Галерея 3253466

Галерея 3253466




🔞 ПОДРОБНЕЕ ЖМИТЕ ТУТ 👈🏻👈🏻👈🏻

































Галерея 3253466


VIAF

Virtual International Authority File


Breitenbach, Paul von 1850-1930



Paul von Breitenbach preußischer Minister für öffentliche Arbeiten



VIAF ID: 3253466
(Person)

Permalink: http://viaf.org/viaf/3253466






100 1 _
‎‡a 
Breitenbach, Paul von ‏

‎‡d 
1850-1930 ‏





100 0 _
‎‡a 
Paul von Breitenbach ‏

‎‡c 
preußischer Minister für öffentliche Arbeiten ‏






Created with Raphaël 2.1.2 DNB-117630527 Deutsche Nationalbibliothek DNB-117630527 Deutsche Nationalbibliothek WKP-Q92200 Wikidata WKP-Q92200 Wikidata 


400 1 _
‎‡a 
Breitenbach, Paul Justin von ‏

‎‡d 
1850-1930 ‏




400 0 _
‎‡a 
Paul von Breitenbach ‏

‎‡c 
Duits politicus ‏




400 0 _
‎‡a 
Paul von Breitenbach ‏

‎‡c 
Duitse politikus ‏




400 0 _
‎‡a 
Paul von Breitenbach ‏

‎‡c 
German businessman (1850-1930) ‏




400 0 _
‎‡a 
Paul von Breitenbach ‏

‎‡c 
Olóṣèlú Ọmọ Orílẹ̀-èdè Germany. ‏




400 0 _
‎‡a 
Paul von Breitenbach ‏

‎‡c 
ditsche Bolitiker ‏




400 0 _
‎‡a 
Paul von Breitenbach ‏

‎‡c 
düütsch Politiker ‏




400 0 _
‎‡a 
Paul von Breitenbach ‏

‎‡c 
politicien allemand ‏




400 0 _
‎‡a 
Paul von Breitenbach ‏

‎‡c 
politico alemán ‏




400 0 _
‎‡a 
Paul von Breitenbach ‏

‎‡c 
tysk politiker ‏




400 0 _
‎‡a 
بول فون بريتينباخ ‏

‎‡c 
قانونى من المانيا ‏




400 0 _
‎‡a 
パウル・フォン・ブライテンバッハ ‏








551 _ _
‎‡a 
Berlin ‏

‎‡4 
ortw ‏

‎‡4 
https://d-nb.info/standards/elementset/gnd#placeOfActivity ‏





551 _ _
‎‡a 
Bückeburg ‏

‎‡4 
orts ‏

‎‡4 
https://d-nb.info/standards/elementset/gnd#placeOfDeath ‏





551 _ _
‎‡a 
Danzig ‏

‎‡4 
ortg ‏

‎‡4 
https://d-nb.info/standards/elementset/gnd#placeOfBirth ‏









Universität Breslau
‎(2)




Friedrich-Wilhelms-Universität Berlin
‎(2)






Mehr Informationen in unten stehender Länderübersicht.


wenige






viele

Die Flaggen geben Auskunft darüber, welchen Normdateien Publikationen aus folgenden Ländern zugeordnet sind:

1900
|

|
2000



Univ.
‎(4)




Dt. Nationalbibliothek
‎(2)







Informationen zur Person

Geschlecht: männlich

Nationalität:


