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Effects of electrical stimulation on isolated rodent gastric smooth muscle cells evaluated via a joint computational simulation and experimental approach

机译:通过联合计算模拟和实验方法评估电刺激对离体啮齿动物胃平滑肌细胞的影响

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摘要

Gastric electrical stimulation (GES) involves the delivery of electrical impulses to the stomach for therapeutic purposes. New GES protocols are needed that are optimized for improved motility outcomes and energy efficiency. In this study, a biophysically based smooth muscle cell (SMC) model was modified on the basis of experimental data and employed in conjunction with experimental studies to define the effects of a large range of GES protocols on individual SMCs. For the validation studies, rat gastric SMCs were isolated and subjected to patch-clamp analysis during stimulation. Experimental results were in satisfactory agreement with simulation results. The results define the effects of a wide range of GES parameters (pulse width, amplitude, and pulse-train frequency) on isolated SMCs. The minimum pulse width required to invoke a supramechanical threshold response from SMCs (defined at −30 mV) was 65 ms (at 250-pA amplitude). The minimum amplitude required to invoke this threshold was 75 pA (at 1,000-ms pulse width). The amplitude of the invoked response beyond this threshold was proportional to the stimulation amplitude. A high-frequency train of stimuli (40 Hz; 10 ms, 150 pA) could invoke and maintain the SMC plateau phase while requiring 60% less power and accruing ∼30% less intracellular Ca2+ concentration during the plateau phase than a comparable single-pulse protocol could in a demonstrated example. Validated computational simulations are an effective strategy for efficiently identifying effective minimum-energy GES protocols, and pulse-train protocols may also help to reduce the power consumption of future GES devices.
机译:胃电刺激(GES)涉及将电脉冲传递到胃部以达到治疗目的。需要新的GES协议,这些协议已进行了优化,以提高运动性结果和能源效率。在这项研究中,基于实验数据修改了基于生物物理的平滑肌细胞(SMC)模型,并将其与实验研究结合使用,以定义各种GES协议对单个SMC的影响。为了进行验证研究,分离大鼠胃SMC,并在刺激过程中进行膜片钳分析。实验结果与仿真结果令人满意。结果定义了广泛的GES参数(脉冲宽度,幅度和脉冲串频率)对隔离的SMC的影响。从SMC调用超机械阈值响应(定义为-30 mV)所需的最小脉冲宽度为65 ms(幅度为250-pA)。调用此阈值所需的最小幅度为75 pA(在1,000毫秒脉冲宽度下)。超出此阈值的调用响应的幅度与刺激幅度成正比。高频刺激(40 Hz; 10 ms,150 pA)可以激活并维持SMC平稳期,而在此期间所需的功率降低60%,细胞内Ca 2 + 的浓度降低约30%。在一个已演示的示例中,平稳阶段要比类似的单脉冲协议所能达到的高。经过验证的计算仿真是有效识别有效的最低能耗GES协议的有效策略,脉冲序列协议也可能有助于降低未来GES设备的功耗。

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