血液検査の参考基準値とは? わかりやすく解説

Weblio 辞書 > 辞書・百科事典 > ウィキペディア小見出し辞書 > 血液検査の参考基準値の意味・解説 

血液検査の参考基準値

出典: フリー百科事典『ウィキペディア(Wikipedia)』 (2022/11/18 03:44 UTC 版)

血液検査の参考基準値(けつえきけんさのさんこうきじゅんち、英語: Reference ranges for blood tests)は、保健専門家が血液サンプルからの医学的検査結果一式を説明する際に使われる参考基準値である。 血液検査の参考基準値は、体液の分析に関心を有する病理学に関連した臨床化学(臨床生化学、化学的病理学、純血液化学としても知られている)の分野で研究されている。


  1. ^ a b c d e f g h i j k l m n o p q r s t u v w x y z aa ab ac ad ae af ag ah ai aj ak al am an ao ap aq ar as at au av aw ax ay az ba bb bc bd be bf bg bh bi bj bk bl bm bn bo bp bq br bs bt bu bv bw bx by bz ca cb cc cd ce cf cg ch ci cj ck cl cm cn co cp cq cr cs ct cu cv cw cx cy cz da db dc dd Last page of Deepak A. Rao; Le, Tao; Bhushan, Vikas (2007). First Aid for the USMLE Step 1 2008 (First Aid for the Usmle Step 1). McGraw-Hill Medical. ISBN 0-07-149868-0 
  2. ^ a b c d e f g h i j k l m n o p q r s t u v w x y z aa ab ac ad ae af ag ah ai aj ak al am an ao ap aq ar as at au av aw ax ay az ba bb bc bd be bf bg bh bi bj bk bl bm bn bo bp bq br bs bt bu bv bw bx by bz ca cb cc cd ce cf cg ch ci cj ck cl cm cn co cp cq cr cs ct cu cv cw cx cy cz da db dc Normal Reference Range Table from The University of Texas Southwestern Medical Center at Dallas. Used in Interactive Case Study Companion to Pathologic basis of disease.
  3. ^ a b c d e f g h i j k l m n o p q r s t u v w x y z aa ab ac ad ae af ag ah ai aj ak al am an ao ap aq ar as at au av aw ax ay az ba bb bc bd be bf bg bh bi bj bk bl bm bn bo bp bq br bs bt bu bv bw bx by bz ca cb cc cd ce cf cg ch ci cj ck cl cm cn co cp cq cr cs ct cu cv cw cx cy cz da db dc dd de df dg dh di dj dk dl dm dn do dp dq dr ds dt du dv dw dx Reference range list from Uppsala University Hospital ("Laborationslista"). Artnr 40284 Sj74a. Issued on April 22, 2008
  4. ^ a b c d Derived from molar values using molar mass of 22.99 g•mol−1
  5. ^ a b Derived from molar values using molar mass of 39.10 g•mol−1
  6. ^ a b c d e f g h i j k l m MERCK MANUALS > Common Medical Tests > Blood Tests Last full review/revision February 2003
  7. ^ a b Derived from molar values using molar mass of 35.45 g•mol−1
  8. ^ a b Larsson L, Ohman S (November 1978). “Serum ionized calcium and corrected total calcium in borderline hyperparathyroidism”. Clin. Chem. 24 (11): 1962-5. PMID 709830. http://www.clinchem.org/cgi/pmidlookup?view=long&pmid=709830. 
  9. ^ a b c d Derived from molar values using molar mass of 40.08  g•mol−1
  10. ^ a b c d e f g h i j k l Slon S (2006年9月22日). “Serum Iron”. University of Illinois Medical Center. 2006年7月6日閲覧。
  11. ^ a b c d Diagnostic Chemicals Limited > Serum Iron-SL Assay July 15, 2005
  12. ^ a b c d e f g h i j k l m Derived from mass values using molar mass of 55.85 g•mol−1
  13. ^ a b Table 1. Page 133. Clinical Chemistry 45, No. 1, 1999 (stating 1.9–3.3 g/L)
  14. ^ a b Derived by dividing mass values with molar mass
  15. ^ a b c d Ferritin by: Mark Levin, MD, Hematologist and Oncologist, Newark, NJ. Review provided by VeriMed Healthcare Network
  16. ^ a b c d Derived from mass values using molar mass of 450,000 g•mol−1
  17. ^ a b Mitchell ML, Filippone MD, Wozniak TF (August 2001). “Metastatic carcinomatous cirrhosis and hepatic hemosiderosis in a patient heterozygous for the H63D genotype”. Arch. Pathol. Lab. Med. 125 (8): 1084-7. PMID 11473464. http://journals.allenpress.com/jrnlserv/?request=get-abstract&issn=0003-9985&volume=125&page=1084. 
