Patients › Shoulder
Shoulder Arthroplasty para sa Akutong Fraktura ng Proksimal na Humerus
Bakit ito ang inirekomendang operasyon¶
Ang pahinang ito ay nagpapakita kung paano ni Dr. Kieran Hirpara, isang parmasiyutiko sa itaas na bahagi ng katawan sa Mater Private Hospital Rockhampton, ang pamamaraan namin sa klinika. Pumapasok ka sa aming klinika sa pamamagitan ng referral mula sa iyong GP o physiotherapist. Isang pagsusuri sa klinika ang nagtatakda ng diagnosis. Para sa mga acute na fracture, maaaring agad na irekomenda ang operasyon.
Ang operasyong ito ay nagpapalit sa nasirang buto ng itaas na braso upang mabawi ang katatagan. Karaniwan namin itong inaalok sa mga mas matandang pasyente na may mga komplikadong fracture. Layunin nitong bawasan ang sakit at mapabuti ang galaw ng balikat. Ang ebidensya ay nagpapakita na ang reverse shoulder replacement ay nag-aalok ng mas mahusay na pangmatagalang function kumpara sa partial replacement. Ang non-surgical na paggamot ay madalas na nagdudulot ng mas masamang resulta sa mga ganitong kaso. Layunin namin ang sapat na pagbawas ng sakit at pagpapabuti ng pang-araw-araw na function sa pamamagitan ng shared decision-making.
Bago ang operasyon¶
Ihahanda kami sa pamamagitan ng X-ray, blood test, at pagsusuri ng anestesiya upang matiyak ang iyong kaligtasan. Kailangan mong mag-fasting bago ang proseso at itigil ang ilang gamot ayon sa utos ng iyong doktor. Mangyaring dalhin ang listahan ng lahat ng kasalukuyang gamot at magsuot ng komportableng damit. Mag-arrange ng taong magdadala sa iyo pauwi, dahil hindi ka makakapagbiyahe mag-isa pagkatapos ng operasyon. Gumagamit kami ng isang karaniwang incision sa balikat para sa bukas na paraang ito. Ang paraang ito ay nagbibigay-daan sa amin na maingat na ayusin ang mga piraso ng buto at ibalik ang function. Ang iyong doktor ay magbibigay ng partikular na mga tagubilin kung aling mga gamot ang dapat itigil at kailan dapat itigil ang pagkain at pag-inom.
Sa araw ng operasyon¶
Dadating ka sa ospital para sa pagpasok at paghahanda. Ang operasyong ito ay isasagawa sa ilalim ng pangkalahatang anestesia na pinagsama ng regional nerve block. Ikaw ay ganap na matutulog habang ginagawa ang operasyon, at ang block — isang injeksyon na nagpapabango sa mga nerbiyong nagbibigay-sensasyon sa braso bago ka gumising — ay nagbibigay ng pagpapagaan ng sakit sa unang 12 hanggang 24 oras pagkatapos ng operasyon. Ang anestesista ay magkikita sa iyo bago ang operasyon at ipaliwanag ang parehong bahagi.
Isinasagawa namin ang operasyong ito gamit ang bukas na paraan (open approach) na may iisang konbensyonal na incision sa itaas ng operatibong lugar. Ito ay nagbibigay ng direktang access sa shoulder joint. Pagkatapos ng proseso, gagising ka sa recovery area kung saan ang aming koponan ay magmamanman sa iyong kaginhawaan at katatagan. Mananatili ka sa ospital para sa obserbasyon habang naka-epekto ang paunang pagpapagaan ng sakit mula sa nerve block. Ang iyong surgeon ay susuriin ang iyong pag-unlad bago ka ipapalaya papunta sa bahay kasama ang malinaw na mga tagubilin para sa iyong unang ilang araw ng paggaling.
Ano ang kinabibilangan ng operasyon¶
Gagawa ang iyong doktor ng isang hiwa na humigit-kumulang 8 hanggang 10 cm ang haba sa harap ng iyong balikat. Ang bukas na paraang ito ay nagbibigay ng malinaw na akses sa mga basag na buto. Dahan-dahang ililipat namin ang mga nakapaligid na tisyu upang makita nang malinaw ang fracture.
Kung ang ginagawa namin ay reverse shoulder replacement, tatanggalin namin ang sira na bola ng iyong upper arm bone. Susunod, ididikit namin ang bagong metal socket sa iyong shoulder blade. Isang metal ball component ay ididikit sa itaas ng iyong upper arm bone. Ang bagong joint na ito ay nagbabago ng paraan ng paggalaw ng iyong balikat, na nagpapahintulot sa iyo na itaas ang iyong braso gamit ang iba’t ibang kalamnan kaysa sa karaniwan.
