Super scan in a patient with diffuse bone metastases from intracranial glioma. 2007

Takayoshi Shinya, and Shiro Akaki, and Takeshi Ogata, and Shuhei Sato, and Susumu Kanazawa
Department of Radiology, Okayama University Medical School, Okayama, Japan. midnight-2005@nifty.com

UI MeSH Term Description Entries
D008279 Magnetic Resonance Imaging Non-invasive method of demonstrating internal anatomy based on the principle that atomic nuclei in a strong magnetic field absorb pulses of radiofrequency energy and emit them as radiowaves which can be reconstructed into computerized images. The concept includes proton spin tomographic techniques. Chemical Shift Imaging,MR Tomography,MRI Scans,MRI, Functional,Magnetic Resonance Image,Magnetic Resonance Imaging, Functional,Magnetization Transfer Contrast Imaging,NMR Imaging,NMR Tomography,Tomography, NMR,Tomography, Proton Spin,fMRI,Functional Magnetic Resonance Imaging,Imaging, Chemical Shift,Proton Spin Tomography,Spin Echo Imaging,Steady-State Free Precession MRI,Tomography, MR,Zeugmatography,Chemical Shift Imagings,Echo Imaging, Spin,Echo Imagings, Spin,Functional MRI,Functional MRIs,Image, Magnetic Resonance,Imaging, Magnetic Resonance,Imaging, NMR,Imaging, Spin Echo,Imagings, Chemical Shift,Imagings, Spin Echo,MRI Scan,MRIs, Functional,Magnetic Resonance Images,Resonance Image, Magnetic,Scan, MRI,Scans, MRI,Shift Imaging, Chemical,Shift Imagings, Chemical,Spin Echo Imagings,Steady State Free Precession MRI
D008297 Male Males
D008875 Middle Aged An adult aged 45 - 64 years. Middle Age
D011877 Radionuclide Imaging The production of an image obtained by cameras that detect the radioactive emissions of an injected radionuclide as it has distributed differentially throughout tissues in the body. The image obtained from a moving detector is called a scan, while the image obtained from a stationary camera device is called a scintiphotograph. Gamma Camera Imaging,Radioisotope Scanning,Scanning, Radioisotope,Scintigraphy,Scintiphotography,Imaging, Gamma Camera,Imaging, Radionuclide
D001859 Bone Neoplasms Tumors or cancer located in bone tissue or specific BONES. Bone Cancer,Cancer of Bone,Cancer of the Bone,Neoplasms, Bone,Bone Neoplasm,Neoplasm, Bone
D001932 Brain Neoplasms Neoplasms of the intracranial components of the central nervous system, including the cerebral hemispheres, basal ganglia, hypothalamus, thalamus, brain stem, and cerebellum. Brain neoplasms are subdivided into primary (originating from brain tissue) and secondary (i.e., metastatic) forms. Primary neoplasms are subdivided into benign and malignant forms. In general, brain tumors may also be classified by age of onset, histologic type, or presenting location in the brain. Brain Cancer,Brain Metastases,Brain Tumors,Cancer of Brain,Malignant Primary Brain Tumors,Neoplasms, Intracranial,Benign Neoplasms, Brain,Brain Neoplasm, Primary,Brain Neoplasms, Benign,Brain Neoplasms, Malignant,Brain Neoplasms, Malignant, Primary,Brain Neoplasms, Primary Malignant,Brain Tumor, Primary,Brain Tumor, Recurrent,Cancer of the Brain,Intracranial Neoplasms,Malignant Neoplasms, Brain,Malignant Primary Brain Neoplasms,Neoplasms, Brain,Neoplasms, Brain, Benign,Neoplasms, Brain, Malignant,Neoplasms, Brain, Primary,Primary Brain Neoplasms,Primary Malignant Brain Neoplasms,Primary Malignant Brain Tumors,Benign Brain Neoplasm,Benign Brain Neoplasms,Benign Neoplasm, Brain,Brain Benign Neoplasm,Brain Benign Neoplasms,Brain Cancers,Brain Malignant Neoplasm,Brain Malignant Neoplasms,Brain Metastase,Brain Neoplasm,Brain Neoplasm, Benign,Brain Neoplasm, Malignant,Brain Neoplasms, Primary,Brain Tumor,Brain Tumors, Recurrent,Cancer, Brain,Intracranial Neoplasm,Malignant Brain Neoplasm,Malignant Brain Neoplasms,Malignant Neoplasm, Brain,Neoplasm, Brain,Neoplasm, Intracranial,Primary Brain Neoplasm,Primary Brain Tumor,Primary Brain Tumors,Recurrent Brain Tumor,Recurrent Brain Tumors,Tumor, Brain
D005910 Glioma Benign and malignant central nervous system neoplasms derived from glial cells (i.e., astrocytes, oligodendrocytes, and ependymocytes). Astrocytes may give rise to astrocytomas (ASTROCYTOMA) or glioblastoma multiforme (see GLIOBLASTOMA). Oligodendrocytes give rise to oligodendrogliomas (OLIGODENDROGLIOMA) and ependymocytes may undergo transformation to become EPENDYMOMA; CHOROID PLEXUS NEOPLASMS; or colloid cysts of the third ventricle. (From Escourolle et al., Manual of Basic Neuropathology, 2nd ed, p21) Glial Cell Tumors,Malignant Glioma,Mixed Glioma,Glial Cell Tumor,Glioma, Malignant,Glioma, Mixed,Gliomas,Gliomas, Malignant,Gliomas, Mixed,Malignant Gliomas,Mixed Gliomas,Tumor, Glial Cell,Tumors, Glial Cell
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D013669 Technetium Tc 99m Medronate A gamma-emitting radionuclide imaging agent used primarily in skeletal scintigraphy. Because of its absorption by a variety of tumors, it is useful for the detection of neoplasms. Tc-99m MDP,Technetium Methylene Diphosphonate,99mTc-MDP,99mTc-Methylene Diphosphonate,Tc-99 Medronate,Tc-99m Methylene Diphosphonate,Technetium Tc 99m Methylenediphosphonate,99mTc Methylene Diphosphonate,Diphosphonate, 99mTc-Methylene,Diphosphonate, Tc-99m Methylene,Diphosphonate, Technetium Methylene,Medronate, Tc-99,Methylene Diphosphonate, Tc-99m,Methylene Diphosphonate, Technetium,Tc 99 Medronate,Tc 99m Methylene Diphosphonate
D019275 Radiopharmaceuticals Compounds that are used in medicine as sources of radiation for radiotherapy and for diagnostic purposes. They have numerous uses in research and industry. (Martindale, The Extra Pharmacopoeia, 30th ed, p1161) Radiopharmaceutical

