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Characterizing Olfactory Binary Mixture Interactions in Fischer 344 Rats Using Behavioral Reaction Times

机译:使用行为反应时间表征Fischer 344大鼠的嗅觉二元混合物相互作用

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摘要

Response times provide essential subthreshold perceptual data that extend beyond accuracy alone. Behavioral reaction times (RTs) were used to characterize rats’ ability to detect individual odorants in a series of complimentary binary odorant mixture ratios. We employed an automated, liquid-dilution olfactometer to train Fischer 344 rats (N = 8) on an odor identification task using nonreinforced probe trials. Binary mixture ratios composed of aliphatic odorants (citral and octanol) were arranged such that relative contributions of the 2 components varied systematically by a factor of 1% (v/v). Odorant concentrations for the target (S+), control (S−), and mixture (S+:S−) odorants were presented relative to threshold for each rat. Rats were initially trained to respond by licking at a spout to obtain liquid reward for either citral or octanol as the reinforced target (S+) odorant. After achieving 100% accuracy, rats were transferred to variable ratio (VR 2) reinforcement for correct responding. Nonreinforced probe trials (2 per block of 22 trials) were tested for each mixture ratio and recorded as either S+ (rats lick-responded in the presence of the mixture) or S− (rats refrained from licking), thereby indicating detection of the trained, S+ odorant. To determine the perceived salience for each ratio, RTs (latency from odorant onset to lick response) were recorded for each trial. Consistent with previous studies, RTs for both odorants were shortest (~150–200ms) when the probe trials consisted of a single, monomolecular component. Binary mixtures that contained as little as 1% of the S−, nontarget odorant, however, were sufficiently different perceptually to increase behavioral RTs (i.e., rats hesitated longer before responding); RTs changed systematically as a function of the binary ratio. Interestingly, the rate of RT change was dependent on which odorant served as the S+, suggesting an asymmetric interaction between the 2 odorants. The data demonstrate the value of behavioral RT as a sensitive measure of suprathreshold perceptual responding.
机译:响应时间提供了必要的亚阈值感知数据,其范围不仅限于准确性。行为反应时间(RTs)用于表征大鼠以一系列互补的二元气味混合物比率检测单个气味物质的能力。我们使用自动液体稀释嗅觉计,使用非增强型探针试验对Fischer 344只大鼠(N = 8)进行气味识别任务训练。安排了由脂肪族增香剂(柠檬酸和辛醇)组成的二元混合比,以使两种成分的相对贡献系统地变化1%(v / v)。相对于每只大鼠的阈值,给出了目标(S +),对照(S-)和混合物(S +:S-)气味的气味浓度。最初训练大鼠通过舔嘴来响应,以获得柠檬酸或辛醇作为增强目标(S +)气味剂的液体奖励。达到100%的准确度后,将大鼠转移至可变比率(VR 2)增强器以正确应答。对每种混合比测试非增强探针试验(每组22项试验中的2项),并记录为S +(在混合物存在下舔的大鼠)或S-(避免舔ing的大鼠),从而表明对受过训练的人的检测,S +气味。为了确定每个比率的感知显着性,每个试验记录RTs(从加味剂发作到舔lick反应的潜伏期)。与以前的研究一致,当探针试验由单一的单分子成分组成时,两种气味剂的RTs最短(〜150–200ms)。然而,含有低至1%的S-(非目标气味)的二元混合物在感知上有足够的差异,从而增加了行为RT(即大鼠在响应之前犹豫了更长的时间); RT随二进制比率的变化而系统地变化。有趣的是,RT变化的速率取决于哪种气味剂充当S +,表明这两种气味剂之间存在不对称相互作用。数据证明了行为RT作为超阈值感知反应的敏感指标。

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