Holstege Gert
Department of Anatomy and Embryology, University Medical Center Groningen, University of Groningen, 9713 AV Groningen, The Netherlands.
J Comp Neurol. 2005 Dec 5;493(1):15-20. doi: 10.1002/cne.20785.
There is a close connection between micturition and emotion. Several species use micturition to signal important messages as territorial demarcation and sexual attraction. For this reason, micturition is coordinated not in the spinal cord but in the brainstem, where it is closely connected with the limbic system. In cat, bladder afferents terminate in a cell group in the lateral dorsal horn and lateral part of the intermediate zone. Neurons in this cell group project to supraspinal levels, not to the thalamus but to the central periaqueductal gray (PAG). Neurons in the lateral PAG, not receiving direct sacral cord afferents, project to the pontine micturition center (PMC). The PMC projects directly to the parasympathetic bladder motoneurons and to sacral GABA-ergic and glycinergic premotor interneurons that inhibit motoneurons in Onuf's nucleus innervating the external striated bladder sphincter. Thus, PMC stimulation causes bladder contraction and bladder sphincter relaxation, i.e., complete micturition. Other than the PAG, only the preoptic area and a cell group in the caudal hypothalamus project directly to the PMC. The ventromedial upper medullary tegmentum also sends projections to the PMC, but they are diffuse and also involve structures that adjoin the PMC. Neuroimaging studies in humans suggest that the systems controlling micturition in cat and human are very similar. It seems that the many structures in the brain that are known to influence micturition use the PAG as relay to the PMC. This basic organization has to be kept in mind in the fight against overactive bladder (OAB) and urge-incontinence.
排尿与情绪之间存在密切联系。一些物种利用排尿来传递重要信息,如领地划分和性吸引。因此,排尿的协调并非在脊髓,而是在脑干,在那里它与边缘系统紧密相连。在猫中,膀胱传入神经终止于外侧背角和中间带外侧部分的一个细胞群。该细胞群中的神经元投射到脊髓以上水平,不是投射到丘脑,而是投射到中脑导水管周围灰质(PAG)。外侧PAG中的神经元不接受来自骶髓的直接传入神经,而是投射到脑桥排尿中枢(PMC)。PMC直接投射到副交感神经膀胱运动神经元以及骶部γ-氨基丁酸能和甘氨酸能运动前中间神经元,这些中间神经元抑制奥努夫核中支配膀胱外横纹肌括约肌的运动神经元。因此,刺激PMC会导致膀胱收缩和膀胱括约肌松弛,即完全排尿。除了PAG,只有视前区和下丘脑尾部的一个细胞群直接投射到PMC。延髓腹内侧被盖也向PMC发送投射,但它们是弥散的,并且还涉及与PMC相邻的结构。对人类的神经影像学研究表明,猫和人类中控制排尿的系统非常相似。似乎大脑中许多已知影响排尿的结构都以PAG作为通向PMC的中继站。在对抗膀胱过度活动症(OAB)和急迫性尿失禁的斗争中必须牢记这一基本组织架构。