Tailby Chris, Wright Layne L, Metha Andrew B, Calford Mike B
School of Biomedical Sciences and Hunter Medical Research Institute, University of Newcastle, Newcastle NSW 2308, Australia.
Proc Natl Acad Sci U S A. 2005 Mar 22;102(12):4631-6. doi: 10.1073/pnas.0402747102. Epub 2005 Mar 14.
Whereas it is widely accepted that the adult cortex is capable of a remarkable degree of functional plasticity, demonstrations of accompanying structural changes have been limited. We examined the basal dendritic field morphology of dye-filled neurons in layers III and IV of the mature barrel cortex after vibrissal-deafferentation in adult rats. Eight weeks later, the tendency for these neurons to orient their dendritic arbors toward the center of their home barrel was found to be disrupted by the resultant reduced activity of thalamocortical innervation. Measures of spine density and total dendritic length were normal, indicating that the loss of dendritic bias was accompanied by growth of dendrites directed away from the barrel center. This finding suggests that in the mature cortex, the apparently static structural attributes of the normal adult cortex depend on maintenance of patterns of afferent activity; with the corollary that changes in these patterns can induce structural plasticity.
虽然人们普遍认为成年皮质具有显著程度的功能可塑性,但伴随结构变化的证据却很有限。我们在成年大鼠进行触须去传入后,检查了成熟桶状皮质第III和第IV层中注入染料的神经元的基底树突野形态。八周后,发现这些神经元将其树突分支朝向其所在桶中心的倾向因丘脑皮质神经支配活动的降低而受到干扰。棘密度和总树突长度的测量结果正常,表明树突偏向的丧失伴随着远离桶中心方向的树突生长。这一发现表明,在成熟皮质中,正常成年皮质表面上静态的结构属性依赖于传入活动模式的维持;由此推断,这些模式的变化可诱导结构可塑性。