits in mice lacking neurotrophin-3. Nature 369, 658-61.[Medline]

Forbes, D. J. and Welt, C (1981). Neurogenesis in the trigeminal ganglion of the albino rat: A quantitative autoradiography study. J. Comp. Neurol 199, 133-147.[Medline]

Fundin, B. T., Rice, F. L., Silos-Santiago, I., Fagan, A. M., Aldakogius, H., Barbacid, M., Ernfors, P (1995). Differential effects of various neurotrophin and trk receptor deletion on mechanoreceptors in the mesenchymal sheath affiliated with mouse whisker follicles. Soc. Neurosci. Abstr._Fb_Gaese, F., Kolbeck, R. and Barde, Y.-A. (1994). Sensory ganglia require neurotrophin-3 early in development. Development 120, 1613-1619.[Abstract]

Glass, D. J., Nye, S. H., Hantzopoulos, P., Macchi, M. J., Squinto, S. P., Goldfarb, M.and Yancopoulos, G. D (1991). TrkB mediates BDNF/NT-3-dependent survival and proliferation in fibroblasts lacking the low affinity NGF receptor. Cell 66, 405-131.[Medline]

Hallb\232\232k, F., Ibanez, C. F. and Persson, H (1991). Evolutionary studies of the nerve growth factor family reveal a novel member abundantly expressed in xenopus ovary. Neuron 6, 1-20.[Medline]

Hamburger, V. and Levi-Montalcini, R (1949). Proliferation, differentiation and degeneration in the spinal ganglia of the chick embryo under normal and experimental conditions. J. Exp. Zool 111, 457-502.[Medline]

Hohn, A., Leibrock, J., Bailey, K. and Barde, Y. A (1990). Identification and characterization of a novel member of the nerve growth factor/brain-derived neurotrophic factor family. Nature 344, 339-341.[Medline]

Hory-Lee, F., Russel, M., Lindsay, R. M. and Frank, E (1993). Neurotrophin-3 supports the survival of developing muscle sensory neurons in culture. Proc. Natl. Acad. Sci. USA 90, 2613-2617.[Abstract/Free Full Text]

Ip, N., Ibanez, C., Nye, S., McClain, J., Jones, P., Gies, D., Belluscio, L., Le Beu, M., Espinosa III, M., Squinto, R., Persson, H. and Yancopolous, G (1992). Mammalian neurotrophin-4: Structure, distribution and receptor specificity. Proc. Natl. Acad. Sci. USA 89, 3060-3064.[Abstract/Free Full Text]

Ip, N., Stitt, T. N., Tapley, P., Klein, R., Glass, D., Fandl, J., Greene, L., Barbacid, M. and Yancopolous, G (1993). Similarities and differences in the way neurotrophins interact with the trk receptors in neuronal and nonneuronal cells. Neuron 10, 137-149.[Medline]

Jones, K. and Reichardt, L (1990). Molecular cloning of a human gene that is a member of the nerve grwoth factor family. Proc. Natl. Acad. Sci. USA 87, 8060-8064.[Abstract/Free Full Text]

Kaisho, Y., Yoshimura, K. and Nakahama, K (1990). Cloning and expression of a cDNA encoding a novel human neurotrophic factor. FEBS Lett 266, 187-191.[Medline]

Kalcheim, C., Carmeli, C. and Rosenthal, A (1992). Neurotrophin-3 is a mitogen for cultured neural creast cells. Proc. Natl. Acad. Sci. USA 89, 1661-1665.[Abstract/Free Full Text]

Klein, R., Nanduri, V., Jing, S., Lamballe, F., Tapley, P., Bryant, S., Cordon-Cardi, C., Jones, K., Reichardt, L. and Barbacid, M (1991). The trkB tyrosine protein kinase is a receptor for brain-derived neurotrophic factor and neurotrophin-3. Cell 66, 395-403.[Medline]

Klein, R., Silos, S. I., Smeyne, R. J., Lira, S. A., Brambilla, R., Bryant, S., Zhang, L., Snider, W. D. and Barbacid, M (1994). Disruption of the neurotrophin-3 receptor gene trkC eliminates la muscle afferents and results in abnormal movements. Nature 368, 249-251.[Medline]

Leibrock, J., Lottspeich, F., Hohn, A., Hofer, M., Hengerer, B., Masiakowski, P., Thoenen, H. and Barde, Y. A (1989). Molecular cloning and expression of brain-derived neurotrophic factor. Nature_Fb_341,_Fb_Lendahl, U., Zimmerman, L. B. and McKay, R. D. G. (1990). CNS stem cells express a new class of intermediate filament protein. Cell 60, 585-595.

Levi-Montalcini, R (1987). The nerve growth factor 35 years later. Science 237, 1154-1162.[Free Full Text]

Lewin, G. R. and Mendell, L. M (1993). Nerve growth factor and nociception. Trends Neurosci 19, 353-359.

