スパイラル断層撮影
- 関
- helical computed tomography、helical CT、spiral CT
WordNet
- form a spiral; "The path spirals up the mountain"
- a continuously accelerating change in the economy
- a plane curve traced by a point circling about the center but at increasing distances from the center
- ornament consisting of a curve on a plane that winds around a center with an increasing distance from the center (同)volute
- flying downward in a helical path with a large radius
- X-ray machine in which a computer builds a detailed image of a particular plane through an object from multiple X-ray measurements
PrepTutorEJDIC
- らせん(helix) / らせん状のもの;らせんばね;巻き貝 / (物価・賃金などの)らせん状上昇(下降) / らせん状の /… ‘を'らせん形にする / らせん形になる;らせん状に動く
- …'を'計算する,見積もる / 計算する,算定する
Wikipedia preview
出典(authority):フリー百科事典『ウィキペディア(Wikipedia)』「2015/10/06 09:52:48」(JST)
[Wiki en表示]
Spiral computed tomography |
Diagnostics |
MeSH |
D036542 |
Spiral computed tomography is a computed tomography[1] technology involving movement in a helical pattern for the purpose of increasing resolution. Most modern hospitals currently use spiral CT scanners.
CT beam types have included parallel beams, fan-beams, and cone-beams.[2]
Contents
- 1 SSCT and MSCT
- 2 Helical (or spiral) cone beam computed tomography
- 3 References
- 4 External links
SSCT and MSCT
Willi Kalender, who is credited with the invention prefers the term Spiral scan CT,[3] arguing that spiral is synonymous with helical: for example as used in 'spiral staircase'.[4]
Since its invention by Kalender in the 1980s, helical scan CT machines have steadily increased the number of rows of detectors (slices) they deploy. The prototype 16 multi-slice scanner was introduced in 2001 and in 2004, 64 multislice scanners are on the market. These can produce an image in less than a second and thus can obtain images of the heart and its blood vessels (coronary vessels) as if frozen in time.
The earliest devices, developed in 1989, were called "SSCT", for "single-slice spiral computed tomography". In 1998, "MSCT" or "multi-slice spiral computed tomography" was introduced.[5]
Helical (or spiral) cone beam computed tomography
Further information: Cone beam computed tomography
In cone-beam computed tomography (commonly abbreviated CBCT), the x-ray beam is conical.[6]
Helical (or spiral) cone beam computed tomography is a type of three-dimensional computed tomography (CT) in which the source (usually of x-rays) describes a helical trajectory relative to the object while a two-dimensional array of detectors measures the transmitted radiation on part of a cone of rays emanating from the source.
In practical helical cone beam x-ray CT machines, the source and array of detectors are mounted on a rotating gantry while the patient is moved axially at a uniform rate. Earlier x-ray CT scanners imaged one slice at a time by rotating source and one-dimensional array of detectors while the patient remained static. The helical scan method reduces the x-ray dose to the patient required for a given resolution while scanning more quickly. This is however at the cost of greater mathematical complexity in the reconstruction of the image from the measurements.
References
- ^ Avinash C. Kak and Malcolm Slaney (2001). Principles of Computerized Tomographic Imaging. Society for Industrial and Applied Mathematics ISBN 978-0-89871-494-4 / ISBN 0-89871-494-X.
- ^ Alan Conrad Bovik (2009). The essential guide to image processing. Academic Press. pp. 743–. ISBN 978-0-12-374457-9. Retrieved 4 June 2011.
- ^ Kalender WA (1994). "Technical foundations of spiral CT" Semin Ultrasound CT MR 15: (2) 81-89.
- ^ Kalender WA (1994). "Spiral or helical CT: right or wrong?" Radiology 193: (2) 583.
- ^ Robert Cierniak (12 January 2011). X-Ray Computed Tomography in Biomedical Engineering. Springer. pp. 31–. ISBN 978-0-85729-026-7. Retrieved 4 June 2011.