DE - Germany







Externe Links







Wikipedia - https://arz.wikipedia.org/wiki/بول_فون_بريتينباخ

Wikipedia - https://de.wikipedia.org/wiki/Paul_von_Breitenbach

Wikipedia - https://en.wikipedia.org/wiki/Paul_von_Breitenbach

Wikipedia - https://nl.wikipedia.org/wiki/Paul_von_Breitenbach

WorldCat Identities - viaf-3253466





MARC 21-Datensatz


VIAF Cluster in XML


RDF-Datensatz


Links in JSON



© 2010-2021 OCLC
Datenschutzbestimmungen

Cookie Notice
Cookie Settings

Accept all cookies Reject unnecessary cookies
Our web pages use cookies—information about how you interact with the site. When you select “Accept all cookies,” you’re agreeing to let your browser store that data on your device so that we can provide you with a better, more relevant experience.
Selecting “Reject unnecessary cookies” limits the data that’s stored to what’s strictly necessary for using the site. However, that may negatively impact your experience. You can also customize your cookie settings. See our Cookie Notice for more information
Ehrendoktorwürde Paul von Breitenbach
Universitatis Litterariae Fridericae Guilelmae ... viro excellentissimo Paulo de Breitenbach Gedanensi ... qui cum in bello non solum armorum sed et ingenii acie disceptetur ... iuris utriusque doctoris dignitatem et privilegia honoris causa contulit ...



Dashboard
Publications
Account settings
Log out







Journal List



J Obes



v.2012; 2012



PMC3253466










Create a new collection



Add to an existing collection




Unable to load your collection due to an error
Please try again

Published online 2011 Dec 22. doi: 10.1155/2012/258624
Jennie C. Brand-Miller ,
1, 2