Related Publications

Takayoshi Shinya, and Shiro Akaki, and Takeshi Ogata, and Shuhei Sato, and Susumu Kanazawa
February 1977, AJR. American journal of roentgenology,
Takayoshi Shinya, and Shiro Akaki, and Takeshi Ogata, and Shuhei Sato, and Susumu Kanazawa
April 2004, Seminars in nuclear medicine,
Takayoshi Shinya, and Shiro Akaki, and Takeshi Ogata, and Shuhei Sato, and Susumu Kanazawa
January 2021, Neuro-oncology advances,
Takayoshi Shinya, and Shiro Akaki, and Takeshi Ogata, and Shuhei Sato, and Susumu Kanazawa
September 2014, BMJ case reports,
Takayoshi Shinya, and Shiro Akaki, and Takeshi Ogata, and Shuhei Sato, and Susumu Kanazawa
August 1989, Clinical nuclear medicine,
Takayoshi Shinya, and Shiro Akaki, and Takeshi Ogata, and Shuhei Sato, and Susumu Kanazawa
July 2016, European journal of nuclear medicine and molecular imaging,
Takayoshi Shinya, and Shiro Akaki, and Takeshi Ogata, and Shuhei Sato, and Susumu Kanazawa
January 2009, Internal medicine (Tokyo, Japan),
Takayoshi Shinya, and Shiro Akaki, and Takeshi Ogata, and Shuhei Sato, and Susumu Kanazawa
January 1984, Seminars in nuclear medicine,
Takayoshi Shinya, and Shiro Akaki, and Takeshi Ogata, and Shuhei Sato, and Susumu Kanazawa
January 2020, World journal of nuclear medicine,
Takayoshi Shinya, and Shiro Akaki, and Takeshi Ogata, and Shuhei Sato, and Susumu Kanazawa
January 1992, Journal of postgraduate medicine,
Copied contents to your clipboard!