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REFLECT is a full-featured plugin that enables you to replicate classic reverbs in a completely new dimension. The plugin gives you a realistic simulation of the important early reflections in a certain room together with a smooth and colorless reverberation tail.
It uses impulse responses (recorded from the most important reverberation spaces) and traditional reverb algorithms (plate, hall, chamber, etc.) to emulate their acoustical properties. In REFLECT the early reflections together with the reverb tail are perfectly audible and the energy goes in the correct direction for rooms with an upward sound pressure contour.
– Dynamic room modeling
– Headroom control
– Use your own impulse responses
– Use the impulse responses of REFLECT
– Comes with 50 impulse responses (medium rooms and larger rooms)
– 10 impulse responses (small rooms and small halls)
– 20 impulse responses (small rooms and small halls)
– 18 impulse responses (small rooms and large halls)
– 10 impulse responses (large rooms and large halls)
– 10 impulse responses (large rooms and small halls)
– 20 impulse responses (medium halls)
– 50 impulse responses (large halls)
– Extra impulse responses for room/ hall simulating:
Plates:
Reflections from a plate are very common when you record reverberant spaces with a microphone directly against the wall.
– three different plate impulse responses (damping, parametric and close)
– three different plate impulse responses (air absorption, air absorption and diffuse reflection)
– impulse response for a small plate in a large room
Halls:
It is very common to place a microphone with a slight angle between the walls and the line of sight. This creates two reflections in the sound field, the early reflection from the wall in the line of sight and the more distant reflection that goes off the wall.
– five different hall impulse responses
– impulse response for a small hall in a large room
– impulse response for a small hall in a large room
– impulse response for a medium hall in a large room
– impulse response for a medium hall in a small room
Chambers:
REFLECT’s chambers are built from the chamber impulse responses. Each impulse response is stored in a separate file.
– impulse responses for a large hall in a small room, a small hall in a medium room, a medium hall in a medium room, and a large hall in a large room
– impulse response for a small hall in 384a16bd22

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MASSKIRAnalyzer can be used for analysis of data from the commercial kits and kits developed by Kazusa DNA Research Institute.

MASSKIRAnalyzer functions:

Performs basic quality control procedures.

Determines the total number of KIR genes present in the panel analyzed.

Determines the gene content diversity of each panel.

Determines the presence of “outlier” samples (samples that deviate from the expected distribution).

Determines the sample quality based on the typing profile.

Calculates the KIR haplotype and allele frequencies of the sample.

Allows you to perform advanced analysis for further interpretation of the results.

Features a comprehensive comparison report which demonstrates the performance of the kit analyzed.

Additional Information:

Available as both a stand-alone application and a plugin in our MIRCOGEN software suite.

Version History:

Version: 1.1

Release Date: May 19, 2017

Latest Release: 1.1.0

R2-version: 1.0

Added Analysis Option: Mix Mode Allows the user to independently choose the number of KIR genes to be analyzed

Version: 1.0

Release Date: November 2, 2014

Added Analysis Option: Mix Mode Allows the user to independently choose the number of KIR genes to be analyzed

Version: 1.0.0

Release Date: November 2, 2014

Latest Release: 1.0.0

It takes in consideration the genotype profile, samples quality, and its gene content diversity.
It also generates a complete report with the comparison between the expected and analyzed data.

Genome Diversity:

Quantification of the genotype diversity is a measure of how close or far the overall sample is from the expected distribution. In other words, it indicates how far the average sample is from the expected pattern. Each population is assigned a Genome Diversity Index (GDI) value. The expected pattern of a genotype is based on the allelic distribution of the population as measured by Kazusa’s KIR Gene Typing Service. Therefore, an actual genotype pattern that is different from the expected pattern may indicate a difference in the observed genotype pattern. Any deviations from the expected pattern are referred to as “outliers” and are excluded from the calculation of the sample’s GDI.

(GDI value will

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