scispace - formally typeset
Search or ask a question

What are auto-rythmic cells? 


Best insight from top research papers

Auto-rythmic cells are not mentioned in any of the provided abstracts.

Answers from top 5 papers

More filters
Papers (5)Insight
The provided paper does not mention anything about "auto-rhythmic cells."
Open accessJournal ArticleDOI
Nachum Dershowitz, Evgenia Falkovich 
01 Jan 2014
2 Citations
The provided paper does not mention anything about "auto-rhythmic cells".
The provided paper does not mention anything about "auto-rhythmic cells."
The provided paper is about a circular autothermal reformer for solid oxide fuel cells. It does not mention anything about auto-rythmic cells.
The provided paper does not mention anything about auto-rhythmic cells. The paper is about the auto-adjustment of RC cells within a circuit.

Related Questions

What are autologous antibodies?5 answersAutologous antibodies are self-produced antibodies that target specific antigens within an individual's own body. These antibodies can play a crucial role in various health conditions, including cancer and cardiovascular diseases. In cancer research, autologous antibodies have been utilized to develop personalized therapies by generating fully human antibodies using the patient's own cells. On the other hand, in cardiovascular diseases like atherosclerosis, auto-antibodies have been identified as active mediators, with some exhibiting protective effects while others act as proatherogenic factors. Understanding the role of autologous antibodies in different diseases is essential for developing targeted treatments and improving patient outcomes.
How does the autonomic nervous ssytem control heart rate?5 answersThe autonomic nervous system (ANS) regulates heart rate through the interplay of sympathetic and parasympathetic branches. The sympathetic system, via adrenergic receptors, increases heart rate by stimulating the sinoatrial pacemaker activity. Conversely, the parasympathetic system, through muscarinic acetylcholine receptors, decreases heart rate by inhibiting the pacemaker current in the sinoatrial pacemaker cells. This delicate balance between sympathetic and parasympathetic activities is crucial for maintaining heart rate variability (HRV) and overall cardiac function. Studies have shown that an imbalance between these two branches of the ANS can lead to various cardiac arrhythmias, such as atrial fibrillation and ventricular tachyarrhythmias, emphasizing the significance of autonomic control in heart rate regulation.
What are the key dimensions of autotelic personality?4 answersThe key dimensions of autotelic personality include curiosity-persistence, attention control, personal innovativeness, self efficacy, and control. Autotelic individuals are characterized by performing actions for their own sake rather than for external goals, and they have a greater ability to manage a rewarding balance between challenge finding and skill building. Autotelic personality is associated with higher levels of work engagement and favorable workplace attitudes and behaviors. In the context of Mobile Information and Entertainment Services (MIES), autotelic personality is important for experiencing perceived playfulness, and it is influenced by personal innovativeness, self efficacy, and control. Autotelic capabilities, such as bricolage, improvisational, and transcendental capabilities, are necessary for low-tech ventures to create strong and knowledge-based competitive advantages.
What does the concept of autochthonous conflict?4 answersThe concept of autochthonous conflict refers to conflicts that arise from the exclusion of strangers or outsiders from a particular group or society. This concept has been observed in different parts of Africa, where the notion of autochthony, originally introduced by the French, has been adopted by local populations as a way to categorize people. Autochthony calls for the exclusion of "allogenes" or "allochthons," whoever they may be, and is often used as a political slogan to justify the superiority of a particular group. These conflicts are rooted in the struggle for power and control, as seen in the case of Cameroon during the 1990s, where the upsurge of autochthony was related to President Paul Biya's efforts to maintain his position of power. Overall, autochthonous conflict highlights the inherent tension and conflict that can arise when dealing with different identities and the struggle for dominance within a society.
What are time cells?4 answersTime cells are a type of neuronal population found in the hippocampus and other brain regions that encode temporal information. They are involved in the organization and retrieval of episodic memories, as well as in the perception and processing of time intervals. Time cells have been identified in both rodentsand humans. In humans, time cells have been observed through intracranial microelectrode recordings obtained from epilepsy patients performing episodic memory tasks. These cells exhibit increased firing rates in relation to the passage of time, independent of spatial or distance cues. Time cells play a crucial role in the representation of temporal information in the brain, contributing to the formation and retrieval of episodic memories.
Are there any cellular automaton?5 answersCellular automata are computational models that can simulate complex phenomena based on simple rules and algorithms. They have been studied extensively in various disciplines, including physics, biology, and computer science. One paper discusses the construction of a strongly universal cellular automaton in the dodecagrid, a tessellation of hyperbolic 3D space, with four states. Another paper presents a discrete model of spinor gravity in four dimensions using a probabilistic cellular automaton. A different paper proposes a photonic hardware platform for simulating complex phenomena based on cellular automata, demonstrating the ability to simulate fractals, chaos, and solitons. Additionally, the study of cellular automata has been used to simulate physical systems and investigate various applications. Finally, a mathematical model based on cellular automaton is developed to simulate the behavior of growth factors and their interaction with neural cell proliferation during brain development.