Kung ang ginagawa namin ay pag-aayos ng iyong sariling buto, ilalagay namin ang mga basag na piraso pabalik sa tamang posisyon. Gumagamit kami ng mga plate at screw upang panatilihing matatag ang mga buto habang gumagaling. Isang mahalagang bahagi ng hakbang na ito ay ang pag-attach pabalik ng mga tendon at kalamnan (ang mga tuberosities) sa buto. Hinahabi namin ang mga malalambot na tisyong ito pabalik sa tamang posisyon sa paligid ng implant o mga piraso ng buto. Mahalaga ang tamang pagkakabit na ito para sa iyong kinabukasang paggalaw ng balikat.
Kapag matatag na ang mga buto at nakapag-secure na ang mga tisyu, isasara namin ang hiwa. Gumagamit kami ng mga stitch sa ilalim ng balat at sa ibabaw upang pagpagsamahin ang mga gilid. Isang sterile dressing ang sumasakop sa lugar upang protektahan ito habang nagsisimula ka sa iyong paggaling.
Pagkatapos ng operasyon¶
Gising ka sa recovery ward na may braso na nakasling at may dressing sa sugat. Karamihan sa mga pasyente ay nananatili ng isang gabi sa ospital pagkatapos ng operasyong ito, bagaman may mga makakauwi sa parehong araw. Pinamamahalaan namin ang iyong sakit gamit ang karaniwang gamot. May kasamang dapat manatili sa iyo sa unang 24 na oras upang tumulong. Ang operasyong ito ay gumagamit ng bukas na paraan na may isang konbensyonal na incision sa lugar ng operasyon. Hindi ka dapat magmaneho ng hindi bababa sa ANIM NA LINGGO pagkatapos ng anumang operasyon sa balikat, anuman ang braso na binigyan ng operasyon. Pakibasa ang aming gabay tungkol sa Pagmamaneho pagkatapos ng operasyon sa itaas na bahagi ng katawan para sa karagdagang detalye. Panatilihin ang sling ayon sa utos ng iyong doktor.
Pagbawi¶
May iisang hiwa sa iyong balikat. Sa unang ilang araw, normal ang sakit at pamamaga. Pinamamahalaan namin ito gamit ang mga iniresetang gamot at ice pack. Panatilihin ang iyong braso na sinusuportahan sa sling anumang oras. Pinoprotektahan nito ang mga nagpapagaling na buto at malambot na tisyu. Hindi mo magagamit ang brasong iyon para magbuhat o itulak.
Maaaring mahirap matulog sa simula. Subukang magpahinga sa recliner o itaas ang iyong katawan gamit ang mga unan. Binabawasan ng posisyong ito ang presyon sa kasu-kasuan. Habang humihina ang pamamaga, magsisimula ka ng banayad na mga galaw. Gabayin ka ng aming pisioterapeuta sa mga ehersisyong ito. Nakatuon ang mga ito sa pagbawi ng pangunahing galaw nang hindi pumipinsala sa pagkakaayos. Matututo ka kung paano magdamit at kumain gamit ang iyong kabilang kamay.
Ang iyong pag-unlad ay nakadepende sa kung paano gumagaling ang iyong katawan. May mga araw na mas maganda ang pakiramdam kaysa sa iba. Inaasahan ito. Mahigpit namin pinagmamasdan ang iyong paggaling sa mga follow-up visit. Kapag pinapayagan ka ng iyong surgeon, karaniwan sa pagsusuri sa ikaanim na linggo, maaari kang magmaneho. Pakitandaan na hindi ka dapat magmaneho habang nasa sling o kung ang sakit ay nagbabawas sa iyong kontrol. Para sa karagdagang detalye, tingnan ang Pagmaneho pagkatapos ng surgery sa itaas na bahagi ng katawan.
Nag-iiba ang pagbawi sa bawat indibidwal. Maaaring magkaiba ang iyong timeline; gabay ka ng iyong surgeon at pisioterapeuta. Nandito kami upang suportahan ka sa bawat hakbang ng prosesong ito.
Maaaring mangyari¶
Karamihan sa mga pasyente ay magagaling, ngunit minsan ay maaaring magkaroon ng mga problema. Ang iyong surgeon at ang koponan ay masusing susubaybayan ka upang matukoy ang anumang isyu nang maaga.