- ^ Helical Cone-Beam CT at the US National Library of Medicine Medical Subject Headings (MeSH)
External links
- Interview with Kalender
- Principles of Computerized Tomographic Imaging
- Medical testing : Medical imaging
- Radiology
- (ICD-9-CM V3 87–88, ICD-10-PCS B, CPT 70010–79999)
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X-ray/
medical radiography/
Industrial radiography |
2D |
Medical: |
- Pneumoencephalography
- Dental radiography
- Sialography
- Myelography
- CXR
- AXR
- KUB
- DXA/DXR
- Upper gastrointestinal series/Small-bowel follow-through/Lower gastrointestinal series
- Cholangiography/Cholecystography
- Mammography
- Pyelogram
- Cystography
- Arthrogram
- Hysterosalpingography
- Skeletal survey
- Angiography
- Angiocardiography
- Aortography
- Venography
- Lymphogram
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Industrial: |
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3D / XCT |
Medical: |
- CT pulmonary angiogram
- Computed tomography of the heart
- Computed tomography of the abdomen and pelvis
- CT angiography
- Computed tomography of the head
- Quantitative computed tomography
- Spiral computed tomography
- High resolution CT
- Whole body imaging
- X-ray microtomography
- Electron beam tomography
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Industrial: |
- Industrial computed tomography
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Other |
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MRI |
- Magnetic resonance imaging of the brain
- MR neurography
- Cardiac MRI/Cardiac MRI perfusion
- MR angiography
- MR cholangiopancreatography
- Breast MRI
- Functional MRI
- Diffusion MRI
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Ultrasound |
- Echocardiography
- Doppler echocardiography
- Intravascular
- Gynecologic
- Obstetric
- Echoencephalography
- Transcranial Doppler
- Abdominal ultrasonography
- Transrectal
- Breast ultrasound
- Transscrotal ultrasound
- Carotid ultrasonography
- Contrast-enhanced
- 3D ultrasound
- Endoscopic ultrasound
- Emergency ultrasound
- FAST
- Pre-hospital ultrasound
- Duplex
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Radionuclide |
2D / scintigraphy |
- Cholescintigraphy
- Scintimammography
- Ventilation/perfusion scan
- Radionuclide ventriculography
- Radionuclide angiography
- Radioisotope renography
- Sestamibi parathyroid scintigraphy
- Radioactive iodine uptake test
- Bone scintigraphy
- Immunoscintigraphy
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full body: |
- Octreotide scan
- Gallium 67 scan
- Indium-111 WBC scan
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3D / ECT |
- SPECT
- gamma ray: Myocardial perfusion imaging
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PET (positron): |
- Brain PET
- Cardiac PET
- PET mammography
- PET-CT
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Optical laser |
- Optical tomography
- Optical coherence tomography
- Confocal microscopy
- Endomicroscopy
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Thermography |
- non-contact thermography
- contact thermography
- dynamic angiothermography
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Respiratory system surgeries and other procedures (ICD-9-CM V3 21–22, 30–34, ICD-10-PCS 0B)
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Upper RT |
- nose
- Rhinoplasty
- Septoplasty
- Rhinectomy
- Rhinomanometry
- sinus
- Sinusotomy
- larynx
- Laryngoscopy
- Laryngectomy
- Laryngotomy
- Thyrotomy
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Lower RT |
- trachea
- Cricothyrotomy
- Tracheoesophageal puncture
- Tracheotomy
- bronchus
- Bronchoscopy
- lung
- Pneumonectomy
- Lobectomy
- Wedge resection
- Lung transplantation
- Decortication of lung
- Heart-lung transplant
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Chest wall, pleura,
mediastinum, and diaphragm |
- pleura/pleural cavity
- Thoracentesis
- Pleurodesis
- Thoracoscopy
- Thoracotomy
- Chest tube
- mediastinum
- Mediastinoscopy
- Nuss procedure
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Medical imaging |
- Bronchography
- CT pulmonary angiogram
- High resolution CT
- Spiral CT
- Ventilation/perfusion scan
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CPRs |
- Pneumonia severity index
- CURB-65
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Lung function test |
- Body plethysmography
- Spirometry
- Bronchial challenge test
- Capnography
- Diffusion capacity
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Cytology |
- Sputum culture
- Bronchoalveolar lavage
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Respiratory therapy/
intubation |
- Mechanical ventilation
- Positive pressure ventilation
- Artificial respiration
- Nebulizer
- Hyperbaric medicine
- Oxygen therapy
- Decompression chamber
- Heliox
- Negative pressure ventilator
- Postural drainage
- CPR
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Index of the respiratory system
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Description |
- Anatomy
- Physiology
- Development
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Disease |
- Congenital
- Neoplasms and cancer
- Chest trauma
- Infection
- common cold
- pneumonia
- tuberculosis
- Other
- Symptoms and signs
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Treatment |
- Procedures
- Drugs
- nasal
- throat
- obstructive airway diseases
- cough and cold
- histaminergics
- pulmonary arterial hypertension
- other
- Surgery
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UpToDate Contents
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- 1. 胸部CTの原理 principles of computed tomography of the chest
- 2. 急性肺塞栓症の診断 diagnosis of acute pulmonary embolism
- 3. 肝胆道のCT撮影 computed tomography of the hepatobiliary tract
- 4. 腎血管性高血圧の診断 establishing the diagnosis of renovascular hypertension
- 5. 肺動静脈奇形:治療 pulmonary arteriovenous malformations treatment
English Journal
- Restudy of malformations of the internal auditory meatus, cochlear nerve canal and cochlear nerve.
