Department of Anesthesia and Perioperative Medicine, Henan University People's Hospital, People's Hospital of Zhengzhou University, Henan Provincial People's Hospital, Zhengzhou, China.
Medical Research Institute, Guangdong Provincial People's Hospital, Guangdong Academy of Medical Sciences, Southern Medical University, Guangzhou, China.
Mol Imaging Biol. 2023 Aug;25(4):659-670. doi: 10.1007/s11307-023-01815-8. Epub 2023 Mar 31.
Metabolic acidosis as one of the most common perioperative complications has been associated with increased risks for poor prognosis. Routine monitoring methods include blood gas analysis and electrocardiogram, which are limited by time delay effects. And the existing intravital imaging modalities are difficult to achieve in one step. Here, we present a dual-wavelength photoacoustic imaging approach to overcome this dilemma. The aim of this study was to develop a rapid approach for intensive monitoring of acid-base imbalance and cerebral oxygen metabolism.
We characterized the cerebrovascular structure by label-free dual-wavelength (532 and 559 nm) photoacoustic microscopy in healthy and diabetic mouse models with metabolic acidosis. Concurrently, we developed a single-vessel analysis method to accurately delineate the differential responses of small vessels and quantify the cerebral oxygenation following experimental alteration of pH.
We demonstrated that there was an increasing trend in changes of vascular measurements (density, diameter, and relative hemoglobin concentration) and cerebral microvascular oxygen metabolism with the aggravation of acidosis. Furthermore, we established a clinical nomogram for the diagnosis of disease severity and yielded good discrimination ability with area under the curve of 0.920-0.967 and accuracy of 81.9-93.0%. The nomogram was also validated well in the diabetic mouse model with metabolic acidosis.
Our photoacoustic imaging approach has great potential for rapid detection of metabolic acidosis and brain oxygen metabolism, which could potentially be applied as a bedside monitoring method for brain protection and timely treatment of acid-base abnormalities.
代谢性酸中毒是围手术期最常见的并发症之一,与预后不良的风险增加有关。常规监测方法包括血气分析和心电图,但受到时间延迟的影响。现有的活体成像方式难以一步实现。在这里,我们提出了一种双波长光声成像方法来克服这一困境。本研究旨在开发一种快速方法,用于强化监测酸碱失衡和脑氧代谢。
我们通过无标记的双波长(532nm 和 559nm)光声显微镜对健康和代谢性酸中毒的糖尿病小鼠模型的脑血管结构进行了特征描述。同时,我们开发了一种单血管分析方法,以准确描绘 pH 实验改变后小血管的差异反应,并量化脑氧合。
我们证明,随着酸中毒的加重,血管测量值(密度、直径和相对血红蛋白浓度)和脑微血管氧代谢的变化呈上升趋势。此外,我们建立了一个临床列线图来诊断疾病严重程度,其曲线下面积为 0.920-0.967,准确性为 81.9-93.0%。该列线图在代谢性酸中毒的糖尿病小鼠模型中也得到了很好的验证。
我们的光声成像方法具有快速检测代谢性酸中毒和脑氧代谢的潜力,可作为床边监测方法,用于脑保护和及时治疗酸碱异常。