Bosnjak R, Kordas M
Department of Neurosurgery, University Hospital Center, Ljubljana, Slovenia.
Med Biol Eng Comput. 2002 Jul;40(4):423-31. doi: 10.1007/BF02345075.
The effects of compression of the internal jugular veins and the inferior vena cava are simulated using an equivalent electronic circuit, which included simulation of cardiocirculatory phenomena and special features of the cerebral circulation. Compression of the inferior vena cava resulted in a profound decrease in cardiac output (from 4.5 to 1.51min(-1)) and arterial pressure (from 140/85 to 50/35 mmHg). Compression of the internal jugular veins resulted in a negligible decrease in cardiac output and arterial pressure, with a cerebral blood flow that was slightly decreased. Cerebral capillary and internal jugular pressures were considerably increased, leading to obstruction of cerebral veins and increased pressure (from 9 to 22 mmHg) and volume (from 120 to 145 ml) of the cerebrospinal fluid (CSF). Increased cerebral capsule compliance resulted in decreased CSF pressure (from 9 to 8.5 mmHg), but CSF volume increased (from 120 to 190 ml). A small increase in brain volume (from 1,000 ml to 1,060 ml, 6% volume increase) was compensated for by an equal decrease in the volume of CSF. When brain volume was above 1,080 ml, the absorption of CSF was reduced, and its pressure increased.
使用等效电子电路模拟颈内静脉和下腔静脉受压的影响,该电路包括心脏循环现象和脑循环特征的模拟。下腔静脉受压导致心输出量大幅下降(从4.5降至1.5l/min)和动脉压下降(从140/85降至50/35 mmHg)。颈内静脉受压导致心输出量和动脉压下降可忽略不计,脑血流量略有下降。脑毛细血管和颈内静脉压力显著升高,导致脑静脉阻塞,脑脊液(CSF)压力升高(从9升至22 mmHg),体积增加(从120升至145 ml)。脑包膜顺应性增加导致脑脊液压力降低(从9降至8.5 mmHg),但脑脊液体积增加(从120升至190 ml)。脑体积略有增加(从1000 ml增至1060 ml,体积增加6%),由脑脊液体积等量减少来补偿。当脑体积超过1080 ml时,脑脊液吸收减少,压力升高。