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D Trudell

Publications and source records attributed to D Trudell.

At least 55 records · Page 3Linked to original sources

Magnetic resonance imaging in assessing cartilage changes in experimental osteoarthrosis of the knee.

Cartilage degeneration in osteoarthrosis (OA) of the knee generally is believed to precede osseous abnormalities. Because cartilage abnormalities are not readily detected by routine radiography, we investigated the role of magnetic resonance imaging (MRI) in assessing cartilage damage in a goat model for OA. Four goats had the anterior cruciate ligament of one knee severed surgically to create instability and accelerate OA. Two goats each were killed at 4 and 6 weeks, respectively, after walking on the unstable knees. MRI of the knees was performed with Hybrid fat suppression sequences. The images were correlated with gross anatomic sections and histologic analysis of the knees. On gross examination, the unstable knees showed rapid development of thinning, surface irregularity, and focal defects of the cartilage. These findings correlated well with abnormalities detected on the MRIs. In addition, areas of decreased signal intensity in cartilage correlated with histologic evidence of degenerative changes in the cartilage substance, including fragmentation, fibrillary and eosinophilic changes, and chondrocyte proliferation, indicating attempted cartilage repair. Precise correlation of pathologic and MRI data, however, was lacking, related in part to inability to match perfectly the level and orientation of the gross section with that on the MRI examination.

Animals↗

Meniscal changes in the elderly: correlation of MR imaging and histologic findings.

In elderly patients, degenerative changes of the meniscus are common and may mimic a tear. The magnetic resonance (MR) image findings of 179 meniscal sections in 20 cadaver knees were correlated with the histologic and gross pathologic findings. The sensitivity of standard T1-weighted spin-echo images and their corresponding meniscal windows in depicting meniscal tears was 80.6%, specificity was 72.4%, and accuracy was 76.7%. These results are not as good as results reported previously. A major difficulty is the occurrence of grade 3 meniscal signal intensity and diffuse intrameniscal signal intensity in torn and intact menisci. MR imaging in elderly patients, however, is still useful in the diagnosis of meniscal abnormalities. Normal low signal intensity depicted within a meniscus at MR imaging and changes in grades 1 and 2 intrameniscal signal intensity are reliable signs of an intact meniscal surface. Grade 3 and diffuse meniscal signal intensities do not allow a specific diagnosis; menisci with these characteristics should be described as degenerated with a high probability of a tear.

Age Factors↗

Width of the articular cartilage of the hip: quantification by using fat-suppression spin-echo MR imaging in cadavers.

OBJECTIVE: Use of MR imaging to measure the width of the articular cartilage has not been thoroughly investigated. The value of a selective fat-suppression spin-echo sequence in the quantitative assessment of articular cartilage of the hip was studied in cadavers. MATERIALS AND METHODS: Sagittal and coronal images were acquired in 10 cadaveric hips (age range at time of death, 62-81 years). On the coronal and sagittal MR images that were closest to the center of the femoral head, marks were placed every 30 degrees, with the midpoint of the femoral head used as a reference. Cartilage thickness was measured in 123 resulting locations. Sixty-three positions included both femoral and acetabular cartilages, and 60 positions included femoral cartilage without an acetabular counterpart. The findings were compared with corresponding anatomic sections. RESULTS: For the 60 locations containing only femoral cartilage, significant correlation between MR and anatomic sections was found (Pearson correlation coefficient = .34, p = .0089). Of the 63 locations containing both femoral and acetabular cartilages, the two cartilage layers could be differentiated on the MR images in 50 locations. In these 50, the MR and anatomic measurements of the femoral cartilage correlated significant (r = .58, p less than or equal to .0001). Measurements of the acetabular cartilage in these 50 locations yielded no significant correlation (r = .25, p = .08). When the entire cartilage (femoral plus acetabular) was measured in all 63 locations, the correlation between MR and anatomic measurements was .29 (p = .02). The correlation coefficients obtained in this investigation indicate considerable scattering of the data. CONCLUSION: Our results show that measurements of articular cartilage thickness of the hip on fat-suppression spin-echo MR images are not sufficiently accurate to be of clinical value.

