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Circadian Rhythms and Gene Regulation02:19

Circadian Rhythms and Gene Regulation

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The biological clock is involved in many aspects of regulating complex physiology in all animals. It was in 1935 when German zoologists, Hans Kalmus and Erwin Bünning, discovered the existence of circadian rhythm in Drosophila melanogaster. However, the internal molecular mechanisms behind the circadian clock remained a mystery until 1984, when Jeffrey C. Hall, Michael Rosbash, and Michael W. Young discovered the expression of the Per gene oscillating over a 24-hour cycle. In subsequent...
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Chronopharmacokinetics: Circadian Rhythms and Influence on Drug Response01:15

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Circadian rhythms are cyclic changes that are crucial in plasma drug concentrations. Various standard circadian parameters, including core body temperature, heart rate, and other cardiovascular factors, directly impact disease states and the therapeutic response to drug therapy.
The time of drug administration is an important factor to consider, as it can influence the toxic dose of a drug. For example, a study conducted by Prins et al. in 1997 examined the effects of the timing of...
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Osmoregulation in Fishes02:32

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When cells are placed in a hypotonic (low-salt) fluid, they can swell and burst. Meanwhile, cells in a hypertonic solution—with a higher salt concentration—can shrivel and die. How do fish cells avoid these gruesome fates in hypotonic freshwater or hypertonic seawater environments?
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Insufficient Sleep and Sleep Deprivation01:13

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Insufficient sleep refers to not getting the recommended amount of sleep for optimal functioning, even if it's just slightly less than needed. Sleep insufficiency may occur due to lifestyle choices, such as staying up late for social events or work, resulting in routinely getting less sleep than required. For example, consistently sleeping 6 hours when the body needs 7-9 hours can lead to cumulative effects on health and well-being.
Sleep deprivation is a more severe form of sleep loss...
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Pulse rhythm01:30

Pulse rhythm

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Pulse rhythm refers to the pattern of pulsations within specific intervals, offering valuable insights into the regularity or irregularity of the heart's beats as observed through the pattern of pulsation within specific intervals. A regular pulse exhibits a consistent heart rate with uniform waveforms and pulsation force, variations of which can be classified as normal, weak, or bounding.
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Stages of Sleep01:22

Stages of Sleep

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Sleep progresses through distinct stages, each characterized by specific brain wave patterns and physiological responses ranging from wakefulness to stages of non-rapid eye movement, known as non-REM, to rapid eye movement, referred to as REM. Understanding these stages helps in recognizing how sleep supports various bodily and cognitive functions.
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Video Experimental Relacionado

Updated: Feb 7, 2026

Assaying Locomotor Activity to Study Circadian Rhythms and Sleep Parameters in Drosophila
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Assaying Locomotor Activity to Study Circadian Rhythms and Sleep Parameters in Drosophila

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Sueño, ritmos circadianos y función cerebral en peces

Ahmet Topal1

  • 1Department of Basic Sciences, Faculty of Fisheries, Atatürk University, Erzurum, Turkey.

Chronobiology international
|February 6, 2026
PubMed
Resumen

Los peces exhiben estados complejos similares al sueño y ritmos circadianos regulados por la presión homeostática del sueño y el reloj circadiano. La privación del sueño afecta el rendimiento cognitivo de los peces, lo que resalta las adaptaciones evolutivas en la fisiología del sueño.

Palabras clave:
Melatoninacerebrorelojes circadianospecessueño

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Área de la Ciencia:

  • Neurobiología
  • Cronobiología
  • Etología

Sus antecedentes:

  • Los peces teleósteos muestran una organización biológica compleja relacionada con el sueño y los ritmos circadianos.
  • El sueño en peces se caracteriza por indicadores conductuales como la reducción de la actividad y el aumento de los umbrales de respuesta.
  • Tanto la presión homeostática del sueño como el reloj circadiano sensible al ciclo de luz-oscuridad regulan el sueño de los peces.

Objetivo del estudio:

  • Sintetizar los fundamentos neurobiológicos de los estados similares al sueño y los mecanismos de los ritmos circadianos en peces teleósteos.
  • Explorar la influencia de los factores ecológicos y evolutivos en la fisiología del sueño de los peces.
  • Comprender cómo los factores estresantes ambientales afectan la función neuronal y el comportamiento en peces.

Principales métodos:

  • Revisión de literatura que sintetiza la investigación existente sobre el sueño y los ritmos circadianos en peces.
  • Análisis de datos neurobiológicos, conductuales y fisiológicos de diversas especies de peces.
  • Estudio comparativo que examina las adaptaciones específicas de las especies en la regulación del sueño.

Principales resultados:

  • Los peces exhiben estados similares al sueño y mecanismos de regulación circadiana conservados, pero adaptables.
  • La privación del sueño afecta negativamente las funciones cognitivas, incluidas el aprendizaje, la memoria y la plasticidad sináptica en peces.
  • Las variaciones en los patrones de sueño entre especies sugieren una importante configuración ecológica y evolutiva del sueño.

Conclusiones:

  • Los peces sirven como un modelo valioso para investigar la base molecular de la regulación circadiana.
  • Los factores estresantes ambientales pueden influir significativamente en la función neuronal y el comportamiento en peces.
  • La comprensión del sueño en peces proporciona información sobre la evolución y función más amplias del sueño en todos los vertebrados.