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Kenneth A Buckwalter

Publications and source records attributed to Kenneth A Buckwalter.

At least 19 recordsLinked to original sources

Risk factors for early radiographic changes of tibiofemoral osteoarthritis.

OBJECTIVE: To evaluate the risk factors for early radiographic changes of knee osteoarthritis. METHODS SUBJECTS: (n = 114) with unilateral or bilateral grade 0-1 knee osteoarthritis underwent x ray examination of the knees (semiflexed anteroposterior view) and assessment with the Western Ontario and McMaster Universities (WOMAC) Osteoarthritis Index at baseline and 30 months later. Severity of joint space narrowing (JSN) and osteophytosis were graded in randomly ordered serial radiographs by two readers, blinded to the sequence of the films, using standard pictorial atlases. RESULTS: The odds of an initial appearance of radiographic features of knee osteoarthritis at month 30 were more than threefold greater in African Americans than in whites (osteophytosis: odds ratio (OR) 3.30, 95% confidence interval (CI) 1.04 to 10.54; JSN: OR 3.49, 95% CI 1.16 to 10.68). In addition, the appearance of osteophytosis was positively related to baseline stiffness (OR 1.91/2.1 points on the 2-10 WOMAC scale, 95% CI 1.29 to 2.82). CONCLUSIONS: The distinction between incident and established, but early, radiographic knee osteoarthritis is difficult because of the limits to which all possible evidence of the disease can be ruled out in a conventional baseline knee radiograph. Nonetheless, our finding that African Americans were at greater risk of early osteophytosis and JSN than other subjects differs from the results of our previous analysis of risk factors for progressive knee osteoarthritis in the same subjects. The development of osteophytes also was associated with joint stiffness. Future investigations should focus on the systemic and local influences that these ostensible risk factors represent.

Black or African American↗

Acetaminophen, like conventional NSAIDs, may reduce synovitis in osteoarthritic knees.

OBJECTIVE: To determine the extent to which treatment of patients with symptomatic knee osteoarthritis (OA) with non-steroidal anti-inflammatory drugs (NSAIDs) and acetaminophen (ACET) reduces total effusion volume and synovial tissue volume, as quantified by magnetic resonance imaging (MRI). METHODS: Sequential pilot studies used subjects whose knee OA was treated with NSAIDs (n=10) or with ACET or=15 of 25 on the Western Ontario and McMaster Universities' pain scale underwent l.5T MRI. Effusion was quantified in axial short tau inversion recovery images; to measure synovial tissue volume, fat-suppressed T1-weighted axial images were obtained 3 min after i.v. injection of gadolinium contrast. After the initial MRI examination, patients resumed their customary pain medications until the severity of knee pain returned to baseline, when pain was again measured and the MRI was repeated. RESULTS: Pain severity after washout was similar in subjects taking ACET and NSAIDs. Reinstitution of ACET resulted in a 50% decrease in the mean of pain scores (P=1.7 x 10(-12)) that was comparable with that seen after the reinstitution of NSAID (49%, P=6.0 x 10(-7)). The mean total effusion volume measured during the flare of knee pain induced by the withdrawal of the two drugs was comparable (ACET 16.9 ml, NSAID 16.2 ml; P=0.884). Significant decreases in mean total effusion volume were observed after reinstitution of both ACET (-4.5 ml, P=0.009) and NSAID (-3.3 ml, P=0.013); the difference between drugs was not significant. Analyses of synovial volume yielded similar results. CONCLUSION: While uncontrolled and derived from small samples, these data suggest that ACET may have a significant anti-inflammatory effect in patients with knee OA, comparable with that achieved with NSAIDs, possibly through an effect on neurogenic inflammation. Joint pain is the clinical feature of OA that most often leads the affected individual to seek medical attention. Because many patients with OA improve symptomatically with the use of NSAIDs, it has been widely assumed that the pain of OA is due to synovial inflammation. However, the origins of OA pain are numerous and may vary from patient to patient and, within the same subject, from visit to visit. Although the articular cartilage is usually the site of the most obvious pathological changes in this disease, it is aneural and, therefore, is not the source of joint pain. However, in addition to the synovium, the subchondral bone, joint capsule, osteophytes, menisci, ligaments, periarticular tendons, entheses and bursae all contain nociceptive nerve endings, stimulation of which by chemical or physical mediators may be a basis for OA pain.

