SU650615A1 - Method of vasography - Google Patents

Method of vasography

Info

Publication number
SU650615A1
SU650615A1 SU772559906A SU2559906A SU650615A1 SU 650615 A1 SU650615 A1 SU 650615A1 SU 772559906 A SU772559906 A SU 772559906A SU 2559906 A SU2559906 A SU 2559906A SU 650615 A1 SU650615 A1 SU 650615A1
Authority
SU
USSR - Soviet Union
Prior art keywords
lumen
contrast
needle
aorta
vasography
Prior art date
Application number
SU772559906A
Other languages
Russian (ru)
Inventor
Евгений Васильевич Солодков
Николай Дмитриевич Любовный
Николай Александрович Паничкин
Original Assignee
Институт Хирургии Им. А.В. Вишневского
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Институт Хирургии Им. А.В. Вишневского filed Critical Институт Хирургии Им. А.В. Вишневского
Priority to SU772559906A priority Critical patent/SU650615A1/en
Application granted granted Critical
Publication of SU650615A1 publication Critical patent/SU650615A1/en

Links

Landscapes

  • Apparatus For Radiation Diagnosis (AREA)

Description

Изобретение относигс  к област-н ьгеДНЩ1НЫ , а именно к ренггеко сгии.The invention relates to the region-NGDNSHCHNY, namely to renggeko sgii.

Известен способ вазографииа зак к чающийс  в том, что в просвет сосуиов ввод т контрастное вешество с послагаующей-серийной рентгенографией fl.A known method is the vazography of the order in which a contrast is inserted into the lumen of the sediments with the companion x-ray fl.

Однако известный способ не позва л ет вь  вл ть внутреннюю структуру со- суднсгой стенки и характер двюкени  крови в его просвете.However, the known method does not allow for the internal structure of the vessel wall and the nature of the blood bi-barb in its lumen.

Целью изобретени   вл етс  вы вление внутреитюй структуры сосуднстой стенки н характера движени  крови в его просвете.The purpose of the invention is to reveal the internal structure of the vessel wall and the nature of the movement of blood in its lumen.

Эта цель достигаетс  тем, что производ т оди:н фоновый ctraMOK, в течение одной диастолы 6-7 см контрастного вашества со скоростью 20-22 к одновременно производ т сннмков в секунду с последующим вычнташтем градации  ркостей нз фонового н ренуге ноконграстного сннмдов.This goal is achieved by producing one: n background ctraMOK, during one diastole, 6–7 cm of contrast, at a speed of 20–22 k, at the same time producing a second per second followed by a decrease in the gradation of nk and nongreason.

Способ ваэографин осутчествл ю-г елеДующим образом. Исследу5ог брюшнойThe way vaeographin is insolvent. Abdominal research

отдел аорты   подвздошных артерий больного . Шачале производ т фонощ 1й снимок , т.е. без введени  контрастного вещесгва делают рентгенографию иссле- ауемой области. Непосредственно перед нсследованием с помошью кардиосинхрокнаатора производ т гфив зку по отметчкку начала съемга и введени  контраста в диастолическую фазу сердечного Ш1кла. Стальную иглу с двум  боковыми oTBepcTHsTMii на конце ввод т в просвет аорты. Боковые отверс1«  иглы ориентир -ют в просвете аорты нерпендикул рно продольной оси аорты. Дл  калибровки сннмков сбоку от проекции аорты aorta department of the iliac arteries of the patient. The phonosch 1st shot was made to the mountain, i.e. without introducing a contrast agent, X-rays are taken of the study area. Immediately before the investigation, a cardiosync knob is used to make a gfiv by the start of the shoot and the contrast is introduced into the diastolic phase of the heart band. A steel needle with two lateral oTBepcTHsTMii at the end is inserted into the aortic lumen. The lateral openings1 of the needle are orientated in the lumen of the aorta, which is perpendicular to the longitudinal axis of the aorta. To calibrate the snapshots on the side of the aortic projection

s укладывают денснтометрический КЛин.. Просвет иглы и переходньш грубки, соедин ющие иглу с автоматическим шприцем , заполн.чют Контрасптым веществом. Затем строго в диастолу в просвет аорты ввод т 7 см контрастного вещества со скоростью 2о см /сек, что позвол ет ввести весь контраст до 0,35 сек, т. е. за врем  одной диастолы.s is placed on the densitometric CL. .. The lumen of the needle and the transition are coarse, connecting the needle with an automatic syringe, fill the needle with the Contrasted substance. Then strictly into diastole, 7 cm of a contrast agent are injected into the lumen of the aorta at a rate of 2 cm / sec, which allows all contrast to be entered up to 0.35 sec, i.e., during one diastole.

SU772559906A 1977-12-26 1977-12-26 Method of vasography SU650615A1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
SU772559906A SU650615A1 (en) 1977-12-26 1977-12-26 Method of vasography

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
SU772559906A SU650615A1 (en) 1977-12-26 1977-12-26 Method of vasography

Publications (1)

Publication Number Publication Date
SU650615A1 true SU650615A1 (en) 1979-03-05

Family

ID=20740143

Family Applications (1)

Application Number Title Priority Date Filing Date
SU772559906A SU650615A1 (en) 1977-12-26 1977-12-26 Method of vasography

Country Status (1)

Country Link
SU (1) SU650615A1 (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4459990A (en) * 1982-01-26 1984-07-17 Elscint, Incorporated Radiographic method and apparatus for the visualization of the interior of a body particularly useful for the visualization of a subject's circulatory system

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4459990A (en) * 1982-01-26 1984-07-17 Elscint, Incorporated Radiographic method and apparatus for the visualization of the interior of a body particularly useful for the visualization of a subject's circulatory system

Similar Documents

Publication Publication Date Title
Johansen Distribution of blood in the arousing hibernator
Wehle et al. Hemodynamic changes during sequential ultrafiltration and dialysis
DE3839649C2 (en)
FR2430771A1 (en) PULSE FLUID PUMPING SYSTEM FOR MOVING BLOOD IN LIVING TISSUE
Fleischmann High-concentration contrast media in MDCT angiography: principles and rationale
Betz et al. Effects of anoxia on net uptake and unidirectional transport of glucose into the isolated dog brain
Bateman et al. Cine computed tomographic evaluation of aortocoronary bypass graft patency
Tori The radiological demonstration of the azygos and other thoraco-abdominal veins in the living
EP0802423A1 (en) Cardiac-gated 3-dimensional MR angiography
SU650615A1 (en) Method of vasography
Levy et al. Fractionation of the output of the heart and of the oxygen consumption of normal unanesthetized dogs
US5508030A (en) Creating new capillary blood pools for practicing bidirectional medicine
DE2055527A1 (en) Apparatus for supporting the cardiovascular circulation
Tabaie et al. Reduction of exercise dilation by theophylline
BOLLMAN et al. Experimentally produced alterations of hepatic blood flow
Marais Human decidual spiral arterial studies
Mason et al. Hemodynamic effects of intravenously administered quinidine on the transplanted human heart
US20100030070A1 (en) System and method for injecting contrast products
Eriksson Axillary brachial plexus anaesthesia in children with Citanest®
Nickerson Local fluid loss in trauma
Ishikawa et al. Measurement of coronary sinus blood flow by dye dilution technique in man
Webster Clearance by the hepatic portal circulation of the products of digestion and metabolism in the ruminant gut
Zumbé et al. Nuclear medical assessment of penile hemodynamics following revascularization surgery
FARIS et al. Increased vascular resistance in vasodilated skin an indicator of diabetic microangiopathy?
de Carvalho et al. The visibility of the pulmonary vessels (angiopneumography)