Aged↗

The cruciate ligaments of the knee: correlation between MR appearance and gross and histologic findings in cadaveric specimens.

OBJECTIVE: Using anatomic and histologic correlation, we investigated the reasons for differences in the MR signal intensity between the normal anterior and posterior cruciate ligaments and for the focally increased signal intensity within these ligaments occasionally found in elderly patients. MATERIALS AND METHODS: The MR images of 18 anterior and 20 posterior cruciate ligaments obtained from cadavers (age at death, 56-88 years old; mean, 74 years) were evaluated blindly. Their overall signal intensity and focal regions of increased signal were noted. The findings then were correlated with corresponding anatomic and histologic sections. RESULTS: The anterior cruciate ligament had greater signal intensity than did the posterior cruciate ligament in 15 of 18 knees and had comparable signal intensity in three knees. No histologic basis to explain the different MR appearances of the anterior and posterior cruciate ligaments was found. Rather, differences in macroscopic anatomy appeared to be the best explanation. In the posterior cruciate ligament, the fibers were parallel, whereas they were diverging and twisted in the anterior cruciate ligament, causing volume-averaging artifacts. A focal area of signal increase was found in 29 of the 38 ligaments. In 17 of these 29 ligaments, mucoid and/or eosinophilic degeneration was found that appeared to have caused the focal MR signal change. In nine ligaments without focally increased signal on the MR images, only one had histologic evidence of degeneration. The predictive value of an abnormal finding on MR was 59%, and the predictive value of a normal finding on MR was 89%. The relationship between increased signal on MR and histologic degeneration was statistically significant (chi 2 test, p = .0126). CONCLUSION: The differences in the MR appearances of the anterior and posterior cruciate ligaments probably are due to differences in gross architecture. Increased MR signal within the cruciate ligaments occurring in elderly patients often can be attributed to degenerative changes.

Aged↗

Knee hyaline cartilage evaluated with MR imaging: a cadaveric study involving multiple imaging sequences and intraarticular injection of gadolinium and saline solution.

Magnetic resonance (MR) imaging of cadaveric knees was performed to determine optimal sequences for visualization of hyaline cartilage. Six fresh-frozen cadaveric knees were imaged with a 1.5-T imager by means of standard and hybrid fat suppression (HFS) spin-echo techniques, with and without intraarticular injection of saline solution and gadopentetate dimeglumine. The knees then were sectioned at 4-mm intervals. Both the real and the imaged cartilage thicknesses were measured. Areas of cartilage thinning and focal defects seen in the cadaveric sections were most accurately matched, in both the presence and the absence of intraarticular saline solution simulating joint fluid, by images obtained with the T1-weighted HFS sequences. Accurate imaging of hyaline cartilage thickness with differentiation of cartilage from fluid was possible routinely. Standard and HFS spin-echo images obtained after intraarticular injection of gadopentetate dimeglumine depicted cartilage less accurately than HFS sequences either with or without saline injection. MR imaging with T1-weighted HFS sequences provided superior visualization of cartilage, enabling accurate measurements of cartilage thickness and differentiation of cartilage from saline solution simulating joint fluid.

Cartilage, Articular↗

Alterations in the supraspinatus tendon at MR imaging: correlation with histopathologic findings in cadavers.

To determine the histopathologic correlates of alterations in the rotator cuff at magnetic resonance (MR) imaging, 13 cadaveric shoulders (in subjects aged 26-83 years at the time of death) underwent MR imaging in the coronal oblique plane at 1.5 T with proton-density- and T2-weighted spin-echo sequences. Areas corresponding to sites of MR imaging alterations were then examined histologically. Increased signal intensity on proton-density-weighted images (without further increased signal intensity on T2-weighted images) and an indistinct margin at the articular side of the supraspinatus tendon corresponded to eosinophilic, fibrillar, and mucoid degeneration and scarring. Areas of increased signal intensity on T2-weighted images were associated with severe degeneration and disruption of the supraspinatus tendon. Although other authors have suggested that certain MR findings are indicative of tendinitis, the histologic data in this study were not those of active inflammation but rather tendon degeneration.

