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一种用于创伤性脑损伤颅内光谱分析的探针装置的研制与特性研究

Development and Characterization of a Probe Device toward Intracranial Spectroscopy of Traumatic Brain Injury.

作者信息

Mowbray Max, Banbury Carl, Rickard Jonathan J S, Davies David J, Goldberg Oppenheimer Pola

机构信息

Department of Chemical Engineering and Analytical Science, University of Manchester, The Mill, Sackwville Street, Manchester M1 3AL, U.K.

School of Biochemical Engineering, EPS, University of Birmingham, Edgbaston, Birmingham B15 2TT, U.K.

出版信息

ACS Biomater Sci Eng. 2021 Mar 8;7(3):1252-1262. doi: 10.1021/acsbiomaterials.0c01156. Epub 2021 Feb 22.

Abstract

Traumatic brain injury is a leading cause of mortality worldwide, often affecting individuals at their most economically active yet no primary disease-modifying interventions exist for their treatment. Real-time direct spectroscopic examination of the brain tissue within the context of traumatic brain injury has the potential to improve the understanding of injury heterogeneity and subtypes, better target management strategies and organ penetrance of pharmacological agents, identify novel targets for intervention, and allow a clearer understanding of fundamental biochemistry evolution. Here, a novel device is designed and engineered, delivering Raman spectroscopy-based measurements from the brain through clinically established cranial access techniques. Device prototyping is undertaken within the constraints imposed by the acquisition and site dimensions (standard intracranial access holes, probe's dimensions), and an artificial skull anatomical model with cortical impact is developed. The device shows a good agreement with the data acquired a standard commercial Raman, and the spectra measured are comparable in terms of quality and detectable bands to the established traumatic brain injury model. The developed proof-of-concept device demonstrates the feasibility for real-time optical brain spectroscopic interface while removing the noise of extracranial tissue and with further optimization and validation, such technology will be directly translatable for integration into currently available standards of neurological care.

摘要

创伤性脑损伤是全球范围内主要的致死原因,常常影响处于经济活动最活跃阶段的人群,然而目前尚无针对其治疗的主要疾病改善干预措施。在创伤性脑损伤背景下对脑组织进行实时直接光谱检查,有可能增进对损伤异质性和亚型的理解,更精准地确定管理策略以及药物的器官渗透情况,识别新的干预靶点,并更清晰地了解基础生物化学演变过程。在此,设计并制造了一种新型设备,通过临床已确立的颅骨接入技术对大脑进行基于拉曼光谱的测量。设备原型制作是在采集和部位尺寸(标准颅内接入孔、探头尺寸)所施加的限制条件下进行的,并且开发了具有皮质撞击的人工颅骨解剖模型。该设备与通过标准商用拉曼光谱仪采集的数据高度吻合,所测光谱在质量和可检测谱带方面与已确立的创伤性脑损伤模型相当。所开发的概念验证设备证明了实时光学脑光谱接口的可行性,同时消除了颅外组织的噪声,经过进一步优化和验证后,此类技术将可直接转化应用于整合到当前可用的神经护理标准中。

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