Tucker J F, Danzl D F, Teague E, Trujillo J, Bisker J
J Emerg Med. 1984;2(2):79-83. doi: 10.1016/0736-4679(84)90325-1.
The pneumatic antishock trouser garment is a widely used adjunct in the stabilization of the hypotensive patient. Successful resuscitation may require infusion of intravenous (IV) solutions below the diaphragm. However, once all three sections of the pneumatic antishock trousers are inflated, the only IV access available below the diaphragm with the garment inflated is in the foot or ankle. To determine the feasibility of infusing IV solutions distal to the garment, an IV catheter was inserted percutaneously in an ankle or foot vein (saphenous if possible) of ten volunteers. With a Jobst three-section antishock air pants garment in place but deflated, each volunteer was injected via a 3-mL syringe with a measured amount of xenon 133 dissolved in 2 mL of normal saline. The 133Xe was then rapidly flushed with 250 mL of normal saline using a blood infusion hand pump. Time required for 133Xe to reach the central circulation was measured using a gamma emissions camera. The above procedure was then repeated with the garment inflated to 40 and then to 100 mm of mercury. There was no statistically significant difference in the amount of time to reach peak concentration of 133Xe in the thorax or in the time required to infuse 250 mL of normal saline via hand pump with the garment inflated to 0, 40, or 100 mm Hg. These results indicate that IV solutions may be rapidly infused under pressure distal to the pneumatic antishock trousers and reach the central circulation without significant delay.
气动抗休克裤是一种广泛用于稳定低血压患者病情的辅助设备。成功的复苏可能需要在横膈膜以下输注静脉(IV)溶液。然而,一旦气动抗休克裤的三个部分都充气后,在裤子充气的情况下,横膈膜以下唯一可用的静脉通路就在足部或脚踝。为了确定在裤子远端输注静脉溶液的可行性,在10名志愿者的脚踝或足部静脉(如有可能为隐静脉)经皮插入一根静脉导管。在穿上但未充气的Jobst三段式抗休克气裤的情况下,通过一个3毫升注射器向每位志愿者注射一定量溶解于2毫升生理盐水中的氙133。然后使用输血手泵用250毫升生理盐水快速冲洗133Xe。使用伽马发射相机测量133Xe到达体循环所需的时间。然后在裤子充气至40毫米汞柱然后再充气至100毫米汞柱的情况下重复上述过程。在裤子充气至0、40或100毫米汞柱时,133Xe在胸部达到峰值浓度所需的时间或通过手泵输注250毫升生理盐水所需的时间在统计学上没有显著差异。这些结果表明,静脉溶液可以在气动抗休克裤远端的压力下快速输注,并能在无明显延迟的情况下到达体循环。