Acetaminophen↗

CT Arthrography.

Explore the source record for details and available documents.

Ankle Joint↗

Multichannel CT Imaging of Orthopedic Hardware and Implants.

The introduction of multichannel CT scanners provides both radiologists and surgeons with a new tool to image patients with orthopedic hardware. The key parameters that have made it possible to image the implants and the surrounding bone with multichannel CT are the higher available technical factors (kVp and mAs) coupled with the ability to acquire thin slices over a large scan region. These properties make it possible to produce high-quality multiplanar reformations that facilitate visualization of the orthopedic device and the surrounding bone. An important consideration for multichannel CT imaging of hardware is the reduction of cone beam artifacts caused by the geometry of multichannel CT scanners. This artifact is reduced by using a narrower x-ray beam collimation and a low pitch setting. This article discusses CT scan parameters and image postprocessing used at our institution and illustrates common clinical problems encountered when imaging implanted orthopedic devices. These include fracture healing, loosening of joint prostheses, evaluation of particle disease, and the use of CT for preoperative planning in revision arthroplasty.

Equipment Failure↗

Multichannel CT: evaluating the spine in postoperative patients with orthopedic hardware.

Evaluating the spine in patients with metal orthopedic hardware is challenging. Although the effectiveness of conventional computed tomography (CT) can be limited by severe beam-hardening artifacts, the evolution of multichannel CT in recent years has made available new techniques that can help minimize these artifacts. Multichannel CT allows faster scanning times, resulting in reduced motion artifacts; thinner sections, with which it is possible to create a scanned volume of isotropic voxels with equivalent image resolution in all planes; and the generation of a higher x-ray tube current, which may result in better penetration of metal hardware and reduction of artifacts. Although 140 kVp and high milliamperage-second exposure are recommended for imaging patients with hardware, caution should always be exercised, particularly in children, young adults, and patients undergoing multiple examinations. The acquisition of multiplanar reformatted images in the axial, sagittal, coronal, and oblique planes and of three-dimensional volume-rendered images optimizes image interpretation. Wide window settings are best for reviewing images when hardware is present. The integrity of hardware is best assessed with multiplanar average intensity projection. Soft-tissue structures are best visualized by interactively varying the window width and level settings. Implementation of these techniques can yield diagnostic-quality images and aid in patient treatment.

Artifacts↗

Effects of doxycycline on progression of osteoarthritis: results of a randomized, placebo-controlled, double-blind trial.

OBJECTIVE: To confirm preclinical data suggesting that doxycycline can slow the progression of osteoarthritis (OA). The primary outcome measure was joint space narrowing (JSN) in the medial tibiofemoral compartment. METHODS: In this placebo-controlled trial, obese women (n = 431) ages 45-64 years with unilateral radiographic knee OA were randomly assigned to receive 30 months of treatment with 100 mg doxycycline or placebo twice a day. Tibiofemoral JSN was measured manually in fluoroscopically standardized radiographic examinations performed at baseline, 16 months, and 30 months. Severity of joint pain was recorded at 6-month intervals. RESULTS: Seventy-one percent of all randomized subjects completed the trial. Radiographs were obtained from 85% of all randomized subjects at 30 months. Adherence to the dosing regimen was 91.8% among subjects who completed the study per protocol. After 16 months of treatment, the mean +/- SD loss of joint space width in the index knee in the doxycycline group was 40% less than that in the placebo group (0.15 +/- 0.42 mm versus 0.24 +/- 0.54 mm); after 30 months, it was 33% less (0.30 +/- 0.60 mm versus 0.45 +/- 0.70 mm). Doxycycline did not reduce the mean severity of joint pain, although pain scores in both treatment groups were low at baseline and remained low throughout the trial, suggesting the presence of a floor effect. However, the frequency of followup visits at which the subject reported a > or = 20% increase in pain in the index knee, relative to the previous visit, was reduced among those receiving doxycycline. In contrast, doxycycline did not have an effect on either JSN or pain in the contralateral knee. In both treatment groups, subjects who reported a > or = 20% increase in knee pain at the majority of their followup visits had more rapid JSN than those whose pain did not increase. CONCLUSION: Doxycycline slowed the rate of JSN in knees with established OA. Its lack of effect on JSN in the contralateral knee suggests that pathogenetic mechanisms in that joint were different from those in the index knee.

