1
|
Anesthesia-induced developmental neuroapoptosis. Does it happen in humans?
|
Anesthesiology
|
2004
|
3.22
|
2
|
Potential of ketamine and midazolam, individually or in combination, to induce apoptotic neurodegeneration in the infant mouse brain.
|
Br J Pharmacol
|
2005
|
2.61
|
3
|
Drug-induced apoptotic neurodegeneration in the developing brain.
|
Brain Pathol
|
2002
|
1.85
|
4
|
General anesthesia activates BDNF-dependent neuroapoptosis in the developing rat brain.
|
Apoptosis
|
2006
|
1.76
|
5
|
Clinical anesthesia causes permanent damage to the fetal guinea pig brain.
|
Brain Pathol
|
2008
|
1.71
|
6
|
Cell-specific alterations of T-type calcium current in painful diabetic neuropathy enhance excitability of sensory neurons.
|
J Neurosci
|
2007
|
1.69
|
7
|
Do pediatric drugs cause developing neurons to commit suicide?
|
Trends Pharmacol Sci
|
2004
|
1.67
|
8
|
PRO: Anesthesia-induced developmental neuroapoptosis: status of the evidence.
|
Anesth Analg
|
2008
|
1.62
|
9
|
Consensus statement: First International Workshop on Anesthetics and Alzheimer's disease.
|
Anesth Analg
|
2009
|
1.55
|
10
|
Melatonin reduces the severity of anesthesia-induced apoptotic neurodegeneration in the developing rat brain.
|
Neurobiol Dis
|
2005
|
1.52
|
11
|
Upregulation of the T-type calcium current in small rat sensory neurons after chronic constrictive injury of the sciatic nerve.
|
J Neurophysiol
|
2008
|
1.37
|
12
|
Timing versus duration: determinants of anesthesia-induced developmental apoptosis in the young mammalian brain.
|
Ann N Y Acad Sci
|
2010
|
1.37
|
13
|
General Anesthesia Causes Long-term Impairment of Mitochondrial Morphogenesis and Synaptic Transmission in Developing Rat Brain.
|
Anesthesiology
|
2011
|
1.36
|
14
|
In vivo silencing of the Ca(V)3.2 T-type calcium channels in sensory neurons alleviates hyperalgesia in rats with streptozocin-induced diabetic neuropathy.
|
Pain
|
2009
|
1.28
|
15
|
CaV3.2 is the major molecular substrate for redox regulation of T-type Ca2+ channels in the rat and mouse thalamus.
|
J Physiol
|
2006
|
1.18
|
16
|
Selective T-type calcium channel blockade alleviates hyperalgesia in ob/ob mice.
|
Diabetes
|
2009
|
1.15
|
17
|
T-type voltage-gated calcium channels as targets for the development of novel pain therapies.
|
Br J Pharmacol
|
2011
|
1.15
|
18
|
TTA-P2 is a potent and selective blocker of T-type calcium channels in rat sensory neurons and a novel antinociceptive agent.
|
Mol Pharmacol
|
2011
|
1.15
|
19
|
Mechanical and thermal antinociception in rats following systemic administration of mibefradil, a T-type calcium channel blocker.
|
Brain Res
|
2002
|
1.14
|
20
|
Motoneuronal TASK channels contribute to immobilizing effects of inhalational general anesthetics.
|
J Neurosci
|
2010
|
1.13
|
21
|
Early exposure to general anesthesia disturbs mitochondrial fission and fusion in the developing rat brain.
|
Anesthesiology
|
2013
|
1.11
|
22
|
The enigma of fetal alcohol neurotoxicity.
|
Ann Med
|
2002
|
1.08
|
23
|
New evidence that both T-type calcium channels and GABAA channels are responsible for the potent peripheral analgesic effects of 5alpha-reduced neuroactive steroids.
|
Pain
|
2005
|
1.03
|
24
|
Isoflurane impairs immature astroglia development in vitro: the role of actin cytoskeleton.
