Page 112 - 79_01
P. 112

Control	
  hipotalámico	
  de	
  las	
  interacciones	
  neuroendocrinas	
  

	
  

     15. Darquie,	
   A.,	
   et	
   al.(2001)	
   Transient	
   decrease	
   in	
   water	
   diffusion	
   observed	
   in	
   human	
  
           occipital	
  cortex	
  during	
  visual	
  stimulation.	
  Proc	
  Natl	
  Acad	
  Sci	
  U	
  S	
  A.	
  98(16):	
  p.	
  9391-­-5.	
  

     16. Alkan,	
   A.,	
   et	
   al.(2008)	
   Diffusion-­-weighted	
   imaging	
   features	
   of	
   brain	
   in	
   obesity.	
   Magn	
  
           Reson	
  Imaging.	
  26(4):	
  p.	
  446-­-50.	
  

     17. Mueller,	
   K.,	
   et	
   al.(2011)	
   Sex-­-dependent	
   influences	
   of	
   obesity	
   on	
   cerebral	
   white	
   matter	
  
           investigated	
  by	
  diffusion-­-tensor	
  imaging.	
  PLoS	
  One.	
  6(4):	
  p.	
  e18544.	
  

     18. Mahankali,	
  S.,	
  et	
  al.(2000)	
  In	
  vivo	
  fMRI	
  demonstration	
  of	
  hypothalamic	
  function	
  following	
  
           intraperitoneal	
   glucose	
   administration	
   in	
   a	
   rat	
   model.	
   Magn	
   Reson	
   Med.	
   43(1):	
   p.	
  
           155-­-9.	
  

     19. Matsuda,	
  M.,	
  et	
  al.(1999)	
  Altered	
  hypothalamic	
  function	
  in	
  response	
  to	
  glucose	
  ingestion	
  
           in	
  obese	
  humans.	
  Diabetes.	
  48(9):	
  p.	
  1801-­-6.	
  

     20. Stark,	
   J.A.,	
   et	
   al.(2006)	
   Functional	
   magnetic	
   resonance	
   imaging	
   and	
   c-­-Fos	
   mapping	
   in	
  
           rats	
   following	
   an	
   anorectic	
   dose	
   of	
   m-­-chlorophenylpiperazine.	
   Neuroimage.	
   31(3):	
   p.	
  
           1228-­-37.	
  

     21. Dodd,	
   G.T.,	
   S.R.	
   Williams,	
   and	
   S.M.	
   Luckman(2010)	
   Functional	
   magnetic	
   resonance	
  
           imaging	
   and	
   c-­-Fos	
   mapping	
   in	
   rats	
   following	
   a	
   glucoprivic	
   dose	
   of	
   2-­-deoxy-­-D-­-glucose.	
   J	
  
           Neurochem.	
  113(5):	
  p.	
  1123-­-32.	
  

     22. Li,	
   J.,	
   et	
   al.(2012)	
   Correlations	
   of	
   macronutrient-­-induced	
   functional	
   magnetic	
   resonance	
  
           imaging	
   signal	
   changes	
   in	
   human	
   brain	
   and	
   gut	
   hormone	
   responses.	
   Am	
   J	
   Clin	
   Nutr.	
  
           96(2):	
  p.	
  275-­-82.	
  

     23. Min,	
   D.K.,	
   et	
   al.(2011)	
   Changes	
   in	
   differential	
   functional	
   magnetic	
   resonance	
   signals	
   in	
  
           the	
   rodent	
   brain	
   elicited	
   by	
   mixed-­-nutrient	
   or	
   protein-­-enriched	
   meals.	
   Gastroenterology.	
  
           141(5):	
  p.	
  1832-­-41.	
  

     24. Killgore,	
   W.D.,	
   et	
   al.(2003)	
   Cortical	
   and	
   limbic	
   activation	
   during	
   viewing	
   of	
   high-­-	
   versus	
  
           low-­-calorie	
  foods.	
  Neuroimage.	
  19(4):	
  p.	
  1381-­-94.	
  

