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New insights into neural mechanisms controlling the micturition reflex

机译:对控制排尿反射的神经机制的新见解

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The functions of the lower urinary tract, to store and periodically release urine, are dependent on the activity of smooth and striated muscles in the bladder, urethra, and external urethral sphincter. This activity is in turn controlled by neural circuits in the brain, spinal cord, and peripheral ganglia. During urine storage, the outlet is closed and the bladder smooth muscle is quiescent. When bladder volume reaches the micturition threshold, activation of a micturition center in the dorsolateral pons (the pontine micturition center) induces a bladder contraction and a reciprocal relaxation of the urethra, leading to bladder emptying. During voiding, sacral parasympathetic (pelvic) nerves provide an excitatory input (cholinergic and purinergic) to the bladder and inhibitory input (nitrergic) to the urethra. The brain rostral to the pons (diencephalon and cerebral cortex) is also involved in excitatory and inhibitory regulation of the micturition reflex. Various transmitters including dopamine, serotonin, norepinephrine, GABA, excitatory and inhibitory amino acids, opioids, acetylcholine, and neuropeptides are implicated in the modulation of the micturition reflex in the central nervous system. Therefore, injury or diseases of the nervous system, as well as drugs and disorders of the peripheral organs, can produce bladder and urethral dysfunctions such as urinary frequency, urgency and incontinence, or inefficient bladder emptying.
机译:下尿路的功能是储存和定期释放尿液,取决于膀胱,尿道和尿道外括约肌的平滑和横纹肌的活动。该活动又由大脑,脊髓和周围神经节中的神经回路控制。在尿液储存期间,出口关闭并且膀胱平滑肌静止。当膀胱容量达到排尿阈值时,背外侧桥中的排尿中心(桥脑排尿中心)的激活引起膀胱收缩和尿道的相互放松,导致膀胱排空。在排尿期间,副交感神经(盆腔)向膀胱提供兴奋性输入(胆碱能和嘌呤能),对尿道提供抑制性输入(硝能)。大脑脑桥(脑桥和大脑皮层)也参与排尿反射的兴奋性和抑制性调节。包括多巴胺,5-羟色胺,去甲肾上腺素,GABA,兴奋性和抑制性氨基酸,阿片类药物,乙酰胆碱和神经肽在内的各种递质与中枢神经系统排尿反射的调节有关。因此,神经系统的损伤或疾病,以及周围器官的药物和疾病,可能会导致膀胱和尿道功能障碍,例如尿频,尿急和尿失禁或膀胱排空效率低下。

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