Photodetector System

A photodetector system is an instrument that detects light and converts its intensity, wavelength, or timing into an electrical signal for measurement and analysis. In its core mechanism, an optically sensitive material absorbs photons and generates charge carriers, producing a photocurrent that signal-conditioning electronics amplify, filter, and translate into useful data. In bioengineering, photodetector systems support optical biosensors, fluorescence measurements, pulse oximetry, tissue monitoring, and biomedical imaging. Their sensitivity, spectral selectivity, and response speed influence how accurately researchers can quantify biological signals, making these systems important for wearable health devices, laboratory diagnostics, and noninvasive physiological monitoring.

Photodetector System - Related Videos

Research

JoVE Journal - Engineering

Synthesis and Characterization of High c-axis ZnO Thin Film by Plasma Enhanced Chemical Vapor Deposition System and its UV Photodetector Application

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Cited by 19 •

2015

We offered a method to directly synthesize high c-axis (0002) ZnO thin film by plasma enhanced chemical vapor deposition. The as-synthesized ZnO thin film combined with Pt interdigitated electrode was used as sensing layer for ultraviolet photodetector, showing a high performance through a combination of its good responsivity and reliability.

Atomic Force Microscopy to Visualize Phage–Antigen Interactions

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2026

Source: Williams, S. M. et al. Novel Atomic Force Microscopy Based Biopanning for Isolation of Morphology Specific Reagents against TDP-43 Variants in Amyotrophic Lateral Sclerosis. J. Vis. Exp. (2015)This video demonstrates tapping-mode AFM to visualize phage–antigen interactions on a mica surface. It outlines the steps for antigen immobilization, phage binding, and high-resolution nanoscale imaging.

Two-Color Stimulated Raman Scattering Imaging of Mouse Brain Tissue

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2025

Source: Espinoza, R., et al. Real-Time, Two-Color Stimulated Raman Scattering Imaging of Mouse Brain for Tissue Diagnosis. J. Vis. Exp. (2022). The video demonstrates two-color stimulated Raman scattering (SRS) imaging of mouse brain tissue sections. Two synchronized laser beams are directed onto the tissue section to excite molecular vibrations, resulting in a relative intensity change in the beams. Lipids and proteins in the tissue are detected using distinct frequency pairs of the laser...

Coherent Anti-Stokes Raman Spectroscopy to Visualize Myelinated Neurons in Mouse Brain Tissue

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2025

Source: McCullagh, E. A., et al. Coherent Anti-Stokes Raman Spectroscopy (CARS) Application for Imaging Myelination in Brain Slices. J. Vis. Exp. (2022)The video demonstrates fluorescence and Coherent Anti-Stokes Raman Spectroscopy (CARS) imaging to visualize neuronal architecture in rodent brain tissue. Nissl staining labels cell bodies by binding to ribosomal RNA, while CARS imaging targets lipid-rich myelin through laser-induced signals. Overlaying the fluorescence and CARS images provides a...

Biolayer Interferometry Technology to Detect Interactions between Ligand and Analyte

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2025

In this video, we demonstrate biolayer interferometry (BLI) technology to detect the intermolecular interactions between ligands and target analytes in real-time. BLI measures changes in the interference pattern of white light reflected off a layer of immobilized ligands on a biosensor surface as they interact with analytes in solution.

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