100 lines (81 with data), 3.0 kB
AnyFolder LongAdductorCal ={
AnyComponentDefinition obj = {};
AnyFolder &Pelvis = ...HumanFolderRef.Trunk.SegmentsLumbar.PelvisSeg;
AnyFolder &Sacrum = ...HumanFolderRef.Trunk.SegmentsLumbar.SacrumSeg;
AnyFolder &LegSegSide = .SideHumanFolderRef.Leg.Seg;
AnyFolder &LegJointsSide = .SideHumanFolderRef.Leg.Jnt;
AnyFolder &SacrumPelvisJnt = ...HumanFolderRef.Trunk.JointsLumbar.SacrumPelvisJnt;
AnyFixedRefFrame ground = {
AnyRefNode node = {
ARel=..Pelvis.Axes0;
sRel=..Pelvis.r0;
};
};
AnyKinEq PelvisFix = {
AnyKinLinear PelvisSacrumLinFix = {
AnyRefFrame &ground = ..ground.node;
AnyRefFrame &Pelvis = .....HumanFolderRef.Trunk.SegmentsLumbar.PelvisSeg;
};
AnyKinRotational PelvisSacrumRotFix = {
Type = RotAxesAngles;
AnyRefFrame &ground = ..ground.node;
AnyRefFrame &Pelvis = .....HumanFolderRef.Trunk.SegmentsLumbar.PelvisSeg;
};
};
AnyKinEqSimpleDriver PelvisSacrumFix = {
AnyKinMeasure& Jnt = .SacrumPelvisJnt;
DriverPos = {0,0,0};
DriverVel = {0,0,0};
Reaction.Type = {Off,Off,Off};
};
AnyKinEqInterPolDriver Hip = {
AnyKinRotational &Spherical = ..SideInterfaceFolderRef.HipFlexion.HipMeasure;
Type = PiecewiseLinear;
T = {0.0, 1.0 };
Data = { {8, 110},
{-25, 52},
{0, -20}
}*pi/180; // Flexion - Abduction - external rotation
Reaction.Type = {Off, Off, Off};
};
AnyKinEqInterPolDriver Knee = {
AnyKinMeasure& Hinge = ..SideInterfaceFolderRef.KneeFlexion;
Type = PiecewiseLinear;
T = {0.0, 1.0 };
Data = {{145,0}}*pi/180; // ? degrees knee flexion
Reaction.Type = {Off};
};
AnyKinEqInterPolDriver Ankle = {
AnyKinMeasure& Hinge = ..SideInterfaceFolderRef.AnklePlantarFlexion;
Type = PiecewiseLinear;
T = {0.0, 1.0 };
Data = {{0,20}}*pi/180;
Reaction.Type = {Off};
};
AnyKinEqInterPolDriver SubTalar = {
AnyKinMeasure& Hinge = ..SideInterfaceFolderRef.SubTalarEversion;
Type = PiecewiseLinear;
T = {0.0, 1.0 };
Data = {{0,0}}*pi/180;
Reaction.Type = {Off};
};
AnyString MusPrefix = CompleteNameOf(&.SideHumanFolderRef.Leg.Mus);
AnyObjectPtrArray GracilisMuscles = ObjSearch(MusPrefix+".Gracilis*", "AnyMuscle");
AnyFloat GracilisRmin = repmat(NumElemOf(GracilisMuscles), 0.5);
AnyFloat GracilisRmax = repmat(NumElemOf(GracilisMuscles), 1.2);
};
// The study: Operations to be performed on the model
AnyBodyCalibrationStudy LegCalibrationStudyLongAdductor = {
AnyFolder &ref=.LongAdductorCal;
nStep = 2;
MuscleArr = arrcat(
ref.GracilisMuscles
);
RminMuscleFiber = arrcat(
ref.GracilisRmin
);
RmaxMuscleFiber = arrcat(
ref.GracilisRmax
);
InitialConditions.SolverType = KinSolOverDeterminate;
};