  18. ^ a b Diaz J, Tornel PL, Martinez P (July 1995). “Reference intervals for blood ammonia in healthy subjects, determined by microdiffusion”. Clin. Chem. 41 (7): 1048. PMID 7600690. 
  19. ^ a b c d Derived from molar values using molar mass of 17.03 g/mol
  20. ^ a b c d e f g h i j k l m n o p q r s t u v w x y z aa ab ac ad ae af ag ah ai aj ak al am an ao ap aq ar as at au av aw ax ay az ba bb bc bd be bf bg bh bi bj bk bl bm bn bo bp bq br bs bt bu bv bw bx by Blood Test Results - Normal Ranges Bloodbook.Com
  21. ^ a b Derived from mass values using molar mass of 63.55 g•mol−1
  22. ^ a b Derived from mass using molar mass of 151kDa
  23. ^ a b c Derived from mass values using molar mass of 40.08  g•mol−1
  24. ^ Walter F., PhD. Boron (2005). Medical Physiology: A Cellular And Molecular Approaoch. Elsevier/Saunders. ISBN 1-4160-2328-3  Page 849
  25. ^ Reference range for copper - GPnotebook
  26. ^ a b http://www.dlolab.com/PDFs/DLO-OCTOBER-2008-LAB-UPDATE.pdf
  27. ^ a b Derived from molar values using molar mass of 65.38 g/mol
  28. ^ a b Derived from mass values using molar mass of 65.38 g/mol
  29. ^ a b Derived from molar values using molar mass of 24.31 g/mol
  30. ^ a b Derived from mass values using molar mass of 24.31 g/mol
  31. ^ a b c d e f g h i j k l m n o Adëeva Nutritionals Canada > Optimal blood test values Retrieved on July 9, 2009
  32. ^ Middleton P, Kelly AM, Brown J, Robertson M (August 2006). “Agreement between arterial and central venous values for pH, bicarbonate, base excess, and lactate”. Emerg Med J 23 (8): 622-4. doi:10.1136/emj.2006.035915. PMC 2564165. PMID 16858095. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2564165/. 
  33. ^ a b c d e f g h i j k l The Medical Education Division of the Brookside Associates--> ABG (Arterial Blood Gas) Retrieved on Dec 6, 2009
  34. ^ a b Derived from molar values using molar mass of 1.01 g•mol−1
  35. ^ a b c d e f g h Derived from mmHg values using 0.133322 kPa/mmHg
  36. ^ a b Derived from molar values using molar mass of 44.010 g/mol
  37. ^ a b c d Derived from molar values using molar mass of 61 g/mol
  38. ^ Reference range (albumin) - GPnotebook
  39. ^ a b Derived from mass using molecular weight of 65kD
  40. ^ a b c d e Derived from mass values using molar mass of 585g/mol
  41. ^ a b Derived from molar values using molar mass of 585g/mol
  42. ^ a b c d e f g h i j k l m n o p q r s Fachwörterbuch Kompakt Medizin E-D/D-E. Author: Fritz-Jürgen Nöhring. Edition 2. Publisher:Elsevier, Urban&FischerVerlag, 2004. ISBN 3437151207, 9783437151200. Length: 1288 pages
  43. ^ a b c d GPnotebook > reference range (AST) Retrieved on Dec 7, 2009
  44. ^ a b Helander A, Vabö E, Levin K, Borg S (October 1998). “Intra- and interindividual variability of carbohydrate-deficient transferrin, gamma-glutamyltransferase, and mean corpuscular volume in teetotalers”. Clin. Chem. 44 (10): 2120-5. PMID 9761244. 
  45. ^ a b Creatine kinase - GPnotebook
  46. ^ a b c d e f g h i j k l m n o p Saint Francis Hospital Laboratory > BNP reference range change Jay Hupp & Dr. Michel S. Medawar. Effective November, 2002