Liu, X., Ernfors, P., Wu, H. and Jaenisch, R (1995). Sensory but not motor neuron deficits in mie lacking NT -4 and BDNF. Nature 375, 238-240.[Medline]

Maisonpierre, P. C., Belluscio, L., Squinto, S., Ip, N. Y., Furth, M. E., Lindsay, R. M. and Yancopolous, G. D (1990). Neurotrophin-3: A neurotrophic factor related to NGF and BDNF. Science 247, 1446-1451.[Abstract/Free Full Text]

McMillan-Carr, V. and Simpson, S. B. J (1978). Proliferative and degenerative evens in the early development of chick dorsal root ganglia. I. Normal development. J. Comp. Neurol 182, 727-740.[Medline]

Memberg, S. P. and Hall, A. K (1995). Proliferation, differentiation, and survival of rat sensory neuron precursors in vitro require specific trophic factors. Mol. Cell Neurosci 6, 323-335.[Medline]

Minichiello, L., Piehl, F., Vasquez, E., Schimmang, T., H\232kfelt, T., Represa, J. and Klein, R (1995). Differential effects of combined trk receptor mutations on dorsal root ganglion and inner ear sensory neurons. Development 121, 4067-4075.[Abstract]

Oakley, R. A., Garner, A. S., Large, T. H. and Frank, E (1995). Muscle sensory neurons require neurotrophin-3 from peripheral tissues during the period of normal cell death. Development 121, 1341-1350.[Abstract]

Oppenheim, R. W., Cole, T. and Prevette, D (1989). Early regional variations in motoneuron numbers arise by differential proliferation in the chick embryo spinal cord. Dev. Biol 133, 468-474.[Medline]

Pinon, L., Minichiello, L., Klein, R. and Davies, A. M (1995). Timing of neuronal death in trkA, trkB and trkC mutant embryos demonstrates neurotrophin switching in developing trigeminal neurons. Development, submitted._Fb_Rhoades, R. W., Enfiejian, H. L., Chiaia, N. L., Macdonald, G. J., Miller, M. W., McCann, P. and Goddard, C. M. (1991). Birthdates of trigeminal ganglion cells contributing axons to the infraorbital nerve and specific vibrissal follicles in the rat. J. Comp. Neurol 307, 163-175.

Ritter, A. M., Lewin, G. R., Kremer, N. E. and Mendell, L. M (1991). Requirement for nerve growth factor in the development of myelinated nociceptors in vivo. Nature 350, 500-502.[Medline]

Rohrer, H. and Thoenen, H (1987). Relationship between differentiation and terminal mitosis: chick sensory and ciliary neurons differentiate after terminal mitosis of precursor cells, whereas sympathetic neurons continue to divide after differentiation. J. Neurosci 7, 3739-3748.[Abstract]

Rosenthal, A., V., G. D., Nguyen, T., Lewis, M., Shih, A., Laramee, G. R., Nikolics, K. and Winslow, J. W (1990). Primary structure and biological activity of a novel human neurotrophic factor. Neuron 4, 767-773.[Medline]

Rothman, T. P., Gershon, M. D. and Holtzer, H (1978). The relationship of cell division to the acquisition of adrenergic characteristics by developing sympathetic ganglion cell precursors. Dev. Biol 65, 322-341.[Medline]

Soppet, D., Escandon, E., Maragos, J., Middlemas, D. S., Reid, S. W., Blair, J., Burton, L. E., Stanton, B. R., Kaplan, D. R., Hunter, T. and et al (1991). The neurotrophic factors brain-derived neurotrophic factor and neurotrophin-3 are ligands for the trkB tyrosine kinase receptor. Cell 65, 895-9032.[Medline]

Tessarollo, L., Vogel, K. S., Palko, M, E., Reid, S, W. and Parada, L. F (1994). Targeted mutation in the neurotrophin-3 gene results in loss of muscle sensory neurons. Proc. Natl. Acad. Sci. USA 91, 11844-11848.[Abstract/Free Full Text]

Valenzuela, D. M, Maisonpierre, P. C., Glass, D. J., Rojas, E., Nunez, L., Kong, Y., Gies, D. R., Stitt, T. N., Ip, N. Y. and Yancopoulos, G. D (1991). TrkB encodes a functional receptor for brain-derived neurotrophic factor and neurotrophin-3 but not nerve growth factor. Cell 65, 885-931.[Medline]

Wilkinson, G. A., Rice, F. L., Fundin, B. T., Silos-Santiago, I., Fagan, A. M., Smeyne, R. J., Glick, S. D., Ernfors, P., Reichardt, L. F., Barbacid, M., (1995). Differential effects of various neurotrophin and trk receptor deletions on the unmylinated innervation of the epidermis in the mouse wisker pad. Soc. Neurosci.Abstr._Fb_Wright, E. M., Vogel, K. S. and Davies, A. M. (1992). Neurotrophic factors promote the maturation of developing neurons before they become dependent on these factors. Neuron 9, 139-150.




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