Mga Isyu sa Sakit at Paggaling Maaaring mapansin mo na limitado o hindi predictable ang galaw ng balikat pagkatapos ng operasyon. Ito ay karaniwan dahil iba-iba ang paggaling. Kung mayroon kang isang matandang pasyente, ang tamang paggaling ng mga bahagi ng buto (tuberosities) ay tumutulong upang mas mabuti ang pagganap ng iyong balikat. Kung nararamdaman mo ang malalim, pulso-pulso na sakit na hindi nababawasan ng simpleng gamot sa sakit, ipaalam sa amin ito. Maaaring ito ay nangangahulugan na hindi wasto ang pagkakaisa ng buto.
Mga Panganib sa Pangkalahatang Kalusugan Ang mga fracture sa mga matatanda ay madalas na nangyayari sa mga taong mahina ang katawan. Ang grupo na ito ay may mas mataas na panganib ng seryosong mga isyu sa kalusugan o kamatayan sa loob ng isang taon pagkatapos ng sugat, anuman ang operasyon. Maaaring kailanganin mong ma-admit sa ospital para sa medikal na alagaan imbes na para lamang sa alagaan ng balikat. Karamihan sa mga muling pag-aadmit ay para sa mga pangkalahatang medikal na dahilan, hindi para sa balikat mismo. Kung pakiramdam mo ay hindi ka mabuti, nahihirapan sa paghinga, o nalilito, humingi agad ng tulong pang-emhergency.
Mga Komplikasyon sa Lugar ng Operasyon Mas malaki ang posibilidad ng mga komplikasyon pagkatapos ng ganitong uri ng joint replacement kumpara sa mga bone plates. Maaaring makita mo ang pamumula na kumakalat mula sa sugat, maramdaman ang biglaang pamamaga, o mapansin ang paglabas ng likido. Ang mga senyales na ito ay maaaring magpahiwatig ng impeksyon o iba pang mga isyu sa paggaling. Kung mapansin mo ang mga pagbabagong ito, tawagan agad ang klinika. Huwag hintayin ang iyong susunod na nakadisenyong pagsusuri.
Mga Pangmatagalang Resulta Habang madalas ay maganda ang pagpapagaan ng sakit, ang mga resulta sa galaw ay maaaring mas hindi predictable. Maaaring maranasan mo ang katigasan o pakiramdam ng pag-click sa balikat. Ilang pasyente ang nangangailangan ng karagdagang operasyon upang ayusin ang mga isyung ito. Kung pakiramdam ng iyong balikat ay hindi stable o may sakit sa mga bagong paraan, itaas ito sa iyong follow-up. Susuriin namin kung kailangan pa ng karagdagang paggamot.
Ang table ng mga komplikasyon sa pahinang ito ay naglalaman ng mga karaniwang rate kung gusto mo ng mga detalye.
Kailan tawagan ang amin¶
Tawagan kami kung may lagnat, lumalalang pamumula o daloy mula sa sugat, o biglaang matinding sakit. Pumunta sa emergency kung mapansin ang pamamaga ng binti, hirap sa paghinga, pagkawala ng pakiramdam, o hindi mo na makagalaw ang iyong limb. Kailangan ng agarang pagsusuri ang mga senyales na ito. Nandito kami upang tulungan kang manatiling ligtas habang nagre-recover. Mangyaring makipag-ugnayan sa aming klinika agad kung mangyari ang anumang mga sintomas na ito.
Evidence & references
This is the clinical evidence summary written for health professionals. It is technical, and it lists the research this page was built from. You do not need to read it to understand your treatment or to make a decision about it.
Overview¶
- Patients undergoing arthroplasty for acute proximal humeral fractures may achieve satisfactory long-term pain relief, though overall shoulder motion results are less predictable [1].
- In elderly patients undergoing reverse shoulder arthroplasty for acute proximal humeral fractures, anatomic tuberosity healing improves objective and subjective outcomes [2].
- Clinical results at 1-year follow-up confirm the advantage of applying a new intramedullary support nail and plate system to 3- or 4-part proximal humeral fractures in older patients [3].
- Elderly patients requiring admission after sustaining a proximal humeral fracture are frail and subject to a greater-than-average risk of mortality for their age [4].
- Patients who undergo initial nonoperative management have worse functional outcomes and higher complication rates than those who undergo acute reverse total shoulder arthroplasty (rTSA) for proximal humeral fractures [5].
- Patients with acute proximal humeral fractures who undergo reverse shoulder arthroplasty appear to achieve superior 5-year functional outcomes compared with patients who undergo hemiarthroplasty [6].
- The study cited represents the largest long-term follow-up of acute proximal humeral fractures treated with hemiarthroplasty [9].
- In most studies of proximal humeral fractures, only 1 or 2 patients experiencing an alternative outcome or lost to follow-up would change the conclusions for the dichotomous outcome studied [16].
