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Connection

Carlos A. Paladini to Mice

This is a "connection" page, showing publications Carlos A. Paladini has written about Mice.
Connection Strength

0.439
  1. Otomo K, Perkins J, Kulkarni A, Stojanovic S, Roeper J, Paladini CA. In vivo patch-clamp recordings reveal distinct subthreshold signatures and threshold dynamics of midbrain dopamine neurons. Nat Commun. 2020 12 08; 11(1):6286.
    View in: PubMed
    Score: 0.087
  2. Beaudoin GMJ, Gomez JA, Perkins J, Bland JL, Petko AK, Paladini CA. Cocaine Selectively Reorganizes Excitatory Inputs to Substantia Nigra Pars Compacta Dopamine Neurons. J Neurosci. 2018 01 31; 38(5):1151-1159.
    View in: PubMed
    Score: 0.071
  3. Simmons DV, Petko AK, Paladini CA. Differential expression of long-term potentiation among identified inhibitory inputs to dopamine neurons. J Neurophysiol. 2017 10 01; 118(4):1998-2008.
    View in: PubMed
    Score: 0.069
  4. Ko D, Wilson CJ, Lobb CJ, Paladini CA. Detection of bursts and pauses in spike trains. J Neurosci Methods. 2012 Oct 15; 211(1):145-58.
    View in: PubMed
    Score: 0.049
  5. Paladini CA, Beckstead MJ, Weinshenker D. Electrophysiological properties of catecholaminergic neurons in the norepinephrine-deficient mouse. Neuroscience. 2007 Feb 09; 144(3):1067-74.
    View in: PubMed
    Score: 0.033
  6. Luj?n M?, Covey DP, Young-Morrison R, Zhang L, Kim A, Morgado F, Patel S, Bass CE, Paladini C, Cheer JF. Mobilization of endocannabinoids by midbrain dopamine neurons is required for the encoding of reward prediction. Nat Commun. 2023 Nov 20; 14(1):7545.
    View in: PubMed
    Score: 0.027
  7. Paladini CA, Robinson S, Morikawa H, Williams JT, Palmiter RD. Dopamine controls the firing pattern of dopamine neurons via a network feedback mechanism. Proc Natl Acad Sci U S A. 2003 Mar 04; 100(5):2866-71.
    View in: PubMed
    Score: 0.025
  8. Porter-Stransky KA, Petko AK, Karne SL, Liles LC, Urs NM, Caron MG, Paladini CA, Weinshenker D. Loss of ?-arrestin2 in D2 cells alters neuronal excitability in the nucleus accumbens and behavioral responses to psychostimulants and opioids. Addict Biol. 2020 11; 25(6):e12823.
    View in: PubMed
    Score: 0.020
  9. Manvich DF, Petko AK, Branco RC, Foster SL, Porter-Stransky KA, Stout KA, Newman AH, Miller GW, Paladini CA, Weinshenker D. Selective D2 and D3 receptor antagonists oppositely modulate cocaine responses in mice via distinct postsynaptic mechanisms in nucleus accumbens. Neuropsychopharmacology. 2019 07; 44(8):1445-1455.
    View in: PubMed
    Score: 0.019
  10. Gaval-Cruz M, Goertz RB, Puttick DJ, Bowles DE, Meyer RC, Hall RA, Ko D, Paladini CA, Weinshenker D. Chronic loss of noradrenergic tone produces ?-arrestin2-mediated cocaine hypersensitivity and alters cellular D2 responses in the nucleus accumbens. Addict Biol. 2016 Jan; 21(1):35-48.
    View in: PubMed
    Score: 0.014
  11. Branch SY, Goertz RB, Sharpe AL, Pierce J, Roy S, Ko D, Paladini CA, Beckstead MJ. Food restriction increases glutamate receptor-mediated burst firing of dopamine neurons. J Neurosci. 2013 Aug 21; 33(34):13861-72.
    View in: PubMed
    Score: 0.013
  12. Zweifel LS, Parker JG, Lobb CJ, Rainwater A, Wall VZ, Fadok JP, Darvas M, Kim MJ, Mizumori SJ, Paladini CA, Phillips PE, Palmiter RD. Disruption of NMDAR-dependent burst firing by dopamine neurons provides selective assessment of phasic dopamine-dependent behavior. Proc Natl Acad Sci U S A. 2009 May 05; 106(18):7281-8.
    View in: PubMed
    Score: 0.010
Connection Strength

The connection strength for concepts is the sum of the scores for each matching publication.

Publication scores are based on many factors, including how long ago they were written and whether the person is a first or senior author.
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