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1.
Pol J Radiol ; 79: 59-63, 2014.
Article in English | MEDLINE | ID: mdl-24688619

ABSTRACT

In recent years a dynamic development of ultrasound technology has been observed. Consequently, ultrasound is increasingly being utilized in rheumatology. With the introduction of high-frequency (up to 18 MHz) linear probes, sensitive Doppler techniques, harmonic imaging options and cross beams, ultrasound is used in the initial diagnosis of rheumatic diseases, monitoring of the effectiveness of treatment and confirmation of remission. Ultrasound cannot identify specific rheumatic diseases, but it does allow for an evaluation of the type of pathology, including an assessment of disease progression and its location. These irregularities include: synovial pathologies, effusion, tendon, cartilage and bone lesions, tendon and ligament pathology at the site of their insertion (enthesopathies). This publication discusses the wide spectrum of changes in peripheral joints and entheses observed on ultrasound. Special consideration is given to the ultrasound, which besides an MRI is a leading diagnostic tool in the diagnosis of early stages of the disease and monitoring of disease progression.

2.
Pol J Radiol ; 79: 51-8, 2014.
Article in English | MEDLINE | ID: mdl-24669280

ABSTRACT

Radiological imaging plays a fundamental role in the diagnosis and monitoring of rheumatic diseases. The basic method of imaging is a classic X-ray picture, which for many years has been used as a single method for the recognition and evaluation of the effects of disease management. In today's modern day treatment of rheumatic diseases, ultrasonography and magnetic resonance are more commonly performed for early detection of inflammatory changes in the region of soft tissue, subchondral bone and bone marrow. In spite of their usefulness and fundamental role in the diagnosis, X-ray still remains an essential tool in the diagnosis of rheumatoid arthritis in children and is complementary to today's methods of imaging diagnostics. In clinical practice, X-ray imaging is still an important examination performed not only to recognize the disorders, but also to provide a differential diagnosis. It helps estimate disease progression and is used to monitor the effects of treatment and the development of possible complications. Differential diagnosis of rheumatic diseases is performed on the basis of localization and type of radiographic changes. The surrounding periarticular soft tissues, bone structures, joint space, with special attention to articular bone surfaces and epiphyses, are analyzed. The aim of this work is to describe characteristic inflammatory changes present on X-ray imaging typical for the most commonly diagnosed rheumatic diseases in children, such as juvenile idiopathic arthritis, systemic lupus erythematosus, systemic scleroderma, mixed connective tissue disease, juvenile dermatomyositis, juvenile spondyloarthropathy and systemic vascular disease.

3.
Pol J Radiol ; 79: 402-8, 2014.
Article in English | MEDLINE | ID: mdl-25674194

ABSTRACT

BACKGROUND: Enthesitis is considered a characteristic presentation of the second most common group of rheumatoid disorders, i.e. spondyloarthropathies (SpAs), particularly peripheral spondyloarthropathies. At the initial stages, enthesitis may be the only symptom of SpA, particularly in patients lacking the HLA-B27 receptor. MATERIAL/METHODS: In light of diagnostic difficulties with detecting enthesitis in clinical examinations and laboratory investigations, many studies point out the high specificity of imaging studies, and particularly ultrasonography. RESULTS: A total of 20% Achilles tendon entheses, 45% plantar aponeurosis entheses and 89.5% of flexor digiti brevis tendon entheses were unremarkable. In the remaining cases, the presentation of pathological lesions was not specific to enthesitis and might more likely correspond to degeneration or microinjuries of the entheses, beside the most obvious cases of achillobursitis or Kager's fat pad inflammation. CONCLUSIONS: The studies demonstrated that ultrasound scans rarely confirm the clinical diagnosis of enthesitis.

4.
J Ultrason ; 13(54): 329-36, 2013 Sep.
Article in English | MEDLINE | ID: mdl-26673521

ABSTRACT

Ultrasound examination is becoming more and more common in patients with rheumatoid diseases. Above all, it enables the assessment of articular soft tissues and constitutes a non-invasive examination. In a rheumatologist's everyday practice, it is conducted at the stage of initial diagnosis as well as to monitor the treatment and to confirm the remission if the clinical picture is ambiguous. The first sign of arthritis (including rheumatoid arthritis) that is visible on ultrasound examination is the thickening of the synovial membrane of the joint cavities, tendon sheaths or bursae. It is frequently accompanied by the exudate in the joint, sheath or bursa. In a subsequent stage, in Doppler examination, enhanced vascularization of the synovial membrane is observed. Sometimes, the inflammatory process of the tendon sheaths also affects the tendons, which might lead to their damage. Moreover, ultrasound examination also reveals erosions and inflammatory cysts (geodes) which attest to the advancement of the disease. A dynamic ultrasound examination enables to diagnose the capsule-ligamentous contracture of the interphalangeal joints, which occurs due to the lack of rehabilitation that should begin at the moment of the commencement of the inflammation. The ultrasound image does not allow for the differentiation between various rheumatoid entities, including those encompassing the joints in the hand, wrist. The observed changes, i.e. thickening of the synovial membrane, hyperemia, effusions, erosions or tendon damage, may accompany various rheumatoid entities. The purpose of the ultrasound examination is to recognize these irregularities, determine their localization and advancement and, finally, to monitor the course of treatment. Furthermore, ultrasound scan enables to assess the joints and tendons in a dynamic examination in relation to local ailments of the patient as well as to monitor the biopsy, aspiration and medicine administration. Sonography is used for a US-guided administration of radioisotope substances for synoviorthesis.

