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词条 Cholescintigraphy
释义

  1. Radiotracers

  2. Etymology and pronunciation

  3. References

{{Infobox interventions |
  Name        = Cholescintigraphy |  Image       = HIDA.jpg |  Caption     = Normal hepatobiliary scan (HIDA scan). The nuclear medicine hepatobiliary scan is clinically useful in the detection of the gallbladder disease. |  ICD10       = |  ICD9        = {{ICD9proc|92.02}} |  MeshID      = |  OPS301      = {{OPS301|3-707}}.6 |  OtherCodes  = |

}}

Cholescintigraphy or hepatobiliary scintigraphy is scintigraphy of the hepatobiliary tract, including the gallbladder and bile ducts. The image produced by this type of medical imaging, called a cholescintigram, is also known by other names depending on which radiotracer is used, such as HIDA scan, PIPIDA scan, DISIDA scan, or BrIDA scan. Cholescintigraphic scanning is a nuclear medicine procedure to evaluate the health and function of the gallbladder and biliary system. A radioactive tracer is injected through any accessible vein and then allowed to circulate to the liver, where it is excreted into the bile ducts and stored by the gallbladder[1] until released into the duodenum.

In the absence of gallbladder disease, the gallbladder is visualized within 1 hour of the injection of the radioactive tracer. If the gallbladder is not visualized within 4 hours after the injection, this indicates either cholecystitis or cystic duct obstruction, such as by cholelithiasis (gallstone formation).[2] This investigation is usually conducted after an ultrasonographic examination of the abdominal right upper quadrant for a patient presenting with abdominal pain. If the noninvasive ultrasound examination fails to demonstrate gallstones, or other obstruction to the gallbladder or biliary tree, in an attempt to establish a cause of right upper quadrant pain, a cholescintigraphic scan can be performed as a more sensitive and specific test. Cholescintigraphic scans are not generally a first-line form of imaging owing to their increased cost and invasiveness.[3]

Cholescintigraphy for acute cholecystitis has sensitivity of 97%, specificity of 94%.[4] Several investigators have found the sensitivity being consistently higher than 90% though specificity has varied from 73–99%, yet compared to ultrasonography, cholescintigraphy has proven to be superior.[5] The scan is also important to differentiate between neonatal hepatitis and biliary atresia, because an early surgical intervention in form of Kasai portoenterostomy or hepatoportoenterostomy can save the life of the baby as the chance of a successful operation after 3 months seriously decreases.[6]

Radiotracers

Most radiotracers for cholescintigraphy are metal complexes of iminodiacetic acid (IDA) with a radionuclide, usually technetium-99m. This metastable isotope has a half-life of 6 hours, so batches of radiotracer must be prepared as needed using a moly cow. A widely recognized trade name for the preparation kits is TechneScan. These radiopharmaceuticals include the following:[7][8]

Nonproprietary drug name (USP format) Common chemical name Acronym Comments
Technetium Tc 99m lidofenin hepatobiliary iminodiacetic acid;[9] dimethyl-iminodiacetic acid[7] HIDA An early and widely used tracer; not used as much anymore, as others have progressively replaced it,[10][11] but the term "HIDA scan" is sometimes used even when another tracer was involved, being treated as a catch-all synonym.
Technetium Tc 99m iprofenin paraisopropyl-iminodiacetic acid[7] PIPIDA
Technetium Tc 99m disofenin diisopropyl-iminodiacetic acid[7] DISIDA
Technetium Tc 99m mebrofenin trimethylbromo-iminodiaceticacid[9] BrIDA
  diethyl-iminodiacetic acid[7] EIDA Seems to have been a laboratory tracer but never widely used clinically
  parabutyl-iminodiacetic acid[7] PBIDA Seems to have been a laboratory tracer but never widely used clinically
    BIDA[12] Seems to have been a laboratory tracer but never widely used clinically
    DIDA[12] Seems to have been a laboratory tracer but never widely used clinically

Etymology and pronunciation

The word cholescintigraphy ({{IPAc-en|ˌ|k|oʊ|l|i|ˌ|s|ɪ|n|ˈ|t|ɪ|g|r|ə|f|i}}) uses combining forms of chole- + scinti(llation) + -graphy, most literally "bile + flash + recording".

