Klemm W R, Sherry C J, Sis R F, Morris D L
Brain Res Bull. 1984 Mar;12(3):275-82. doi: 10.1016/0361-9230(84)90055-8.
The vomeronasal organ ( VNO ) is an accessory olfactory system which in many vertebrates seems to be involved in reproductive behavior, particularly in permitting males to detect estrus in conspecific females. We postulated that EEG-like field potentials could be recorded from the VNO because the organ has a sensory epithelium that can discharge in response to odorants, and because VNO receptor cells are structurally similar to cells in the olfactory mucosa that produce field potentials (the "electro- olfactogram "). We examined this postulate in male cattle by surgically implanting recording/perfusion cannulae into the ducts leading to each VNO . Both bipolar (between VNOs ) and reference recording revealed continuous spontaneous voltage fluctuations that were similar to an EEG, except that amplitudes were larger and frequencies slower. Simultaneous recording of the EEG and VNO , using the same nasal reference electrode revealed that neither signal was "contaminated" by voltages from the other. Perfusions of one VNO with whole urine, urine condensate, or aqueous reconstituted urine extracts, whether from females in estrus or in anestrus, produced massive transient electrical responses from both VNOs . Perfusion with penicillin or local anesthetics caused more sustained large electrical responses from both VNOs , except that activity became quiescent about 15 min after local anesthesia. These results suggest that it is feasible to use direct recording of VNO responses to stimulation to investigate the behavioral physiology of the VNO .(ABSTRACT TRUNCATED AT 250 WORDS)
犁鼻器(VNO)是一个辅助嗅觉系统,在许多脊椎动物中,它似乎参与了生殖行为,特别是使雄性能够检测同种雌性的发情期。我们推测可以从犁鼻器记录到类似脑电图的场电位,因为该器官有一个能对气味剂产生放电反应的感觉上皮,并且犁鼻器受体细胞在结构上与产生场电位(“嗅觉电图”)的嗅觉黏膜中的细胞相似。我们通过手术将记录/灌注套管植入通向每个犁鼻器的导管,对雄性牛进行了这一推测的研究。双极记录(在两个犁鼻器之间)和参考记录都显示出连续的自发电压波动,类似于脑电图,只是幅度更大、频率更慢。使用同一个鼻参考电极同时记录脑电图和犁鼻器电位,结果显示两个信号都没有被来自对方的电压“污染”。用全尿、尿浓缩物或水性重构尿提取物灌注一个犁鼻器,无论这些尿液来自发情期还是非发情期的雌性,都会使两个犁鼻器产生大量的瞬态电反应。用青霉素或局部麻醉剂灌注会使两个犁鼻器产生更持续的大电反应,只是局部麻醉后约15分钟活动会变得静止。这些结果表明,直接记录犁鼻器对刺激的反应以研究犁鼻器的行为生理学是可行的。(摘要截短于250字)