- The increased in-hospital risk for major adverse events and surgical complications may moderate enthusiasm for reverse total shoulder arthroplasty (RTSA) for proximal humeral fractures in patients 65 years and older [21].
- Available literature suggests that reverse shoulder arthroplasty performed to address complex proximal humeral fractures might result in more favorable clinical outcomes than hemiarthroplasty performed for the same indication [26].
- Reverse total shoulder arthroplasty (RTSA) performed for acute 3- and 4-part proximal humeral fractures yields overall worse clinical outcomes and active range of motion compared with RTSA performed for elective indications [66].
- No clear benefits were observed in treating patients 65 years or older with four-part fractures of the proximal humerus with either hemiarthroplasty or nonoperative treatment [67].
Anatomy & Pathophysiology¶
- Shoulder rotational ability is improved by systematically repairing the tuberosities around the implant, provided their consolidation is anatomic [8].
- Greater tuberosity healing does not seem to impact reverse shoulder arthroplasty biomechanics during abduction or forward flexion [28].
- Greater tuberosity healing affects reverse shoulder arthroplasty biomechanics during external rotation [28].
- With minimal and moderate amounts of glenohumeral abduction, glenohumeral joint forces are significantly displaced superiorly [30].
- Varus and antecurvatum proximal humerus deformities as small as 15 degrees were associated with statistically significant alterations in glenohumeral joint mechanics [40].
- The control volume is an important anatomic and functional area of the proximal humerus [44].
- Vertical abduction has the greatest effect on axillary nerve position during the split lateral deltoid approach [43].
- Horizontal glenohumeral forward flexion and humeral rotation have little effect on axillary nerve position during the split lateral deltoid approach [43].
- The study demonstrates variability in the glenopolar angle with increased AP rotational offset of the shoulder radiograph [38].
- The study reveals inaccuracies in glenopolar angle measurement even at an institution with an established protocol [38].
- Range of motion and strength thresholds can identify subjects with normal shoulder function [29].
- The authors recommend performing the measurement of objective strength at the insertion of the deltoid muscle in a 90° abduction position in the scapula plane [35].
- Dominance of the affected shoulder has no influence on functional and quality of life outcome compared with the nondominant shoulder [37].
- Dominance of the affected shoulder should not be used to make treatment decisions [37].
Classification¶
- The Neer classification system covers 98% of all proximal humeral fractures and is appropriate for clinical practice [58].
- Classifications of proximal humeral fractures using the Neer system based on CT scans and plain radiographs are not very reliable or reproducible due to difficulty in determining which segments are fractured [60].
- The HGLS classification is a reliable method of describing fractures of the proximal humerus compared with the Neer and AO systems [56].
- A new classification system with emphasis on the qualitative aspects of proximal humeral fractures showed high reliability when based on a standardized imaging protocol including computed tomography scans [49].
- Consensus when managing proximal humerus fractures is limited to specific scenarios, whereas lack of consensus still exists in others [11].
Clinical Presentation¶
- Patients undergoing arthroplasty for acute proximal humerus fractures may achieve satisfactory long-term pain relief, though overall shoulder motion results are less predictable [1].
- Patients undergoing initial nonoperative management have worse functional outcomes and higher complication rates than those undergoing acute reverse total shoulder arthroplasty for proximal humeral fractures [5].
- Fractures of the proximal humerus follow characteristic patterns [7].
- A majority of patients with proximal humeral fractures undergo non-operative treatment [10].
- Consensus on managing proximal humerus fractures is limited to specific scenarios, while a lack of consensus exists in others [11].
- There is significant heterogeneity in the terminology and definitions used to describe complications following non-surgical management of proximal humeral fractures [12].
- Nonoperative treatment of proximal humeral fractures produces considerable variation in shoulder-specific and general health outcomes at 1 year, with a substantial proportion of patients having poor perceived functional outcomes [13].
- Mortality at 1 year for fragility proximal humerus fractures is universally high regardless of risk factors [15].
- The majority of unplanned hospital readmissions after surgical treatment of proximal humerus fractures are associated with medical diagnoses [19].
- In patients presenting with a traumatic shoulder injury and normal radiographs, the anterior bruise sign (ABS) is a highly sensitive and specific clinical aid to identify occult greater tuberosity fractures [22].
- Most proximal humeral fractures in elderly patients can be treated nonoperatively with good functional outcomes [23].
- Patients sustaining a proximal humeral fracture have a significantly higher risk of mortality up to one year after the injury compared with the general population [25].
- Most pediatric patients with proximal humerus fractures have favorable results, and complications are infrequent [50].
