Di Pauli von Treuheim Theodor, Li Don T, Mikhail Christopher, Cataldo Daniel, Cooperman Daniel R, Smith Brian G, Lonner Baron
Leni & Peter W. May Department of Orthopaedics, Icahn School of Medicine at Mount Sinai, New York, NY, USA.
Icahn Mount Sinai School of Medicine, 5 East 98th Street, 4th Floor, New York, NY, 10029, USA.
Spine Deform. 2020 Aug;8(4):613-620. doi: 10.1007/s43390-020-00105-5. Epub 2020 May 8.
Validation of classification system.
To externally validate the Proximal Humerus Ossification System (PHOS) as a reliable skeletal maturity scoring system and to assess the learning curve associated with teaching the procedure to individuals of varying levels of experience.
Assessment of skeletal maturity is essential for treatment decisions in Adolescent Idiopathic Scoliosis (AIS). PHOS is a five-stage system that uses the proximal humeral physis in assessing skeletal maturity and has been shown to reliably grade skeletal age leading up to and beyond peak growth age (PGA). This system is advantageous in the AIS patient, as it is often captured in standard scoliosis films.
A medical student, an orthopedic surgery resident (PGY-2), spine fellow, and experienced scoliosis surgeon in his 25th year in practice were given a three-slide PHOS learning module. Each participant rated 100 X-rays on two separate occasions, separated by 1 week. Intra- and inter-observer reliability, as well as cross-institutional reliability, were calculated using intraclass correlation coefficients (ICC) with 95% confidence intervals [CI].
Average intra-observer reliability ICC between scoring sessions was 0.94 [0.92, 0.96] and inter-observer reliability by level of training were 0.94 [0.91, 0.96], 0.93 [0.9, 0.95], 0.94 [0.91, 0.96], 0.96 [0.94, 0.97] for the medical student, PGY-2, fellow, and attending, respectively. Reliability across institutions was 0.99 [0.98, 0.99]. Combined rating observations (n = 400) showed 82% exact matches, as well as 17% and 1% mismatches by 1 and 2 stages, respectively. Similar to the PHOS developers, we found PHOS stage 3 to occur immediately after PGA.
PHOS is easily learned and employed by raters with varying levels of training. It comprises a five-stage system to reliably measure bone age leading up to PGA and thereafter. This new system relies on visualization of the proximal humerus, which is readily available on standard scoliosis X-rays.
Level III.
分类系统的验证。
对外验证近端肱骨骨化系统(PHOS)作为一种可靠的骨骼成熟度评分系统,并评估向不同经验水平的个体教授该方法的学习曲线。
骨骼成熟度评估对于青少年特发性脊柱侧凸(AIS)的治疗决策至关重要。PHOS是一个五阶段系统,利用近端肱骨骺板评估骨骼成熟度,已被证明能够可靠地对直至和超过生长高峰期年龄(PGA)的骨骼年龄进行分级。该系统对AIS患者具有优势,因为它常在标准脊柱侧凸X线片中显示。
向一名医学生、一名骨科住院医师(PGY-2)、脊柱专科医师以及从业25年的经验丰富的脊柱侧凸外科医生提供一个包含三张幻灯片的PHOS学习模块。每位参与者在两个不同时间对100张X线片进行评分,间隔1周。使用组内相关系数(ICC)及95%置信区间[CI]计算观察者内和观察者间的可靠性,以及跨机构的可靠性。
评分时段间的平均观察者内可靠性ICC为0.94[0.92, 0.96],按培训水平计算的观察者间可靠性分别为:医学生0.94[0.91, 0.96]、PGY-2 0.93[0.9, 0.95]、专科医师0.94[0.91, 0.96]、主治医生0.96[0.94, 0.97]。跨机构可靠性为0.99[0.98, 0.99]。综合评分观察结果(n = 400)显示,82%完全匹配,相差1个阶段和2个阶段的不匹配分别为17%和1%。与PHOS开发者的发现类似我们发现PHOS第3阶段紧接在PGA之后出现。
不同培训水平的评分者都能轻松学习和应用PHOS。它是一个五阶段系统,能够可靠地测量直至PGA及之后的骨龄。这个新系统依赖于近端肱骨的可视化,而这在标准脊柱侧凸X线片中很容易获得。
III级。