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																		 Connection
 
																		  Thomas  Finger  to  Mice, Inbred C57BL 
																		
																	 
																		 This is a "connection" page, showing publications  Thomas  Finger  has written about  Mice, Inbred C57BL.  
																		
																	 
																			
																					
	
						
				
		
			
			
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					|  | Connection Strength |  |  
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					|  | 0.831 |  |  |  |  
		
		
			
				Wilson CE, Lasher RS, Salcedo E, Yang R, Dzowo Y, Kinnamon JC, Finger TE. Death in the Taste Bud: Engulfment of Dying Taste Receptor Cells by Glial-Like Type I Cells. Glia. 2025 Aug; 73(8):1660-1672.	
				
				
					Score: 0.110
				
				High B, Finger TE. Structural comparisons of human and mouse fungiform taste buds. Chem Senses. 2025 Jan 22; 50.	
				
				
					Score: 0.108
				
				Yu T, Wilson CE, Stratford JM, Finger TE. Genetic Deletion of TrpV1 and TrpA1 Does Not Alter Avoidance of or Patterns of Brainstem Activation to Citric Acid in Mice. Chem Senses. 2020 10 09; 45(7):573-579.	
				
				
					Score: 0.080
				
				Yang R, Dzowo YK, Wilson CE, Russell RL, Kidd GJ, Salcedo E, Lasher RS, Kinnamon JC, Finger TE. Three-dimensional reconstructions of mouse circumvallate taste buds using serial blockface scanning electron microscopy: I. Cell types and the apical region of the taste bud. J Comp Neurol. 2020 04 01; 528(5):756-771.	
				
				
					Score: 0.075
				
				Stratford JM, Thompson JA, Finger TE. Immunocytochemical organization and sour taste activation in the rostral nucleus of the solitary tract of mice. J Comp Neurol. 2017 02 01; 525(2):271-290.	
				
				
					Score: 0.060
				
				Thompson JA, Salcedo E, Restrepo D, Finger TE. Second-order input to the medial amygdala from olfactory sensory neurons expressing the transduction channel TRPM5. J Comp Neurol. 2012 Jun 01; 520(8):1819-30.	
				
				
					Score: 0.045
				
				Kataoka S, Baquero A, Yang D, Shultz N, Vandenbeuch A, Ravid K, Kinnamon SC, Finger TE. A2BR adenosine receptor modulates sweet taste in circumvallate taste buds. PLoS One. 2012; 7(1):e30032.	
				
				
					Score: 0.044
				
				Hallock RM, Tatangelo M, Barrows J, Finger TE. Residual chemosensory capabilities in double P2X2/P2X3 purinergic receptor null mice: intraoral or postingestive detection? Chem Senses. 2009 Nov; 34(9):799-808.	
				
				
					Score: 0.037
				
				Hansen A, Finger TE. Is TrpM5 a reliable marker for chemosensory cells? Multiple types of microvillous cells in the main olfactory epithelium of mice. BMC Neurosci. 2008 Dec 04; 9:115.	
				
				
					Score: 0.035
				
				Gulbransen B, Silver W, Finger TE. Solitary chemoreceptor cell survival is independent of intact trigeminal innervation. J Comp Neurol. 2008 May 01; 508(1):62-71.	
				
				
					Score: 0.034
				
				Kataoka S, Yang R, Ishimaru Y, Matsunami H, S?vigny J, Kinnamon JC, Finger TE. The candidate sour taste receptor, PKD2L1, is expressed by type III taste cells in the mouse. Chem Senses. 2008 Mar; 33(3):243-54.	
				
				
					Score: 0.033
				
				Bartel DL, Sullivan SL, Lavoie EG, S?vigny J, Finger TE. Nucleoside triphosphate diphosphohydrolase-2 is the ecto-ATPase of type I cells in taste buds. J Comp Neurol. 2006 Jul 01; 497(1):1-12.	
				
				
					Score: 0.030
				
				Finger TE, Danilova V, Barrows J, Bartel DL, Vigers AJ, Stone L, Hellekant G, Kinnamon SC. ATP signaling is crucial for communication from taste buds to gustatory nerves. Science. 2005 Dec 02; 310(5753):1495-9.	
				
				
					Score: 0.029
				
				Gulbransen BD, Finger TE. Solitary chemoreceptor cell proliferation in adult nasal epithelium. J Neurocytol. 2005 Mar; 34(1-2):117-22.	
				
				
					Score: 0.027
				
				Andres-Hernando A, Kuwabara M, Orlicky DJ, Vandenbeuch A, Cicerchi C, Kinnamon SC, Finger TE, Johnson RJ, Lanaspa MA. Sugar causes obesity and metabolic syndrome in mice independently of sweet taste. Am J Physiol Endocrinol Metab. 2020 08 01; 319(2):E276-E290.	
				
				
					Score: 0.020
				
				Frenz CT, Hansen A, Dupuis ND, Shultz N, Levinson SR, Finger TE, Dionne VE. NaV1.5 sodium channel window currents contribute to spontaneous firing in olfactory sensory neurons. J Neurophysiol. 2014 Sep 01; 112(5):1091-104.	
				
				
					Score: 0.013
				
				Vandenbeuch A, Anderson CB, Parnes J, Enjyoji K, Robson SC, Finger TE, Kinnamon SC. Role of the ectonucleotidase NTPDase2 in taste bud function. Proc Natl Acad Sci U S A. 2013 Sep 03; 110(36):14789-94.	
				
				
					Score: 0.012
				
				Feng W, Simoes-de-Souza F, Finger TE, Restrepo D, Williams T. Disorganized olfactory bulb lamination in mice deficient for transcription factor AP-2epsilon. Mol Cell Neurosci. 2009 Nov; 42(3):161-71.	
				
				
					Score: 0.009
				
				Lin W, Ogura T, Margolskee RF, Finger TE, Restrepo D. TRPM5-expressing solitary chemosensory cells respond to odorous irritants. J Neurophysiol. 2008 Mar; 99(3):1451-60.	
				
				
					Score: 0.008
				
				Stone LM, Barrows J, Finger TE, Kinnamon SC. Expression of T1Rs and gustducin in palatal taste buds of mice. Chem Senses. 2007 Mar; 32(3):255-62.	
				
				
					Score: 0.008
				
				Vigers AJ, B?ttger B, Baquet ZC, Finger TE, Jones KR. Neurotrophin-3 is expressed in a discrete subset of olfactory receptor neurons in the mouse. J Comp Neurol. 2003 Aug 18; 463(2):221-35.	
				
				
					Score: 0.006
				
				Schaefer ML, Finger TE, Restrepo D. Variability of position of the P2 glomerulus within a map of the mouse olfactory bulb. J Comp Neurol. 2001 Jul 30; 436(3):351-62.	
				
				
					Score: 0.005
				
				Zhang C, Finger TE, Restrepo D. Mature olfactory receptor neurons express connexin 43. J Comp Neurol. 2000 Oct 09; 426(1):1-12.	
				
				
					Score: 0.005
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																					    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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