* Hayley J. Griffin ,
3
and Stephen Colagiuri
1

1 The Boden Institute of Obesity, Nutrition, Exercise and Eating Disorders, The University of Sydney, G89 Medical Foundation Building K25, NSW 2006, Sydney, Australia
2 The School of Molecular Bioscience G08, The University of Sydney, Sydney, NSW 2006, Australia
3 11 Nursery Street, Hornsby, NSW 2077, Sydney, Australia
Received 2011 Aug 4; Accepted 2011 Oct 21.
Copyright © 2012 Jennie C. Brand-Miller et al.
This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
During the last two million years of evolution, humans were increasingly carnivorous, that is, consumed a low-carbohydrate, high-protein diet.
A low-carbohydrate, high-protein diet requires profound insulin resistance to maintain glucose homeostasis, particularly during reproduction.
Genetic differences in insulin resistance and predisposition to type 2 diabetes can be explained by differences in exposure to carbohydrate during the past 12,000 years.
Changes in the quality of carbohydrate can explain the higher prevalence of type 2 diabetes in susceptible populations.
Habitual consumption of a high-glycemic-load diet worsens insulin resistance and contributes to the obesity and type 2 diabetes in all populations.
1. Brand-Miller JC, Colagiuri S. The carnivore connection: dietary carbohydrate in the evolution of NIDDM. Diabetologia . 1994; 37 (12):1280–1286. [ PubMed ] [ Google Scholar ]
2. Schulz LO, Bennett PH, Ravussin E, et al. Effects of traditional and western environments on prevalence of type 2 diabetes in Pima Indians in Mexico and the U.S. Diabetes Care . 2006; 29 (8):1866–1871. [ PubMed ] [ Google Scholar ]
3. Zimmet P, King H, Taylor R, et al. The high prevalence of diabetes mellitus, impaired glucose tolerance and diabetic retinopathy in nauru—the 1982 survey. Diabetes Research . 1984; 1 (1):13–18. [ PubMed ] [ Google Scholar ]
4. ABS. Australian Bureau of Statistics . Canberra, Australia: 2006. Diabetes in Australia: a snapshot, 2004–6. [ Google Scholar ]
5. Dowse G, Zimmet P. The thrifty genotype in non-insulin dependent diabetes. British Medical Journal . 1993; 306 (6877):532–533. [ PMC free article ] [ PubMed ] [ Google Scholar ]
6. Gaulin SJC, Konner M. On the natural diet of primates, including humans. In: Wurtman RJ, Wurtman JJ, editors. Nutrition and the Brain . New York, NY, USA: Raven Press; 1977. pp. 1–86. [ Google Scholar ]
7. Bobe R, Behrensmeyer AK, Chapman RE. Faunal change, environmental variability and late Pliocene hominin evolution. Journal of Human Evolution . 2002; 42 (4):475–497. [ PubMed ] [ Google Scholar ]
8. Lewin R. Human Evolution: An Illustrated Introduction . Oxford, UK: Blackwell Publishing; 2005. [ Google Scholar ]
9. Aiello LC, Wheeler P. The expensive-tissue hypothesis: the brain and the digestive system in human and primate evolution. Current Anthropology . 1995; 36 :199–221. [ Google Scholar ]
10. Cordain L, Watkins BA, Mann NJ. Fatty acid composition and energy density of foods available to African hominids: evolutionary implications for human brain development. World Review of Nutrition and Dietetics . 2001; 90 :144–161. [ PubMed ] [ Google Scholar ]
11. Mann GV, Scott EM, Hursch LM, et al. The health and nutritional status of Alaskan Eskimos: a survey of the Interdepartmental Committee on Nutrition for National Defence, 1958. The American Journal of Clinical Nutrition . 1962; 11 :31–39. [ Google Scholar ]
12. Cordain L, Brand-Miller JC, Eaton SB, Mann N, Holt SHA, Speth JD. Plant-animal subsistence ratios and macronutrient energy estimations in worldwide hunter-gatherer diets. The American Journal of Clinical Nutrition . 2000; 71 (3):682–692. [ PubMed ] [ Google Scholar ]
13. Kliks M. Paleodietetics: a review of the role of dietary fiber in preagricultural human diets. In: Spiller GA, Amen RF, editors. Topics in Dietary Fiber Research . New York, NY, USA: Plenum Press; 1978. pp. 181–202. [ Google Scholar ]
14. Kuipers RS, Luxwolda MF, Dijck-Brouwer DA, et al. Estimated macronutrient and fatty acid intakes from an East African Paleolithic diet. British Journal of Nutrition . 2010; 104 (11):1666–1687. [ PubMed ] [ Google Scholar ]
15. Eaton SB, Konner M. Paleolithic nutrition: a consideration of its nature and current implications. The New England Journal of Medicine . 1985; 312 (5):283–289. [ PubMed ] [ Google Scholar ]
16. Flood J. Archaeology of the Dreamtime . Sydney, Australia: Angus and Robertson; 1992. [ Google Scholar ]
17. Prior IA, Davidson F, Salmond CE, Czochanska Z. Cholesterol, coconuts, and diet on Polynesian atolls: a natural experiment: the Pukapuka and Tokelau Island studies. The American Journal of Clinical Nutrition . 1981; 34 (8):1552–1561. [ PubMed ] [ Google Scholar ]
18. Freinkel N. Of pregnancy and progeny. Diabetes . 1980; 29 (12):1023–1035. [ PubMed ] [ Google Scholar ]