Adult↗

Detection of thoracolumbar vertebral body destruction with lateral spine radiography. Part I: Investigation in cadavers.

Despite few and inconclusive studies, radiography is generally believed to be insensitive for detection of osteolytic lesions of the spine. A more detailed investigation was undertaken to study the detectability of laboratory-produced osteolytic lesions in cadaveric thoracolumbar vertebral bodies using conventional lateral radiographs. The radiographs were presented to four radiologists in two sessions over a two month period. In the first session, the films were arranged in a composite of five vertebral bodies, T11 to L3 all from the same spine, in which one contained a lesion and the other four were normal. In the second session, each vertebral body film was presented individually. Area (Az) under the receiver-operating characteristic (ROC) curve was used to measure the performances of readers. Observer detection was similar in the two formats with Az ranging from 0.67 +/- 0.05 to 0.79 +/- 0.04 for the composite film arrangement and 0.57 +/- 0.08 to 0.85 +/- 0.10 for the films of individual vertebral bodies. Lesions were grouped into three relative size categories: 18% to 25%, 26% to 40%, and 41% to 60% of transverse vertebral body diameter. The mean increase in ROC area between the small and large lesions was 0.29 (P less than 0.04) for the composite films and 0.16 (P less than 0.05) for the individual films. In the composite study, all readers showed significant (P less than 0.05) increases in lesion detection in spines reflecting large increases (P less than 0.01) in bone mineral content.(ABSTRACT TRUNCATED AT 250 WORDS)

Cadaver↗

Detection of thoracolumbar vertebral body destruction with lateral spine radiography. Part II: Clinical investigation with computed tomography.

Conventional radiography in the lateral projection was used to evaluate 25 osteolytic lesions involving vertebral bodies of the thoracolumbar spine. Destruction was calculated as percentages of the maximum transverse diameter and volume of the vertebral body as measured by computed tomography (CT) and the effect of size of lesion on detection was evaluated. Areas (Az) under the receiver-operating characteristic (ROC) curves and the significance of differences were determined from the observations of four radiologists. The mean difference between areas under the ROC curve for lesions involving 32% to 60% of the transverse diameter and for larger lesions of 61% to 93% was 0.12 and significant (P less than 0.05). The effect of the presence of localized loss of vertebral body density, sclerotic bone tissue surrounding the lesion and cortical destruction was evaluated in a second session, in films with lesions the observers scored 4 (probably abnormal) or 5 (definitely abnormal). Cortical destruction was reported to be helpful for detection in 35% of lesions, sclerotic bone surrounding the lesions was helpful in 30%, and a qualitative local decrease in bone density was noted in all lesions. In comparison with the results obtained for the same four observers with experimentally produced lesions in our previous cadaveric study, the clinical lesions of comparable size were not as readily detected. The ROC area for the largest group of clinical lesions (61% to 93%, Az = 0.83 +/- 0.07) was not significantly different from that for a group of smaller cadaveric lesions (41% to 60%, Az = 0.83 +/- 0.05). The smaller clinical lesions (32% to 60%, Az = 0.71 +/- 0.08) were similar in detectability to the experimental lesions of relative diameter 26% to 40% (Az = 0.74 +/- 0.15). Caution should be exercised in the interpretation of conventional radiographs in the lateral projection if there is suspicion of vertebral body destruction.

Adult↗

Osteophytosis of the knee: anatomic, radiologic, and pathologic investigation.

Although the radiologic manifestations of degenerative disease of the knee have been investigated, the distribution of marginal and central osteophytes has not been defined. This study included (a) 50 consecutive patients with osteoarthritis of the knee in whom routine and specialized projections were obtained prospectively, (b) 25 patients with calcium pyrophosphate dihydrate (CPPD) crystal deposition disease whose knee radiographs were retrospectively reviewed, and (c) four cadaveric knees that were dissected to assess pertinent anatomy. In this study the importance of the tunnel view in the evaluation of osteoarthritis and CPPD crystal deposition disease is demonstrated, the distribution of and the relationship between marginal and central osteophytes are discussed, and two new radiologic signs are described. As both marginal and central osteophytes may simulate intraarticular bodies, the recognition of these outgrowths is of clinical importance.

