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Introduction
Diagnosis and treatment of insertional tendinopathy of the Achilles tendon (IAT) remains a challenge. The aim of this study was to assess the influence of pre-operative radiological pathologies on the patient-reported outcomes following open debridement of all pathologies for IAT.
Materials and methods
In this IRB-approved retrospective correlation and comparative study, patients with pre-operative imaging were identified from the authors’ retrospective IAT database comprising of 118 patients. All were treated by a standardized surgical treatment strategy utilizing a midline, transachillary approach and debridement of all pathologies. A total of fifteen radiologic parameters were measured on radiographs (RX) and MRI. The patient-reported outcomes were assessed using the Victorian Institute of Sport Assessment-Achilles questionnaire (VISA-A-G) and the general health questionnaire SF-12 at a minimum follow-up of 12 months. The data are presented as mean ± SD (95% CI).
Results
88 patients (74.6%) with an average age of 50 ± 12 (47–52) years were included. Radiographs were available in 68 patients and MRI in 53. The mean follow-up was 3.8 ± 1.9 (3.4–4.3) years. The overall VISA-A-G was 81 ± 22 (77–86), the SF-12 PCS 54 ± 7 (52–55), and the SF-12 MCS 52 ± 9 (50–54) points. None of the assessed radiological parameters had a significant influence on the patient-reported outcome following surgical treatment for IAT.
Conclusion
In this retrospective correlation study, no significant association was found between preoperative radiographic and MRI radiologic parameters for IAT and postoperative patient-reported outcomes (VISA-A-G and SF-12).
Activation of the basal ganglia has been shown during the preparation and execution of movement. However, the functional interaction of cortical and subcortical brain areas during movement and the relative contribution of dopaminergic striatal innervation remains unclear. We recorded local field potential (LFP) activity from the subthalamic nucleus (STN) and high-density electroencephalography (EEG) signals in four patients with Parkinson’s disease (PD) off dopaminergic medication during a multi-joint motor task performed with their dominant and non-dominant hand. Recordings were performed by means of a fully-implantable deep brain stimulation (DBS) device at 4 months after surgery. Three patients also performed a single-photon computed tomography (SPECT) with [123I]N-ω-fluoropropyl-2β-carbomethoxy-3β-(4-iodophenyl)nortropane (FP-CIT) to assess striatal dopaminergic innervation. Unilateral movement execution led to event-related desynchronization (ERD) followed by a rebound after movement termination event-related synchronization (ERS) of oscillatory beta activity in the STN and primary sensorimotor cortex of both hemispheres. Dopamine deficiency directly influenced movement-related beta-modulation, with greater beta-suppression in the most dopamine-depleted hemisphere for both ipsi- and contralateral hand movements. Cortical-subcortical, but not interhemispheric subcortical coherencies were modulated by movement and influenced by striatal dopaminergic innervation, being stronger in the most dopamine-depleted hemisphere. The data are consistent with a role of dopamine in shielding subcortical structures from an excessive cortical entrapment and cross-hemispheric coupling, thus allowing fine-tuning of movement.
Fibrosis is a pivotal player in heart failure development and progression. Measurements of (markers of) fibrosis in tissue and blood may help to diagnose and risk stratify patients with heart failure, and its treatment may be effective in preventing heart failure and its progression. A lack of pathophysiological insights and uniform definitions has hampered the research in fibrosis and heart failure. The Translational Research Committee of the Heart Failure Association discussed several aspects of fibrosis in their workshop. Early insidious perturbations such as subclinical hypertension or inflammation may trigger first fibrotic events, while more dramatic triggers such as myocardial infarction
and myocarditis give rise to full blown scar formation and ongoing fibrosis in diseased hearts. Aging itself is also associated with a cardiac phenotype that includes fibrosis. Fibrosis is an extremely heterogeneous phenomenon, as several stages of the fibrotic process exist, each with different fibrosis subtypes and a different composition of various cells and proteins — resulting in a very complex pathophysiology. As a result, detection of fibrosis, e.g. using current cardiac imaging modalities or plasma biomarkers, will detect only specific subforms of fibrosis, but cannot capture all aspects of the complex fibrotic process. Furthermore, several anti-fibrotic therapies are under investigation, but such therapies generally target aspecific aspects of the fibrotic process and suffer from a lack of precision. This review discusses the mechanisms and the caveats and proposes a roadmap for future research.
