Loading...
Please wait, while we are loading the content...
Similar Documents
Hyperaemic microvascular resistance is not increased in viable myocardium after chronic myocardial infarction.
| Content Provider | Semantic Scholar |
|---|---|
| Author | Knaapen, Paul Boellaard, Ronald Westerhof, Nico |
| Copyright Year | 2007 |
| Abstract | AIMS The present study compared microvascular resistance (MR) of viable myocardium in infarct areas with those in reference areas in patients with chronic myocardial infarction (MI). METHODS AND RESULTS In 27 patients, MR (ratio distal coronary pressure and flow) of reference and viable infarct areas was calculated at baseline and during hyperaemia. H2 15O positron emission tomography (PET) was used to provide myocardial blood flow measurements. In infarct regions, H2 15O PET solely measures flow in viable myocardium, excluding flow in scar tissue. Distal coronary pressure was measured with a pressure wire in the infarct-related and reference artery. The average time between PET study and infarction was 3.3+/-4.4 years. Mean hyperaemic distal coronary pressure was significantly lower in the infarct-related artery. MR varied considerably between patients and was significantly higher in infarct areas at baseline (135+/-38 vs. 118+/-29 mmHg mL min/mL; P<0.05), but not during hyperaemia (39+/-18 vs. 35+/-11 mmHg mL min/mL). The correlation between MR in infarct and reference areas was significant. CONCLUSION To determine MR, distal coronary pressure measurements should be used. Hyperaemic MR in viable myocardium within the infarcted area is not higher when compared with the reference area. This supports the application of the established fractional flow reserve cut-off value in the setting of chronic MI. |
| File Format | PDF HTM / HTML |
| Alternate Webpage(s) | https://watermark.silverchair.com/ehm309.pdf?token=AQECAHi208BE49Ooan9kkhW_Ercy7Dm3ZL_9Cf3qfKAc485ysgAAAlAwggJMBgkqhkiG9w0BBwagggI9MIICOQIBADCCAjIGCSqGSIb3DQEHATAeBglghkgBZQMEAS4wEQQMexouDNzJ5O_xL3ZeAgEQgIICA_GhagzinTKZFJmjoyD5PNXLe_00TMlhaVuLUPTcieuuSFZWD-ynzFwp-XKKMzzAxTyxyNIc3ooO26B_EOCYGpfe9R-RWYPbSbuxZUVRu5YWb94XeS0PMu4PFLdqre-cv-jTWg39fnyh0zamhUSXENW1Ui1OGpzSa9WHnXXzMz97SY7AwikPP61qkQnXBg10eWXT_jrMyOavgMihHNBma6C0P0JdEgjZsY2VGUu7-S_s2ndUBvx4TAu2nOyhfKTVhIANYF0Z_DpZKFSyrf9_FqDZ-T_iKPuiFODDyY0jKpxStWOc4L-dcm6r0F8IjhUX0j9QIhlpk3E5aOVUh3Q4DjT3UyMbnr_9dSKbJ8LvupsXk1SIrWb-iHgrE67apR9M0M30Bze_zduKQTu6YW0oTY1H_LZKDk85XFXx6wQf-sqKlN9GwujSioI_gW6n9OARbLNTFJIzAifH4C0gZ0mfaC1fvAvz0LbD7aQzUQA9JonFf2S8kiaqnFA1RV8ETiVkMUQ4DEVF5RrPDbbvbpCjyDoZJBKTFj-gNqyFMpMUZ9Kq7iK0cO4fPDtG1yx5a5X_Z9uIsFWiOfAXbCkrzOh66sMq7_cCxE5Eodp9prvLbP9aSpNV6xekN9E317d65O5mTb8RLrCc1-Lb2VHiLHS4fzQsCegQGz5RdHCg8iuUg1cbYzBS |
| Alternate Webpage(s) | https://oup.silverchair-cdn.com/oup/backfile/Content_public/Journal/eurheartj/28/19/10.1093/eurheartj/ehm309/2/ehm309.pdf?Expires=1492876047&Key-Pair-Id=APKAIUCZBIA4LVPAVW3Q&Signature=RkbmXTAfkVBhIQBQ-q1LhcAB~f~R1JKcNKGxYteNNnqECI-3sWozt~PTurJPmpaEzXp2aHI5rdxsTKIt4MYO-YS1MHLOmzkgvQ6JtUdrx~-HQPYtPKpfwkcjk9DkBshwVIos910rHADtHA2XBebSsnHncJqHN20BNq6R5cJsjmtL9d7GK80Ns-Uwt9eIh3O4g6tdNR6F8pRPiIV4iFZk1n3sgm~TvJS8GmAYs0aSMXVI3McE0FLbny--9B9gUmAZ04JBZ7fuuWPz01tPf6HI7ZTGOzCOnDAvxspqAtP~IxCYkFjPsVjMpdvxGi3fkS5TX1~DAVhaNMuz4NeMZ9loVg__ |
| PubMed reference number | 17656351v1 |
| Volume Number | 28 |
| Issue Number | 19 |
| Journal | European heart journal |
| Language | English |
| Access Restriction | Open |
| Subject Keyword | Cicatrix Fractional Flow Reserve of Vessel Hyperemia Myocardial Blood Flow Myocardial Infarction Myocardium Patients Positron-Emission Tomography Positrons Thyroid Hormone Resistance Syndrome X-Ray Computed Tomography torr |
| Content Type | Text |
| Resource Type | Article |