Allos S H, Staton D J, Bradshaw L A, Halter S, Wikswo J P, Richards W O
Department of Surgery, Veterans Administration Medical Center, 1310 24th Avenue S, Nashville, Tennessee 37203, USA.
World J Surg. 1997 Feb;21(2):173-7; discussion 177-8. doi: 10.1007/s002689900211.
Although mesenteric venous thrombosis carries a better prognosis than arterial thrombosis, mortality and morbidity are still high. Previous studies have shown that the basic electrical rhythm (BER) of the bowel decreases early after induction of arterial ischemia. Furthermore, our studies have shown that these changes occur prior to pathologic changes and that they can be recorded noninvasively using a superconducting quantum interference device (SQUID). SQUIDs measure magnetic fields that are created by the electrical activity of the gastrointestinal smooth muscle and have been used to measure the BER of the small intestine in human volunteers. This study was conducted to determine if a SQUID could be used for early noninvasive detection of mesenteric venous ischemia in an animal model. Simultaneous recordings from serosal electrodes and a SQUID outside the abdomen were taken from anesthetized New Zealand rabbits. Recordings were made for 15 minutes before and 90 minutes after injection of thrombin into the superior mesenteric vein. The basic electrical rhythm of the small bowel dropped from 16.42 +/- 0.69 to 8.80 +/- 0.74 cycles per minute at 30 minutes and to 6.82 +/- 0.722 after 90 minutes (p < 0.0001, paired t-test). The correlation coefficient between the SQUID and electrical recordings was 0.954 (p < 0.0001). These data suggest that the ischemia caused by mesenteric venous thrombosis results in changes in the bioelectrical activity, which can be noninvasively detected using a SQUID.
尽管肠系膜静脉血栓形成的预后比动脉血栓形成要好,但死亡率和发病率仍然很高。先前的研究表明,肠道的基本电节律(BER)在动脉缺血诱导后早期就会降低。此外,我们的研究表明,这些变化发生在病理变化之前,并且可以使用超导量子干涉装置(SQUID)进行无创记录。SQUID测量由胃肠道平滑肌的电活动产生的磁场,并已用于测量人类志愿者小肠的BER。本研究旨在确定SQUID是否可用于在动物模型中早期无创检测肠系膜静脉缺血。从麻醉的新西兰兔身上同时记录浆膜电极和腹部外的SQUID。在向上肠系膜静脉注射凝血酶之前15分钟和之后90分钟进行记录。小肠的基本电节律在30分钟时从每分钟16.42±0.69次下降到8.80±0.74次,90分钟后下降到6.82±0.722次(配对t检验,p<0.0001)。SQUID与电记录之间的相关系数为0.954(p<0.0001)。这些数据表明,肠系膜静脉血栓形成引起的缺血导致生物电活动发生变化,这可以使用SQUID进行无创检测。