diff --git a/Modules/Chart/resource/Chart.js b/Modules/Chart/resource/Chart.js index fac672a8ab..6393c8c2fa 100644 --- a/Modules/Chart/resource/Chart.js +++ b/Modules/Chart/resource/Chart.js @@ -1,200 +1,205 @@ document.body.style.backgroundColor = 'rgb(240, 240, 240)'; const minHeight = 255; var chart; var chartData; var xValues=[]; var yValues=[]; var dataLabels=[]; var xs = {}; var dataColors = {}; var chartTypes = {}; var lineStyle = {}; // Important loading function. This will be executed at first in this whole script. // Fetching data from QWebChannel and storing them for display purposes. window.onload = function() { initHeight(); new QWebChannel(qt.webChannelTransport, function(channel) { chartData = channel.objects.chartData; let count = 0; for(let propertyName in channel.objects) { if (propertyName != 'chartData') { let xDataTemp = channel.objects[propertyName].m_XData let yDataTemp = channel.objects[propertyName].m_YData let dataLabel = channel.objects[propertyName].m_Label dataLabels.push(dataLabel) console.log("loading datalabel: "+dataLabel); //add label to x array xDataTemp.unshift('x'+count.toString()) xs[dataLabel] = 'x' + count.toString() xDataTemp.push(null); //append null value, to make sure the last tick on x-axis is displayed correctly yDataTemp.unshift(dataLabel) yDataTemp.push(null); //append null value, to make sure the last tick on y-axis is displayed correctly xValues[count] = xDataTemp yValues[count] = yDataTemp dataColors[dataLabel] = channel.objects[propertyName].m_Color chartTypes[dataLabel] = channel.objects[propertyName].m_ChartType if (channel.objects[propertyName].m_LineStyleName == "solid") { lineStyle[dataLabel] = '' } else { lineStyle[dataLabel] = [{ 'style': 'dashed' }] } count++; } } generateChart(chartData); }); } /** * Inits the height of the chart element to 90% of the full window height. */ function initHeight() { - var size = window.innerHeight-(window.innerHeight/100*10); //subtract 10% of height to hide vertical scrool bar + var size = window.innerHeight-(window.innerHeight/100*5); //subtract 10% of height to hide vertical scrool bar let chart = document.getElementById("chart"); chart.style.height = `${size}px`; } function getPlotlyChartType(inputType){ let plotlyType = ""; if (inputType == "line"){ plotlyType = "scatter"; } else if (inputType == "bar"){ plotlyType = "bar"; } return plotlyType; } /** * Here, the chart magic takes place. Plot.ly is called. * * @param {object} chartData - containing the options for plotting, not the actual values */ function generateChart(chartData) { console.log("generate chart"); if (chartData == undefined) { chartData = {} } if (dataLabels == undefined) { dataLabels = [] } //=============================== DATA ======================== let data = []; for (let index = 0; index < dataLabels.length; index++){ let inputType = chartTypes[dataLabels[index]]; let chartType = getPlotlyChartType(inputType); let trace = { x: xValues[index].slice(1), y: yValues[index].slice(1), type: chartType, name: dataLabels[index], }; if (lineStyle[dataLabels[index]]["style"] == "dashed"){ trace["line"]["dash"] = "dot" } data.push(trace) } //=============================== STYLE ======================== let marginTop = chartData.m_diagramTitle == undefined ? 