19. Sokoloff L, Fitzgerald GG, Kaufman EE. Cerebral nutrition and energy metabolism. In: Wurtman RJ, Wurtman JJ, editors. Nutrition and the Brain . New York, NY, USA: Raven Press; 1977. pp. 87–139. [ Google Scholar ]
20. Linn T, Santosa B, Grönemeyer D, et al. Effect of long-term dietary protein intake on glucose metabolism in humans. Diabetologia . 2000; 43 (10):1257–1265. [ PubMed ] [ Google Scholar ]
21. Rossetti L, Rothman DL, DeFronzo RA, Shulman GI. Effect of dietary protein on in vivo insulin action and liver glycogen repletion. American Journal of Physiology . 1989; 257 (2):E212–E219. [ PubMed ] [ Google Scholar ]
22. Rossetti P, Porcellati F, Ricci NB, et al. Effect of oral amino acids on counterregulatory responses and cognitive function during insulin-induced hypoglycemia in nondiabetic and type 1 diabetic people. Diabetes . 2008; 57 (7):1905–1917. [ PMC free article ] [ PubMed ] [ Google Scholar ]
23. Weickert MO, Roden M, Isken F, et al. Effects of supplemented isoenergetic diets differing in cereal fiber and protein content on insulin sensitivity in overweight humans. The American Journal of Clinical Nutrition . 2011; 94 (2):459–471. [ PubMed ] [ Google Scholar ]
24. Rosmos DR, Palmer HJ, Muiruri KL, Bensink MR. The effect of dietary protein on in vivo insulin action and liver glycogen repletion. American Journal of Physiology . 1981; 257 (2):E212–E219. [ PubMed ] [ Google Scholar ]
25. Kienzle E, Meyer H, Lohrie H. Influence of carbohydrate-free rations with various protein/energy relationships on fetal development, viability of newborn puppies and milk consumption. Advances in Animal Physiology and Animal Nutrition . 1985; 16 :78–99. [ Google Scholar ]
26. Blaza SE, Booles D, Burger IH. Is carbohydrate essential for pregnancy and lactation in dogs? In: Berger IH, Rivers JPW, editors. Nutrition of the Dog and Cat . Cambridge, UK: Cambridge University Press; 1989. pp. 229–243. [ Google Scholar ]
27. Thame MM, Fletcher HM, Baker TM, Jahoor F. Comparing the glucose kinetics of adolescent girls and adult women during pregnancy. The American Journal of Clinical Nutrition . 2010; 91 (3):604–609. [ PubMed ] [ Google Scholar ]
28. Butte NF. Carbohydrate and lipid metabolism in pregnancy: normal compared with gestational diabetes mellitus. The American Journal of Clinical Nutrition . 2000; 71 (5):1256S–1261S. [ PubMed ] [ Google Scholar ]
29. Metzger BE, Lowe LP, Dyer AR, et al. Hyperglycemia and adverse pregnancy outcomes. The New England Journal of Medicine . 2008; 358 (19):1991–2002. [ PubMed ] [ Google Scholar ]
30. Vernon RG. Endocrine control of metabolic adaptation during lactation. Proceedings of the Nutrition Society . 1989; 48 (1):23–32. [ PubMed ] [ Google Scholar ]
31. Burnol AF, Loizeau M, Girard J. Insulin receptor activity and insulin sensitivity in mammary gland of lactating rats. American Journal of Physiology . 1990; 259 (6):E828–E834. [ PubMed ] [ Google Scholar ]
32. Crowe TC. Safety of low-carbohydrate diets. Obesity Reviews . 2005; 6 (3):235–245. [ PubMed ] [ Google Scholar ]
33. Astrup PA, Meinert Larsen DT, Harper A. Atkins and other low-carbohydrate diets: hoax or an effective tool for weight loss? The Lancet . 2004; 364 (9437):897–899. [ PubMed ] [ Google Scholar ]
34. O’Dea K. Marked improvement in carbohydrate and lipid metabolism in diabetic Australian Aborigines after temporary reversion to traditional lifestyle. Diabetes . 1984; 33 (6):596–603. [ PubMed ] [ Google Scholar ]
35. O’Dea K, Spargo RM. Metabolic adaptation to a low carbohydrate-high protein (“traditional”) diet in Australian aborigines. Diabetologia . 1982; 23 (6):494–498. [ PubMed ] [ Google Scholar ]
36. Peret J, Bach AC, Delhomme B, Bois-Joyeux B, Chanez M, Schirardin H. Metabolic effects of high-protein diets in Zucker rats. Metabolism . 1984; 33 (3):200–207. [ PubMed ] [ Google Scholar ]
37. Parker B, Noakes M, Luscombe N, Clifton P. Effect of a high-protein, high-monounsaturated fat weight loss diet on glycemic control and lipid levels in type 2 diabetes. Diabetes Care . 2002; 25 (3):425–430. [ PubMed ] [ Google Scholar ]
38. Samaha FF, Iqbal N, Seshadri P, et al. A low-carbohydrate as compared with a low-fat diet in severe obesity. The New England Journal of Medicine . 2003; 348 (21):2074–2081. [ PubMed ] [ Google Scholar ]
39. O’Dea K, Traianedes K, Ireland P, et al. The effects of diet differing in fat, carbohydrate, and fiber on carbohydrate and lipid metabolism in type II diabetes. Journal of the American Dietetic Association . 1989; 89 (8):1076–1086. [ PubMed ] [ Google Scholar ]
40. Taylor R. Pathogene
Аса Акира – настоящая профессионалка в мире азиатской порноиндустрии и готова доказывать это постоянно
Секс с русской моделью Ингрид
Sasha Steele лижет анус и пробует анал с таксистом

Report Page