  47. ^ a b c d e f g h i j The University of Iowa (UIHC) > Department of Pathology > LABORATORY SERVICES HANDBOOK > N-terminal-pro-BNP Showing 95th percentiles. Epic Lab Code: LAB649. Updated: 10/27/2009
  48. ^ a b c d Muscle Information and Courses from MediaLab, Inc. > Cardiac Biomarkers Retrieved on April 22, 2010
  49. ^ a b c d e f g h i j South London Healthcare NHS Trust
  50. ^ a b c Moderately Elevated Serum Troponin Concentrations Are Associated With Increased Morbidity and Mortality Rates in Surgical Intensive Care Unit Patients Rene P. Relos, MD; Ian K. Hasinoff, MD; Greg J. Beilman, MD. Posted: 12/05/2003; Crit Care Med. 2003;31(11)
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  52. ^ GP Notebook > range (reference, ca-125) Retrieved on Jan 5, 2009
  53. ^ ClinLab Navigator > Test Interpretations > CA-125 Retrieved on Jan 5, 2009
  54. ^ a b Bjerner J, Høgetveit A, Wold Akselberg K, et al. (June 2008). “Reference intervals for carcinoembryonic antigen (CEA), CA125, MUC1, Alfa-foeto-protein (AFP), neuron-specific enolase (NSE) and CA19.9 from the NORIP study”. Scandinavian journal of clinical and laboratory investigation 68 (8): 1-12. doi:10.1080/00365510802126836. PMID 18609108. 
  55. ^ Carcinoembryonic Antigen(CEA) at MedicineNet
  56. ^ The TSH Reference Range Wars: What's "Normal?", Who is Wrong, Who is Right... By Mary Shomon, About.com. Updated: June 19, 2006. About.com Health's Disease and Condition
  57. ^ a b 2006 Press releases: Thyroid Imbalance? Target Your Numbers Contacts: Bryan Campbell American] Association of Clinical Endocrinologists
  58. ^ a b The TSH Reference Range Wars: What's "Normal?", Who is Wrong, Who is Right... By Mary Shomon, About.com. Updated: June 19, 2006
  59. ^ a b Demers, Laurence M.; Carole A. Spencer (2002年). “LMPG: Laboratory Support for the Diagnosis and Monitoring of Thyroid Disease”. en:National Academy of Clinical Biochemistry (USA). 2007年4月13日閲覧。 - see Section 2. Pre-analytic factors
  60. ^ a b c d e f g h i j Free T4; Thyroxine, Free; T4, Free UNC Health Care System
  61. ^ a b c d e f g h i j Derived from mass values using molar mass of 776.87 g/mol
  62. ^ a b c d e f g h i j k l m n o Table 4: Typical reference ranges for serum assays - Thyroid Disease Manager
  63. ^ a b c d Euthyroid Patient with Elevated Serum Free Thyroxine George van der Watt1,a, David Haarburger1 and Peter Berman
  64. ^ a b c d Derived from mass values using molar mass of 650.98 g/mol
  65. ^ a b Serum concentration of free T3, free T4 and TSH in healthy children Cioffi Michele; Gazzerro Patrizia; Vietri Maria Teresa; Magnetta Rosa; Durante Adriana; D'Auria Annamaria; Puca Giovanni Alfredo; Molinari Anna Maria ;
  66. ^ a b Andrology Australia: Your Health > Low Testosterone > Diagnosis
  67. ^ a b c d Derived from mass values using molar mass of 288.42g/mol
  68. ^ a b c d e f g Derived from molar values using molar mass of 288.42g/mol
  69. ^ a b c d MedlinePlus > Testosterone Update Date: 3/18/2008. Updated by: Elizabeth H. Holt, MD, PhD, Yale University. Review provided by VeriMed Healthcare Network. Also reviewed by David Zieve, MD, MHA, Medical Director
  70. ^ a b c d e f g h i j reference range (FSH) GPnotebook. Retrieved on September 27, 2009
