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一种新型术中测绘设备可检测热力学响应函数。

A Novel Intraoperative Mapping Device Detects the Thermodynamic Response Function.

作者信息

Iorga Michael, Schneider Nils, Cho Jaden, Tate Matthew C, Parrish Todd B

机构信息

Department of Radiology, Feinberg School of Medicine, Chicago, IL 60611, USA.

Department of Neurological Surgery, Feinberg School of Medicine, Chicago, IL 60611, USA.

出版信息

Brain Sci. 2023 Jul 19;13(7):1091. doi: 10.3390/brainsci13071091.

Abstract

Functional activation leads to an increase in local brain temperature via an increase in local perfusion. In the intraoperative setting, these cortical surface temperature fluctuations may be imaged using infrared thermography such that the activated brain areas are inferred. While it is known that temperature increases as a result of activation, a quantitative spatiotemporal description has yet to be achieved. A novel intraoperative infrared thermography device with data collection software was developed to isolate the thermal impulse response function. Device performance was validated using data from six patients undergoing awake craniotomy who participated in motor and sensory mapping tasks during infrared imaging following standard mapping with direct electrical stimulation. Shared spatiotemporal patterns of cortical temperature changes across patients were identified using group principal component analysis. Analysis of component time series revealed a thermal activation peak present across all patients with an onset delay of five seconds and a peak duration of ten seconds. Spatial loadings were converted to a functional map which showed strong correspondence to positive stimulation results for similar tasks. This component demonstrates the presence of a previously unknown impulse response function for functional mapping with infrared thermography.

摘要

功能激活通过局部灌注增加导致局部脑温升高。在术中环境中,这些皮质表面温度波动可使用红外热成像进行成像,从而推断出激活的脑区。虽然已知激活会导致温度升高,但尚未实现定量的时空描述。开发了一种带有数据采集软件的新型术中红外热成像设备,以分离热脉冲响应函数。使用来自6名接受清醒开颅手术患者的数据验证了设备性能,这些患者在标准直接电刺激映射后的红外成像期间参与了运动和感觉映射任务。使用组主成分分析确定了患者间皮质温度变化的共享时空模式。对成分时间序列的分析显示,所有患者均出现热激活峰值,起始延迟为5秒,峰值持续时间为10秒。空间负荷被转换为功能图,该图显示与类似任务的阳性刺激结果有很强的对应关系。该成分表明存在一种以前未知的用于红外热成像功能映射的脉冲响应函数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ebc/10377735/8aeee036244e/brainsci-13-01091-g001.jpg

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