10 : 50; var layout = { title: chartData.m_diagramTitle, xaxis: { title: chartData.m_xAxisLabel }, yaxis: { title: chartData.m_yAxisLabel }, margin: { l: 50, r: 10, - b: 50, + b: 20, t: marginTop, pad: 4 }, + showlegend: true, + legend: { + x: 0, + y: -0.4 + } }; if (chartData.m_YAxisScale){ layout.yaxis["type"] = "log" } if (chartData.m_ShowSubchart){ layout.xaxis.rangeslider = {}; // adds range slider below x axis } Plotly.newPlot('chart', data, layout, {displayModeBar: false, responsive: true}); } /** * Change theme of chart. * * @param {string} color - dark or not dark */ function changeTheme(color) { link = document.getElementsByTagName("link")[0]; if (color == 'dark') { link.href = "Chart_dark.css"; } else { link.href = "Chart.css"; } }; /** * Reload the chart with the given arguments. * * This method is called by C++. Changes on signature with caution. * @param {boolean} showSubchart * @param {string} stackDataString */ function ReloadChart(showSubchart, stackDataString) { chartData.m_ShowSubchart = showSubchart; chartData.m_StackedData = stackDataString; generateChart(chartData); } /** * Transforms the view to another chart type. * * This method is called by C++. Changes on signature with caution. * @param {string} transformTo - 'line' or 'bar' */ function transformView(transformTo) { console.log("transform view"); console.log(transformTo); let plotlyType = getPlotlyChartType(transformTo); let chart = document.getElementById("chart"); let update = {type : plotlyType} Plotly.restyle(chart, update, 0); // updates the given plotly trace at index 0 with an update object built of a standard trace object }; diff --git a/Plugins/org.mitk.gui.qt.segmentation.rework/src/internal/SegmentationReworkView.cpp b/Plugins/org.mitk.gui.qt.segmentation.rework/src/internal/SegmentationReworkView.cpp index e505766e46..3b642dc761 100644 --- a/Plugins/org.mitk.gui.qt.segmentation.rework/src/internal/SegmentationReworkView.cpp +++ b/Plugins/org.mitk.gui.qt.segmentation.rework/src/internal/SegmentationReworkView.cpp @@ -1,578 +1,592 @@ /*=================================================================== The Medical Imaging Interaction Toolkit (MITK) Copyright (c) German Cancer Research Center, Division of Medical and Biological Informatics. All rights reserved. This software is distributed WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See LICENSE.txt or http://www.mitk.org for details. ===================================================================*/ // Blueberry #include #include // Qmitk #include "SegmentationReworkView.h" #include // Qt #include #include #include #include #include #include #include #include #include #include #include #include #include const std::string SegmentationReworkView::VIEW_ID = "org.mitk.views.segmentationreworkview"; void SegmentationReworkView::SetFocus() {} void SegmentationReworkView::CreateQtPartControl(QWidget *parent) { // create GUI widgets from the Qt Designer's .ui file m_Controls.setupUi(parent); m_Parent = parent; counter = 0; qRegisterMetaType< std::vector >("std::vector"); //m_Controls.verticalWidget->setVisible(false); m_Controls.cleanDicomBtn->setVisible(false); m_Controls.individualWidget_2->setVisible(false); m_Controls.sliderWidget->setMinimum(1); m_Controls.sliderWidget->setMaximum(100); m_Controls.sliderWidget->setTickInterval(1); m_Controls.sliderWidget->setSingleStep(1); m_Controls.radioA->setChecked(true); connect(m_Controls.buttonUpload, &QPushButton::clicked, this, &SegmentationReworkView::UploadNewSegmentation); connect(m_Controls.buttonNewSeg, &QPushButton::clicked, this, &SegmentationReworkView::CreateNewSegmentationC); connect(m_Controls.cleanDicomBtn, &QPushButton::clicked, this, &SegmentationReworkView::CleanDicomFolder); connect(m_Controls.restartConnection, &QPushButton::clicked, this, &SegmentationReworkView::RestartConnection); connect(m_Controls.checkIndiv, &QCheckBox::stateChanged, this, &SegmentationReworkView::OnIndividualCheckChange); connect(m_Controls.sliderWidget, &ctkSliderWidget::valueChanged, this, &SegmentationReworkView::OnSliderWidgetChanged); m_DownloadBaseDir = mitk::IOUtil::GetTempPathA() + "segrework"; MITK_INFO << "using download base dir: " << m_DownloadBaseDir; m_UploadBaseDir = mitk::IOUtil::GetTempPathA() + "uploadSeg"; if (!itksys::SystemTools::FileIsDirectory(m_DownloadBaseDir)) { itk::FileTools::CreateDirectory(m_DownloadBaseDir); } if (!itksys::SystemTools::FileIsDirectory(m_UploadBaseDir)) { itk::FileTools::CreateDirectory(m_UploadBaseDir); } utility::string_t port = U("2020"); utility::string_t address = U("http://127.0.0.1:"); address.append(port); m_HttpHandler = std::unique_ptr(new SegmentationReworkREST(address)); connect(m_HttpHandler.get(), &SegmentationReworkREST::InvokeUpdateChartWidget, this, &SegmentationReworkView::UpdateChartWidget); connect(this, &SegmentationReworkView::InvokeLoadData, this, &SegmentationReworkView::LoadData); connect(this, &SegmentationReworkView::InvokeProgress, this, &SegmentationReworkView::AddProgress); m_HttpHandler->SetPutCallback(std::bind(&SegmentationReworkView::RESTPutCallback, this, std::placeholders::_1)); m_HttpHandler->SetGetImageSegCallback(std::bind(&SegmentationReworkView::RESTGetCallback, this, std::placeholders::_1)); m_HttpHandler->SetGetAddSeriesCallback(std::bind(&SegmentationReworkView::RESTGetCallbackGeneric, this, std::placeholders::_1)); m_HttpHandler->Open().wait(); MITK_INFO << "Listening for requests at: " << utility::conversions::to_utf8string(address); //utility::string_t pacsURL = U("http://jip-dktk/dcm4chee-arc/aets/DCM4CHEE"); utility::string_t pacsURL = U("http://193.174.48.78:8090/dcm4chee-arc/aets/DCM4CHEE"); utility::string_t restURL = U("http://localhost:8000"); m_DICOMWeb = new mitk::DICOMWeb(pacsURL); MITK_INFO << "requests to pacs are sent to: " << utility::conversions::to_utf8string(pacsURL); m_Controls.dcm4cheeURL->setText({ (utility::conversions::to_utf8string(pacsURL).c_str()) }); m_RestService = new mitk::RESTClient(restURL); } void SegmentationReworkView::OnSliderWidgetChanged(double value) { std::map::iterator it; unsigned int count = 0; for (it = m_ScoreMap.begin(); it != m_ScoreMap.end(); it++) { if (it->second < value) { count++; } } QString labelsToDelete = "slices to delete: " + QString::number(count); m_Controls.slicesToDeleteLabel->setText(labelsToDelete); + + std::map thresholdMap; + + for (it = m_ScoreMap.begin(); it != m_ScoreMap.end(); it++) + { + thresholdMap.insert(std::map::value_type(it->first, value)); + } + + m_Controls.chartWidget->RemoveData(m_thresholdLabel); + m_Controls.chartWidget->AddData2D(thresholdMap, m_thresholdLabel); + m_Controls.chartWidget->SetChartType(m_thresholdLabel, QmitkChartWidget::ChartType::line); + m_Controls.chartWidget->Show(); } void SegmentationReworkView::AddProgress(int progress, QString status) { auto futureValue = m_Controls.progressBar->value() + progress; if (futureValue >= 100) { m_Controls.progressBar->setValue(0); - m_Controls.progressBar->setFormat("Finished %p%"); + m_Controls.progressBar->setFormat(""); } else { m_Controls.progressBar->setFormat(status.append(" %p%")); m_Controls.progressBar->setValue(futureValue); } } void SegmentationReworkView::RestartConnection() { auto host = m_Controls.dcm4cheeHostValue->text(); std::string url = host.toStdString() + "/dcm4chee-arc/aets/DCM4CHEE"; m_DICOMWeb = new mitk::DICOMWeb(utility::conversions::to_string_t(url)); MITK_INFO << "requests to pacs are sent to: " << url; m_Controls.dcm4cheeURL->setText({ (utility::conversions::to_utf8string(url).c_str()) }); } void SegmentationReworkView::OnIndividualCheckChange(int state) { if(state == Qt::Unchecked) { m_Controls.individualWidget_2->setVisible(false); } else if (state == Qt::Checked) { m_Controls.individualWidget_2->setVisible(true); } } void SegmentationReworkView::RESTPutCallback(const SegmentationReworkREST::DicomDTO &dto) { emit InvokeProgress(20, { "display graph and query structured report" }); SetSimilarityGraph(dto.simScoreArray, dto.minSliceStart); m_SRUID = dto.srSeriesUID; m_GroundTruth = dto.groundTruth; typedef std::map ParamMap; ParamMap seriesInstancesParams; seriesInstancesParams.insert((ParamMap::value_type({"StudyInstanceUID"}, dto.studyUID))); seriesInstancesParams.insert((ParamMap::value_type({"SeriesInstanceUID"}, dto.srSeriesUID))); seriesInstancesParams.insert((ParamMap::value_type({"includefield"}, {"0040A375"}))); // Current Requested Procedure Evidence Sequence try { m_DICOMWeb->QuidoRSInstances(seriesInstancesParams).then([=](web::json::value jsonResult) { auto firstResult = jsonResult[0]; auto actualListKey = firstResult.at(U("0040A375")).as_object().at(U("Value")).as_array()[0].as_object().at(U("00081115")).as_object().at(U("Value")).as_array(); std::string segSeriesUIDA = ""; std::string segSeriesUIDB = ""; std::string imageSeriesUID = ""; for (unsigned int index = 0; index < actualListKey.size(); index++) { auto element = actualListKey[index].as_object(); // get SOP class UID auto innerElement = element.at(U("00081199")).as_object().at(U("Value")).as_array()[0]; auto sopClassUID = innerElement.at(U("00081150")).as_object().at(U("Value")).as_array()[0].as_string(); auto seriesUID = utility::conversions::to_utf8string(element.at(U("0020000E")).as_object().at(U("Value")).as_array()[0].as_string()); if (sopClassUID == U("1.2.840.10008.5.1.4.1.1.66.4")) // SEG { if (segSeriesUIDA.length() == 0) { segSeriesUIDA = seriesUID; } else { segSeriesUIDB = seriesUID; } } else if (sopClassUID == U("1.2.840.10008.5.1.4.1.1.2")) // CT { imageSeriesUID = seriesUID; } } emit InvokeProgress(10, {"load composite context of structured report"}); MITK_INFO << "image series UID " << imageSeriesUID; MITK_INFO << "seg A series UID " << segSeriesUIDA; MITK_INFO << "seg B series UID " << segSeriesUIDB; MITK_INFO << "Load related dicom series ..."; std::string folderPathSeries = mitk::IOUtil::CreateTemporaryDirectory("XXXXXX", m_DownloadBaseDir) +"/"; std::string pathSegA = mitk::IOUtil::CreateTemporaryDirectory("XXXXXX", m_DownloadBaseDir) + "/"; std::string pathSegB = mitk::IOUtil::CreateTemporaryDirectory("XXXXXX", m_DownloadBaseDir) + "/"; auto folderPathSegA = utility::conversions::to_string_t(pathSegA); auto folderPathSegB = utility::conversions::to_string_t(pathSegB); m_CurrentStudyUID = dto.studyUID; std::vector> tasks; auto imageSeriesTask = m_DICOMWeb->WadoRS(utility::conversions::to_string_t(folderPathSeries), dto.studyUID, imageSeriesUID); auto segATask = m_DICOMWeb->WadoRS(folderPathSegA, dto.studyUID, segSeriesUIDA); auto