- Reverse shoulder arthroplasty is a powerful tool for managing proximal humerus fracture sequelae when joint-preserving options are not optimal, provided there is careful management of the tuberosities and understanding of associated pearls and pitfalls [54].
- Prevention of local complications, particularly those leading to severe varus deviation, appears essential to improve shoulder function after a proximal humeral fracture [55].
- Factors associated with poor results after internal fixation of three-part and four-part proximal humerus fracture-dislocations include being a woman, four-part fracture dislocation, and absence of metaphyseal head extension [57].
- A wide range of outcome measures are used in proximal humeral fracture studies, but there is limited evidence regarding their psychometric properties in this specific population [59].
Investigations¶
- Despite a delayed diagnosis of more than one year, osteotomy and realignment of a displaced lesser tuberosity fracture can be successful and enhance overall shoulder function [17].
- Undisplaced greater tuberosity fractures can be managed non-operatively with good results [72].
- Patients with persistent post-traumatic shoulder pain and limitation of function warrant MRI investigation to identify occult greater tuberosity fractures [72].
- In patients presenting with a traumatic shoulder injury with normal radiographs, the anterior bruise sign (ABS) is a highly sensitive and specific clinical aid to identify patients with an occult greater tuberosity fracture [22].
- There is relevant variability in displacement measurements between shoulder radiographs and CT scans in the coronal plane [73].
- Nearly 30% of cases suggesting surgical treatment on radiographs are reclassified for conservative treatment based on CT findings [73].
- The inherent nature of medial comminution of proximal humeral fracture may lead to inferior radiographic outcomes [71].
- Routine use of 3D-printed models may not be beneficial for classifying proximal humeral fracture patterns beyond the information gained from currently available imaging modalities [74].
- The routine use of 3D-printed models should be avoided as the sole determinant for recommending surgical intervention at this time [74].
- Convolutional neural networks (CNNs) proficiently rule out proximal humerus fractures on plain radiographs [76].
- Missed posterior dislocation of the shoulder after intramedullary fixation of proximal humeral fractures is an extremely rare injury that can be missed due to inadequate initial and postoperative x-ray images and incorrect interpretation [79].
Treatment¶
- Patients undergoing shoulder hemiarthroplasty for acute proximal humerus fractures may achieve satisfactory long-term pain relief, though overall shoulder motion results are less predictable [1].
- Patients undergoing initial nonoperative management have worse functional outcomes and higher complication rates than those undergoing acute reverse total shoulder arthroplasty (rTSA) for proximal humeral fractures [5].
- Shoulder rotational ability is improved by systematically repairing the tuberosities around the implant in complex shoulder fractures treated by reverse shoulder arthroplasty, provided their consolidation is anatomic [8].
- A majority of patients with proximal humeral fractures underwent non-operative treatment [10].
- Significant heterogeneity exists in the terminology and definitions used to describe complications following non-surgical management of proximal humeral fractures [12].
- Primary shoulder hemiarthroplasty for proximal humeral fracture is associated with satisfactory prosthetic survival at an average of 6.3 years [14].
- Short and long periods of immobilization yield similar results for nonoperatively treated proximal humeral fractures, independent of the fracture pattern [20].
- Nonsurgical management of proximal humerus fractures decreased during the study period [46].
- Treatment with reverse shoulder arthroplasty provides superior functional outcomes compared with conservative treatment for patients presenting with an acute proximal humeral fracture [47].
- There is no significant difference in clinical outcomes at 2 years between surgery and non-operative treatment in patients 60 years of age or older with displaced 2-part fractures of the proximal humerus [48].
- Nonsurgical management of proximal humerus fractures demonstrates successful outcomes and union rates greater than 90% [51].
- Nonsurgical treatment should have a more prominent role in the treatment of proximal humeral fractures compared to locking plate fixation [52].
- Osteoporosis may not be regarded as a contraindication for open reduction and internal fixation of unilateral displaced 3- or 4-part fractures, as shoulder function was restored to preinjury levels for most patients at 12-month follow-up [53].
- Percutaneous treatment of selected proximal humeral fractures results in predictable union and good clinical results with a low rate of complications [62].
- With narrow indications, use of a specific fracture stem and adequate tuberosity management, successful radiographic and functional results are presented after a mean follow-up of 4.8 years after hemiarthroplasty for primary nonreconstructable humeral head fractures [65].
Complications¶
- Patients undergoing arthroplasty for acute proximal humeral fractures may achieve satisfactory long-term pain relief, but overall shoulder motion results are less predictable [1].
- Patients with acute proximal humeral fractures who undergo reverse shoulder arthroplasty (RSA) appear to achieve superior 5-year functional outcomes compared with patients who undergo hemiarthroplasty [6].