  71. ^ a b c d e f g h Values taken from day 1 after LH surge in: Establishment of detailed reference values for luteinizing hormone, follicle stimulating hormone, estradiol, and progesterone during different phases of the menstrual cycle on the Abbott ARCHITECT analyzer. Reto Stricker, Raphael Eberhart, Marie-Christine Chevailler, Frank A. Quinn, Paul Bischof and Rene´ Stricker. Clin Chem Lab Med 2006;44(7):883–887 PMID 16776638
  72. ^ a b c d e f New York Hospital Queens > Services and Facilities > Patient Testing > Pathology > New York Hospital Queens Diagnostic Laboratories > Test Directory > Reference Ranges Retrieved on Nov 8, 2009
  73. ^ a b c d e f g h i j GPNotebook - reference range (oestradiol) Retrieved on September 27, 2009
  74. ^ a b c d e f g h i j k l Derived from molar values using molar mass of 272.38g/mol
  75. ^ a b c d Total amount multiplied by 0.022 according to 2.2% presented in: Wu CH, Motohashi T, Abdel-Rahman HA, Flickinger GL, Mikhail G (August 1976). “Free and protein-bound plasma estradiol-17 beta during the menstrual cycle”. J. Clin. Endocrinol. Metab. 43 (2): 436-45. doi:10.1210/jcem-43-2-436. PMID 950372. 
  76. ^ a b Derived from molar values using molar mass of 314.46 g/mol
  77. ^ a b Derived from mass values using molar mass of 4540g/mol according to PROOPIOMELANOCORTIN; NCBI --> POMC Retrieved on September 28, 2009
  78. ^ Adrenocorticotropic Hormone:Normal”. WebMD (09-03-2006). 2008年11月9日閲覧。
  79. ^ Derived from molar values using molar mass of 4540g/mol according to PROOPIOMELANOCORTIN; NCBI --> POMC Retrieved on September 28, 2009
  80. ^ a b c d Biochemistry Reference Ranges at Good Hope Hospital Retrieved on Nov 8, 2009
  81. ^ a b c d Derived from molar values using molar mass of 362 g/mol
  82. ^ a b Derived from molar values using molar mass of 9.4 kDa
  83. ^ a b Table 2 in: Aloia JF, Feuerman M, Yeh JK (2006). “Reference range for serum parathyroid hormone”. Endocr Pract 12 (2): 137-44. PMC 1482827. PMID 16690460. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1482827/. 
  84. ^ a b Derived from mass values using molar mass of 9.4 kDa
  85. ^ a b c d e f Derived from molar values using molar mass 400.6 g/mol
  86. ^ a b c d Bender, David A. (2003). “Vitamin D”. Nutritional biochemistry of the vitamins. Cambridge: Cambridge University Press. ISBN 0-521-80388-8. https://books.google.com/?id=pxEJNs0IUo4C  Retrieved December 10, 2008 through Google Book Search.
  87. ^ a b c d Bischoff-Ferrari, H.A., Dietrich, T., Orav, J.E., Hu, F.B., Zhang, Y., Karlson, E., Dawson-Hughes, B. 2004. Higher 25-hydroxyvitamin D levels are associated with better lower extremity function in both active and inactive adults 60+ years of age. American Journal of Clinical Nutrition. 80:752-758.
  88. ^ a b c d Reusch J, Ackermann H, Badenhoop K (May 2009). “Cyclic changes of vitamin D and PTH are primarily regulated by solar radiation: 5-year analysis of a German (50 degrees N) population”. Horm. Metab. Res. 41 (5): 402-7. doi:10.1055/s-0028-1128131. PMID 19241329. 
  89. ^ a b c d e f g h Letter: Calcium and vitamin D in preventing fractures. Data are not sufficient to show inefficacy Alex Vasquez, researcher. BMJ 2005;331:108-109 (9 July), doi:10.1136/bmj.331.7508.108-b.
  90. ^ a b c d e f g h The Doctor's Doctor: Homocysteine
  91. ^ a b c d e f g h Derived from molar values using molar massof 135 g/mol
  92. ^ a b c d e f Central Manchester University Hospitals --> Reference ranges Retrieved on July 9, 2009
