首页> 外文会议>Biophotonics and New Therapy Frontiers; Progress in Biomedical Optics and Imaging; vol.7 no.35 >Combined bio-engineering and neurophysiological in vivo technologies allow studying rat brain metabolism and neuronal activities in vivo in real time
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Combined bio-engineering and neurophysiological in vivo technologies allow studying rat brain metabolism and neuronal activities in vivo in real time

机译:结合了生物工程和体内神经生理学技术,可以实时研究体内大鼠脑代谢和神经元活动

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Franz Joebsis first used near infrared spectroscopy (NIRS) as a tool for the in vivo monitoring of tissue oxygenation. Today, NIRS instruments are more and more used in clinical environments since these systems are now easy to use, sensitive, robust, give rapid analysis and have multiple measuring points. In the present work, optic fibre probes were used as optical head of a CW-NIR instrument adapted for in vivo NIRS measurements in the brain of rodents. This prototype was designed for non-invasive analysis of the two main forms of haemoglobin: oxy-haemoglobin (HbO_2) and deoxy-haemoglobin (Hb), chromophores present in biological tissues. In the present experiments it was applied to measure non- invasively HbO_2 and Hb levels in the rat brain; that are markers of the degree of tissue oxygenation, thus providing an index of blood levels and therefore of brain metabolism. In addition, the same animals set for central NIRS studies, were also surgically prepared for electrophysiological monitoring of cell firing in discrete brain areas. These are raphe dorsah's nucleus, locus coeruleus. ventral tegmental area that are defined as main serotoninergic, noradrenergic and dopaminergic cell containing regions of the CNS and therefore involved in the major cerebral syndromes. Then, following a control recording period, exogenous oxygen (O2, 0.1 bar, 2min) or carbon dioxide (CO2 0.1bar, 20min) was inflated orally. The data gathered indicate an original relationship between NIRS analysis of brain metabolism and electrical changes in three major nuclei of CNS involved in neurophysiologic and pathologic activities.
机译:Franz Joebsis首先使用近红外光谱(NIRS)作为体内监测组织氧合的工具。如今,NIRS仪器越来越多地用于临床环境,因为这些系统现在易于使用,灵敏,坚固,可进行快速分析并具有多个测量点。在当前的工作中,光纤探头被用作CW-NIR仪器的光学头,适用于啮齿动物脑中的体内NIRS测量。该原型设计用于非侵入性分析血红蛋白的两种主要形式:氧-血红蛋白(HbO_2)和脱氧-血红蛋白(Hb),生物组织中存在的生色团。在本实验中,它被用于测量大鼠大脑中非侵入性的HbO_2和Hb水平。它们是组织氧合程度的标志物,因此提供了血液水平的指标,因此也提供了脑代谢的指标。此外,还准备通过手术准备用于NIRS中心研究的相同动物,以对分散的大脑区域中的细胞放电进行电生理监测。这些是拉斐尔多萨的核,蓝斑。腹侧被盖区定义为CNS的主要5-羟色胺能,去甲肾上腺素能和多巴胺能细胞区域,因此涉及主要的脑综合症。然后,在控制记录期后,口服充入外源性氧气(O2,0.1 bar,2min)或二氧化碳(CO2 0.1bar,20min)。收集到的数据表明,NIRS对大脑代谢的分析与中枢神经系统参与神经生理和病理活动的三个主要核的电变化之间存在原始关系。

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