1 |
Jan YN, Jan LY. Branching out: mechanisms of dendritic arborization [J]. Nat Rev Neurosci,2010,11(5):316-328.
|
2 |
Prokop A, Beaven R, Qu Y, et al. Using fly genetics to dissect the cytoskeletal machinery of neurons during axonal growth and maintenance [J]. J Cell Sci,2013,126(Pt 11):2331-2341.
|
3 |
Dubnau J, Chiang AS. Systems memory consolidation in drosophila[J]. Curr Opin Neurobiol,2013,23(1):84-91.
|
4 |
Saxton WM, Hollenbeck PJ. The axonal transport of mitochondria[J]. J Cell Sci,2012,125(Pt 9):2095-2104.
|
5 |
Spradling AC, Nystul T, Lighthouse D, et al. Stem cells and their niches: integrated units that maintain drosophila tissues [J]. Cold Spring Harb Symp Quant Biol,2008,73:49-57.
|
6 |
Fulga TA,Van Vactor D. Synapses and growth cones on two sides of a highwire [J]. Neuron,2008,57(3):339-344.
|
7 |
Benton R. Chemical sensing in drosophila [ J]. Curr Opin Neurobiol,2008,18(4):357-363.
|
8 |
Yamamoto D. The neural and genetic substrates of sexual behavior in Drosophila [J]. Adv Genet,2007,59:39-66.
|
9 |
Griffith LC. Receptor clustering:nothing succeeds like success[J].Curr Biol,2004,14(11): R413-R415.
|
10 |
Weeks JC. Thinking globally, acting locally: steroid hormone regulation of the dendritic architecture, synaptic connectivity and death of an individual neuron [J]. Prog Neurobiol, 2003, 70(5):421-442.
|
11 |
Calof AL. Intrinsic and extrinsic factors regulating vertebrate neurogenesis [J]. Curr Opin Neurobiol,1995,5(1):19-27.
|
12 |
Ghysen A,C Dambly-Chaudiere. The specification of sensory neuron identity in Drosophila [J]. Bioessays,1993,15(5):293-298.
|
13 |
Truman JW. Insect systems for the study of programmed neuronal death [J]. Exp Gerontol,1992,27(1):17-28.
|
14 |
Mills RP, King RC. The pericardial cells of drosophila melanogaster[J]. Q J Microsc Sci,1965,106(3):261-268.
|
15 |
Kambysellis MP, Wheeler MR. Banded polytene chromosomes in pericardial cells of drosophila [J]. J Hered, 1972, 63(4): 214-215.
|
16 |
Weavers H, Prieto-Sanchez S, Grawe F, et al. The insect nephrocyte is a podocyte-like cell with a filtration slit diaphragm[J]. Nature,2009,457(7227):322-326.
|
17 |
Zhuang S, Shao H, Guo F, et al. Sns and Kirre, the drosophila orthologs of nephrin and Neph1, direct adhesion, fusion and formation of a slit diaphragm-like structure in insect nephrocytes[J]. Development,2009,136(14):2335-2344.
|
18 |
Simons M, Huber TB. Flying podocytes [J]. Kidney Int,2009,75(5):455-457.
|
19 |
Zhang F, Zhao Y, Han Z. An in vivo functional analysis system for renal gene discovery in Drosophila pericardial nephrocytes [J]. J Am Soc Nephrol,2013,24(2):191-197.
|
20 |
Zhang F, Zhao Y, Chao Y, et al. Cubilin and amnionless mediate protein reabsorption in drosophila nephrocytes [J]. J Am Soc Nephrol,2013,24(2):209-216.
|
21 |
Hirata T,Cabrero P,Berkholz DS,et al. In vivo Drosophilia genetic model for calcium oxalate nephrolithiasis [J]. Am J Physiol Renal Physiol,2012,303(11): F1555-F1562.
|
22 |
Miller J, Chi T, Kapahi P, et al. Drosophila melanogaster as an emerging translational model of human nephrolithiasis [J]. J Urol,2013,190(5):1648-1656.
|
23 |
Knauf F, Preisig PA. Drosophila: a fruitful model for calcium oxalate nephrolithiasis [J] ? Kidney Int,2011,80(4):327-329.
|
24 |
Chen YH, Liu HP, Chen HY, et al. Ethylene glycol induces calcium oxalate crystal deposition in Malpighian tubules: a drosophila model for nephrolithiasis/urolithiasis [J]. Kidney Int,2011,80(4):369-377.
|