Opioid receptors (ORs) are classified among the oldest and best investigated drug targets due to their fundamental role in the treatment of pain and related disorders. ORs are divided in three conventional subtypes (μ, κ, δ) and the non‐classical nocicepetin receptor. All ORs are family A G protein‐coupled receptors (GPCRs), and are located on the cell surface. Modern biophysical methods use light to investigate physiological processes at organismal, cellular and subcellular level. Many of these methods rely on fluorescent ligands, thus highlighting their importance. This review addresses the advancements in the development of opioid fluorescent ligands and their use in biological, pharmacological and imaging applications.
Efficient quadrupolar chromophores (A–pi–A) with triarylborane moieties as acceptors have been studied by the Marder group regarding their non‐linear optical properties and two‐photon absorption ability for many years. Within the present work, this class of dyes found applications in live‐cell imaging. Therefore, the dyes need to be water‐soluble and water‐stable in diluted aqueous solutions, which was examined in Chapter 2. Furthermore, the influence of the pi‐bridge on absorption and emission maxima, fluorescence quantum yields and especially the two-photon absorption properties of the chromophores was investigated in Chapter 3. In Chapter 4, a different strategy for the design of efficient two‐photon excited fluorescence imaging dyes was explored using dipoles (D–A) and octupoles (DA3). Finding the optimum balance between water‐stability and pi‐conjugation and, therefore, red‐shifted absorption and emission and high fluorescence quantum yields, was investigated in Chapter 5
Dank der mit modernen NMR-Spektrometern (Kernspintomographen) routinemäßig realisierbaren isotropen räumlichen Auflösungen von wenigen Mikrometern, ergeben sich für die 1H NMR-Mikroskopie zahlreiche neue Anwendungsgebiete. Allerdings sind die Möglichkeiten und Grenzen der NMR-Mikroskopie bezüglich ihrer praktischen Anwendbarkeit bisher nur wenig untersucht worden. Die vorliegende Arbeit ist im Bereich der biophysikalischen Grundlagenforschung angesiedelt und soll die praktische Anwendbarkeit der NMR-Mikroskopie auf neuen medizinischen und biologischen Anwendungsgebieten anhand von ausgewählten Beispielen aus diesen Bereichen demonstrieren. Die einzelnen Projekte besitzen deswegen immer auch den Charakter von Machbarkeitsstudien, die aufzeigen sollen, welche Möglichkeiten und Vorteile die NMR-Mikroskopie im Vergleich zu etablierten Untersuchungsmethoden bietet. Im Detail wurden unterschiedliche lebende und fixierte biologische Proben mittels NMR-Mikroskopie zerstörungsfrei und räumlich hochaufgelöst dargestellt. Dabei variierte die spezielle Zielsetzung von der Visualisierung der Invasion eines Tumorsphäroiden in ein Zellaggregat anhand von T2-Parameterkarten (Zeitkonstante der Spin-Spin-Relaxation) über die dreidimensionale Darstellung des Gehirns der Honigbiene in der intakten Kopfkapsel bis hin zur nicht-invassiven Abbildung der Anatomie prenataler Delphine. Für alle durchgeführten Projekte war der nicht-invasive Charakter der NMR-Experimente von entscheidender Bedeutung. Die zu beobachtende Tumorinvasion durfte nicht durch die Messung beeinflusst werden, das Bienengehirn sollte möglichst naturgetreu abgebildet werden, und die untersuchten Delphine sind seltene Museumsstücke, die nicht zerstört werden durften. Die verschiedenen Proben wurden mit der jeweils bestmöglichen räumlichen Auflösung visualisiert, die sich entweder durch das minimal nötige Signal-zu-Rausch-Verhältnis (SNR) oder durch die zur Verfügung stehende Messzeit ergab. Um einzelne feine Strukturen in den Bildern auflösen zu können, mussten sowohl das SNR, als auch das Kontrast-zu-Rausch-Verhältnis optimiert werden. Die Messungen wurden an Hochfeld-NMR-Spektrometern bei 500 und 750 MHz durchgeführt, um das für die hohe Auflösung notwendige SNR zu gewährleisten. Mit den Experimenten konnten zahlreiche Fragen bezüglich mikroskopischer Details der verschiedenen untersuchten Proben nicht-invasiv beantworten werden. Gleichzeitig führten sie zu neuen interessanten Fragestellungen bezüglich der NMR-Mikroskopie an fixierten Proben. Darüber