Literature DB >> 24900027

Use of gamma correction pinhole bone scans in trauma.

Yong-Whee Bahk1, Yong-An Chung2, Jung Mee Park3.   

Abstract

(99m)Tc-hydroxydiphosphonate (HDP) bone scanning is a classic metabolic nuclear imaging method and the most frequently performed examination. Clinically, it has long been cherished as an indispensable diagnostic screening tool and for monitoring of patients with bone, joint, and soft tissue diseases. The HDP bone scan, the pinhole scan in particular, is known for its ability to detect increased, decreased, or defective tracer uptake along with magnified anatomy. Unfortunately, however, the findings of such uptake changes are not specific in many traumatic bone disorders, especially when lesions are minute and complex. This study discusses the recently introduced gamma correction pinhole bone scan (GCPBS), emphasizing its usefulness in the diagnosis of traumatic bone diseases including occult fractures; cervical sprains; whiplash injury; bone marrow edema; trabecular microfractures; evident, gaping, and stress fractures; and fish vertebra. Indeed, GCPBS can remarkably enhance the diagnostic feasibility of HDP pinhole bone scans by refining the topography, pathologic anatomy, and altered chemical profile of the traumatic diseases in question. The fine and precise depiction of anatomic and metabolic changes in these diseases has been shown to be unique to GCPBS, and they are not appreciated on conventional radiographs, multiple detector CT, or ultrasonographs. It is true that MR imaging can portray proton change, but understandably, it is a manifestation that is common to any bone disease.

Entities:  

Keywords:  Bone trauma; Gamma correction bone scan

Year:  2012        PMID: 24900027      PMCID: PMC4042975          DOI: 10.1007/s13139-011-0121-9

Source DB:  PubMed          Journal:  Nucl Med Mol Imaging        ISSN: 1869-3474


  19 in total

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Journal:  Radiol Clin North Am       Date:  1993-07       Impact factor: 2.303

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9.  Depiction of Nidi and Fibrovascular Zones of Osteoid Osteomas Using Gamma-Correction Tc-99m HDP Pinhole Bone Scan and Conventional Radiograph, and Correlation with CT, MRI, and PVC Phantom Imaging.

Authors:  Yong-Whee Bahk; Sung Hoon Kim; Yong-An Chung; Won-Jong Bahk; Jung Mee Park; You Mee Kang; Woo Hee Choi; Young Ha Park; Hyung Sun Sohn; Byung Ki Kim; Soo Kyo Chung
Journal:  Nucl Med Mol Imaging       Date:  2011-01-11

10.  Pinhole collimator scintigraphy in differential diagnosis of metastasis, fracture, and infections of the spine.

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Journal:  J Nucl Med       Date:  1987-04       Impact factor: 10.057

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  1 in total

1.  Pixelized Measurement of (99m)Tc-HDP Micro Particles Formed in Gamma Correction Phantom Pinhole Scan: a Reference Study.

Authors:  Joo-Young Jung; Gi Jeong Cheon; Yun-Sang Lee; Seunggyun Ha; Mi-Hye Chae; Yong-An Chung; Do Kyun Yoon; Yong-Whee Bahk
Journal:  Nucl Med Mol Imaging       Date:  2016-01-13
  1 in total

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