- In-hospital complications are more likely to occur after reverse shoulder arthroplasty than after locked plating for proximal humeral fractures [21].
- Surgery for complex proximal humeral fractures leads to overall good long-term outcomes but is associated with high overall complication and reoperation rates [24].
- Short-term complication rates for fixation and arthroplasty alike have decreased compared with recent historic norms [27].
Recovery¶
- This study represents the largest long-term follow-up of acute proximal humeral fractures treated with hemiarthroplasty [9].
- Despite a delayed diagnosis of more than one year, osteotomy and realignment of a displaced lesser tuberosity fracture was successful and enhanced overall shoulder function in two adolescent patients [17].
- Surgery for complex proximal humeral fractures leads to overall good long-term outcomes despite high overall complication and reoperation rates [24].
- The increasing utilization of reverse total shoulder arthroplasty (RTSA) and decreasing short-term complication rates for fixation and arthroplasty represent a substantial change compared with recent historic norms in the management of proximal humerus fractures [27].
- Long-term treatment with reverse shoulder arthroplasty (RSA) for displaced 3- or 4-part proximal humerus fractures provides better functional outcomes compared to nonoperative treatment, a difference attributed to the deterioration of functional outcomes of the nonoperative treatment over time [63].
- Timing of surgery did not affect Oxford Shoulder Score at any stage of follow-up, irrespective of age or fracture type [80].
Key Evidence¶
- [L3] Patients undergoing arthroplasty as treatment of an acute fracture of the proximal humerus may achieve satisfactory long-term pain relief; however, the result for overall shoulder motion is less predictable. [1] (10.1016/j.jse.2007.06.025)
- [L3] In elderly patients who have undergone a reverse shoulder arthroplasty for acute proximal humeral fractures, anatomic tuberosity healing improves objective and subjective outcomes. [2] (10.1016/j.jse.2018.05.030)
- [L3] Clinical results at 1-year follow-up confirmed the advantage of applying it to 3- or 4-part proximal humeral fractures in older patients. [3] (10.1186/s12891-022-05998-z)
- [L3] Elderly patients who require admission after sustaining a proximal humeral fracture are frail and subject to a greater-than-average risk of mortality for their age. [4] (10.1016/j.jse.2019.05.030)
- [L3] Patients who undergo initial periods of nonoperative management have worse functional outcomes and higher complication rates than those who undergo acute rTSA for proximal humeral fractures. [5] (10.1016/j.jse.2021.06.020)
- [L3] Patients with acute proximal humeral fractures who undergo RSA appear to achieve superior 5-year functional outcomes compared with patients who undergo hemiarthroplasty. [6] (10.1016/j.jse.2012.03.006)
- [L4] Fractures of the proximal humerus follow characteristic patterns. [7] (10.1016/j.jse.2017.05.014)
- [L3] Shoulder rotational ability is improved by systematically repairing the tuberosities around the implant, provided their consolidation is anatomic. [8] (10.1016/j.jse.2012.03.011)
- [L3] This is the largest long-term follow-up study of acute proximal humeral fractures treated with hemiarthroplasty. [9] (10.1302/0301-620x.103b6.bjj-2020-1753.r1)
- [L3] A majority of patients with proximal humeral fractures underwent non-operative treatment. [10] (10.1186/s12891-019-2812-9)
- [L5] Consensus when managing proximal humerus fractures is limited to specific scenarios, whereas lack of consensus still exists in others. [11] (10.1016/j.jse.2024.12.005)
- [L1] This systematic review highlights significant heterogeneity in the terminology and definitions used to describe complications following non-surgical management of proximal humeral fractures, calling for standardized definitions to improve evidence synthesis. [12] (10.1186/s12891-019-2459-6)
- [L1] Nonoperative treatment of proximal humeral fractures produces considerable variation in shoulder-specific and general health outcomes at 1 year, and a substantial proportion of patients have poor perceived functional outcomes. [13] (10.2106/jbjs.20.02018)
- [L2] Primary shoulder hemiarthroplasty for proximal humeral fracture is associated with satisfactory prosthetic survival at an average of 6.3 years. [14] (10.2106/jbjs.l.01115)
- [L3] Mortality at 1 year for fragility proximal humerus fractures is universally high regardless of risk factors. [15] (10.1016/j.jse.2022.03.006)
- [L2] In most studies of proximal humeral fractures, only 1 or 2 patients experiencing an alternative outcome or lost to follow-up would change the conclusions for the dichotomous outcome studied. [16] (10.1016/j.jse.2022.01.141)
- [L4] Despite a delayed diagnosis of more than one year, osteotomy and realignment of the displaced fracture of the lesser tuberosity was successful and enhanced the overall function of the shoulder in these two patients. [17] (10.2106/00004623-199509000-00020)