segBTask = m_DICOMWeb->WadoRS(folderPathSegB, dto.studyUID, segSeriesUIDB); tasks.push_back(imageSeriesTask); tasks.push_back(segATask); tasks.push_back(segBTask); auto joinTask = pplx::when_all(begin(tasks), end(tasks)); auto filePathList = joinTask.then([&](std::vector filePathList) { emit InvokeProgress(50, {"load dicom files from disk"}); InvokeLoadData(filePathList); }); }); } catch (mitk::Exception& e) { MITK_ERROR << e.what(); } } void SegmentationReworkView::RESTGetCallbackGeneric(const SegmentationReworkREST::DicomDTO &dto) { std::vector> tasks; if (dto.seriesUIDList.size() > 0) { for (std::string segSeriesUID : dto.seriesUIDList) { std::string folderPathSeries = mitk::IOUtil::CreateTemporaryDirectory("XXXXXX", m_DownloadBaseDir) + "/"; try { auto seriesTask = m_DICOMWeb->WadoRS(utility::conversions::to_string_t(folderPathSeries), dto.studyUID, segSeriesUID); tasks.push_back(seriesTask); } catch (const mitk::Exception &exception) { MITK_INFO << exception.what(); return; } } } try { auto joinTask = pplx::when_all(begin(tasks), end(tasks)); auto filePathList = joinTask.then([&](std::vector filePathList) { InvokeLoadData(filePathList); }); } catch (const mitk::Exception& exception) { MITK_INFO << exception.what(); return; } } void SegmentationReworkView::RESTGetCallback(const SegmentationReworkREST::DicomDTO &dto) { std::string folderPathSeries = mitk::IOUtil::CreateTemporaryDirectory("XXXXXX", m_DownloadBaseDir) + "/"; MITK_INFO << folderPathSeries; std::string pathSeg = mitk::IOUtil::CreateTemporaryDirectory("XXXXXX", m_DownloadBaseDir) + "/"; auto folderPathSeg = utility::conversions::to_string_t(pathSeg); MITK_INFO << pathSeg; try { std::vector> tasks; auto imageSeriesTask = m_DICOMWeb->WadoRS(utility::conversions::to_string_t(folderPathSeries), dto.studyUID, dto.imageSeriesUID); tasks.push_back(imageSeriesTask); if (dto.seriesUIDList.size() > 0) { for (std::string segSeriesUID : dto.seriesUIDList) { auto segTask = m_DICOMWeb->WadoRS(folderPathSeg, dto.studyUID, segSeriesUID); tasks.push_back(segTask); } } else { auto segATask = m_DICOMWeb->WadoRS(folderPathSeg, dto.studyUID, dto.segSeriesUIDA); tasks.push_back(segATask); } auto joinTask = pplx::when_all(begin(tasks), end(tasks)); auto filePathList = joinTask.then([&](std::vector filePathList) { InvokeLoadData(filePathList); }); } catch (const mitk::Exception &exception) { MITK_INFO << exception.what(); } } std::string SegmentationReworkView::GetAlgorithmOfSegByPath(std::string path) { auto scanner = mitk::DICOMDCMTKTagScanner::New(); mitk::DICOMTagPath algorithmName; algorithmName.AddAnySelection(0x0062, 0x0002).AddElement(0x0062, 0x0009); mitk::StringList files; files.push_back(path); scanner->SetInputFiles(files); scanner->AddTagPath(algorithmName); scanner->Scan(); mitk::DICOMDatasetAccessingImageFrameList frames = scanner->GetFrameInfoList(); auto findings = frames.front()->GetTagValueAsString(algorithmName); if (findings.size() != 0) MITK_INFO << findings.front().value; return findings.front().value; } void SegmentationReworkView::LoadData(std::vector filePathList) { MITK_INFO << "Loading finished. Pushing data to data storage ..."; auto ds = GetDataStorage(); auto dataNodes = mitk::IOUtil::Load(filePathList, *ds); // reinit view mitk::RenderingManager::GetInstance()->InitializeViewsByBoundingObjects(ds); // find data nodes m_Image = dataNodes->at(0); m_Image->SetName("image data"); m_SegA = dataNodes->at(1); m_SegB = dataNodes->at(2); auto algorithmNameA = GetAlgorithmOfSegByPath(filePathList[1]); auto algorithmNameB = GetAlgorithmOfSegByPath(filePathList[2]); m_SegA->SetName(algorithmNameA); m_SegB->SetName(algorithmNameB); m_Controls.labelSegAValue->setText(algorithmNameA.c_str()); m_Controls.labelSegBValue->setText(algorithmNameB.c_str()); m_Controls.labelGroundTruthValue->setText(m_GroundTruth.c_str()); emit InvokeProgress(20, { "" }); } void SegmentationReworkView::UpdateChartWidget() { m_Controls.chartWidget->Show(); } void SegmentationReworkView::SetSimilarityGraph(std::vector simScoreArray, int sliceMinStart) { std::string label = "similarity graph"; - if (m_Controls.chartWidget->GetData()->size() > 0) - { - m_Controls.chartWidget->Clear(); - } + m_thresholdLabel = "threshold"; + //m_Controls.chartWidget->Clear(); double sliceIndex = sliceMinStart; for (double score : simScoreArray) { m_ScoreMap.insert(std::map::value_type(sliceIndex, score)); sliceIndex++; } + std::map thresholdMap; + m_Controls.chartWidget->AddData2D(m_ScoreMap, label); + m_Controls.chartWidget->AddData2D(thresholdMap, m_thresholdLabel); m_Controls.chartWidget->SetChartType(label, QmitkChartWidget::ChartType::line); + m_Controls.chartWidget->SetChartType(m_thresholdLabel, QmitkChartWidget::ChartType::line); m_Controls.chartWidget->SetXAxisLabel("slice number"); m_Controls.chartWidget->SetYAxisLabel("similarity in percent"); m_Controls.chartWidget->SetTitle("Similartiy Score for Segmentation Comparison"); } void SegmentationReworkView::UploadNewSegmentation() { AddProgress(10, { "save SEG to temp folder" }); std::string folderPathSeg = mitk::IOUtil::CreateTemporaryDirectory("XXXXXX", m_UploadBaseDir) + "/"; const std::string savePath = folderPathSeg + m_SegC->GetName() + ".dcm"; const std::string mimeType = mitk::MitkDICOMQIIOMimeTypes::DICOMSEG_MIMETYPE_NAME(); mitk::IOUtil::Save(m_SegC->GetData(), mimeType, savePath); // get Series Instance UID from new SEG auto scanner = mitk::DICOMDCMTKTagScanner::New(); mitk::DICOMTagPath seriesUID(0x0020, 0x000E); mitk::StringList files; files.push_back(savePath); scanner->SetInputFiles(files); scanner->AddTagPath(seriesUID); scanner->Scan(); mitk::DICOMDatasetAccessingImageFrameList frames = scanner->GetFrameInfoList(); auto findings = frames.front()->GetTagValueAsString(seriesUID); auto segSeriesUID = findings.front().value; AddProgress(20, {"push SEG to PACS"}); auto filePath = utility::conversions::to_string_t(savePath); try { m_DICOMWeb->StowRS(filePath, m_CurrentStudyUID).then([=] { emit InvokeProgress(40, {"persist reworked SEG to evaluation database"}); MitkUriBuilder queryBuilder(U("tasks/evaluations/")); queryBuilder.append_query(U("srUID"), utility::conversions::to_string_t(m_SRUID)); //queryBuilder.append_path(U("71/")); m_RestService->Get(queryBuilder.to_string()).then([=](web::json::value result) { MITK_INFO << "after GET"; MITK_INFO << utility::conversions::to_utf8string(result.to_string()); auto updatedContent = result.as_array()[0]; updatedContent[U("reworkedSegmentationUID")] = web::json::value::string(utility::conversions::to_string_t(segSeriesUID)); auto id = updatedContent.at(U("id")).as_integer(); MITK_INFO << id; auto idParam = std::to_string(id).append("/"); MitkUriBuilder queryBuilder(U("tasks/evaluations")); queryBuilder.append_path(utility::conversions::to_string_t(idParam)); m_RestService->PUT(queryBuilder.to_string(), updatedContent).then([=](web::json::value