超音波検査ポピュラーサイエンスの知識
——The difference between "B ultrasound" and "color ultrasound"
During daily ultrasound examinations, we found that many patients would ask, "Doctor, are you a color ultrasound? Why is it black and white?". Commonly known as "B-ultrasound", it uses the probe to scan and repeatedly transmit and receive ultrasonic sound beams to form a two-dimensional cross-sectional image displayed on the screen, that is, two-dimensional ultrasound. Gray-scale cross-sectional images of organ structure and morphology.
超音波イメージングでは、白から灰色、黒へのグレースケールの変化を使用して、臓器や病変の物理的特性の変化を表示します。たとえば、液体が黒く見えたり、胆石、骨、ガスが明るく白く見えたりします。 超音波イメージング速度が速いため、臓器活動のリアルタイムの状況を表示できます。 2次元の超音波には方向性があります。上、下、左、右、前、後のXY軸スライスの灰色の-スケール画像、およびZ軸には3つの-が必要です。次元スキャン。
With the gradual improvement of medical conditions in our country, many larger medical institutions have already eliminated this simple two-dimensional ultrasound instrument and replaced it with a color Doppler ultrasound examination system. People call it "color ultrasound". The actual color ultrasound instrument has abdominal Color Doppler actually includes B-ultrasound, color Doppler, M-mode echocardiography and other related inspection and analysis software. The function and scope of application are related to the specific configuration of the instrument. The functions of black and white ultrasound and color ultrasound are distinguished.
Simply put, "color Doppler" is a high-definition black and white B-ultrasound plus color Doppler. Its main advantages are: it can quickly and intuitively display the two-dimensional plane distribution of blood flow; it can display the running direction of blood flow; it is beneficial to distinguish between arteries and veins; it is beneficial to identify vascular lesions and non-vascular lesions; it is beneficial to understand the nature of blood flow It can easily understand the time phase and speed of blood flow; can reliably find shunt and reflux; can quantitatively analyze the origin, width, length and area of blood flow bundles. These ultrasound manifestations and parameters play a very important auxiliary role in the diagnosis of clinical diseases.
"Color Doppler" can display the changes of blood perfusion in organs or lesions, distinguish solid or cystic masses, and prompt according to the changes of the blood flow spectrum of the cyst wall and solid masses, such as blood flow velocity, shape, resistance, and blood perfusion characteristics The reference basis for qualitative diagnosis, such as low-resistance solid masses are more common in malignant tumors.
"Color Doppler" to determine the hemodynamic changes of the cardiovascular system: filling state, blood flow color, direction, path, speed, pressure, phase, time, flow, etc. for disease diagnosis; such as small atrioventricular septal defects, two-dimensional Ultrasound may not show the gap, but once the color Doppler is on, it can clearly show the shunt of the defect site, which plays an important role in auxiliary diagnosis; another example is heart valve stenosis and vascular stenosis, when blood flow passes through the stenosis. , Due to the increase in proximal pressure, multicolored mosaic jets will appear in the stenotic orifice and the distal end. Doctors can quantify the valve area by measuring the half-time of pressure drop by spectral Doppler.
Therefore, the difference between "color ultrasound" and "B ultrasound" cannot be equal to the difference between color TV and black and white TV.