|
J Neuropathol Exp Neurol
|
2011
|
1.03
|
25
|
Redox modulation of peripheral T-type Ca2+ channels in vivo: alteration of nerve injury-induced thermal hyperalgesia.
|
Pain
|
2004
|
0.99
|
26
|
The role of T-type calcium channels in peripheral and central pain processing.
|
CNS Neurol Disord Drug Targets
|
2006
|
0.98
|
27
|
Regulation of T-type calcium channels in the peripheral pain pathway.
|
Channels (Austin)
|
2007
|
0.98
|
28
|
Molecular mechanisms of lipoic acid modulation of T-type calcium channels in pain pathway.
|
J Neurosci
|
2009
|
0.95
|
29
|
Redox regulation of neuronal voltage-gated calcium channels.
|
Antioxid Redox Signal
|
2013
|
0.91
|
30
|
5beta-reduced neuroactive steroids are novel voltage-dependent blockers of T-type Ca2+ channels in rat sensory neurons in vitro and potent peripheral analgesics in vivo.
|
Mol Pharmacol
|
2004
|
0.91
|
31
|
Neuropathic pain: role for presynaptic T-type channels in nociceptive signaling.
|
Pflugers Arch
|
2013
|
0.89
|
32
|
Propofol-induced changes in neurotrophic signaling in the developing nervous system in vivo.
|
PLoS One
|
2012
|
0.88
|
33
|
Reversal of neuropathic pain in diabetes by targeting glycosylation of Ca(V)3.2 T-type calcium channels.
|
Diabetes
|
2013
|
0.87
|
34
|
Regional and temporal profiles of calpain and caspase-3 activities in postnatal rat brain following repeated propofol administration.
|
Dev Neurosci
|
2010
|
0.85
|
35
|
Glutamate and GABA receptor dysfunction in the fetal alcohol syndrome.
|
Neurotox Res
|
2002
|
0.85
|
36
|
Potent analgesic effects of anticonvulsants on peripheral thermal nociception in rats.
|
Br J Pharmacol
|
2003
|
0.84
|
37
|
Targeting of CaV3.2 T-type calcium channels in peripheral sensory neurons for the treatment of painful diabetic neuropathy.
|
Pflugers Arch
|
2014
|
0.83
|
38
|
Differential effects of endogenous cysteine analogs on peripheral thermal nociception in intact rats.
|
Pain
|
2006
|
0.81
|
39
|
Pediatric anesthesia neurotoxicity: an overview of the 2011 SmartTots panel.
|
Anesth Analg
|
2011
|
0.80
|
40
|
Dorsal root ganglion application of muscimol prevents hyperalgesia and stimulates myelin protein expression after sciatic nerve injury in rats.
|
Anesth Analg
|
2011
|
0.79
|
41
|
Silencing the α2 subunit of γ-aminobutyric acid type A receptors in rat dorsal root ganglia reveals its major role in antinociception posttraumatic nerve injury.
|
Anesthesiology
|
2015
|
0.76
|
42
|
Mechanical and thermal anti-nociception in rats after systemic administration of verapamil.
|
Neurosci Lett
|
2004
|
0.76
|
43
|
Chronic exposure to nitrous oxide increases [3H]MK801 binding in the cerebral cortex, but not in the hippocampus of adult mice.
|
Ann N Y Acad Sci
|
2005
|
0.76
|
44
|
Early Exposure to General Anesthesia with Isoflurane Downregulates Inhibitory Synaptic Neurotransmission in the Rat Thalamus.
|
Mol Neurobiol
|
2015
|
0.76
|
45
|
Recovery profiles of general anesthesia and spinal anesthesia for chemotherapeutic perfusion with circulatory block (stop-flow perfusion).
|
Anesth Analg
|
2007
|
0.75
|
46
|
Journal-related and other special activities at the 2008 American Society of Anesthesiologists Annual Meeting.
|
Anesthesiology
|
2008
|
0.75
|