Related Experiment Video
Updated: May 18, 2026

Preparation of Acute Hippocampal Slices from Rats and Transgenic Mice for the Study of Synaptic Alterations during Aging and Amyloid Pathology
Published on: March 23, 2011
[Aging affects early stage direction selectivity of MT cells in rhesus monkeys]
Zhen Liang1, Yue-Ming Chen, Xue Meng
1Department of Bio-Medical Engineering, Anhui Medical University, Hefei Anhui 230032, China.
Abstract:
The middle temporal area (MT/V5) plays an important role in motion processing. Neurons in this area have a strongly selective response to the moving direction of objects and as such, the selectivity of MT neurons was proposed to be a neural mechanism for the perception of motion. Our previous studies have found degradation in direction selectivity of MT neurons in old monkeys, but this direction selectivity was calculated during the whole response time and the results were not able to uncover the mechanism of motion perception over a time course. Furthermore, experiments have found that direction selectivity was enhanced by attention at a later stage. Therefore, the response should be excluded in experiments with anesthesia. To further characterize the neural mechanism over a time course, we investigated the age-related changes of direction selectivity in the early stage by comparing the proportions of direction selective MT cells in old and young macaque monkeys using in vivo single-cell recording techniques. Our results show that the proportion of early-stage-direction-selective cells is lower in old monkeys than in young monkeys, and that the early stage direction bias (esDB) of old MT cells decreased relative to young MT cells. Furthermore, the proportion of MT cells having strong early stage direction selectivity in old monkeys was decreased. Accordingly, the functional degradation in the early stage of MT cells may mediate perceptual declines of old primates in visual motion tasks.
Insights
Older monkeys show reduced early-stage direction selectivity in the middle temporal area (MT/V5), impacting motion perception. This age-related decline in MT/V5 neurons may explain decreased visual motion task performance in primates.
Area of Science:
- Neuroscience
- Visual processing
- Primate cognition
Context:
- The middle temporal area (MT/V5) is crucial for processing visual motion.
- Previous studies noted age-related declines in MT neuron direction selectivity but lacked temporal resolution.
- Attention enhances direction selectivity later in the response, necessitating anesthesia exclusion.
Purpose:
- To investigate age-related changes in the early-stage direction selectivity of MT/V5 neurons.
- To compare the proportion and strength of direction-selective MT cells in young versus old macaque monkeys.
- To elucidate the temporal dynamics of neural mechanisms underlying age-related motion perception deficits.
Summary:
- In vivo single-cell recordings compared early-stage direction selectivity in MT/V5 neurons of young and old macaques.
- Old monkeys exhibited a lower proportion of early-stage direction-selective MT cells compared to young monkeys.
- A decrease in early stage direction bias (esDB) and the proportion of strongly selective cells was observed in older primates.
Impact:
- Functional degradation in the early processing stages of MT/V5 neurons may underlie perceptual declines in visual motion tasks in aging primates.
- Findings provide insights into the neural basis of age-related changes in motion perception.
- Highlights the importance of considering temporal dynamics and early-stage neural activity in aging research.
