Fredkin D R, Rice J A
Department of Physics, University of California, San Diego, La Jolla 92093.
Biometrics. 1992 Jun;48(2):427-48.
The technique of patch clamp recording makes possible the measurement of current flowing through a single ion channel in a cell membrane. Examination of such recordings suggests that the current is quantal in nature, alternating in a seemingly random manner between "on" and "off," but the recordings are corrupted by noise from a variety of sources. In this paper we propose and illustrate methods for restoring the underlying quantal signal from such noisy measurements. The methods use a Markov chain prior distribution for the underlying quantal process and base the restoration on the resulting posterior distribution.
膜片钳记录技术使得测量细胞膜中单个离子通道的电流成为可能。对这类记录的研究表明,电流本质上是量子化的,以一种看似随机的方式在“开”和“关”之间交替,但这些记录会受到来自各种来源的噪声干扰。在本文中,我们提出并举例说明了从这类有噪声的测量中恢复潜在量子信号的方法。这些方法使用马尔可夫链先验分布来描述潜在的量子过程,并基于由此产生的后验分布进行恢复。