References

1. ^{{cite web|url=http://www.mayoclinic.com/health/hida-scan/AN00424 |title=HIDA scan (cholescintigraphy): Why is it performed? |accessdate=2007-12-11 |last=Michael |first=Picco, M.D. |publisher=Mayo Clinic }}
2. ^{{cite journal|last1=Tulchinsky|first1=M.|last2=Ciak|first2=B. W.|last3=Delbeke|first3=D.|last4=Hilson|first4=A.|last5=Holes-Lewis|first5=K. A.|last6=Stabin|first6=M. G.|last7=Ziessman|first7=H. A.|title=SNM Practice Guideline for Hepatobiliary Scintigraphy 4.0|journal=Journal of Nuclear Medicine Technology|date=15 November 2010|volume=38|issue=4|pages=210–218|doi=10.2967/jnmt.110.082289|pmid=21078782|doi-access=free}}
3. ^{{cite journal|last1=Schirmer|first1=Bruce D.|last2=Winters|first2=Kathryne L.|last3=Edlich|first3=Richard F.|title=Cholelithiasis and Cholecystitis|journal=Journal of Long-Term Effects of Medical Implants|date=2005|volume=15|issue=3|pages=329–338|doi=10.1615/JLongTermEffMedImplants.v15.i3.90|pmid=16022643}}
4. ^{{cite journal|vauthors=Shea JA, Berlin JA, Escarce JJ, Clarke JR, Kinosian BP, Cabana MD | title=Revised estimates of diagnostic test sensitivity and specificity in suspected biliary tract disease. | journal=Arch Intern Med | year= 1994 | volume= 154 | issue= 22 | pages= 2573–81 | pmid=7979854 | doi= 10.1001/archinte.154.22.2573| pmc= | url=https://www.ncbi.nlm.nih.gov/entrez/eutils/elink.fcgi?dbfrom=pubmed&tool=sumsearch.org/cite&retmode=ref&cmd=prlinks&id=7979854 |display-authors=etal}}
5. ^{{cite book|author1=L. Santiago Medina|author2=C. Craig Blackmore|author3=Kimberly Applegate|title=Evidence-Based Imaging: Improving the Quality of Imaging in Patient Care|url=https://books.google.com/books?id=w-t6Ymr_Q6UC&pg=PA530|accessdate=23 August 2012|date=29 April 2011|publisher=Springer|isbn=978-1-4419-7776-2|page=530}}
6. ^{{cite book|author1=Jorge A. Soto|author2=Brian C. Lucey|title=Emergency Radiology: The Requisites|url=https://books.google.com/books?id=DBmCmecq718C&pg=PA380|accessdate=23 August 2012|date=27 April 2009|publisher=Elsevier Health Sciences|isbn=978-0-323-05407-2|page=380}}
7. ^{{Citation |last=Bobba |first=VV |display-authors=etal |year=1983 |title=Comparison of biokinetics and biliary imaging parameters of four Tc-99m iminodiacetic acid derivatives in normal subjects |journal=Clin Nucl Med |volume=8 |issue=2 |pages=70-75 |url= |pmid=6825355 |pmc= |doi= |postscript=.}}
8. ^{{Citation |last=Brown |first=PH |display-authors=etal |year=1982 |title=Radiation-dose calculation for five Tc-99m IDA hepatobiliary agents |journal=J Nucl Med |volume=23 |issue=11 |pages=1025-1030 |url=http://jnm.snmjournals.org/content/23/11/1025.long |pmid=6897074 |pmc= |doi= |postscript=.}}
9. ^{{Citation |author=Elsevier |authorlink=Elsevier |title=Dorland's Illustrated Medical Dictionary |publisher=Elsevier |url=http://dorlands.com/ |postscript=.}}
10. ^{{cite book |first1=Gerbail T. |last1=Krishnamurthy |first2=Shakuntala |last2=Krishnamurthy |title=Nuclear Hepatology: A Textbook of Hepatobiliary Diseases |url=https://books.google.com/books?id=IXaPDIiGeg4C |date=31 July 2009 |publisher=Springer |isbn=978-3-642-00647-0}}
11. ^{{cite web|url=http://www.healthimaging.com/index.php?option=com_articles&view=article&id=22918&division=hiit&division=hiit |title=SNM issues guidelines for hepatobiliary scintigraphy |accessdate=2012-12-02 |last=Puthenedam |first=Manjula }}
12. ^{{Citation |last=Ziessman |first=HA |display-authors=etal |year=2014 |title=Hepatobiliary scintigraphy in 2014 |journal=J Nucl Med |volume=55 |issue=6 |pages=967-975 |url= |pmid=24744445 |pmc= |doi=10.2967/jnumed.113.131490 |postscript=.}}
{{Digestive system procedures}}{{Medical imaging}}

2 : 2d nuclear medical imaging|Digestive system imaging

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