hinaus konnte die praktische Anwendbarkeit der NMR-Mikroskopie als Alternative bzw. Ergänzung zu herkömmlichen Untersuchungsmethoden wie der konfokalen Lasermikroskopie bei der Visualisierung des Bienengehirns und der konventionellen Histologie bei der Untersuchung der Anatomie der prenatalen Delphine demonstriert werden. Durch die Untersuchung der speziellen Vorteile und der Grenzen der Anwendung der NMR-Mikroskopie gegenüber den herkömmlichen Untersuchungsmethoden konnte konkret der praktische Nutzen ihres Einsatzes aufgezeigt und Ergebnisse erzielt werden, die sonst nicht erzielbar wären. Gerade der Einsatz der NMR-Mikroskopie in Form der NMR-Histologie stellt einen vielversprechenden Weg zur Etablierung der NMR-Mikroskopie als Routineuntersuchungsmethode dar. Als ebenso erfolgreich hat sich die Anwendung der NMR-Mikroskopie als Untersuchungsmethode bei der Beobachtung der Tumorinvasion erwiesen, so dass sie auch in der medizinischen in-vitro Forschung und Therapiesimulation als sinnvolle Alternative zu den vorhandenen Methoden angesehen werden kann. Anhand der ausgewählten Anwendungsbeispiele ist es in dieser Arbeit somit gelungen, neue, konkrete Einsatzmöglichkeiten für die NMR-Mikroskopie zu eröffnen und ihre praktische Anwendbarkeit als Untersuchungsmethode für Fragestellungen im Bereich der medizinischen in-vitro Forschung und verschiedener neuro- und entwicklungsbiologischer Bereiche zu demonstrieren.
Purpose
Repeat surgery in patients with primary hyperparathyroidism (pHPT) is associated with an increased risk of complications and failure. This stresses the need for optimized strategies to accurately localize a parathyroid adenoma before repeat surgery is performed. However, evidence on the extent of required diagnostics for a structured approach is sparse.
Methods
A retrospective single-center evaluation of 28 patients with an indication for surgery due to pHPT and previous thyroid or parathyroid surgery was performed. Diagnostic workup, surgical approach, and outcome in terms of complications and successful removement of parathyroid adenoma with biochemical cure were evaluated.
Results
Neck ultrasound, sestamibi scintigraphy, C11-methionine PET-CT, and selective parathyroid hormone venous sampling, but not MRI imaging, effectively detected the presence of a parathyroid adenoma with high positive predictive values. Biochemical cure was revealed by normalization of calcium and parathormone levels 24-48h after surgery and was achieved in 26/28 patients (92.9%) with an overall low rate of complications. Concordant localization by at least two diagnostic modalities enabled focused surgery with success rates of 100%, whereas inconclusive localization significantly increased the rate of bilateral explorations and significantly reduced the rate of biochemical cure to 80%.
Conclusion
These findings suggest that two concordant diagnostic modalities are sufficient to accurately localize parathyroid adenoma before repeat surgery for pHPT. In cases of poor localization, extended diagnostic procedures are warranted to enhance surgical success rates. We suggest an algorithm for better orientation when repeat surgery is intended in patients with pHPT.
Expansion microscopy (ExM) is a novel tool to improve the resolution of fluorescence-based microscopy that has not yet been used to visualize intracellular pathogens. Here we show the expansion of the intracellular pathogen Chlamydia trachomatis, enabling to differentiate its two distinct forms, catabolic active reticulate bodies (RB) and infectious elementary bodies (EB), on a conventional confocal microscope. We show that ExM enables the possibility to precisely locate chlamydial effector proteins, such as CPAF or Cdu1, within and outside of the chlamydial inclusion. Thus, we claim that ExM offers the possibility to address a broad range of questions and may be useful for further research on various intracellular pathogens.
Das Ziel der vorliegenden Arbeit ist es, neue Messverfahren zu entwickeln, die eine umfassende Charakterisierung des Herzmuskels ermöglichen. Sowohl die Morphologie als auch die Funktion und der Gefäßstatus wurden am intakten und am krankhaft veränderten isolierten Herzmuskel der Ratte mit NMR-Mikroskopietechniken untersucht.