  93. ^ University of Kentucky Chandler Medical Center > Clinical Lab Reference Range Guide Retrieved on April 28, 2009
  94. ^ a b c d e Derived from mass values using molar mass of 441 mol−1
  95. ^ a b GPnotebook > B12 Retrieved on April 28, 2009
  96. ^ a b Derived form molar values using molar mass of 1355g/mol
  97. ^ a b Derived from mass values using molar mass of 1355g/mol
  98. ^ a b Derived from mass values using molar mass of 176 grams per mol
  99. ^ a b c For en:Driving under the influence by country, see en:Drunk driving law by country
  100. ^ Derived from mass values using molar mass of 46g/mol
  101. ^ a b c d e Derived from mass values using 64,500 g/mol, according to Van Beekvelt MC, Colier WN, Wevers RA, Van Engelen BG (2001). “Performance of near-infrared spectroscopy in measuring local O2 consumption and blood flow in skeletal muscle”. J Appl Physiol 90 (2): 511-519. PMID 11160049. 
  102. ^ a b c d Derived from mass concentration, using molar mass of 64,458 g/mol (Van Beekvelt MC, Colier WN, Wevers RA, Van Engelen BG (2001). “Performance of near-infrared spectroscopy in measuring local O2 consumption and blood flow in skeletal muscle”. J Appl Physiol 90 (2): 511-519. PMID 11160049. ). 1 g/dL = 0.1551 mmol/L
  103. ^ a b c d e f g h lymphomation.org > Tests & Imaging > Labs > Complete Blood Count Retrieved on May 14, 2009
  104. ^ a b c d e f g h i j k l m n o p q r s t u Clinical Laboratory Medicine. By Kenneth D. McClatchey. Page 807.
  105. ^ Determination of monocyte count by hematological analyzers, manual method and flow cytometry in polish population Central European Journal of Immunology 1-2/2006. (Centr Eur J Immunol 2006; 31 (1-2): 1-5) authors: Elżbieta Górska, Urszula Demkow, Roman Pińkowski, Barbara Jakubczak, Dorota Matuszewicz, Jolanta Gawęda, Wioletta Rzeszotarska, Maria Wąsik,
  106. ^ a b c d e gpnotebook.co.uk > blood constituents (reference range) Retrieved on may 14, 2009
  107. ^ a b MedlinePlus Encyclopedia 003652
  108. ^ a b [1] Retrieved on November 20, 2009
  109. ^ a b Miller A, Green M, Robinson D (1983). “Simple rule for calculating normal erythrocyte sedimentation rate”. Br Med J (Clin Res Ed) 286 (6361): 266. doi:10.1136/bmj.286.6361.266. PMC 1546487. PMID 6402065. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1546487/. 
  110. ^ Böttiger LE, Svedberg CA (1967). “Normal erythrocyte sedimentation rate and age”. Br Med J 2 (5544): 85-7. doi:10.1136/bmj.2.5544.85. PMC 1841240. PMID 6020854. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1841240/. 
  111. ^ C-reactive protein - GPnotebook
  112. ^ 2730 Serum C-Reactive Protein values in Diabetics with Periodontal Disease A.R. Choudhury, and S. Rahman, Birdem, Diabetic Association of Bangladesh, Dhaka, Bangladesh. (the diabetics were not used to determine the reference ranges)
  113. ^ a b c d Derived from mass using molar mass of 25,106 g/mol
  114. ^ a b Sipahi T, Kara C, Tavil B, Inci A, Oksal A (March 2003). “Alpha-1 antitrypsin deficiency: an overlooked cause of late hemorrhagic disease of the newborn”. J. Pediatr. Hematol. Oncol. 25 (3): 274-5. doi:10.1097/00043426-200303000-00019. PMID 12621252. http://www.jpho-online.com/pt/re/jpho/fulltext.00043426-200303000-00019.htm. 