     25. Smeets,	
  P.A.,	
  et	
  al.(2005)	
  Functional	
  magnetic	
  resonance	
  imaging	
  of	
  human	
  hypothalamic	
  
           responses	
  to	
  sweet	
  taste	
  and	
  calories.	
  Am	
  J	
  Clin	
  Nutr.	
  82(5):	
  p.	
  1011-­-6.	
  

     26. Berthoud,	
   H.R.(2004)	
   Neural	
   control	
   of	
   appetite:	
   cross-­-talk	
   between	
   homeostatic	
   and	
  
           non-­-homeostatic	
  systems.	
  Appetite.	
  43(3):	
  p.	
  315-­-7.	
  

     27. Batterham,	
   R.L.,	
   et	
   al.(2007)	
   PYY	
   modulation	
   of	
   cortical	
   and	
   hypothalamic	
   brain	
   areas	
  
           predicts	
  feeding	
  behaviour	
  in	
  humans.	
  Nature.	
  450(7166):	
  p.	
  106-­-9.	
  

     28. Malik,	
   S.,	
   et	
   al.(2008)	
   Ghrelin	
   modulates	
   brain	
   activity	
   in	
   areas	
   that	
   control	
   appetitive	
  
           behavior.	
  Cell	
  Metab.	
  7(5):	
  p.	
  400-­-9.	
  

     29. Purnell,	
   J.Q.,	
   et	
   al.(2011)	
   Brain	
   functional	
   magnetic	
   resonance	
   imaging	
   response	
   to	
  
           glucose	
  and	
  fructose	
  infusions	
  in	
  humans.	
  Diabetes	
  Obes	
  Metab.	
  13(3):	
  p.	
  229-­-34.	
  

     30. Vidarsdottir,	
   S.,	
   et	
   al.(2007)	
   Glucose	
   ingestion	
   fails	
   to	
   inhibit	
   hypothalamic	
   neuronal	
  
           activity	
  in	
  patients	
  with	
  type	
  2	
  diabetes.	
  Diabetes.	
  56(10):	
  p.	
  2547-­-50.	
  

     31. Tomasi,	
   D.,	
   et	
   al.(2009)	
   Association	
   of	
   body	
   mass	
   and	
   brain	
   activation	
   during	
   gastric	
  
           distention:	
  implications	
  for	
  obesity.	
  PLoS	
  One.	
  4(8):	
  p.	
  e6847.	
  

     32. Baicy,	
  K.,	
  et	
  al.(2007)	
  Leptin	
  replacement	
  alters	
  brain	
  response	
  to	
  food	
  cues	
  in	
  genetically	
  
           leptin-­-deficient	
  adults.	
  Proc	
  Natl	
  Acad	
  Sci	
  U	
  S	
  A.	
  104(46):	
  p.	
  18276-­-9.	
  

     33. Guthoff,	
   M.,	
   et	
   al.(2010)	
   Insulin	
   modulates	
   food-­-related	
   activity	
   in	
   the	
   central	
   nervous	
  
           system.	
  J	
  Clin	
  Endocrinol	
  Metab.	
  95(2):	
  p.	
  748-­-55.	
  

     34. Jones,	
   R.B.,	
   et	
   al.(2012)	
   Functional	
   neuroimaging	
   demonstrates	
   that	
   ghrelin	
   inhibits	
  
           the	
  central	
  nervous	
  system	
  response	
  to	
  ingested	
  lipid.	
  Gut.	
  61(11):	
  p.	
  1543-­-51.	
  

     35. Pautler,	
   R.G.(2004)	
   In	
   vivo,	
   trans-­-synaptic	
   tract-­-tracing	
   utilizing	
   manganese-­-enhanced	
  
           magnetic	
  resonance	
  imaging	
  (MEMRI).	
  NMR	
  Biomed.	
  17(8):	
  p.	
  595-­-601.	
  

                                                                                                                            	
   107	
  

	
  
   107   108   109   110   111   112   113   114   115   116   117