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A novel non-invasive method of respiratory monitoring for use with stereotactic procedures

机译:一种与立体定向程序使用的呼吸监测的新颖非侵入性方法

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摘要

Accurate monitoring of respiration is often needed for neurophysiological studies, as either a dependent experimental variable or an indicator of physiological state. Current options for respiratory monitoring of animals held in a stereotaxic frame include EMG recordings, pneumotachograph measurements, inductance-plethysmography, whole-body plethysmography (WBP), and visual monitoring. While powerful, many of these methods prevent access to the animal’s body, interfere with experimental manipulations, or require deep anesthesia and additional surgery.For experiments where these issues may be problematic, we developed a non-invasive method of recording respiratory parameters specifically for use with animals held in a stereotaxic frame. This system, ventilation pressure transduction (VPT), measures variations in pressure at the animal’s nostril from inward and outward airflow during breathing. These pressure changes are detected by a sensitive pressure transducer, then filtered and amplified. The output is an analog signal representing each breath.VPT was validated against WBP using 10% carbon dioxide and systemic morphine (4 mg/kg) challenges in lightly anesthetized animals. VPT accurately represented breathing rate and tidal volume changes under both baseline and challenge conditions. This novel technique can therefore be used to measure respiratory rate and relative tidal volume when stereotaxic procedures are needed for neuronal manipulations and recording.
机译:神经生理学研究通常需要准确地监测呼吸,作为依赖实验变量或生理状态的指标。立体框架中持有的动物呼吸监测的当前选择包括EMG记录,气敏谱仪测量,电感 - 体积描记,全身体积描记术(WBP)和视觉监测。虽然强大,但许多这些方法可以防止对动物的身体进行干扰,干扰实验操作,或需要深麻醉和额外的手术。对于这些问题可能存在问题的实验,我们开发了一种专门用于记录呼吸参数的非侵入性方法与动物在立体框架中举行。该系统通风压力转导(VPT),衡量在呼吸过程中从内向和外侧气流的动物鼻孔的压力变化。这些压力变化由敏感的压力传感器检测,然后过滤和放大。输出是表示每个呼吸的模拟信号。使用10%二氧化碳和全身性吗啡(4mg / kg)在轻微麻醉的动物中的挑战验证了VBP。 VPT在基线和挑战条件下,准确地表示呼吸率和潮气体积变化。因此,当神经元操纵和记录所需的立体岩手术时,这种新技术可以用于测量呼吸速率和相对潮量。

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