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Den fysiska mekanismen för retinalt diskret mörkerbrus: termisk aktivering eller cellulär ultrasvag fotonemission?

Vahid Salari, Felix Scholkmann, Istvan Bokkon, Farhad Shahbazi, Jack Tuszynski
Biophotons
Nyckelinsikter
  1. 01Orsaken till visuellt brus i mörker är omdebatterad
  2. 02Traditionella värmebaserade modeller är ofullständiga
  3. 03Bruset kan orsakas av att celler avger sitt eget ljus
  4. 04Detta kallas ultrasvag fotonemission (UPE)

Det visuella 'brus' du ser i totalt mörker kan orsakas av att dina egna näthinneceller spontant avger små ljusblixtar.

Abstract

For several decades the physical mechanism underlying discrete dark noise of photoreceptors in the eye has remained highly controversial and poorly understood. It is known that the Arrhenius equation, which is based on the Boltzmann distribution for thermal activation, can model only a part (e.g. half of the activation energy) of the retinal dark noise experimentally observed for vertebrate rod and cone pigments. Using the Hinshelwood distribution instead of the Boltzmann distribution in the Arrhenius equation has been proposed as a solution to the problem. Here, we show that the using the Hinshelwood distribution does not solve the problem completely. As the discrete components of noise are indistinguishable in shape and duration from those produced by real photon induced photo-isomerization, the retinal discrete dark noise is most likely due to ‘internal photons’ inside cells and not due to thermal activation of visual pigments. Indeed, all living cells exhibit spontaneous ultraweak photon emission (UPE), mainly in the optical wavelength range, i.e., 350–700 nm. We show here that the retinal discrete dark noise has a similar rate as UPE and therefore dark noise is most likely due to spontaneous cellular UPE and not due to thermal activation.

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APA
Vahid Salari, Felix Scholkmann, Istvan Bokkon, Farhad Shahbazi, & Jack Tuszynski (2016). Den fysiska mekanismen för retinalt diskret mörkerbrus: termisk aktivering eller cellulär ultrasvag fotonemission?. https://fasciaresearchdatabase.com/the-physical-mechanism-for-retinal-discrete-dark-noise-thermal-activation-or-cellular-ultraweak-photon-emission/
MLA
Vahid Salari, et al. "Den fysiska mekanismen för retinalt diskret mörkerbrus: termisk aktivering eller cellulär ultrasvag fotonemission?." 2016, https://fasciaresearchdatabase.com/the-physical-mechanism-for-retinal-discrete-dark-noise-thermal-activation-or-cellular-ultraweak-photon-emission/.
Chicago
Vahid Salari et al. 2016. "Den fysiska mekanismen för retinalt diskret mörkerbrus: termisk aktivering eller cellulär ultrasvag fotonemission?.". https://fasciaresearchdatabase.com/the-physical-mechanism-for-retinal-discrete-dark-noise-thermal-activation-or-cellular-ultraweak-photon-emission/