Biology Reference
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51. Weber B, Burger C, Wyss MT, von Schulthess
GK, Scheffold F, Buck A (2004) Optical imag-
ing of the spatiotemporal dynamics of cerebral
blood fl ow and oxidative metabolism in the rat
barrel cortex. Eur J Neurosci 20:2664-2670
52. Villringer A, Chance B (1997) Non-invasive
optical spectroscopy and imaging of human
brain function. Trends Neurosci 20:435-442
53. Grinvald A, Lieke E, Frostig RD, Gilbert CD,
Wiesel TN (1986) Functional architecture of
cortex revealed by optical imaging of intrinsic
signals. Nature 324:361-364
54. Malonek D, Grinvald A (1996) Interactions
between electrical activity and cortical micro-
circulation revealed by imaging spectroscopy:
implications for functional brain mapping.
Science 272:551-554
55. Ba AM, Guiou M, Pouratian N, Muthialu A,
Rex DE, Cannestra AF, Chen JW, Toga AW
(2002) Multiwavelength optical intrinsic signal
imaging of cortical spreading depression.
J Neurophysiol 88:2726-2735
56. Devor A, Dunn AK, Andermann ML, Ulbert I,
Boas DA, Dale AM (2003) Coupling of total
hemoglobin concentration, oxygenation, and
neural activity in rat somatosensory cortex.
Neuron 39:353-359
57. Nemoto M, Nomura Y, Sato C, Tamura M,
Houkin K, Koyanagi I, Abe H (1999) Analysis
of optical signals evoked by peripheral nerve
stimulation in rat somatosensory cortex:
dynamic changes in hemoglobin concentration
and oxygenation. J Cereb Blood Flow Metab
19:246-259
58. Lindauer U, Royl G, Leithner C, Kuhl M, Gold
L, Gethmann J, Kohl-Bareis M, Villringer A,
Dirnagl U (2001) No evidence for early
decrease in blood oxygenation in rat whisker
cortex in response to functional activation.
Neuroimage 13:988-1001
59. Mayhew J, Zheng Y, Hou Y, Vuksanovic B,
Berwick J, Askew S, Coffey P (1999)
Spectroscopic analysis of changes in remitted
illumination: the response to increased neural
activity in brain. Neuroimage 10:304-326
60. Kohl M, Lindauer U, Royl G, Kuhl M, Gold L,
Villringer A, Dirnagl U (2000) Physical model
for the spectroscopic analysis of cortical intrinsic
optical signals. Phys Med Biol 45:3749-3764
61. Mayhew J, Johnston D, Berwick J, Jones M,
Coffey P, Zheng Y (2000) Spectroscopic analy-
sis of neural activity in brain: increased oxygen
consumption following activation of barrel cor-
tex. Neuroimage 12:664-675
62. Jones M, Berwick J, Johnston D, Mayhew J
(2001) Concurrent optical imaging spectroscopy
and laser-Doppler fl owmetry: the relationship
between blood fl ow, oxygenation, and volume in
rodent barrel cortex. Neuroimage 13:1002-1015
63. Berwick J, Johnston D, Jones M, Martindale J,
Redgrave P, McLoughlin N, Schiessl I, Mayhew
JE (2005) Neurovascular coupling investigated
with two-dimensional optical imaging spec-
troscopy in rat whisker barrel cortex. Eur J
Neurosci 22:1655-1666
64. Sheth SA, Nemoto M, Guiou MW, Walker MA,
Toga AW (2005) Spatiotemporal evolution of
functional hemodynamic changes and their
relationship to neuronal activity. J Cereb Blood
Flow Metab 25:830-841
65. Royl G, Fuchtemeier M, Leithner C, Megow
D, Offenhauser N, Steinbrink J, Kohl-Bareis
M, Dirnagl U, Lindauer U (2008) Hypothermia
effects on neurovascular coupling and cerebral
metabolic rate of oxygen. Neuroimage
40:1523-1532
66. Hillman EM, Devor A, Bouchard MB, Dunn
AK, Krauss GW, Skoch J, Bacskai BJ, Dale AM,
Boas DA (2007) Depth-resolved optical imag-
ing and microscopy of vascular compartment
dynamics during somatosensory stimulation.
Neuroimage 35:89-104
67. Dirnagl U, Villringer A, Gebhart R, Haberl
RL, Schmiedek P, Einhaupl KM (1991) Three-
dimensional reconstruction of the rat brain
cortical microcirculation in vivo. J Cereb Blood
Flow Metab 11:353-360
68. Villringer A, Them A, Lindauer U, Einhaupl K,
Dirnagl U (1994) Capillary perfusion of the rat
brain cortex - an in vivo confocal microscopy
study. Circ Res 75:55-62
69. Kleinfeld D, Mitra PP, Helmchen F, Denk W
(1998) Fluctuations and stimulus-induced
changes in blood fl ow observed in individual
capillaries in layers 2 through 4 of rat neocortex.
Proc Natl Acad Sci USA 95:15741-15746
70. Chaigneau E, Oheim M, Audinat E, Charpak S
(2003) Two-photon imaging of capillary blood
fl ow in olfactory bulb glomeruli. Proc Natl
Acad Sci USA 100:13081-13086
71. Hirase H, Creso J, Buzsaki G (2004) Capillary
level imaging of local cerebral blood fl ow in
bicuculline-induced epileptic foci. Neuroscience
128:209-216
72. Schaffer CB, Friedman B, Nishimura N,
Schroeder LF, Tsai PS, Ebner FF, Lyden PD,
Kleinfeld D (2006) Two-photon imaging of
cortical surface microvessels reveals a robust
redistribution in blood fl ow after vascular
occlusion. PLoS Biol 4:e22
73. Nishimura N, Schaffer CB, Friedman B, Lyden
PD, Kleinfeld D (2007) Penetrating arterioles
are a bottleneck in the perfusion of neocortex.
Proc Natl Acad Sci USA 104:365-370
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