Calcium Pyrophosphate↗

Pathogenesis of discovertebral and manubriosternal joint abnormalities in rheumatoid arthritis: a cadaveric study.

The precise pathogenesis of discovertebral lesions in rheumatoid arthritis has long been debated with the emergence of 2 conflicting theories: discovertebral extension of synovial inflammation from a neighboring articulation (Luschka, costovertebral joint) and repetitive discal trauma with Schmorl's nodes. In order to address this controversy, we performed a radiographic-pathologic correlation of a rheumatoid cadaver and compared the alterations seen in the cervical and lumbar discovertebral junction; we further included an evaluation of the manubriosternal joint, another cartilaginous articulation. Our data confirmed that advanced discovertebral lesions in the cervical and lumbar spine are related primarily to endplate failure that itself is caused by apophyseal joint destruction and segmental spinal instability, although inflammatory rheumatoid lesions of the cervical intervertebral discs probably arising from the Luschka joints are also evident. Conversely, the lesions of the manubriosternal joint were produced by inflammatory changes related to the development of a synovial cavity in the articulation.

Arthritis, Rheumatoid↗

Sternocostal joints. Anatomic, radiographic and pathologic features in adult cadavers.

Using radiographic-pathologic correlation, we studied the sternocostal joints derived from 27 consecutive cadavers and one additional cadaver with rheumatoid arthritis. Radiographic findings that were tabulated included joint space narrowing, sternal or costal osteophytes, articular calcification, vacuum phenomena, and the degree of ossification of the costal cartilages. The first sternocostal joint could be classified as either a synchondrosis or synostosis in every instance; however, a joint cavity lateral to the first sternocostal joint represented a normal variation and was seen radiographically in 10 specimens. The second sternocostal joint was synovial in type and intimately related to the manubriosternal joint; cavitation within this joint was present bilaterally in 36% of our specimens. Degenerative changes in the sternocostal articulations were characterized much more frequently by sternal osteophytes than by costal osteophytes or joint space narrowing. Calcification compatible with chondrocalcinosis was observed in two cadavers. Radiographic and pathologic evidence of synovial inflammation was evident in the sternocostal joints of the rheumatoid specimen.

Aged↗

Perfluoroctylbromide as a contrast agent for computed tomographic imaging of septic and aseptic arthritis.

Perfluoroctylbromide (PFOB), a perfluorocarbon macrophage-labeling contrast agent, was applied to computed tomographic imaging of septic and aseptic arthritis models in rabbits. Marked enhancement of induced pyarthrosis was observed in both the knee and the sacroiliac joint. Moderate enhancement was noted in tetracycline-induced synovitis of the knee. Sterile synovitis of the sacroiliac joint and simple knee joint effusion showed no enhancement. These results suggest that PFOB is a useful contrast medium for the diagnosis of and distinction between septic and sterile arthritis.

Animals↗

Widespread osteonecrosis of the foot in systemic lupus erythematosus: radiographic and gross pathologic correlation.

A patient with systemic lupus erythematosus required an amputation of the foot related to the presence of vascular disease and infection. Radiographs obtained prior to amputation revealed osteonecrosis in virtually every bone of the foot. Radiographic-pathologic correlation documented this widespread osseous involvement. Although ischemic necrosis of bone is a well-known feature of systemic lupus erythematosus, its localization in the small bones of the foot is rare.

Adult↗

Distribution of normal and abnormal fluid collections in the glenohumeral joint: implications for MR arthrography.

