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The Morpho-Functional Characteristics of Cerebral and Renal Arteries After Induced Arterial Hypertension in Rats Using Magnetic Resonance Imaging. / Agafonova, Irina G.; Kotelnikov, Vladimir N.; Geltcer, Boris I. et al.

In: Applied Magnetic Resonance, Vol. 48, No. 9, 01.09.2017, p. 911-919.

Research output: Contribution to journalArticlepeer-review

Harvard

Agafonova, IG, Kotelnikov, VN, Geltcer, BI, Kolosova, NG & Stonik, VA 2017, 'The Morpho-Functional Characteristics of Cerebral and Renal Arteries After Induced Arterial Hypertension in Rats Using Magnetic Resonance Imaging', Applied Magnetic Resonance, vol. 48, no. 9, pp. 911-919. https://doi.org/10.1007/s00723-017-0914-9

APA

Agafonova, I. G., Kotelnikov, V. N., Geltcer, B. I., Kolosova, N. G., & Stonik, V. A. (2017). The Morpho-Functional Characteristics of Cerebral and Renal Arteries After Induced Arterial Hypertension in Rats Using Magnetic Resonance Imaging. Applied Magnetic Resonance, 48(9), 911-919. https://doi.org/10.1007/s00723-017-0914-9

Vancouver

Agafonova IG, Kotelnikov VN, Geltcer BI, Kolosova NG, Stonik VA. The Morpho-Functional Characteristics of Cerebral and Renal Arteries After Induced Arterial Hypertension in Rats Using Magnetic Resonance Imaging. Applied Magnetic Resonance. 2017 Sept 1;48(9):911-919. doi: 10.1007/s00723-017-0914-9

Author

Agafonova, Irina G. ; Kotelnikov, Vladimir N. ; Geltcer, Boris I. et al. / The Morpho-Functional Characteristics of Cerebral and Renal Arteries After Induced Arterial Hypertension in Rats Using Magnetic Resonance Imaging. In: Applied Magnetic Resonance. 2017 ; Vol. 48, No. 9. pp. 911-919.

BibTeX

@article{32f44373702b4bd38e77a4ff1b5f8da9,
title = "The Morpho-Functional Characteristics of Cerebral and Renal Arteries After Induced Arterial Hypertension in Rats Using Magnetic Resonance Imaging",
abstract = "The morpho-functional reorganization of regional vascular arteries is greatly altered after the induction of arterial hypertension (AH) in experimental rats. These changes can be examined using magnetic resonance imaging methods. In our experiment, induced AH caused arteriostenosis of cerebral arteries in two strains of rats—Wistar and OXYS (p < 0.05). In addition, we studied the changes in renal arteries in the same experiment. Compensatory vasodilatation was found in the extrarenal part of arteries. Arteriostenosis was detected in the intrarenal part of arteries, which was due to cytotoxic hypostasis of renal parenchyma. We proposed a cerebral vascular index and applied this index for precise analysis of changes in the studied arteries. This index is calculated as the ratio of the diameter of cerebral arteries to the diameter of renal arteries. The degree of differences in vasoconstriction between cerebral and renal arteries was established. Our results showed a moderate degree of differences in the vasoconstriction of cerebral arteries. In addition, the degree of differences in the vasoconstriction of intrarenal arteries revealed deeper vasoconstriction. These distinctions are 28.1% (p < 0.05) and 60.9% (p < 0.05) for Wistar and OXYS rats, respectively. Arterial morphometry revealed reduced sizes of all OXYS rat arteries compared with those of Wistar rat arteries. These pathological changes were associated with excessive stiffness (rigidity) of vascular walls due to accelerated aging. The accelerated aging of OXYS rat arteries led to a decrease in their vasodilatation potential and a decrease in the blood supply of cerebral and renal arteries. Comparative morphometry of the status of all arteries in both groups after AH revealed multiple specific changes in the remodeled arteries.",
author = "Agafonova, {Irina G.} and Kotelnikov, {Vladimir N.} and Geltcer, {Boris I.} and Kolosova, {Natalya G.} and Stonik, {Valentin A.}",
note = "Publisher Copyright: {\textcopyright} 2017, Springer-Verlag GmbH Austria.",
year = "2017",
month = sep,
day = "1",
doi = "10.1007/s00723-017-0914-9",
language = "English",
volume = "48",
pages = "911--919",
journal = "Applied Magnetic Resonance",
issn = "0937-9347",
publisher = "Springer-Verlag GmbH and Co. KG",
number = "9",

}

RIS

TY - JOUR

T1 - The Morpho-Functional Characteristics of Cerebral and Renal Arteries After Induced Arterial Hypertension in Rats Using Magnetic Resonance Imaging

AU - Agafonova, Irina G.

