Page 98 - Bladder Dysfunction in the Context of the Bladder-Brain Connection - Ilse Groenendijk.pdf
P. 98
96 Chapter 4
21. Akram H, Dayal V, Mahlknecht P, et al. Connectivity derived thalamic segmentation in deep brain stimulation for tremor. Neuroimage Clin. 2018;18:130-142.
22. Serino A, Akselrod M, Salomon R, et al. Upper limb cortical maps in amputees with targeted muscle and sensory reinnervation. Brain. 2017;140(11):2993-3011.
23. RothemundY,QiHX,CollinsCE,KaasJH.Thegenitalsandglutealskinarerepresentedlateraltothe foot in anterior parietal somatosensory cortex of macaques. Somatosens Mot Res. 2002;19(4):302- 315.
24. Lenschow C, Brecht M. Physiological and Anatomical Outputs of Rat Genital Cortex. Cereb Cortex. 2018;28(4):1472-1486.
25. Fabri M, Polonara G, Salvolini U, Manzoni T. Bilateral cortical representation of the trunk midline in human first somatic sensory area. Hum Brain Mapp. 2005;25(3):287-296.
26. Hautasaari P, Kujala UM, Tarkka IM. Detecting differences with magnetoencephalography of somatosensory processing after tactile and electrical stimuli. J Neurosci Methods. 2019;311:331-337.
27. Eickhoff SB, Grefkes C, Fink GR, Zilles K. Functional lateralization of face, hand, and trunk represen-
tation in anatomically defined human somatosensory areas. Cereb Cortex. 2008;18(12):2820-2830.
28. Carey DP, Smith G, Smith DT, et al. Footedness in world soccer: an analysis of France ‘98. J Sports
Sci. 2001;19(11):855-864.
29. Komisaruk BR, Wise N, Frangos E, Liu WC, Allen K, Brody S. Women’s clitoris, vagina, and cervix
mapped on the sensory cortex: fMRI evidence. J Sex Med. 2011;8(10):2822-2830.
30. Goldman HB, Amundsen CL, Mangel J, et al. Dorsal genital nerve stimulation for the treatment of
overactive bladder symptoms. Neurourol Urodyn. 2008;27(6):499-503.
31. Michels L, Mehnert U, Boy S, Schurch B, Kollias S. The somatosensory representation of the human
clitoris: an fMRI study. Neuroimage. 2010;49(1):177-184.
32. Hobday DI, Aziz Q, Thacker N, Hollander I, Jackson A, Thompson DG. A study of the cortical pro-
cessing of ano-rectal sensation using functional MRI. Brain. 2001;124(Pt 2):361-368.
33. Graziano MS, Gandhi S. Location of the polysensory zone in the precentral gyrus of anesthetized
monkeys. Exp Brain Res. 2000;135(2):259-266.
34. Gentile G, Petkova VI, Ehrsson HH. Integration of visual and tactile signals from the hand in the
human brain: an FMRI study. J Neurophysiol. 2011;105(2):910-922.
35. Morrison I, Bjornsdotter M, Olausson H. Vicarious responses to social touch in posterior insular
cortex are tuned to pleasant caressing speeds. J Neurosci. 2011;31(26):9554-9562.
36. Craig AD. How do you feel? Interoception: the sense of the physiological condition of the body.
Nat Rev Neurosci. 2002;3(8):655-666.
37. Rose JD, Sutin J. Responses of single thalamic neurons to genital stimulation in female cats. Brain
Res. 1971;33(2):533-539.
38. Grodd W, Hulsmann E, Lotze M, Wildgruber D, Erb M. Sensorimotor mapping of the human cer-
ebellum: fMRI evidence of somatotopic organization. Hum Brain Mapp. 2001;13(2):55-73.
39. Diedrichsen J, Zotow E. Surface-Based Display of Volume-Averaged Cerebellar Imaging Data.
PLoS One. 2015;10(7):e0133402.
40. van der Zwaag W, Kusters R, Magill A, et al. Digit somatotopy in the human cerebellum: a 7T fMRI
study. Neuroimage. 2013;67:354-362.
41. Buckner RL, Krienen FM, Castellanos A, Diaz JC, Yeo BT. The organization of the human cerebellum
estimated by intrinsic functional connectivity. J Neurophysiol. 2011;106(5):2322-2345.
42. Friedman DP, Murray EA, O’Neill JB, Mishkin M. Cortical connections of the somatosensory fields of the lateral sulcus of macaques: evidence for a corticolimbic pathway for touch. J Comp Neurol.
1986;252(3):323-347.