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H G Kuhn

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Articles 31
Citations 3762
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Recent Articles
1.
Nyberg J, Henriksson M, Aberg M, Rosengren A, Soderberg M, Aberg N, et al.
Psychol Med . 2017 Jun; 48(3):416-425. PMID: 28655366
Background: Cardiovascular fitness in late adolescence is associated with future risk of depression. Relationships with other mental disorders need elucidation. This study investigated whether fitness in late adolescence is associated...
2.
Aberg M, Nyberg J, Toren K, Sorberg A, Kuhn H, Waern M
Psychol Med . 2013 Jun; 44(4):779-88. PMID: 23739044
Background: Cardiovascular fitness influences many aspects of brain function. However, the relationship between cardiovascular fitness and suicidal behaviour is unknown. Therefore, we aimed to determine whether cardiovascular fitness at age...
3.
Sato Y, Shinjyo N, Sato M, Osato K, Zhu C, Pekna M, et al.
Cell Death Dis . 2013 Apr; 4:e591. PMID: 23598403
Ionizing radiation persistently reduces the pool of neural stem and progenitor cells (NSPCs) in the dentate gyrus (DG) of the hippocampus, which may explain some of the learning deficits observed...
4.
Osato K, Sato Y, Ochiishi T, Osato A, Zhu C, Sato M, et al.
Cell Death Dis . 2011 Mar; 1:e84. PMID: 21368857
Cranial radiotherapy in children often leads to progressive cognitive decline. We have established a rodent model of irradiation-induced injury to the young brain. A single dose of 8 Gy was...
5.
Persson A, Lindwall C, Curtis M, Kuhn H
Neuroscience . 2010 Jan; 167(2):312-22. PMID: 20109539
Continuous proliferation occurs in the adult subventricular zone (SVZ) of the lateral ventricles throughout life. In the SVZ, progenitor cells differentiate into neuroblasts, which migrate tangentially along the rostral migratory...
6.
Kohl Z, Kuhn H, Cooper-Kuhn C, Winkler J, Aigner L, Kempermann G
Genes Brain Behav . 2003 Jul; 1(1):46-54. PMID: 12886949
Since both living in an enriched environment and physical activity stimulate hippocampal neurogenesis in adult mice, we endeavored to examine whether pre-weaning enrichment, a sensory enrichment paradigm with very limited...
7.
Kuhn H, Palmer T, Fuchs E
Eur Arch Psychiatry Clin Neurosci . 2001 Nov; 251(4):152-8. PMID: 11697579
It is now evident that the adult vertebrate brain including the human brain is efficiently and continuously generating new neurons. In the first part we describe the current view of...
8.
Biebl M, Cooper C, Winkler J, Kuhn H
Neurosci Lett . 2000 Aug; 291(1):17-20. PMID: 10962143
The adult central nervous system was thought to be very limited in its regenerative potential; however, the discovery that stem cell populations produce neurons in the adult brain highlights the...
9.
Horner P, Power A, Kempermann G, Kuhn H, Palmer T, Winkler J, et al.
J Neurosci . 2000 Mar; 20(6):2218-28. PMID: 10704497
The existence of multipotent progenitor populations in the adult forebrain has been widely studied. To extend this knowledge to the adult spinal cord we have examined the proliferation, distribution, and...
10.
Kuhn H, Svendsen C
Bioessays . 1999 Aug; 21(8):625-30. PMID: 10440858
In recent years, the existence of neural stem cells (NSCs) in the adult mammalian brain has been confirmed. The generation of new neurons from these cells is regulated by growth...