5.
J Ultrason ; 13(53): 192-201, 2013 Jun.
Article in English | MEDLINE | ID: mdl-26674614

ABSTRACT

For many years, it was thought that synovial cells and chondrocytes are the only sources of proinflammatory cytokines and growth factors found in the synovial fluid in patients suffering from osteoarthritis and rheumatoid arthritis. Currently, it is more and more frequently indicated that adipose tissue plays a significant role in the pathogenesis of these diseases as well as that a range of pathological processes that take place in the adipose tissue, synovial membrane and cartilage are interconnected. The adipose tissue is considered a specialized form of the connective tissue containing various types of cells which produce numerous biologically active factors. The latest studies reveal that, similarly to the synovial membrane, articular adipose tissue may take part in the local inflammatory response and affect the metabolism of the cartilage and subchondral osseous tissue. In in vitro conditions, the explants of this tissue obtained from patients suffering from osteoarthritis and rheumatoid arthritis produce similar pro- and anti-inflammatory cytokines to the explants of the synovial membrane. At this stage already, knowledge translates into imaging diagnostics. In radiological images, the shadowing of the periarticular soft tissues may not only reflect synovial membrane pathologies or joint effusion, but may also suggest inflammatory edema of the adipose tissue. On ultrasound examinations, abnormal presentation of the adipose tissue, i.e. increased echogenicity and hyperemia, may indicate its inflammation. Such images have frequently been obtained during ultrasound scanning and have been interpreted as inflammation, edema, hypertrophy or fibrosis of the adipose tissue. At present, when the knowledge concerning pathogenic mechanisms is taken into account, abnormal echogenicity and hyperemia of the adipose tissue may be considered as a proof of its inflammation. In the authors' own practice, the inflammation of the adipose tissue usually accompanies synovitis. However, we also diagnose cases in which the inflammatory process in the joint is no longer active, but abnormal vascularity still persists in the adipose tissue. There are also cases where abnormal adipose tissue is the only sign of inflammation. Therefore, ultrasound examination confirms the existence of the additional site of inflammation, i.e. the adipose tissue which should be evaluated at the stage of initial diagnosis and during follow-up, also in terms of remission.

6.
J Ultrason ; 12(50): 319-28, 2012 Sep.
Article in English | MEDLINE | ID: mdl-26673409

ABSTRACT

Early diagnosis of rheumatoid arthritis followed by early initiation of treatment, prevent the destruction of joints and progression to disability in the majority of patients. A traditional X-ray fails to capture early inflammatory changes, while late changes (e.g. erosions) appear after a significant delay, once 20-30% of bone mass has been lost. Sonography and magnetic resonance imaging studies have shown that erosions are seen in the first 3 months from the appearance of symptoms in 10-26% of patients, while in 75% they are seen in the first 2 years of the disease. Power Doppler ultrasound and dynamic magnetic resonance studies allow for qualitative, semiquantitative and quantitative monitoring of the vascularization of the synovium. In addition, magnetic resonance enables assessment of the bone marrow. The ultrasonographic examination using a state-of-the-art apparatus with a high-frequency probe allows for images with great spatial resolution and for the visualization of soft tissues and bone surfaces. However, the changes seen in ultrasonography (synovial pathologies, the presence of exudate, tendons changes, cartilage and bone lesions, pathologies of tendon attachments and ligaments - enthesopathies) are not only specific for rheumatoid arthritis and occur in other rheumatic diseases. Qualitative methods are sufficient for diagnosing the disease through ultrasound or magnetic resonance imaging. Whereas semiquantitative and quantitative scales serve to monitor the disease course - efficacy of conservative treatment and qualification for radioisotope synovectomy or surgical synovectomy - and to assess treatment efficacy.

7.
J Ultrason ; 12(49): 202-13, 2012 Jun.
Article in English | MEDLINE | ID: mdl-26673660

ABSTRACT

Rheumatoid arthritis is a chronic inflammatory disease with a multifactorial etiology and varied course, which in the majority of patients leads to partial disability or to permanent handicap. Its characteristic trait is a persistent inflammation of the synovial membrane and the formation of an invasive synovial tissue, called the pannus, which in time leads to destruction of the cartilage, subchondral bone tissue, and the soft tissue of the affected joint(s). The pathogenesis of rheumatoid arthritis is complex and involves cells of both innate and adaptive immunity, a network of various cytokines and an immunoregulatory dysfunction. An important role in the discovery of rheumatoid arthritis pathogenesis was played by magnetic resonance imaging, which showed the disease process to extend beyond the synovium into the bone marrow. Many studies have shown a strict correlation between the vascularity of the synovium (assessed through the power Doppler ultrasound and magnetic resonance examinations), bone marrow edema and the clinical, laboratory and histopathological parameters of rheumatoid arthritis. From the current understanding of rheumatoid arthritis, bone erosions could occur from two directions: from the joint cavity and from the bone marrow. With power Doppler ultrasound, as well as in magnetic resonance imaging, it is possible to visualize the well-vascularized pannus and its destructive effects on joint structures and ligaments. In addition, the magnetic resonance study shows inflammatory and destructive changes within the bone marrow (bone marrow edema, inflammatory cysts, and erosions). Bone marrow edema occurs in 68-75% of patients with early rheumatoid arthritis and is considered to be a predictor of rapid disease progression.

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