Anti-Infective Agents↗

Pitfalls in the accurate measurement of joint space narrowing in semiflexed, anteroposterior radiographic imaging of the knee.

OBJECTIVE: Computerized measurement of changes in joint space width (JSW) on serial radiographs of the knee in the semiflexed, anteroposterior (SF-AP) view has been used recently as a primary outcome measure in clinical trials of disease-modifying osteoarthritis drugs (DMOADs). In the use of fluoroscopy to achieve reproducible alignment of the medial tibial plateau and x-ray beam, the SF-AP radiographic protocol affords greater sensitivity in the detection of joint space narrowing (JSN) than that achieved by conventional radiographic positioning techniques. However, the utility of the SF-AP view is compromised by the variation in x-ray penetration in each examination, which may confound the correction of the automated measurement of JSW for the radiographic magnification inherent in an AP view of the knee. A recent DMOAD trial using the SF-AP protocol showed an improbable increase in JSW of > or =0.50 mm (i.e., greater than the measurement error). The present report provides an analysis of this problem, and the study aim was to demonstrate that substitution of the automated estimates of JSW with precise manual measurements can markedly reduce the problem attributable to radiographic magnification. METHODS: SF-AP radiographs were obtained at baseline and at 16 months and 30 months thereafter from subjects enrolled in a 6-center DMOAD trial. For each examination, a 6.35-mm steel ball was affixed to the skin over the head of the fibula to permit estimation of the percentage of radiographic magnification (%Mag) and correction of JSW measurements. Measurements of the minimum interbone distance (IBD) in the medial tibiofemoral compartment and the %Mag were obtained by an automated method (edge detection) and manually. Combinations of automated and manual measurements of the IBD and %Mag in estimates of magnification-corrected JSW were compared with respect to their reproducibility, agreement, and sensitivity to JSN. RESULTS: With fully automated measurements, variations in x-ray penetration in analog radiographs and edge enhancement in digital radiographs resulted in the computer "seeing" a metal ball whose diameter was artifactually reduced, resulting in an inflated measurement of JSW. Use of manual measurement of the IBD and %Mag largely eliminated these problems and reduced, from 16% to 2%, the frequency of knees exhibiting an increase in JSW > or =0.50 mm. In 14 of the 15 knees in which a significant increase in JSW was noted with the manual method, this increase in JSW could be explained by the development of significant lateral compartment narrowing during the study or poor alignment of the medial plateau. CONCLUSION: Although automated and manual methods of JSW measurement of the knee in the SF-AP view possess comparable intrareader reproducibility, the manual method is less susceptible to technical factors that affect the correction of raw JSW estimates for radiographic magnification. Until we can identify practical, effective solutions to these technical problems, use of any radiographic protocol involving AP imaging of the knee in a DMOAD trial must be viewed with caution.

Fluoroscopy↗

Application of multidetector CT in skeletal trauma.

Multidetector computed tomography (MDCT) has improved our ability to image patients with skeletal trauma. The chief advantages of this technology include the extremely rapid scan times, the ability to produce very-high-quality multiplanar reformations, and the ability to reprocess raw data quickly and easily. Unlike soft tissue imaging, CT of bony structures requires high spatial resolution. Each joint in the body presents a unique challenge, and guidelines for imaging of each of the major joints is discussed throughout this article. In general, use of the thinnest slice width and a bone-reconstruction algorithm maximizes image quality. Imaging of larger joints such as the shoulder and hip requires slightly thicker slices to ensure reasonable image quality, particularly if surface rendering is to be performed. The demonstration of fracture line extension to articular surfaces is a key function of imaging, and image postprocessing is an integral component of high-resolution joint imaging. The introduction of MDCT has enabled submillimeter slice widths, ensuring unparalleled joint visualization in multiple planes from a single scan acquisition.

Fractures, Bone↗

Three-dimensional volume rendering of the tendons of the ankle and foot.

Three-dimensional (3D) rendering is the process of creating two-dimensional (2D) images that convey the 3D relationships of an object or objects. In the past 10 years, the use of volume-rendering (VR) images has become a commonly used method of 3D display. The improved data sets that result from spiral and multidetector computed tomography, improved software, and more powerful workstations significantly improve radiologists' ability to create these images. The process by which these images are obtained is described. It is possible to simultaneously demonstrate the tendons and bones of the ankle and hindfoot using VR because of significant attenuation differences among the soft tissue, tendons, and bone: fat approximately -100, muscle approximately 30, tendon approximately 90, and bone approximately 250 to 500 Hounsfield units. These 3D images can be helpful in the care of patients with ankle/foot deformities resulting from trauma, idiopathic disorders, and arthritis. These images present a global image that provides improved understanding of the relationships of the bones and adjacent tendons.

