Point-of-Care Technologies Theme, Centre for Bioengineering and Nanotechnology, Dunedin, New Zealand.
Interventional Technologies Theme, Medical Technologies Centre of Research Excellence, Auckland, New Zealand.
Sci Rep. 2024 May 2;14(1):10122. doi: 10.1038/s41598-024-55165-8.
Non-invasive neuromodulation of non-compressible internal organs has significant potential for internal organ bleeding and blood-shift in aero/space medicine. The present study aims to investigate the potential influences of the non-invasive transcutaneous electrical nerve stimulation (TENS) on multiple non-compressible internal organs' blood flow. Porcine animal model (n = 8) was randomized for a total of 48 neuromodulation sessions with two different TENS stimulation frequencies (80 Hz, 10 Hz) and a placebo stimulation. A combination of two different electrode configurations (Abdominal-only or Abdominal and hind limb) were also performed. Intraarterial blood flow measurements were taken during pre and post-stimulation periods at the left renal artery, common hepatic artery, and left coronary artery. Intracranial, and extracranial arterial blood flows were also assessed with digital subtraction angiography. TENS with abdominal-only electrode configurations at 10 Hz demonstrated significant reductions in average peak blood flow velocity (APV) of the common hepatic artery (p = 0.0233) and renal arteries (p = 0.0493). Arterial pressures (p = 0.0221) were also significantly lower when renal APV was reduced. The outcome of the present study emphasises the potential use of TENS in decreasing the blood flow of non-compressible internal organs when the correct combination of electrodes configuration and frequency is used.
非侵入性神经调节技术在航空航天医学中对于非可压缩性内脏器官的出血和血液移位具有重要的潜在应用价值。本研究旨在探讨非侵入性经皮神经电刺激(TENS)对多个非可压缩性内脏器官血流的潜在影响。我们使用猪动物模型(n=8)进行了总共 48 次神经调节治疗,使用了两种不同的 TENS 刺激频率(80 Hz 和 10 Hz)和一种安慰剂刺激,并采用两种不同的电极配置(腹部或腹部和后肢)进行了组合。在刺激前和刺激后期间,通过经皮动脉内血流测量法测量左肾动脉、肝总动脉和左冠状动脉的血流。还通过数字减影血管造影评估颅内和颅外动脉血流。结果显示,使用腹部电极配置的 10 Hz TENS 可显著降低肝总动脉(p=0.0233)和肾动脉(p=0.0493)的平均峰值血流速度(APV)。当肾 APV 降低时,动脉压(p=0.0221)也显著降低。本研究的结果强调了在航空航天医学中,当正确组合电极配置和频率时,TENS 可能用于降低非可压缩性内脏器官的血流。