Exploratory Feasibility Study of Cerebral Cooling by Transpulmonary Cooling During Cardiac Arrest in a Swine Cardiac Arrest Model

被引:0
|
作者
Sakurai, Atsushi [1 ]
Kato, Yoshihisa [2 ]
Uki, Haruka [2 ]
Yagi, Kana [2 ]
Watanabe, Atsushi [2 ]
Sato, Jun [1 ]
Nakagawa, Katsuhiro [1 ]
Nakabayashi, Hayato [1 ]
Kinoshita, Kosaku [1 ]
机构
[1] Nihon Univ, Sch Med, Dept Acute Med, Div Emergency & Crit Care Med, 30-1 Oyaguchi Kamimachi,Itabashi ku, Tokyo 1738610, Japan
[2] Asahi Kasei Med Co Ltd, Med Technol & Mat Lab, Res & Business Dev Div, Tokyo, Japan
关键词
postcardiac arrest brain injury; cardiopulmonary resuscitation; intra-arrest lung cooling; HEART-ASSOCIATION GUIDELINES; CARDIOPULMONARY-RESUSCITATION; THERAPEUTIC HYPOTHERMIA; COLD SALINE; LIQUID VENTILATION; INTENSIVE-CARE; OUTCOMES; PERFLUOROCARBONS; RESUMPTION; INFUSION;
D O I
10.1089/ther.2024.0017
中图分类号
R4 [临床医学];
学科分类号
1002 ; 100602 ;
摘要
Studies on targeted temperature management for postcardiac arrest syndrome have shown no difference in outcomes between normothermia and hypothermia in patients with postcardiac arrest brain injury. Therefore, further development of therapeutic methods for temperature control in cardiac arrest patients is desirable. Although animal studies have shown that inducing hypothermia during cardiac arrest improves outcomes, no clinically effective method has yet been reported. We investigated whether intra-arrest lung cooling (IALC) effectively lowers brain temperature. A device capable of cooling oxygen was developed. The pigs were subjected to cardiac arrest using the device, ventilated, cooled during cardiopulmonary resuscitation, and resuscitated for 1 hour, with changes in brain temperature closely monitored. A device capable of cooling oxygen to -30 degrees C was used to cool the lungs during cardiac arrest. Through this approach, IALC successfully reduced the brain temperature. Optimal cooling efficiency was observed when chest compressions and ventilation were synchronized at a ratio of 5:1, resulting in an approximate brain temperature reduction of 1.5 degrees C/h. Our successful development of an oxygen-cooling device underscores the potential for lowering brain temperature through IALC using inhaled oxygen cooling.
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页数:7
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