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In an ongoing debate on the physical nature of the action potential, one group adheres to the electrical model of Hodgkin and Huxley, while the other describes the action potential as a non-linear acoustic pulse propagating within an…

生物物理 · 物理学 2018-06-25 Matan Mussel , Matthias F. Schneider

The existence and propagation of acoustic pressure pulses on lipid monolayers at the air/water-interfaces are directly observed by simple mechanical detection. The pulses are excited by small amounts of solvents added to the monolayer from…

生物物理 · 物理学 2012-11-20 J. Griesbauer , S. Boessinger , A. Wixforth , M. F. Schneider

Biological membranes by virtue of their elastic properties should be capable of propagating localized perturbations analogous to sound waves. However, the existence and the possible role of such waves in communication in biology remains…

生物物理 · 物理学 2014-08-12 Shamit Shrivastava , Matthias F. Schneider

We investigate different mechanical effects which accompany the nerve pulse propagation by using mathematical modeling. The propagation process is composed by three connected phenomena: (i) the action potential (electrical signal) which is…

生物物理 · 物理学 2019-06-05 Kert Tamm , Tanel Peets , Jüri Engelbrecht

Local changes in pH are known to significantly alter the state and activity of proteins and in particular enzymes. pH variations induced by pulses propagating along soft interfaces (e.g. the lipid bilayer) would therefore constitute an…

生物物理 · 物理学 2015-03-18 Bernhard Fichtl , Shamit Shrivastava , Matthias F. Schneider

The existence of acoustic pulse propagation in lipid monolayers at the air-water interface is well known. These pulses are controlled by the thermodynamic state of the lipid membrane. Nevertheless, the role of acoustic pulses for intra- and…

生物物理 · 物理学 2022-11-15 Simon Fabiunke , Christian Fillafer , Matthias F. Schneider

Currently, biological signaling is envisaged as a combination of activation and movement, triggered by local molecular interactions and molecular diffusion, respectively. However, we here suggest, that other fundamental physical mechanisms…

生物物理 · 物理学 2018-05-22 B. Fichtl , I. Silman , M. F. Schneider

The soliton wave model of action potentials, and the proposal of induced lipid pores, are potentially paradigm shifting ideas which challenge accepted views of the Hodgkin-Huxley model and of protein-based ion channels. These two proposals…

生物物理 · 物理学 2018-08-23 Scott T. Meissner

We suggest that the propagation of the action potential is driven by a pressure pulse propagating in the axoplasm along the axon length. The pressure pulse mechanically activates Na ion channels embedded in the axon membrane. This…

生物物理 · 物理学 2009-05-15 Marat M. Rvachev

The thermodynamic (TD) properties of biological membranes play a central role for living systems. It has been suggested, for instance, that nonlinear pulses such as action potentials (APs) can only exist if the membrane state is in vicinity…

生物物理 · 物理学 2020-07-16 Christian Fillafer , Anne Paeger , Matthias F. Schneider

Comprehending the nature of action potentials is fundamental to our understanding of the functioning of nervous systems in general. Here we consider their evolution and describe their functions of communication, modulation and computation…

神经元与认知 · 定量生物学 2021-06-11 William Winlow , Andrew Simon Johnson

Biological signaling is imagined as a combination of activation and transport. The former is triggered by local molecular interactions and the latter is the result of molecular diffusion. However, other fundamental physical principles of…

生物物理 · 物理学 2016-12-07 Bernhard Fichtl , Matthias F. Schneider

Sound waves are excited on lipid monolayers using a set of planar electrodes aligned in parallel with the excitable medium. By measuring the frequency dependent change in the lateral pressure we are able to extract the sound velocity for…

生物物理 · 物理学 2010-05-27 J. Griesbauer , A. Wixforth , M. F. Schneider

It is suggested that the propagation of the action potential is accompanied by an axoplasmic pressure pulse propagating in the axoplasm along the axon length. The pressure pulse stretch-modulates voltage-gated Na (Nav) channels embedded in…

生物物理 · 物理学 2010-07-07 Marat M. Rvachev

Many studies have shown that a mechanical displacement of the axonal membrane accompanies the electrical pulse defining the Action Potential (AP). Despite a large and diverse body of experimental evidence, there is no theoretical consensus…

神经元与认知 · 定量生物学 2015-06-22 Ahmed El Hady , Benjamin B. Machta

Native membranes of biological cells display melting transitions of their lipids at a temperature of 10-20 degrees below body temperature. Such transitions can be observed in various bacterial cells, in nerves, in cancer cells, but also in…

生物物理 · 物理学 2020-08-10 Thomas Heimburg

Investigations of nerve activity have focused predominantly on electrical phenomena. Nerves, however, are thermodynamic systems, and changes in temperature and in the dimensions of the nerve can also be observed during the action potential.…

Hydrated interfaces are ubiquitous in biology and appear on all length scales from ions, individual molecules to membranes and cellular networks. In vivo, they comprise a high degree of self-organization and complex entanglement, which…

生物物理 · 物理学 2015-06-12 J. Griesbauer , S. Boessinger , A. Wixforth , M. F. Schneider

We demonstrate that our recently developed theory of electric field wave propagation in anisotropic and inhomogeneous brain tissues, which has been shown to explain a broad range of observed coherent synchronous brain electrical processes,…

生物物理 · 物理学 2024-03-27 Vitaly L. Galinsky , Lawrence R. Frank

The saltatory propagation of action potentials on myelinated axons is conventionally explained by the mechanism employing local circuit ionic current flows between nodes of Ranvier. Under this framework, the myelin sheath with up to 100…

神经元与认知 · 定量生物学 2012-10-09 Jiongwei Xue , Shengyong Xu
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