- [L3] As the majority of unplanned hospital readmissions were associated with medical diagnoses, it is important to consider patient medical comorbidities before surgical treatment of proximal humerus fractures and during the postoperative care phase. [19] (10.1007/s11999-014-3613-y)
- [L2] Short and long periods of immobilization yield similar results for nonoperatively treated proximal humeral fractures, independent of the fracture pattern. [20] (10.2106/jbjs.20.02137)
- [L3] The increased in-hospital risk for major adverse events and surgical complications may moderate the enthusiasm associated with RTSA for proximal humeral fractures in patients 65 years and older. [21] (10.1097/corr.0000000000001776)
- [L2] In patients presenting with a traumatic shoulder injury with normal radiographs, the anterior bruise sign (ABS) is a highly sensitive and specific clinical aid to identify patients with an occult greater tuberosity fracture. [22] (10.1016/j.jse.2023.07.044)
- [L5] Most proximal humeral fractures in elderly patients can be treated nonoperatively with good functional outcomes. [23] (10.2106/jbjs.l.01293)
- [L5] Surgery for complex proximal humeral fractures leads to overall good long-term outcomes with high overall complication and reoperation rates. [24] (10.2106/jbjs.19.01109)
- [L3] Compared with the general population, patients sustaining a proximal humeral fracture have a significantly higher risk of mortality up to one year after the injury. [25] (10.1302/0301-620x.102b11.bjj-2020-0627.r1)
- [L1] The available literature suggests that reverse shoulder arthroplasty performed to address complex proximal humeral fractures might result in more favorable clinical outcomes than hemiarthroplasty performed for the same indication. [26] (10.1016/j.jse.2015.08.030)
- [L3] The increasing utilization of RTSA and decreasing short-term complication rates for fixation and arthroplasty alike represent a substantial change compared even with recent historic norms in the management of proximal humerus fractures. [27] (10.1097/corr.0000000000002391)
- [L5] Greater tuberosity healing does not seem to impact reverse shoulder arthroplasty biomechanics during abduction or forward flexion; however, it does affect biomechanics during external rotation. [28] (10.1016/j.jse.2019.07.022)
- [L3] Range of motion and strength thresholds can identify subjects with normal shoulder function. [29] (10.1016/j.jse.2010.06.005)
- [L5] With minimal and moderate amounts of glenohumeral abduction, glenohumeral joint forces are significantly displaced superiorly. [30] (10.1016/j.jse.2007.06.017)
- [L3] The authors recommend performing the measurement at the insertion of the deltoid muscle in a 90° abduction position in the scapula plane. [35] (10.1186/s12891-019-2795-6)
- [L3] Dominance of the affected shoulder has no influence and should not be used to make treatment decisions. [37] (10.1016/j.jse.2014.10.006)
- [L4] The study demonstrates variability in the glenopolar angle with increased AP rotational offset of the shoulder radiograph, revealing inaccuracies even at an institution with an established protocol. [38] (10.1302/0301-620x.95b8.30631)
- [L5] Varus and antecurvatum proximal humerus deformities as small as 15 degrees were associated with statistically significant alterations in glenohumeral joint mechanics. [40] (10.5435/jaaos-d-20-00555)
- [L5] Vertical abduction has the greatest effect on axillary nerve position, while horizontal glenohumeral forward flexion and humeral rotation have little effect. [43] (10.1016/j.jse.2008.12.001)
- [L5] The control volume is an important anatomic and functional area of the proximal humerus. [44] (10.1016/j.jse.2017.12.004)
- [L4] Nonsurgical management of proximal humerus fractures decreased during the study period. [46] (10.1016/j.jhsa.2020.03.022)
- [L1] Treatment with reverse shoulder arthroplasty provides superior functional outcomes compared with conservative treatment for patients presenting with an acute proximal humeral fracture. [47] (10.1016/j.jse.2024.02.023)
- [L1] This trial found no significant difference in clinical outcomes at 2 years between surgery and non-operative treatment in patients 60 years of age or older with displaced 2-part fractures of the proximal humerus. [48] (10.1371/journal.pmed.1002855)
- [L3] The new classification system with emphasis on the qualitative aspects of proximal humeral fractures showed high reliability when based on a standardized imaging protocol including computed tomography scans. [49] (10.1016/j.jse.2015.08.006)
- [L5] Most pediatric patients with proximal humerus fractures have favorable results, and complications are infrequent. [50] (10.5435/jaaos-d-14-00033)
- [L5] Treatment for proximal humerus fractures remains controversial, with nonsurgical management demonstrating successful outcomes and union rates greater than 90%. [51] (10.5435/jaaos-d-24-01073)