result) { MITK_INFO << "successfully stored"; emit InvokeProgress(30, { "successfully stored" }); }); }); }); } catch (const std::exception &exception) { std::cout << exception.what() << std::endl; } } std::vector SegmentationReworkView::CreateSegmentation(mitk::Image::Pointer baseSegmentation, double threshold) { MITK_INFO << "handle individual segmentation creation"; std::map::iterator it; std::vector sliceIndices; unsigned int count = 0; for (it = m_ScoreMap.begin(); it != m_ScoreMap.end(); it++) { if (it->second < threshold) { auto index = it->first; try { mitk::ImagePixelWriteAccessor imageAccessor(baseSegmentation); for (unsigned int x = 0; x < baseSegmentation->GetDimension(0); x++) { for (unsigned int y = 0; y < baseSegmentation->GetDimension(1); y++) { imageAccessor.SetPixelByIndex({ { x, y, int(index) } }, 0); } } } catch (mitk::Exception& e) { MITK_ERROR << e.what(); } count++; sliceIndices.push_back(index); MITK_INFO << "slice " << it->first << " removed "; } } MITK_INFO << "slices deleted " << count; return sliceIndices; } void SegmentationReworkView::CreateNewSegmentationC() { mitk::ToolManager* toolManager = mitk::ToolManagerProvider::GetInstance()->GetToolManager(); toolManager->InitializeTools(); toolManager->SetReferenceData(m_Image); mitk::Image::Pointer baseImage; if (m_Controls.radioA->isChecked()) { baseImage = dynamic_cast(m_SegA->GetData())->Clone(); } else if (m_Controls.radioB->isChecked()) { baseImage = dynamic_cast(m_SegB->GetData())->Clone(); } if (m_Controls.checkIndiv->isChecked()) { auto sliceIndices = CreateSegmentation(baseImage, m_Controls.sliderWidget->value()); } QmitkNewSegmentationDialog* dialog = new QmitkNewSegmentationDialog(m_Parent); // needs a QWidget as parent, "this" is not QWidget int dialogReturnValue = dialog->exec(); if (dialogReturnValue == QDialog::Rejected) { // user clicked cancel or pressed Esc or something similar return; } // ask the user about an organ type and name, add this information to the image's (!) propertylist // create a new image of the same dimensions and smallest possible pixel type mitk::Tool* firstTool = toolManager->GetToolById(0); if (firstTool) { try { std::string newNodeName = dialog->GetSegmentationName().toStdString(); if (newNodeName.empty()) { newNodeName = "no_name"; } mitk::DataNode::Pointer newSegmentation = firstTool->CreateSegmentationNode(baseImage, newNodeName, dialog->GetColor()); // initialize showVolume to false to prevent recalculating the volume while working on the segmentation newSegmentation->SetProperty("showVolume", mitk::BoolProperty::New(false)); if (!newSegmentation) { return; // could be aborted by user } if (mitk::ToolManagerProvider::GetInstance()->GetToolManager()->GetWorkingData(0)) { mitk::ToolManagerProvider::GetInstance()->GetToolManager()->GetWorkingData(0)->SetSelected(false); } newSegmentation->SetSelected(true); this->GetDataStorage()->Add(newSegmentation, toolManager->GetReferenceData(0)); // add as a child, because the segmentation "derives" from the original m_SegC = newSegmentation; auto referencedImages = m_Image->GetData()->GetProperty("files"); m_SegC->GetData()->SetProperty("referenceFiles", referencedImages); } catch (std::bad_alloc) { QMessageBox::warning(nullptr, tr("Create new segmentation"), tr("Could not allocate memory for new segmentation")); } } else { MITK_INFO << "no tools..."; } } void SegmentationReworkView::CleanDicomFolder() { if (m_SegA || m_SegB || m_SegC) { QMessageBox::warning(nullptr, tr("Clean dicom folder"), tr("Please remove the data in data storage before cleaning the download folder")); return; } //std::experimental::filesystem::remove_all(m_DownloadBaseDir); // TODO : use POCO //itk::FileTools::CreateDirectory(m_DownloadBaseDir); } diff --git a/Plugins/org.mitk.gui.qt.segmentation.rework/src/internal/SegmentationReworkView.h b/Plugins/org.mitk.gui.qt.segmentation.rework/src/internal/SegmentationReworkView.h index 9eaf7ee2de..bb8dc07e34 100644 --- a/Plugins/org.mitk.gui.qt.segmentation.rework/src/internal/SegmentationReworkView.h +++ b/Plugins/org.mitk.gui.qt.segmentation.rework/src/internal/SegmentationReworkView.h @@ -1,106 +1,107 @@ /*=================================================================== The Medical Imaging Interaction Toolkit (MITK) Copyright (c) German Cancer Research Center, Division of Medical and Biological Informatics. All rights reserved. This software is distributed WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See LICENSE.txt or http://www.mitk.org for details. ===================================================================*/ #ifndef SegmentationReworkView_h #define SegmentationReworkView_h #include #include #include "ui_SegmentationReworkViewControls.h" #include "SegmentationReworkREST.h" #include #include #include /** \brief SegmentationReworkView \warning This class is not yet documented. Use "git blame" and ask the author to provide basic documentation. \sa QmitkAbstractView \ingroup ${plugin_target}_internal */ class SegmentationReworkView : public QmitkAbstractView { // this is needed for all Qt objects that should have a Qt meta-object // (everything that derives from QObject and wants to have signal/slots) Q_OBJECT public: static const std::string VIEW_ID; void RESTPutCallback(const SegmentationReworkREST::DicomDTO& dto); void RESTGetCallback(const SegmentationReworkREST::DicomDTO& dto); void RESTGetCallbackGeneric(const SegmentationReworkREST::DicomDTO& dto); void UpdateChartWidget(); void ClearChartWidget(); void LoadData(std::vector filePathList); void OnSliderWidgetChanged(double value); void AddProgress(int, QString status); signals: void InvokeLoadData(std::vector filePathList); void InvokeProgress(int, QString status); protected: virtual void CreateQtPartControl(QWidget *parent) override; virtual void SetFocus() override; /// \brief Called when the user clicks the GUI button void CreateNewSegmentationC(); void CleanDicomFolder(); void UploadNewSegmentation(); void RestartConnection(); void OnIndividualCheckChange(int state); Ui::SegmentationReworkViewControls m_Controls; private: std::vector CreateSegmentation(mitk::Image::Pointer baseSegmentation, double threshold); void InterpolateSegmentation(mitk::Image::Pointer baseSegmentation, std::vector sliceIndices); std::string GetAlgorithmOfSegByPath(std::string path); void SetSimilarityGraph(std::vector simScoreArray, int sliceMinStart); std::unique_ptr m_HttpHandler; mitk::DICOMWeb* m_DICOMWeb; mitk::RESTClient* m_RestService; std::string m_CurrentStudyUID; std::string m_SRUID; std::string m_DownloadBaseDir; std::string m_UploadBaseDir; mitk::DataNode::Pointer m_Image; mitk::DataNode::Pointer m_SegA; mitk::DataNode::Pointer m_SegB; mitk::DataNode::Pointer m_SegC; std::map m_ScoreMap; std::string m_GroundTruth; + std::string m_thresholdLabel; QWidget* m_Parent; int counter; }; #endif // SegmentationReworkView_h