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Design and construction of a low-cost nose poke system for rodents

机译:啮齿类动物低成本鼻oke系统的设计与建造

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摘要

Operant behavioral tasks for animals have long been used to probe the function of multiple brain regions (i.e., understanding the role of dopamine in electrical brain stimulation reward , or determining the rewarding properties of feeding oriented brain pathways ). The recent development of tools and techniques has opened the door to refine the answer to these same questions with a much higher degree of specificity and accuracy, both in biological and spatial-temporal terms , . A variety of systems designed to test operant behavior are now commercially available, but have prohibitive costs. Here, we provide a low-cost alternative to a nose poke system for mice. Adapting a freely available sketch for ARDUINO boards, in combination with an in-house built PVC box and inexpensive electronic material we constructed a four-port nose poke system that detects and counts port entries. To verify the applicability and validity of our system we tested the behavior of DAT-CRE transgenic mice injected with an adeno-associated virus to express ChannelRhodopsin 2 in the Ventral tegmental area (VTA) and used the BNC output to drive a blue laser coupled to a fiber implanted above the VTA. Over 6 days, mice perform as it has been reported previously exhibiting a remarkable preference for the port that triggers optogenetic stimulation of VTA dopamine neurons. class="first-line-outdent">
  • • We provide a low cost alternative to commercially available nose poke system.
  • • Our custom made apparatus is open source and TTL compatible.
  • • We validate our system with optogenetic self-stimulation of dopamine neurons.
  • 机译:长期以来,动物的操作性行为任务一直被用来探测多个大脑区域的功能(即了解多巴胺在脑电刺激奖励中的作用,或确定面向食物的脑部通路的奖励性质)。工具和技术的最新发展为在生物学和时空方面都具有更高的特异性和准确性提供了进一步完善这些问题的答案的大门。设计用于测试操作员行为的各种系统现在可以在市场上买到,但是成本却很高。在这里,我们为小鼠的鼻oke系统提供了一种低成本的替代品。针对ARDUINO板免费提供的草图,并结合内部内置的PVC盒和廉价的电子材料,我们构建了一个四端口机头戳系统,用于检测和计数端口条目。为了验证我们系统的适用性和有效性,我们测试了注射有腺相关病毒的DAT-CRE转基因小鼠在腹侧被盖区(VTA)中表达ChannelRhodopsin 2的行为,并使用BNC输出驱动与之耦合的蓝色激光在VTA上方植入的光纤。在超过6天的时间里,小鼠表现出与以前报道的一样,表现出对触发VTA多巴胺神经元光遗传学刺激的端口的显着偏爱。 class =“ first-line-outdent”> <!-list-behavior = simple prefix -word = mark-type = none max-label-size = 9->
  • •我们提供了一种价格低廉的替代商用鼻戳系统。
  • •我们定制的设备是开源的,并且兼容TTL。
  • •我们用多巴胺神经元的光遗传自我刺激来验证我们的系统。
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