Jensen Ralph J, Ziv Ofer R, Rizzo Joseph F
The Center for Innovative Visual Rehabilitation, VA Medical Center, Mail Stop 151E, 150 South Huntington Avenue, Boston, MA 02130, USA.
J Neural Eng. 2005 Mar;2(1):S16-21. doi: 10.1088/1741-2560/2/1/003. Epub 2005 Feb 22.
Rational selection of electrical stimulus parameters for an electronic retinal prosthesis requires knowledge of the electrophysiological responses of retinal neurons to electrical stimuli. In this study, we examined the effects of cathodal and anodal current pulses on the extracellularly recorded responses of OFF and ON rabbit retinal ganglion cells (RGCs) in an in vitro preparation. Current pulses (1 msec duration), delivered by a 125 microm electrode placed on the inner retinal surface within the receptive field of a RGC, produced both short-latency (< or =5 msec) and long-latency (8-60 msec) responses. The long-latency responses, but not the short-latency responses, were abolished upon application of the glutamate receptor antagonists CNQX and NBQX, thus indicating that the long-latency responses of RGCs are due to activation of presynaptic neurons in the retina. The latency of the long-latency response depended upon the polarity of the stimulus. For OFF RGCs, the average latency was 11 msec for a cathodal stimulus and 24 msec for an anodal stimulus. For ON RGCs, the average latency was 25 msec for a cathodal stimulus and 16 msec for an anodal stimulus. The threshold current also depended upon the polarity of the stimulus, at least for OFF RGCs. The average threshold current for evoking a long-latency response in OFF RGCs was 10 microA for a cathodal stimulus and 21 microA for an anodal stimulus. In ON RGCs, the average threshold current was 13 microA for a cathodal stimulus and 15 microA for an anodal stimulus.
为电子视网膜假体合理选择电刺激参数需要了解视网膜神经元对电刺激的电生理反应。在本研究中,我们在体外制备中研究了阴极和阳极电流脉冲对兔视网膜开型和关型神经节细胞(RGCs)细胞外记录反应的影响。由置于RGC感受野内视网膜内表面的125微米电极施加的持续1毫秒的电流脉冲产生了短潜伏期(≤5毫秒)和长潜伏期(8 - 60毫秒)的反应。应用谷氨酸受体拮抗剂CNQX和NBQX后,长潜伏期反应被消除,但短潜伏期反应未被消除,这表明RGCs的长潜伏期反应是由于视网膜中突触前神经元的激活。长潜伏期反应的潜伏期取决于刺激的极性。对于关型RGCs,阴极刺激的平均潜伏期为11毫秒,阳极刺激为24毫秒。对于开型RGCs,阴极刺激的平均潜伏期为25毫秒,阳极刺激为16毫秒。阈值电流也取决于刺激的极性,至少对于关型RGCs是这样。在关型RGCs中,引发长潜伏期反应的阴极刺激平均阈值电流为10微安,阳极刺激为21微安。在开型RGCs中,阴极刺激的平均阈值电流为13微安,阳极刺激为15微安。