Segal J, Lerner D J, Miller D C, Mitchell R S, Alderman E A, Popp R L
J Am Coll Cardiol. 1987 Jun;9(6):1294-305. doi: 10.1016/s0735-1097(87)80469-2.
In low flow states, underestimation errors occur when the Gorlin formula is used to calculate valve area. A model of valvular stenosis designed to examine changes in the hydraulic discharge coefficient (Cd) and coefficient of orifice contraction (Cc) may explain these errors. Unsteady flow was examined in a pulsatile pump model and in a dog model. Valve areas were calculated from pressure and flow data using: a modified form of the Gorlin formula (assuming constant values for Cd and Cc) and a corrected formula (with values of Cd and Cc obtained from steady state data). Valve area was also calculated using the continuity equation with velocity and flow data (constant Cc). Flow velocities were measured using a newly designed ultrasound Doppler catheter capable of resolving flow velocities of up to 5.5 m/s. Both the corrected formula and continuity equation were highly predictive of actual valve area (r = 0.99, slope or M = 0.96 and r = 0.99, M = 1.06, respectively). The modified Gorlin equation was less accurate and tended to underestimate valve areas (r = 0.87, M = 0.83). This underestimation was most notable at low rates of flow (Gorlin: r = 0.94, M = 0.53; continuity: r = 0.93, M = 0.81 and r = 0.94, M = 0.89, respectively) more accurately than the modified Gorlin formula (r = 0.69, M = 0.49). In patients with low cardiac output, hemodynamic formulas, such as the Gorlin formula, which assume a constant value for the hydraulic discharge coefficient (Cd), may be less accurate than formulas using either a corrected value of Cd or Doppler-determined flow velocity and mean systolic flow.
在低流量状态下,使用戈林公式计算瓣膜面积时会出现低估误差。一个旨在研究水力流量系数(Cd)和孔口收缩系数(Cc)变化的瓣膜狭窄模型或许可以解释这些误差。在脉动泵模型和犬模型中对非稳定流进行了研究。根据压力和流量数据,使用以下方法计算瓣膜面积:戈林公式的修正形式(假设Cd和Cc为恒定值)以及修正公式(Cd和Cc的值通过稳态数据获得)。还使用连续性方程以及流速和流量数据(Cc恒定)来计算瓣膜面积。使用新设计的能够分辨高达5.5米/秒流速的超声多普勒导管测量流速。修正公式和连续性方程都能高度准确地预测实际瓣膜面积(分别为r = 0.99,斜率或M = 0.96以及r = 0.99,M = 1.06)。修正后的戈林方程准确性较差,往往会低估瓣膜面积(r = 0.87,M = 0.83)。这种低估在低流速时最为明显(戈林公式:r = 0.94,M = 0.53;连续性方程:分别为r = 0.93,M = 0.81以及r = 0.94,M = 0.89),比修正后的戈林公式更准确(r = 0.69,M = 0.49)。在低心输出量患者中,诸如戈林公式这类假设水力流量系数(Cd)为恒定值的血流动力学公式,可能不如使用修正后的Cd值或多普勒测定的流速及平均收缩期流量的公式准确。