Kim Jin Wook, Kim Su Jin, Park Jong Mok, Na Yong Gil, Kim Khae Hawn
Department of Urology, Chung-Ang University, Seoul, Korea.
Department of Urology, Yonsei University Wonju College of Medicine, Wonju, Korea.
Int Neurourol J. 2020 Sep;24(3):191-199. doi: 10.5213/inj.2040318.159. Epub 2020 Sep 30.
The neurological coordination of the lower urinary tract can be analyzed from the perspective of motor neurons or sensory neurons. First, sensory nerves with receptors in the bladder and urethra transmits stimuli to the cerebral cortex through the periaqueductal gray (PAG) of the midbrain. Upon the recognition of stimuli, the cerebrum carries out decision-making in response. Motor neurons are divided into upper motor neurons (UMNs) and lower motor neurons (LMNs) and UMNs coordinate storage and urination in the brainstem for synergic voiding. In contrast, LMNs, which originate in the spinal cord, cause muscles to contract. These neurons are present in the sacrum, and in particular, a specific neuron group called Onuf's nucleus is responsible for the contraction of the external urethral sphincter and maintains continence in states of rising vesical pressure through voluntary contraction of the sphincter. Parasympathetic neurons originating from S2-S4 are responsible for the contraction of bladder muscles, while sympathetic neurons are responsible for contraction of the urethral smooth muscle, including the bladder neck, during the guarding reflex. UMNs are controlled in the pons where various motor stimuli to the LMNs are directed along with control to various other pelvic organs, and in the PAG, where complex signals from the brain are received and integrated. Future understanding of the complex mechanisms of micturition requires integrative knowledge from various fields encompassing these distinct disciplines.
下尿路的神经协调可从运动神经元或感觉神经元的角度进行分析。首先,膀胱和尿道中带有感受器的感觉神经通过中脑导水管周围灰质(PAG)将刺激传递至大脑皮层。在识别到刺激后,大脑会做出相应的决策。运动神经元分为上运动神经元(UMNs)和下运动神经元(LMNs),UMNs在脑干中协调储存和排尿过程以实现协同排尿。相比之下,起源于脊髓的LMNs会引起肌肉收缩。这些神经元存在于骶骨中,特别是一个名为奥努夫核的特定神经元群负责尿道外括约肌的收缩,并通过括约肌的自主收缩在膀胱压力升高时维持控尿。起源于S2 - S4的副交感神经元负责膀胱肌肉的收缩,而交感神经元在警戒反射期间负责包括膀胱颈在内的尿道平滑肌的收缩。UMNs在脑桥中受到控制,在那里向LMNs发出各种运动刺激,并对其他各种盆腔器官进行控制;在PAG中,来自大脑的复杂信号在此接收和整合。未来对排尿复杂机制的理解需要涵盖这些不同学科的各个领域的综合知识。