Ferrell W R
Institute of Physiology, University of Glasgow.
Q J Exp Physiol. 1987 Oct;72(4):493-9. doi: 10.1113/expphysiol.1987.sp003091.
Recordings were obtained from afferents travelling in the posterior articular nerve of the cat knee joint. These arose from tonically active slowly adapting mechanoreceptors which were located in the joint capsule and whose conduction velocities were in the group II range. Intraarticular fluid injection resulted in enhancement of receptor discharge. Both the static index (adapted discharge 2 s after ramp displacement) and the dynamic index (difference between peak discharge during joint displacement and that occurring 0.5 s later) increased after injection. However, whereas the dynamic index increased by three- to fivefold the static index never exceeded a twofold increase. Incremental rise of intra-articular volume resulted in progressive increase in both parameters at all angular velocities. Thus both position and velocity sensitivity are enhanced by the acute introduction of fluid into the synovial cavity.
记录取自猫膝关节后关节神经中的传入神经纤维。这些神经纤维起源于位于关节囊内的紧张性活动的慢适应机械感受器,其传导速度在Ⅱ类范围内。关节内注射液体导致感受器放电增强。注射后,静态指标(斜坡位移后2秒的适应放电)和动态指标(关节位移期间的峰值放电与0.5秒后出现的放电之间的差值)均增加。然而,动态指标增加了三到五倍,而静态指标从未超过两倍的增加。关节内体积的逐渐增加导致在所有角速度下两个参数都逐渐增加。因此,向滑膜腔急性注入液体可增强位置和速度敏感性。