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Dynamics of the sensory response to urethral flow over multiple time scales in rat

机译:大鼠在多个时间尺度上对尿道流量的感觉反应动力学

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摘要

The pudendal nerve carries sensory information from the urethra that controls spinal reflexes necessary to maintain continence and achieve efficient micturition. Despite the key role urethral sensory feedback plays in regulation of the lower urinary tract, there is little information about the characteristics of urethral sensory responses to physiological stimuli, and the quantitative relationship between physiological stimuli and the evoked sensory activation is unknown. Such a relation is critical to understanding the neural control of the lower urinary tract and how dysfunction arises in disease states. We systematically quantified pudendal afferent responses to fluid flow in the urethra in vivo in the rat. We characterized the sensory response across a range of stimuli, and describe a previously unreported long-term neural accommodation phenomenon. We developed and validated a compact mechanistic mathematical model capable of reproducing the pudendal sensory activity in response to arbitrary profiles of urethral flows. These results describe the properties and function of urethral afferents that are necessary to understand how sensory disruption manifests in lower urinary tract pathophysiology.Key points class="unordered" style="list-style-type:disc"> Sensory information from the urethra is essential to maintain continence and to achieve efficient micturition and when compromised by disease or injury can lead to substantial loss of function. Despite the key role urethral sensory information plays in the lower urinary tract, the relationship between physiological urethral stimuli, such as fluid flow, and the neural sensory response is poorly understood. This work systematically quantifies pudendal afferent responses to a range of fluid flows in the urethra in vivo and describes a previously unknown long-term neural accommodation phenomenon in these afferents. We present a compact mechanistic mathematical model that reproduces the pudendal sensory activity in response to urethral flow. These results have implications for understanding urinary tract dysfunction caused by neuropathy or nerve damage, such as urinary retention or incontinence, as well as for the development of strategies to mitigate the symptoms of these conditions.
机译:阴部神经携带着来自尿道的感觉信息,这些信息控制着维持节制和实现有效排尿所需的脊柱反射。尽管尿道感觉反馈在下尿路的调节中起着关键作用,但是关于尿道感觉对生理刺激的反应特性的信息很少,并且生理刺激与诱发的感觉激活之间的定量关系尚不清楚。这种关系对于理解下尿路的神经控制以及在疾病状态下功能障碍如何产生至关重要。我们系统地量化了大鼠体内对尿道中流体流动的阴部传入反应。我们表征了一系列刺激的感觉反应,并描述了以前未报道的长期神经适应现象。我们开发并验证了一种紧凑的机械数学模型,该模型能够根据任意尿道流量曲线再现阴部感觉活动。这些结果描述了了解下尿路病理生理如何出现感觉破坏所必需的尿道传入的特性和功能。要点 class =“ unordered” style =“ list-style-type:disc”> <!- list-behavior =无序的前缀词= mark-type = disc max-label-size = 0-> 来自尿道的感官信息对于维持节制和实现有效的排尿至关重要,并且在疾病或伤害损害时可以导致功能严重丧失。 尽管尿道感觉信息在下尿路中起着关键作用,但对生理尿道刺激(如液体流量)与神经感觉反应之间的关系知之甚少。 这项工作系统地量化了对体内尿道中一系列流体流动的阴部传入反应,并描述了这些传入中以前未知的长期神经适应现象。我们提出了一个紧凑的力学数学模型,该模型再现了对尿道血流的阴部感觉活动。 这些结果对于理解由神经病或神经损伤(如尿retention留或尿失禁)引起的尿路功能障碍,以及减轻这些症状的方法的开发具有重要意义。

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