IPSDK  4_1_0_2
IPSDK : Image Processing Software Development Kit
Classes

Measure allowing to compute the intermediary eigen value from the second order moment matrix computed from the Inertia measurement for 3d shape. More...

Classes

class  ipsdk::imaproc::shape::analysis::Inertia3dLambdaInterMsr
 Measurement object for measure InertiaLambdaInter. More...
 

Detailed Description

Measure allowing to compute the intermediary eigen value from the second order moment matrix computed from the Inertia measurement for 3d shape.

This measure computes the intermediary (ie. the one between the min and the max) eigen value of the inertia matrix calculated for each 3d shape, without taking the pixels intensities into account.

Here is an example of intermediary eigen values 3d measurement :

inertiaLambdaInter3dMsr.png

See Inertia3d for more details about the inertia calculation.

Author
H. Delestre
Date
2016/03/25

Measure allowing to compute the intermediary (ie. the one between min and max) eigen value from the second order moment matrix computed from the Inertia measurement for 3d shape

Measure synthesis :

Measure Type Measure Unit Type Parameter Type Result Type Shape Requirements
Generic.png
Generic
length.png
Length
none.png
None
Value.png
Value (ipsdk::ipReal64)
RowIntersections.png
Row Intersections
See Shape measurement for additional information on these pictograms

Measure Type :

This is a generic measure

This measure can only be used in 3d case

Measure Unit Type:

Measure Inertia3dLambdaInter is associated to a length measurement unit [ipsdk::shape::analysis::eMsrUnitFormat::eMUF_LengthUnit]

Measure Parameter Type :

Measure Inertia3dLambdaInter has no parameters

Measure Result Type :

Measure Inertia3dLambdaInter is associated to ipsdk::shape::analysis::ValueMeasureResult<ipsdk::ipReal64> results

Measure Shape Requirements :

Measure Inertia3dLambdaInter requires row intersections from shape data

Measure Dependencies :

Measure Inertia3dLambdaInter depends on following measures :

Measure Mode Measure Name Measure Type Measure Parameters
eMVP_3d Inertia Inertia3d
Note
See Shape Analysis 3d for more information on general shape 3d analysis and measurement usage.

Example of Python code :

Generic example in 3d case :

import PyIPSDK
import PyIPSDK.IPSDKIPLShapeAnalysis as shapeanalysis
# Create the infoset
inMeasureInfoSet3d = PyIPSDK.createMeasureInfoSet3d()
PyIPSDK.createMeasureInfo(inMeasureInfoSet3d, "Inertia3dLambdaInterMsr")
#Perform the analysis
outMeasureSet = shapeanalysis.labelAnalysis3d(inGreyImg, inLabelImg, inMeasureInfoSet3d)
# save results to csv format
PyIPSDK.saveCsvMeasureFile(os.path.join(tmpPath, "shape_analysis_results.csv"), outMeasureSet)
# retrieve measure results
outMsr = outMeasureSet.getMeasure("Inertia3dLambdaInterMsr")
# retrieve measure values
outMsrValues = outMsr.getMeasureResult().getColl(0)
print("First label measurement equal " + str(outMsrValues[1]))

Example of C++ code :

Example informations

Associated library

IPSDKIPLShapeAnalysis

Code Example

// opening grey level input image
ImagePtr pInGreyImg3d = loadTiffImageFile(inputGreyImgPath, eTiffDirectoryMode::eTDM_Volume);
// read entity shape 3d collection used for processing
Shape3dCollPtr pShape3dColl = boost::make_shared<Shape3dColl>();
readFromBinaryFile(inputShape3dCollPath, *pShape3dColl);
// define a measure info set
MeasureInfoSetPtr pMeasureInfoSet = MeasureInfoSet::create3dInstance();
createMeasureInfo(pMeasureInfoSet, "Inertia3dLambdaInterMsr");
// compute measure on shape 3d collection
MeasureSetPtr pOutMeasureSet = shapeAnalysis3d(pInGreyImg3d, pShape3dColl, pMeasureInfoSet);
// retrieve associated results
const MeasureConstPtr& pInertia3dLambdaInterOutMsr = pOutMeasureSet->getMeasure("Inertia3dLambdaInterMsr");
const ipsdk::shape::analysis::ValueMeasureResult<ipsdk::ipReal64>& outResults = static_cast<const ipsdk::shape::analysis::ValueMeasureResult<ipsdk::ipReal64>&>(pInertia3dLambdaInterOutMsr->getMeasureResult());