- Li Y1, Yang J, Liu J, Wu H.
- European archives of oto-rhino-laryngology : official journal of the European Federation of Oto-Rhino-Laryngological Societies (EUFOS) : affiliated with the German Society for Oto-Rhino-Laryngology - Head and Neck Surgery.Eur Arch Otorhinolaryngol.2015 Jul;272(7):1587-96. doi: 10.1007/s00405-014-2951-4. Epub 2014 Mar 6.
- The present study aims to restudy the correlation between the internal auditory meatus (IAM), the cochlear nerve canal (CNC), the cochlear nerve (CN) and inner ear malformations. In this retrospective study design, the abnormal diameter of the IAM, CNC and CN in patients with any kind of inner ear m
- PMID 24599597
- Diagnostic value of 99mTc-MDP SPECT/spiral CT combined with three-phase bone scintigraphy in assessing suspected bone tumors in patients with no malignant history.
- Zhang Y1, Shi H, Li B, Xiu Y, Cai L, Gu Y, Chen S.
- Nuclear medicine communications.Nucl Med Commun.2015 Jul;36(7):686-94. doi: 10.1097/MNM.0000000000000299.
- INTRODUCTION: Three-phase bone scintigraphy using technetium-99m-methylene diphosphonate is used to diagnose skeletal lesions, whereas single-photon emission computed tomography/computed tomography (SPECT/CT) improves the diagnostic accuracy of bone disease. We investigated the usefulness of SPECT/C
- PMID 25757199
- Use of Multisequence 3.0T MRI to Detect Severe Traumatic Brain Injury and Predict the Outcome.
- Yuan L1, Wei X2, Xu C1, Jin Y1, Wang G1, Li Y2, Tian H1, Chen S1.
- The British journal of radiology.Br J Radiol.2015 Jun 12:20150129. [Epub ahead of print]
- OBJECTIVES: The aim of this study was to evaluate multisequence 3.0T magnetic resonance imaging (MRI) in the detection of severe TBI and in predicting the outcome.METHODS: Thirty-five patients with severe TBI were prospectively enrolled and multisequence 3.0T MRI was performed 4-8 weeks post injury.
- PMID 26067919
Japanese Journal
- Pararenal Lymphatic Cyst Infection Caused by Helicobacter cinaedi
- Akashi Yusaku,Igarashi Jun,Suzuki Hiromichi,Rimbara Emiko,Shibayama Keigo,Nin Sayaka,Tamai Kiyoko,Yaguchi Yuji,Shiigai Masanari,Oikawa Takehiro,Suzuki Masatsune
- Internal Medicine 54(11), 1437-1440, 2015
- … He had been previously diagnosed with lymphangioma, and abdominal computed tomography showed pararenal cysts with fat stranding around the left kidney, of which infection was subsequently confirmed on magnetic resonance imaging. … Gram-negative spiral bacilli were isolated from two sets of blood cultures, and Helicobacter cinaedi was identified using 16S rRNA sequencing. …
- NAID 130005072934
- 高速二重螺旋スキャンにおけるCT-AECの応答特性評価 (「胸部領域」論文特集号)
- Performance of Low-dose CT Screening for Detecting Lung Cancer at the Early Stage and the Estimated Tumor Growth Rate According to the Smoking Status/Age
- Sone Shusuke,Kondo Ryoichi,Ishii Keiko,Honda Takayuki,Yoshida Kazuo,Hanaoka Takaomi,Yoshizawa Akihiko
- 肺癌 54(7), 937-946, 2014
- … To assess the utility of low-dose spiral chest CT (LDCT) screening for detecting lung cancer at the early stage and to examine the tumor volume doubling time (TVDT) according to the smoking status and age. …
- NAID 130004880449
Related Links
- Spiral computed tomography is a computed tomography technology involving movement in a helical pattern for the purpose of increasing resolution. Most modern hospitals currently use spiral CT scanners. CT beam types have included ...
★リンクテーブル★
[★]
ヘリカル断層撮影、ヘリカルコンピュータ断層撮影
- 関
- helical CT、spiral computed tomography、spiral CT
[★]
- 関
- helical computed tomography、helical CT、spiral computed tomography
[★]
- 英
- spiral computed tomography、spiral CT
- 関
- ヘリカルCT、スパイラルCT、ヘリカル断層撮影
[★]
- 計算する、算出する、コンピュータ処理する、コンピュータ化する
- 関
- calculate、calculation、computation、computerization、computerize
[★]
- 関
- helical、helices、helix
[★]
- 関
- tomographic、tomography
[★]
コンピュータ断層撮影 コンピュータ断層撮影法 CT