AU - Kotelnikov, Vladimir N.

AU - Geltcer, Boris I.

AU - Kolosova, Natalya G.

AU - Stonik, Valentin A.

N1 - Publisher Copyright: © 2017, Springer-Verlag GmbH Austria.

PY - 2017/9/1

Y1 - 2017/9/1

N2 - The morpho-functional reorganization of regional vascular arteries is greatly altered after the induction of arterial hypertension (AH) in experimental rats. These changes can be examined using magnetic resonance imaging methods. In our experiment, induced AH caused arteriostenosis of cerebral arteries in two strains of rats—Wistar and OXYS (p < 0.05). In addition, we studied the changes in renal arteries in the same experiment. Compensatory vasodilatation was found in the extrarenal part of arteries. Arteriostenosis was detected in the intrarenal part of arteries, which was due to cytotoxic hypostasis of renal parenchyma. We proposed a cerebral vascular index and applied this index for precise analysis of changes in the studied arteries. This index is calculated as the ratio of the diameter of cerebral arteries to the diameter of renal arteries. The degree of differences in vasoconstriction between cerebral and renal arteries was established. Our results showed a moderate degree of differences in the vasoconstriction of cerebral arteries. In addition, the degree of differences in the vasoconstriction of intrarenal arteries revealed deeper vasoconstriction. These distinctions are 28.1% (p < 0.05) and 60.9% (p < 0.05) for Wistar and OXYS rats, respectively. Arterial morphometry revealed reduced sizes of all OXYS rat arteries compared with those of Wistar rat arteries. These pathological changes were associated with excessive stiffness (rigidity) of vascular walls due to accelerated aging. The accelerated aging of OXYS rat arteries led to a decrease in their vasodilatation potential and a decrease in the blood supply of cerebral and renal arteries. Comparative morphometry of the status of all arteries in both groups after AH revealed multiple specific changes in the remodeled arteries.

AB - The morpho-functional reorganization of regional vascular arteries is greatly altered after the induction of arterial hypertension (AH) in experimental rats. These changes can be examined using magnetic resonance imaging methods. In our experiment, induced AH caused arteriostenosis of cerebral arteries in two strains of rats—Wistar and OXYS (p < 0.05). In addition, we studied the changes in renal arteries in the same experiment. Compensatory vasodilatation was found in the extrarenal part of arteries. Arteriostenosis was detected in the intrarenal part of arteries, which was due to cytotoxic hypostasis of renal parenchyma. We proposed a cerebral vascular index and applied this index for precise analysis of changes in the studied arteries. This index is calculated as the ratio of the diameter of cerebral arteries to the diameter of renal arteries. The degree of differences in vasoconstriction between cerebral and renal arteries was established. Our results showed a moderate degree of differences in the vasoconstriction of cerebral arteries. In addition, the degree of differences in the vasoconstriction of intrarenal arteries revealed deeper vasoconstriction. These distinctions are 28.1% (p < 0.05) and 60.9% (p < 0.05) for Wistar and OXYS rats, respectively. Arterial morphometry revealed reduced sizes of all OXYS rat arteries compared with those of Wistar rat arteries. These pathological changes were associated with excessive stiffness (rigidity) of vascular walls due to accelerated aging. The accelerated aging of OXYS rat arteries led to a decrease in their vasodilatation potential and a decrease in the blood supply of cerebral and renal arteries. Comparative morphometry of the status of all arteries in both groups after AH revealed multiple specific changes in the remodeled arteries.

UR - http://www.scopus.com/inward/record.url?scp=85022065937&partnerID=8YFLogxK

U2 - 10.1007/s00723-017-0914-9

DO - 10.1007/s00723-017-0914-9

M3 - Article

AN - SCOPUS:85022065937

VL - 48

SP - 911

EP - 919

JO - Applied Magnetic Resonance

JF - Applied Magnetic Resonance

SN - 0937-9347

IS - 9

ER -

ID: 9067870