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Frank F Smithuis

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Articles 18
Citations 188
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Recent Articles
1.
Zein M, Reurink G, Suskens J, Monte J, Smithuis F, Buckens S, et al.
Clin J Sport Med . 2024 Nov; 35(2):119-126. PMID: 39565178
Objective: To describe 3.0-Tesla (T) magnetic resonance imaging (MRI) findings of hamstring muscles in clinically recovered athletes who were cleared for return to play (RTP). Design: Prospective observational study. Setting:...
2.
Doorschodt T, Smithuis F, Helmerhorst G, Maas M
Semin Musculoskelet Radiol . 2024 May; 28(3):293-304. PMID: 38768594
Anterior cruciate ligament (ACL) rupture is a frequently encountered injury among athletes, often requiring surgical intervention to restore knee stability. Magnetic resonance imaging (MRI) after ACL reconstruction is common, especially...
3.
van Diepen P, Smithuis F, Hollander J, Dahmen J, Emanuel K, Stufkens S, et al.
Cartilage . 2024 Feb; :19476035241229026. PMID: 38366391
Objective: Uniformity of reporting is a requisite to be able to compare results of clinical studies on the treatment of osteochondral lesions of the talus (OLT). The primary aim of...
4.
Koetser I, Espinosa Hernandez E, Kerkhoffs P, Goedegebuure S, Smithuis F, Maas P
Semin Musculoskelet Radiol . 2023 May; 27(3):245-255. PMID: 37230125
Athletes practicing high-contact sports are exposed to an increased risk of midfoot injuries, namely midtarsal sprains. The complexity of reaching an accurate diagnosis is clearly depicted in the reported incidence...
5.
de Jongh J, Verweij N, Yaqub M, van Denderen C, van der Horst-Bruinsma I, Bot J, et al.
Eur J Nucl Med Mol Imaging . 2022 Dec; 50(5):1351-1359. PMID: 36508028
Purpose: To relate [F]fluoride uptake on PET with abnormalities on magnetic resonance imaging (MRI) and conventional radiography (CR) in ankylosing spondylitis (AS) patients. Methods: Ten clinically active AS patients (female...
6.
Walter A, Lim J, Raaphorst J, Smithuis F, den Harder J, Eftimov F, et al.
Rheumatology (Oxford) . 2022 May; 62(1):300-309. PMID: 35536176
Objectives: To prospectively compare ultrasound (US) and whole-body MRI for detection of muscle abnormalities compatible with idiopathic inflammatory myopathies (IIM). Methods: Newly diagnosed IIM patients underwent US (14 muscles) and...
7.
van der Post A, Jens S, Jacobs K, Smithuis F, Obdeijn M, Maas M
J Hand Surg Eur Vol . 2022 Mar; 47(7):722-727. PMID: 35313757
Skeletally immature wrists are considered at risk of injury due to increased axial loading through a relatively shorter ulna. The aim of this study was to determine whether triangular fibrocartilage...
8.
van der Made A, Peters R, Verheul C, Smithuis F, Reurink G, Moen M, et al.
Br J Sports Med . 2022 Jan; 56(6):340-348. PMID: 34996751
Objective: To prospectively evaluate 1-year clinical and radiological outcomes after operative and non-operative treatment of proximal hamstring tendon avulsions. Methods: Patients with an MRI-confirmed proximal hamstring tendon avulsion were included....
9.
Walter H, Kamperman R, Raaphorst J, Verhamme C, Koelman J, Potters W, et al.
BMJ Open . 2021 Dec; 11(12):e053594. PMID: 34903547
Introduction: Idiopathic inflammatory myopathies (IIMs) excluding inclusion body myositis (IBM) are a group of heterogeneous autoimmune disorders characterised by subacute-onset and progressive proximal muscle weakness, which are frequently part of...
10.
van der Made A, Smithuis F, Buckens C, Tol J, Six W, Lauf K, et al.
Am J Sports Med . 2021 Jun; 49(9):2475-2481. PMID: 34166119
Background: Proximal full-thickness free hamstring tendon injury (ie, tendon avulsion or rupture) is a severe injury. Treatment decision making relies on clinical factors and magnetic resonance imaging (MRI) variables; it...