- [L3] Nonsurgical treatment should have a more prominent role in the treatment of proximal humeral fractures. [52] (10.1016/j.jse.2011.01.025)
- [L1] Shoulder function was restored to preinjury levels for most patients, and osteoporosis may not be regarded as a contraindication for this treatment. [53] (10.1016/j.jse.2022.07.008)
- [L5] Reverse shoulder arthroplasty is a powerful tool for managing proximal humerus fracture sequelae when joint-preserving options are not optimal, provided there is careful management of the tuberosities and understanding of associated pearls and pitfalls. [54] (10.5435/jaaos-d-23-00740)
- [L2] Prevention of local complications, in particular those leading to severe varus deviation, appears essential to improve shoulder function after a proximal humeral fracture. [55] (10.1016/j.jse.2011.06.009)
- [L3] The HGLS classification is a reliable method of describing fractures of the proximal humerus compared with the Neer and AO systems. [56] (10.1016/j.jse.2012.09.018)
- [L5] Surgical treatment of proximal humerus fractures remains far from straightforward, with unpredictable outcomes where factors associated with poor results include being a woman, four-part fracture dislocation, and absence of metaphyseal head extension. [57] (10.1097/corr.0000000000002242)
- [L4] The revised Neer classification covers 98% of all proximal humeral fractures and is appropriate for clinical practice. [58] (10.1016/j.jse.2009.01.018)
- [L1] The review identified a wide range of outcome measures used in proximal humeral fracture studies, but found limited evidence regarding their psychometric properties in this specific population. [59] (10.1016/j.jse.2010.10.028)
- [L4] Classifications of proximal humeral fractures using the Neer system based on CT scans and plain radiographs are not very reliable or reproducible due to difficulty in determining which segments are fractured. [60] (10.2106/00004623-199609000-00012)
- [L4] Percutaneous treatment of selected proximal humeral fractures results in predictable union and good clinical results with a low rate of complications. [62] (10.1016/j.jse.2006.09.006)
- [L1] Long-term treatment with RSA for displaced 3- or 4-part proximal humerus fractures provides better functional outcomes compared to nonoperative treatment, a difference attributed to the deterioration of functional outcomes of the nonoperative treatment over time. [63] (10.1016/j.jse.2024.09.032)
- [L4] With narrow indications, use of a specific fracture stem and adequate tuberosity management, successful radiographic and functional results are presented after a mean follow-up of 4.8 years after hemiarthroplasty for primary nonreconstructable humeral head fractures. [65] (10.1016/j.jse.2023.02.118)
- [L1] RTSA performed for acute 3- and 4-part proximal humeral fractures yields overall worse clinical outcomes and active ROM compared with RTSA performed for elective indications. [66] (10.1016/j.jse.2021.07.014)
- [L1] We observed no clear benefits in treating patients 65 years or older with four-part fractures of the proximal humerus with either hemiarthroplasty or nonoperative treatment. [67] (10.1007/s11999-012-2531-0)
- [L3] This implies that the inherent nature of medial comminution of proximal humeral fracture may lead to inferior radiographic outcomes. [71] (10.1186/s13018-022-03337-5)
- [L4] Undisplaced greater tuberosity fractures can be managed non-operatively with good results, but patients with persistent post-traumatic shoulder pain and limitation of function warrant MRI investigation to identify occult fractures. [72] (10.1186/s12891-018-2225-1)
- [L3] There is relevant variability in displacement measurements between shoulder radiographs and CT scans in the coronal plane, with nearly 30% of cases suggesting surgical treatment on radiographs being reclassified for conservative treatment based on CT findings. [73] (10.1016/j.jse.2016.05.016)
- [L5] The routine use of 3D-printed models may not be beneficial for classifying proximal humeral fracture patterns beyond the information gained from currently available imaging modalities, and their use as the sole determinant for recommending surgical intervention should be avoided at this time. [74] (10.1097/corr.0000000000002017)
- [L3] CNNs proficiently rule out proximal humerus fractures on plain radiographs. [76] (10.1302/0301-620x.106b11.bjj-2024-0264.r1)
- [L4] Missed posterior dislocation of the shoulder after intramedullary fixation of proximal humeral fractures is an extremely rare injury that can be missed due to inadequate initial and postoperative x-ray images and incorrect interpretation. [79] (10.1016/j.jse.2008.10.020)
- [L1] Timing of surgery did not affect Oxford Shoulder Score at any stage of follow-up, irrespective of age or fracture type. [80] (10.1302/0301-620x.102b1.bjj-2020-0546.r1)
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