Although magnetic resonance (MR) images of the glenohumeral joint frequently demonstrate intraarticular fluid, no specific criteria have, to the authors' knowledge, been published that allow accurate assessment of the amount of fluid present. Also, despite the increasing use of MR arthrography of the shoulder, the optimal amount of intraarticular fluid that should be used with this technique has not been determined. The authors progressively distended the glenohumeral joint in six cadaveric shoulder specimens with a dilute gadopentetate dimeglumine solution and obtained MR images after injection of 2, 5, 10, 15, and 20 mL of the solution. The pattern of fluid distribution was evaluated, and these results were then used to estimate the amount of fluid that was present in the glenohumeral joint on MR images of 20 shoulders obtained in 12 asymptomatic volunteers. In 14 of these shoulders, intraarticular fluid was present; however, in none was more than 2 mL evident. Results of the cadaveric study also indicated that 15 mL of intraarticular fluid appears to be the optimal amount for MR arthrography.

Adult↗

Pictorial essay. MRI of the glenoid labrum with gross anatomic correlation.

The objective of this pictorial essay is to illustrate the magnetic resonance image (MRI) appearance of the glenoid labrum and the perilabral structures with and without instillation of intraarticular contrast material. Ten cadaveric shoulder specimens underwent axial MRI using various MR pulse sequences. The shoulders then were transversely sectioned, and the gross morphology of the labrum and perilabral structures was evaluated and correlated with the MR images. The contrast-enhanced sequences allowed for improved anatomic visualization of the structures evaluated.

Aged↗

MR arthrography of the elbow: normal anatomy and diagnostic pitfalls.

PURPOSE: Our goal was to determine the normal MR arthrographic appearance of the elbow and to identify the potential diagnostic pitfalls of this technique. METHOD: MRI with intra-articularly administered gadopentetate dimeglumine was performed in seven elbow joints derived from cadavers. Coronal, sagittal, and axial SE T1-weighted images with fat suppression and coronal 3D SPGR images with fat suppression were obtained in each elbow. The elbows were then sectioned. RESULTS: This technique allowed depiction of the cartilaginous surfaces of the elbow joint as well as clear delineation of the inner surface of the collateral ligaments. Potential diagnostic pitfalls included fat pads projecting into the joint, synovial folds, and cartilaginous pseudoerosions. CONCLUSION: MR arthrography allows clear delineation of the intraarticular structures of the elbow. However, diagnostic pitfalls exist that increase the difficulty of interpreting MR arthrographic images.

Aged↗

Ligaments of the ankle: normal anatomy with MR arthrography.

PURPOSE: Our purpose was to define the normal MR arthrographic anatomy of ankle ligaments. METHOD: Prior to injection of intraarticular gadolinium in cadaveric ankle joints, proton density and T2-weighted images were obtained to assess the integrity of the ligaments and tendons as well as the amount of preexisting joint effusion. Following injection of 10 ml of contrast agent (gadopentetate dimeglumine 1:250, Omnipaqe 300, Knox gelatin 50%, and methylene blue), T1-weighted images with fat saturation in axial, oblique axial, coronal, and sagittal planes were obtained in neutral, dorsiflexion, and plantar flexion positions. Specimens were sectioned, allowing anatomic and MR correlation. RESULTS: Contrast agent outlining anterior and posterior aspects of the anterior talofibular ligament and posterior talofibular ligament (PTAF) was a normal finding, related to anterior and posterior recesses of the ankle joint that extend out beyond these ligaments in an anteroposterior direction above the level of the ligaments. Intraarticular contrast material allowed resolution of superficial and deep components of the posterior tibiofibular ligament. Both were seen separately from PTAF with dorsiflexion. Posterior intermalleolar ligament was not present in our specimens. Visualization of calcaneofibular ligament was much improved by contrast material outlining the articular aspect of the ligament. Visualization of the syndesmotic ligamentous complex also was improved by contrast material outlining the articular side of the ligaments and separating them from adjacent bone. Superiorly, the distribution of contrast agent was limited by the interosseous ligament. Visualization of the medial collateral ligaments was not improved by the presence of the intraarticular contrast material. CONCLUSION: MR arthrography of the ankle allows improved visualization and evaluation of the lateral and syndesmotic ligamentous complex.

Ankle Joint↗