We report a Fourier ptychography setup using a raspberry pi camera sensor and its lens in reversed configuration. In this work data acquisition was performed by means of a raspberry pi board which eliminates the requirement of a computer for data acquisition thus allowing a miniaturized system for remote data acquisition costing around £100
The revolution in low-cost consumer photography and computation provides fertile opportunity for a d...
We present a new optical configuration using the Scheimpflug principle for Fourier ptychography micr...
The ability of a microscope to rapidly acquire wide-field, high-resolution images is limited by both...
We report a Fourier ptychographic setup with sub-micron resolution costing around £100 using mobile ...
Fourier ptychography is a recently developed computational imaging technique, which enables gigapixe...
The spatial resolution of a microscope is inversely proportionate to the sum of the objective numeri...
Traditional imaging systems exhibit a well-known trade-off between the resolution and the field of v...
Fourier ptychographic (FP) imaging is a recently developed technique to get high-resolution high-thr...
We present a novel microscopy concept, termed Multi-Aperture Fourier ptychographic microscopy (MA-FP...
We report an imaging method, termed Fourier ptychographic microscopy (FPM), which iteratively stitch...
The revolution in low-cost consumer photography and computation provides fertile opportunity for a d...
We demonstrate aperture-synthetic diffracted field measurement using multiple mutually incoherent ca...
Fourier ptychographic microscopy (FPM) is a recently introduced method of acquiring high-resolution,...
Fourier ptychographic imaging (FPI) extends Fourier domain synthetically by capturing several freque...
Obtaining gigapixel images is a challenging task because of the aberrations present in a conventiona...
The revolution in low-cost consumer photography and computation provides fertile opportunity for a d...
We present a new optical configuration using the Scheimpflug principle for Fourier ptychography micr...
The ability of a microscope to rapidly acquire wide-field, high-resolution images is limited by both...
We report a Fourier ptychographic setup with sub-micron resolution costing around £100 using mobile ...
Fourier ptychography is a recently developed computational imaging technique, which enables gigapixe...
The spatial resolution of a microscope is inversely proportionate to the sum of the objective numeri...
Traditional imaging systems exhibit a well-known trade-off between the resolution and the field of v...
Fourier ptychographic (FP) imaging is a recently developed technique to get high-resolution high-thr...
We present a novel microscopy concept, termed Multi-Aperture Fourier ptychographic microscopy (MA-FP...
We report an imaging method, termed Fourier ptychographic microscopy (FPM), which iteratively stitch...
The revolution in low-cost consumer photography and computation provides fertile opportunity for a d...
We demonstrate aperture-synthetic diffracted field measurement using multiple mutually incoherent ca...
Fourier ptychographic microscopy (FPM) is a recently introduced method of acquiring high-resolution,...
Fourier ptychographic imaging (FPI) extends Fourier domain synthetically by capturing several freque...
Obtaining gigapixel images is a challenging task because of the aberrations present in a conventiona...
The revolution in low-cost consumer photography and computation provides fertile opportunity for a d...
We present a new optical configuration using the Scheimpflug principle for Fourier ptychography micr...
The ability of a microscope to rapidly acquire wide-field, high-resolution images is limited by both...