Royal Veterinary College, London, UK.
University of Maryland, Baltimore County, MD, USA.
Biol Cybern. 2024 Dec;118(5-6):311-330. doi: 10.1007/s00422-024-00997-w. Epub 2024 Oct 30.
The "infinitesimal phase response curve" (PRC) is a common tool used to analyze phase resetting in the natural sciences in general and neuroscience in particular. We make the observation that the PRC with respect to a coordinate v actually depends on the choice of other coordinates. As a consequence, a complete delay embedding reconstruction of the dynamics using v which would allow phase to be computed still does not allow the v PRC to be computed. We give a coordinate-free definition of the PRC making this observation obvious. This leads to an experimental protocol: first collect an appropriate ensemble of measurements by intermittently controlling neuron voltage. Then, for any suitable current carrier dynamic postulated, we show how the ensemble can be used to compute the voltage PRC with that current carrier. The approach extends to many oscillators measured and controlled through a subset of their coordinates.
“无穷小相位响应曲线”(PRC)是一种常用于分析自然科学,尤其是神经科学中相位重置的常用工具。我们观察到,相对于坐标 v 的 PRC 实际上取决于其他坐标的选择。因此,使用 v 进行完整的延迟嵌入重建动力学,从而可以计算相位,但仍然无法计算 v PRC。我们给出了 PRC 的无坐标定义,这使得这一观察结果显而易见。这导致了一种实验方案:首先通过间歇性地控制神经元电压来收集合适的测量集合。然后,对于任何合适的电流载体动态假设,我们将展示如何使用该集合来计算该电流载体的电压 PRC。该方法可以扩展到通过其坐标子集进行测量和控制的许多振荡器。