Showing posts with label ICOD. Show all posts
Showing posts with label ICOD. Show all posts

Saturday, 30 August 2025

The Role of Carbon in Sensory Protein Signal Transduction: Implications for Robotic Vision| Chapter 3 | Scientific Research, New Technologies and Applications Vol. 6

This study applies the carbon code to predict the hydrophobic framework of retina-related proteins, focusing on carbon's role in proton absorption for signal transduction. Our results show that carbon frameworks in amino acid clusters within proteins are critical for forming optimized hydrophobic domains, influencing proton uptake into the cell core. In membrane-bound proteins involved in photon capture, specific amino acids regulate proton signaling and phototransduction. Mutations within these internal structures can significantly alter protein function, highlighting the importance of carbon-based frameworks and amino acid interactions in visual signal processing.

 

 

Author(s) Details

 

Rajasekaran Ekambaram

Department of Chemistry, V.S.B. Engineering College, Karur-639111, India.

Devprakash Rajasekaran

Department of Computer Science, Lincoln University College, Petaling Jaya, 47301, Malaysia.

Indupriya Rajasekaran

Andaman & Nicobar Islands Institute of Medical Sciences, Port Blair, Andaman-744112, India.

Meenal Rajasekaran

Department of Electrical and Electronics Engineering, V.S.B. Engineering College, Karur-639111, India.

Please see the book here:- https://doi.org/10.9734/bpi/srnta/v6/2504

 

Wednesday, 8 February 2023

Carbon Rule of Law in Volume Change upon Mixing| Chapter 5 | Recent Progress in Science and Technology Vol. 3

 One of ultimate main phenomena of element material is cohesiveness. Cohesiveness chief to changes in various added related limits is of interest to physicist. While analysing element profit of biomaterials it is found that element profit of 0.3144 gives support inside. In this line of observation it is extraordinary that element advantage oppose the stability of bureaucracy inside and further in this place externally. That is the within changes maybe appealing in abundant set of molecules. Here we report that the fundamental changes in capacity of joining are on account of carbon establishment of network that leads to waste book. Available experimental results establish the vicinity of element located network that also in 16Å width. Frame work unique arrange some changes in parameters like enthalpy, deterioration and additional connected possessions. Conclude here that element material is owning network of element making framework of close-knit force that unique arrange some alteration all along joining of twofold compounds.

Author(s) Details:

Rajasekaran Ekambaram,
V. S. B. Engineering College, Karur – 639111, Tamil Nadu, India.

Meenal Rajasekaran,
Karunya Institute of Technology and Sciences, Coimbatore – 641114, Tamil Nadu, India.

Please see the link here: https://stm.bookpi.org/RPST-V3/article/view/9328