Ankle Injuries↗

Bone scintigraphy is not a better predictor of progression of knee osteoarthritis than Kellgren and Lawrence grade.

OBJECTIVE: To determine the predictive value of bone scintigraphy with respect to joint space narrowing (JSN) in patients with knee osteoarthritis (OA), based on quantitative estimates of uptake of a bone-seeking radiopharmaceutical and fluoroscopically standardized knee radiography. METHODS: Our study group included 86 obese women, 45-64 years of age, with unilateral knee OA. Uptake of technetium medronate (99mTc-MDP) in late-phase bone scans was measured at baseline in 5 regions of interest (ROI: lateral femur, lateral tibia, medial femur, medial tibia, and patellofemoral joint) and was adjusted for uptake (i.e., expressed as a ratio to uptake) in a ROI in the shaft of the tibia, which served as an internal standard. Each subject underwent a fluoroscopically standardized radiograph of the knees (semiflexed anteroposterior view) at baseline, 16, and 30 months. Magnification-corrected minimum joint space width in the medial tibiofemoral compartment was measured by digital image analysis. RESULTS: Followup was available for 79 patients (92%) at 16 months and from 73 patients (85%) at 30 months. On average, 99mTc-MDP uptake in each ROI and in the whole knee (average of 4 tibiofemoral ROI) was 170-240% of that in the tibial shaft. Uptake in the medial tibia and in the whole knee was significantly correlated with JSN at 16 and 30 months (r = 0.22-0.30, p < 0.05). However, after controlling for age, body mass index, and radiographic severity of OA, the associations between adjusted uptake and JSN were not significant. The rate of JSN in knees of patients with OA who were in the lower tertile with respect to adjusted 99mTc-MDP uptake in the medial tibia was significantly less rapid than in patients in whom uptake was in the middle and upper tertiles (0.04 mm/yr vs 0.18 mm/yr; p < 0.05). However, after controlling for overall radiographic severity at baseline, the difference in 30-month JSN in knees of patients with OA in the lower versus middle/upper tertiles was not significant. CONCLUSION: The predictive utility of bone scintigraphy is confirmed by these data. However, its practical value is considerably diminished, insofar as similarly predictive information may be obtained by routine radiographic examination, without the radiation exposure and cost of scintigraphy.

Cartilage, Articular↗

Detection of radiographic joint space narrowing in subjects with knee osteoarthritis: longitudinal comparison of the metatarsophalangeal and semiflexed anteroposterior views.

OBJECTIVE: Although recent protocols for standardized knee radiography afford highly reproducible radioanatomic alignment of the joint and measurement of joint space width (JSW) in repeat radiographs acquired on the same day, the sensitivity of these techniques to joint space narrowing (JSN) over time in subjects with knee osteoarthritis (OA) is unknown. The present study was undertaken to compare the metatarsophalangeal (MTP) view and the semiflexed anteroposterior (AP) view with respect to sensitivity to JSN in knee OA. METHODS: In 49 subjects with definite knee OA, 2 MTP radiographs and 1 semiflexed AP radiograph were obtained at baseline. Each examination was repeated 14 months later. In MTP views, minimum JSW and the distance between the anterior and posterior margins of the medial tibial plateau (intermargin distance [IMD], an indicator of parallel alignment of the tibial plateau and the x-ray beam) were measured with a pair of calipers and a magnifying lens fitted with a graticule. JSW in semiflexed AP views was measured by digital image analysis. RESULTS: The mean of within-knee standard deviations of JSW in the baseline MTP examinations (n = 52 OA knees) was 0.24 mm (coefficient of variation 5.8%). Although IMDs in the 2 baseline MTP views were very highly correlated (+0.88), IMDs in the serial examinations were only moderately correlated (+0.45). Serial MTP views showed a small increase in mean JSW over 14 months that was not significantly greater than zero (mean +/- SD +0.09 +/- 0.66 mm; P not significant). In contrast, concurrent semiflexed AP examinations showed a marginally significant decrease in mean JSW (-0.09 +/- 0.31 mm; P = 0.10). CONCLUSION: These results demonstrate that evidence of the short-term reproducibility of a radiographic protocol is an insufficient basis on which to predict the quality of its longitudinal performance.

