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去大脑大鼠脑桥臂旁核的味觉反应

Taste responses in the parabrachial pons of decerebrate rats.

作者信息

Di Lorenzo P M

机构信息

Department of Psychology, State University of New York, Binghamton 13901.

出版信息

J Neurophysiol. 1988 Jun;59(6):1871-87. doi: 10.1152/jn.1988.59.6.1871.

DOI:10.1152/jn.1988.59.6.1871
PMID:3404209
Abstract
  1. Behavioral studies have shown that chronic decerebrate rats retain the capacity to react appropriately to gustatory stimuli (12), but do not form taste-illness associations (13). Little is known, however, about the effects of decerebration on the processing of gustatory information. The present experiment was designed to investigate this issue in the parabrachial nucleus of the pons (PbN). 2. Rats were decerebrated at the supracollicular level under ketamine and ether anesthesia and were prepared for electrical recording in the PbN. Thereafter, animals were maintained under Flaxedil, and wound edges were frequently treated with lidocaine. Heart rate, core temperature, and CO2 were monitored throughout each experiment. Control subjects were treated identically, except that they were not decerebrated. 3. Sapid solutions of NaCl (0.1 M), HCl (0.01 M), sucrose (0.5 M), saccharin sodium (0.004 M), and quinine HCl (.01 M) were used as taste stimuli. After a 10-s base line, each stimulus was bathed over the tongue for 10 s followed by a 10-s wait and a 20-s rinse of distilled water. The intertrial interval was at least 2 min. 4. Gustatory responses from 32 parabrachial units in 13 decerebrate rats were recorded. These were compared with responses in 31 units from the PbN of 16 intact rats. 5. Analysis of response profiles of PbN units in decerebrate rats showed that these units produced smaller responses to NaCl and HCl and larger responses to saccharin sodium compared with units in intact rats. 6. Despite changes in response magnitude, the temporal patterns of response (phasic-tonic relationships) were not different in PbN units in decerebrate rats compared with controls. Differences in the length of responses were, however, apparent. Responses to saccharin sodium were longer, response to NaCl, HCl and sucrose were shorter, and responses to quinine HCl were unchanged. 7. Results of a multidimensional scaling analysis of the response profiles across units showed that "taste spaces" for decerebrate and intact rats were similar. Units in each group were meaningfully placed near stimuli that evoked the best response in a given unit. Units that did not respond well to any stimulus were placed close together regardless of their best stimulus in both taste spaces. 8. Responses to the termination of the taste stimulus (OFF-responses) were observed in PbN units in the decerebrate rat but not in units from the intact rat. Twenty-one OFF-responses were recorded in 14 units; 6 of these occurred in the absence of a response to the stimulus.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 行为学研究表明,慢性去大脑大鼠仍能对味觉刺激做出适当反应(12),但不会形成味觉-疾病关联(13)。然而,关于去大脑对味觉信息处理的影响却知之甚少。本实验旨在研究脑桥臂旁核(PbN)中的这一问题。2. 在氯胺酮和乙醚麻醉下,于上丘水平对大鼠进行去大脑手术,并准备在PbN中进行电记录。此后,动物在弗罗卡因维持下,伤口边缘经常用利多卡因处理。在每个实验过程中监测心率、核心体温和二氧化碳。对照动物的处理方式相同,只是未进行去大脑手术。3. 使用0.1M的氯化钠、0.01M的盐酸、0.5M的蔗糖、0.004M的糖精钠和0.01M的盐酸奎宁的有味溶液作为味觉刺激。在10秒的基线期后,每种刺激在舌头上停留10秒,随后等待10秒,并用蒸馏水冲洗20秒。两次试验之间的间隔至少为2分钟。4. 记录了13只去大脑大鼠的32个臂旁核单位的味觉反应。将这些反应与16只完整大鼠的PbN中31个单位的反应进行比较。5. 对去大脑大鼠PbN单位反应图谱的分析表明,与完整大鼠的单位相比,这些单位对氯化钠和盐酸的反应较小,而对糖精钠的反应较大。6. 尽管反应幅度有所变化,但与对照组相比,去大脑大鼠PbN单位的反应时间模式(时相-紧张关系)并无差异。然而,反应时长的差异很明显。对糖精钠的反应更长,对氯化钠、盐酸和蔗糖的反应更短,而对盐酸奎宁的反应不变。7. 对各单位反应图谱进行多维标度分析的结果表明,去大脑大鼠和完整大鼠的“味觉空间”相似。每组中的单位都被合理地放置在能在给定单位中引发最佳反应的刺激物附近。在两个味觉空间中,对任何刺激都反应不佳的单位,无论其最佳刺激物是什么,都被放置在一起。8. 在去大脑大鼠的PbN单位中观察到了对味觉刺激终止的反应(关闭反应),但在完整大鼠的单位中未观察到。在14个单位中记录到了21次关闭反应;其中6次发生在对刺激无反应的情况下。(摘要截选至400字)

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