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The chemical composition of faeces in uraemia, as revealed by in-vivo faecal dialysis.

作者信息

Wilson D R, Ing T S, Metcalfe-Gibson A, Wrong O M

出版信息

Clin Sci. 1968 Oct;35(2):197-209.

PMID:5721228
Abstract
摘要

相似文献

1
The chemical composition of faeces in uraemia, as revealed by in-vivo faecal dialysis.通过体内粪便透析揭示的尿毒症患者粪便的化学成分。
Clin Sci. 1968 Oct;35(2):197-209.
2
In vivo dialysis of faeces as a method of stool analysis. 3. The effect of intestinal antibiotics.
Clin Sci. 1968 Feb;34(1):211-21.
3
The effects of oxidised starch on blood and faecal nitrogen in uraemia.氧化淀粉对尿毒症患者血液和粪便中氮的影响。
Proc Eur Dial Transplant Assoc. 1973;10(0):136-42.
4
The effect of adrenal steroids on stool composition, as revealed by in vivo dialysis of faeces.
Clin Sci. 1969 Aug;37(1):151-67.
5
In vivo dialysis of faeces as a method of stool analysis. IV. The organic anion component.粪便的体内透析作为一种粪便分析方法。IV. 有机阴离子成分。
Clin Sci. 1969 Oct;37(2):549-64.
6
Increased nitrogen removal from the intestinal tract of uraemic patients.尿毒症患者肠道氮清除增加。
Proc Eur Dial Transplant Assoc. 1973;10(0):143-51.
7
An extravenal mechanism for the maintenance of potassium balance in severe chronic renal failure.严重慢性肾衰竭中维持钾平衡的肾外机制。
Trans Assoc Am Physicians. 1967;80:207-16.
8
Caecal pH and ammonia in experimental uraemia.实验性尿毒症中的盲肠pH值与氨
Gut. 1966 Oct;7(5):558-61. doi: 10.1136/gut.7.5.558.
9
In vivo dialysis of faeces as a method of stool analysis. II. The influence of diet.粪便的体内透析作为一种粪便分析方法。II. 饮食的影响。
Clin Sci. 1967 Aug;33(1):89-100.
10
A comparison of stool fluid and stool dialysate obtained in vivo.体内获取的粪便液体与粪便透析液的比较。
Gut. 1974 Aug;15(8):608-13. doi: 10.1136/gut.15.8.608.

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2
Urinary Sodium-to-Potassium Ratio and Blood Pressure in CKD.慢性肾脏病患者的尿钠钾比值与血压
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Colonic Potassium Absorption and Secretion in Health and Disease.健康与疾病状态下的结肠钾吸收与分泌。
Compr Physiol. 2018 Sep 14;8(4):1513-1536. doi: 10.1002/cphy.c170030.
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A model of blood-ammonia homeostasis based on a quantitative analysis of nitrogen metabolism in the multiple organs involved in the production, catabolism, and excretion of ammonia in humans.基于对人体中参与氨生成、分解代谢和排泄的多个器官的氮代谢进行定量分析的血氨稳态模型。
Clin Exp Gastroenterol. 2018 May 24;11:193-215. doi: 10.2147/CEG.S160921. eCollection 2018.
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The Unappreciated Role of Extrarenal and Gut Sensors in Modulating Renal Potassium Handling: Implications for Diagnosis of Dyskalemias and Interpreting Clinical Trials.肾外和肠道传感器在调节肾脏钾处理中的未被重视的作用:对钾代谢异常诊断及临床试验解读的意义
Kidney Int Rep. 2016 Apr 8;1(1):43-56. doi: 10.1016/j.ekir.2016.03.001. eCollection 2016 May.
6
Severe hyperkalemia following colon diversion surgery in a patient undergoing chronic hemodialysis: a case report.
J Med Case Rep. 2013 Aug 14;7:207. doi: 10.1186/1752-1947-7-207.
7
15N studies of endogenous faecal nitrogen in infants.婴儿内源性粪便氮的15N研究。
Gut. 1974 Jan;15(1):29-33. doi: 10.1136/gut.15.1.29.
8
Electrophysiology of rat distal colon after partial nephrectomy. Implications for K transport.部分肾切除术后大鼠远端结肠的电生理学。对钾转运的影响。
Pflugers Arch. 1988 Jul;412(1-2):172-82. doi: 10.1007/BF00583747.
9
Absorption and secretion by the colon.结肠的吸收与分泌
Gut. 1975 Apr;16(4):323-9. doi: 10.1136/gut.16.4.323.
10
Cholestyramine in uraemie pruritus.消胆胺治疗尿毒症瘙痒症。
Br Med J. 1977 Jun 25;1(6077):1662. doi: 10.1136/bmj.1.6077.1662.