Aged↗

Chloride channel 7 (ClCN7) gene mutations and autosomal dominant osteopetrosis, type II.

UNLABELLED: ADO2 is an uncommon sclerosing bone disorder with incomplete penetrance and variable expressivity. Positional candidate studies were performed to identify the gene responsible for ADO2. In 11 of 12 kindreds, five different missense mutations were identified in the ClCN7 gene, indicating the genetic basis and possible dominant negative mechanism for ADO2. INTRODUCTION: Autosomal dominant osteopetrosis, type II (ADO2) is an uncommon sclerosing bone disorder with a distinct radiographic appearance and unique clinical characteristics. We present the results from our genetic studies designed to identify the ADO2 gene through a positional candidate approach. METHODS: Having identified 12 families with ADO2, we initially performed linkage studies in our seven largest kindreds and observed a summed maximum LOD score of 15.91 at marker D16S521 on chromosome 16p13.3. Critical meiotic recombination events further narrowed the putative gene region to a 7.6-cM area, which contains the candidate genes ATP6L and chloride channel 7 (ClCN7). We screened affected individuals from each ADO2 family for mutations in these genes using direct sequencing. Identified mutations were subsequently confirmed through direct sequencing or restriction fragment length polymorphism analysis. We then calculated the overall disease penetrance rate after all available at-risk family members were assessed for ClCN7 gene mutations. RESULTS: No ATP6L mutations were identified in affected subjects. Subsequently, as CICN7 gene mutations were being reported, we identified two novel (L213F, R762L) and three known (G215R, R286W, R767W) missense mutations in 11 kindreds. In our large sample, disease penetrance was 66% (62 clinically affected individuals/94 subjects with the gene mutation). To date, nine different mutations have been discovered in the ClCN7 gene in 22 of 23 ADO2 families studied. CONCLUSIONS: We conclude that mutations in the CICN7 gene are responsible for ADO2 and that genetic heterogeneity is unlikely to exist in this disorder. Based on the preponderance of missense mutations and the knowledge that chloride channels probably function as dimers, it seems that heterozygous ClCN7 gene mutations may cause ADO2 through a dominant negative mechanism.

Chloride Channels↗

Field test of the reproducibility of the semiflexed metatarsophalangeal view in repeated radiographic examinations of subjects with osteoarthritis of the knee.

OBJECTIVE: To estimate the reproducibility of the semiflexed metatarsophalangeal (MTP) view in repeat radiographic examinations of the knee of subjects with osteoarthritis (OA) with respect to radioanatomic alignment of the medial tibial plateau and the central x-ray beam and the precision of measurements of minimum medial tibiofemoral joint space width (JSW). METHODS: Thirty-eight subjects with definite knee OA underwent 2 semiflexed MTP examinations on the same day. Radioanatomic alignment of the medial tibial plateau and the x-ray beam (distance between anterior and posterior margins of the plateau) was measured manually (Lequesne method). Manual measurements of the JSW in repeat radiographs also were obtained. The reproducibility of JSW measurements was estimated by the method of Bland and Altman. RESULTS: Only 29% of the initial semiflexed MTP radiographs exhibited satisfactory radioanatomic alignment (intermargin distance < or =1 mm). However, intermargin distances in initial and repeat radiographs were highly correlated (r = 0.86, P < 0.01). In 89% of knees, the intermargin distance in the first examination was reproduced (+/- 1 mm) in the second examination. The standard error of measurement (mean of within-knee standard deviations of repeat JSW values) was 0.30 mm. The magnitude of discrepancy between repeat measurements of JSW was related positively to overall radiographic severity of knee OA (P < 0.05). CONCLUSION: The semiflexed MTP protocol affords highly reproducible radioanatomic positioning of the knee, although misalignment of the medial tibial plateau and the x-ray beam occurs in >70% of cases. Precision of measurement of JSW in the semiflexed MTP view approaches that associated with fluoroscopically assisted positioning protocols. However, the consequences of poor, albeit reproducible, alignment of the knee in serial semiflexed MTP radiographs in longitudinal studies of OA progression are currently unknown.

