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1
Connexin36 is essential for transmission of rod-mediated visual signals in the mammalian retina.
Neuron. 2002 Nov 14;36(4):703-12. doi: 10.1016/s0896-6273(02)01046-2.
2
Differential output of the high-sensitivity rod photoreceptor: AII amacrine pathway.
J Comp Neurol. 2008 Apr 10;507(5):1653-62. doi: 10.1002/cne.21617.
3
Expression of neuronal connexin36 in AII amacrine cells of the mammalian retina.
J Neurosci. 2001 Jan 1;21(1):230-9. doi: 10.1523/JNEUROSCI.21-01-00230.2001.
4
Mouse ganglion-cell photoreceptors are driven by the most sensitive rod pathway and by both types of cones.
PLoS One. 2013 Jun 7;8(6):e66480. doi: 10.1371/journal.pone.0066480. Print 2013.
5
Cone bipolar cells as interneurons in the rod pathway of the rabbit retina.
J Comp Neurol. 1994 Sep 1;347(1):139-49. doi: 10.1002/cne.903470111.
6
Visual transmission deficits in mice with targeted disruption of the gap junction gene connexin36.
J Neurosci. 2001 Aug 15;21(16):6036-44. doi: 10.1523/JNEUROSCI.21-16-06036.2001.
7
Rod and cone contributions to horizontal cell light responses in the mouse retina.
J Neurosci. 2008 Jul 2;28(27):6818-25. doi: 10.1523/JNEUROSCI.1564-08.2008.
8
Glutamate receptors at rod bipolar ribbon synapses in the rabbit retina.
J Comp Neurol. 2002 Jul 1;448(3):230-48. doi: 10.1002/cne.10189.
10
Relative contributions of rod and cone bipolar cell inputs to AII amacrine cell light responses in the mouse retina.
J Physiol. 2007 Apr 15;580(Pt. 2):397-410. doi: 10.1113/jphysiol.2006.120790. Epub 2007 Jan 25.

引用本文的文献

1
The structure, function, and distribution of gap junctions in the retina: Life cycle in health and disease.
J Cell Commun Signal. 2025 Sep 3;19(3):e70036. doi: 10.1002/ccs3.70036. eCollection 2025 Sep.
2
Early retinal electrophysiology changes in quinine overdose.
Doc Ophthalmol. 2025 Oct;151(2):179-186. doi: 10.1007/s10633-025-10034-1. Epub 2025 Jun 17.
3
Rod Inputs Arrive at Horizontal Cell Somas in Mouse Retina Solely via Rod-Cone Coupling.
eNeuro. 2025 Jun 6;12(6). doi: 10.1523/ENEURO.0427-24.2025. Print 2025 Jun.
5
The Role of the Ca-activated Cl Conductance in the Membrane Potential and Light Response of Mouse Rods.
J Neurosci. 2025 May 28;45(22):e1920242025. doi: 10.1523/JNEUROSCI.1920-24.2025.
6
Luminance invariant encoding in mouse primary visual cortex.
Cell Rep. 2025 Jan 28;44(1):115217. doi: 10.1016/j.celrep.2024.115217. Epub 2025 Jan 15.
7
Signal Detection Theoretic Estimates of the Murine Absolute Visual Threshold Are Independent of Decision Bias.
eNeuro. 2024 Oct 9;11(10). doi: 10.1523/ENEURO.0222-24.2024. Print 2024 Oct.
9
Dendrites contribute to the gradient of intrinsic timescales encompassing cortical and subcortical brain networks.
Front Cell Neurosci. 2024 Sep 6;18:1404605. doi: 10.3389/fncel.2024.1404605. eCollection 2024.

本文引用的文献

1
Mouse horizontal cells do not express connexin26 or connexin36.
Cell Commun Adhes. 2001;8(4-6):361-6. doi: 10.3109/15419060109080754.
2
Temporal properties of the mouse cone electroretinogram.
J Neurophysiol. 2002 Jan;87(1):42-8. doi: 10.1152/jn.00489.2001.
3
Microcircuits for night vision in mouse retina.
J Neurosci. 2001 Nov 1;21(21):8616-23. doi: 10.1523/JNEUROSCI.21-21-08616.2001.
5
Visual transmission deficits in mice with targeted disruption of the gap junction gene connexin36.
J Neurosci. 2001 Aug 15;21(16):6036-44. doi: 10.1523/JNEUROSCI.21-16-06036.2001.
6
Rod pathways in the mammalian retina use connexin 36.
J Comp Neurol. 2001 Jul 30;436(3):336-50.
7
Rod vision: pathways and processing in the mammalian retina.
Prog Retin Eye Res. 2001 May;20(3):351-84. doi: 10.1016/s1350-9462(00)00031-8.
8
Expression of neuronal connexin36 in AII amacrine cells of the mammalian retina.
J Neurosci. 2001 Jan 1;21(1):230-9. doi: 10.1523/JNEUROSCI.21-01-00230.2001.
10
Immunocytochemical analysis of the mouse retina.
J Comp Neurol. 2000 Aug 14;424(1):1-23.

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