  115. ^ a b Derived from mass values using molar mass of 44324.5 g/mol
  116. ^ a b Derived from molar values using molar mass of 44324.5 g/mol
  117. ^ a b c d e f g h i j The Society for American Clinical Laboratory Science > Chemistry Tests > Immunoglobulins Retrieved on Nov 26, 2009
  118. ^ a b c d e f g h i j k l m n o p q r s t u v w x y z aa ab ac ad ae af ag ah ai aj ak al am an ao ap aq chronolab.com > Autoantibodies associated with rheumatic diseases > Reference ranges Retrieved on April 29, 2010
  119. ^ Reference range (amylase) - GPnotebook
  120. ^ Plasma Measurement of D-Dimer Levels for the Early Diagnosis of Ischemic Stroke Subtypes Walter Ageno, MD; Sergio Finazzi, MD; Luigi Steidl, MD; Maria Grazia Biotti, MD; Valentina Mera, MD; GianVico Melzi d'Eril, MD; Achille Venco, MD. Arch Intern Med. 2002;162:2589-2593.
  121. ^ Kline JA, Williams GW, Hernandez-Nino J (May 2005). “D-dimer concentrations in normal pregnancy: new diagnostic thresholds are needed”. Clinical chemistry 51 (5): 825-9. doi:10.1373/clinchem.2004.044883. PMID 15764641. http://www.clinchem.org/cgi/content/full/51/5/825. 
  122. ^ a b Gardner MD, Scott R (April 1980). “Age- and sex-related reference ranges for eight plasma constituents derived from randomly selected adults in a Scottish new town”. J. Clin. Pathol. 33 (4): 380-5. doi:10.1136/jcp.33.4.380. PMC 1146084. PMID 7400337. http://jcp.bmj.com/cgi/pmidlookup?view=long&pmid=7400337. 
  123. ^ a b c d Finney H, Newman DJ, Price CP (January 2000). “Adult reference ranges for serum cystatin C, creatinine and predicted creatinine clearance”. Ann. Clin. Biochem. 37 ( Pt 1): 49-59. doi:10.1258/0004563001901524. PMID 10672373. http://acb.rsmjournals.com/cgi/pmidlookup?view=long&pmid=10672373. 
  124. ^ a b c d e f g h Derived from molar values by multiplying with the molar mass of 113.118 g/mol, and divided by 10.000 to adapt from μg/L to mg/dL
  125. ^ a b MedlinePlus Encyclopedia Glucose tolerance test
  126. ^ a b c Derived from molar values using molar mass of 180g/mol
  127. ^ a b c d Derived from mass values using molar mass of 90.08 g/mol
  128. ^ a b Derived from mass values using molar mass of 88.06 g/mol
  129. ^ a b c d e f Derived from values in mg/dl to mmol/l, by dividing by 89, according to faqs.org: What are mg/dl and mmol/l? How to convert? Glucose? Cholesterol? Last Update July 21, 2009. Retrieved on July 21, 2009
  130. ^ a b c d Derived from values in mg/dl to mmol/l, using molar mass of 386.65 g/mol
  131. ^ a b c Reference range (cholesterol) - GPnotebook
  132. ^ a b c d e f g h Royal College of Pathologists of Australasia; Cholesterol (HDL and LDL) - plasma or serum Last Updated: Monday, 6 August 2007
  133. ^ a b c d e f g h i j Derived from values in mmol/l, using molar mass of 386.65 g/mol
  134. ^ What Your Cholesterol Levels Mean. American Heart Association. Retrieved on September 12, 2009
  135. ^ American Association for Clinical Chemistry; HDL Cholesterol


「血液検査の参考基準値」の続きの解説一覧

血液検査の参考基準値

出典: フリー百科事典『ウィキペディア(Wikipedia)』 (2021/02/18 14:31 UTC 版)

トリアシルグリセロール」の記事における「血液検査の参考基準値」の解説

トリアシルグリセロールについての血液検査の参考基準値は以下のとおりである。 項目年齢下限上限値単位最適範囲トリアシルグリセロール 1039 歳 54 110 mg/dL < 100 mg/dL or 1.1 mmol/L 0.61 1.2 mmol/L 40–59 歳 70 150 mg/dL 0.77 1.7 mmol/L>60歳 80 150 mg/dL 0.9 1.7 mmol/L

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