Aged↗

Sports-related injuries of the shoulder: instability.

With current technology a properly conceived imaging strategy can demonstrate instability lesions in the athlete. Plain radiographs can diagnose acute dislocations and assess successful reductions. In addition, plain radiographs can demonstrate Hill-Sachs and, more importantly for instability, osseous Bankart lesions. In the acute setting, conventional MRI nicely demonstrates labral Bankart, ligamentous. and tendonous injuries that result from dislocations and can lead to instability. In the setting of chronic instability, MR arthrography best evaluates these lesions. In the postoperative shoulder, muitislice CT arthrography may be the modality of choice, but further investigation is needed. If large series validate multislice CT arthrography for the evaluation of postoperative instability lesions, this technique may become widely used in athletes and in other populations where recurrent instability is a problem. Other imaging strategies may also find an increasing central role in evaluating shoulder instability lesions. Indirect MR arthrography, for example, may have a role in assessing these lesions in athletes . Another intriguing technology for this application is the development of high field (0.5 Tesla or greater) open magnets. In such a setting, physiological relationships in the shoulder with motion and stress may be evaluated. Such imaging may farther illuminate our understanding of the stable and unstable shoulder. Unfortunately, with all imaging modalities, whether widely used or experimental, outcomes data is Lacking. How do the various imaging modalities and strategies affect patient outcome? The answer is unknown and needs to be answered before a definitive patient work-up for shoulder instability can be established.

Athletic Injuries↗

MR imaging in nonneoplastic muscle disorders of the lower extremity.

The exquisite tissue contrast and multiplanar capability of MRI make it the optimal imaging modality for diagnosing muscle injuries and other muscle disorders. These examinations can be performed with increasing speed because of improvements in gradient strength and software and coil design. Presently, some of the limitations of MRI of muscle relate to the lack of specificity of the findings. The advent of functional muscle MR[ will increase the understanding of human muscle diseases, and increasingly place MRI in a central role for diagnosis and follow-up analysis.

Adult↗

Technical considerations: CT and MR imaging in the postoperative orthopedic patient.

Cross-sectional imaging utilizing computed tomography (CT) and magnetic resonance (MR) imaging have become routine components in the imaging assessment of patients with musculoskeletal disease. Unfortunately, in the setting of a postoperative orthopedic patient with associated orthopedic metallic instrumentation, these imaging techniques are prone to artifacts resulting in image quality degradation. An understanding of the physical basis of such metal-related artifacts, and their appearance on CT and MR imaging, has led investigators to the implementation of a series of techniques and modifications to imaging protocols to decrease CT and MR imaging artifacts in the vicinity of metallic instrumentation. Utilizing such modified imaging techniques, consistent, improved CT and MR image quality may be achieved in imaging of the postoperative orthopedic patient.

Artifacts↗

Measurement of tartrate-resistant acid phosphatase and the brain isoenzyme of creatine kinase accurately diagnoses type II autosomal dominant osteopetrosis but does not identify gene carriers.

Autosomal dominant osteopetrosis type II (ADO2) is typically diagnosed from radiographs, which demonstrate the pathognomonic findings of osteosclerosis and endobone formation. Individuals with ADO2 also have elevated serum levels of tartrate-resistant acid phosphatase (TRAP) and the BB isoenzyme of creatine kinase (CK-BB). In the current study, we tested the utility of these enzymes in making or refuting a diagnosis of ADO2. Furthermore, because ADO2 has incomplete penetrance, we examined whether TRAP and CK-BB were helpful in identifying gene carriers. We studied eight families, measured serum levels of TRAP and CK-BB in 52 affected individuals and 12 obligate gene carriers, and compared their values with age-matched controls. Our results demonstrate that affected patients have significantly elevated levels of both TRAP and CK-BB. In contrast, gene carriers have values that are not different from controls. Furthermore, in our study population, TRAP and CK-BB have a high diagnostic sensitivity and specificity, particularly in children. From this large study of ADO2 patients and carriers, we conclude that: 1) TRAP and CK-BB are significantly elevated in patients with ADO2, 2) obligate carriers cannot be adequately identified by measurement of these analytes, and 3) TRAP and CK-BB are highly sensitive and specific diagnostic tests that can efficiently and effectively screen high-risk individuals who have not had previous radiographic assessment.

Acid Phosphatase↗