Matsumura H, Kinoshita G, Satoh S, Osaka T, Hayaishi O
Osaka Bioscience Institute, Suita, Japan.
J Neurosci Methods. 1995 Apr;57(2):145-9. doi: 10.1016/0165-0270(94)00107-r.
A novel apparatus is described for simultaneous performance of multi-channel infusions/body-fluid collections and multichannel electrical recordings/stimulations in a freely behaving animals. This apparatus consists of a cylindrical cage and other devices described below. Electrical contacts are achieved via a slip-ring commutator. A rotation detector detects the turning of the animal in the cage, and a controller rotates the floor under the animal in the opposite direction by means of a stepping motor. Thus, excessive twisting of the fluid tubing between the animal and experimental equipment is released by rotation of the floor. Floor rotation starts when the animal turns in either direction and exceeds a present number of rotations. When the turning exceeds certain rates, the floor is rotated with higher angular velocities. This floor rotation little affected sleep-wake activities, brain temperature, food and water intake, and general behavior of the rat. Thus, multi-channel fluid routes have been realized; and by excluding the swivel apparatus from the fluid lines, advantages such as no fluid leakage at the swivel, no extra dead volume, and low torque to rotate the device have been gained.
描述了一种新型装置,用于在自由活动的动物中同时进行多通道输液/体液采集以及多通道电记录/刺激。该装置由一个圆柱形笼子和如下所述的其他设备组成。通过滑环换向器实现电接触。一个旋转检测器检测动物在笼子里的转动,并且一个控制器借助步进电机使动物下方的地板沿相反方向转动。因此,通过地板的转动释放了动物与实验设备之间流体管道的过度扭曲。当动物向任一方向转动并超过当前转动次数时,地板开始转动。当转动超过一定速率时,地板以更高的角速度转动。这种地板转动对大鼠的睡眠 - 觉醒活动、脑温、食物和水摄入量以及一般行为几乎没有影响。因此,已经实现了多通道流体路径;并且通过将旋转装置排除在流体管路之外,获得了诸如旋转处无流体泄漏、无额外死体积以及旋转该装置所需扭矩低等优点。