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1.
Eur J Trauma Emerg Surg ; 50(3): 847-855, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38294693

ABSTRACT

BACKGROUND: Complications arising during non-operative management (NOM) of blunt hepatic and/or splenic trauma, particularly in cases of severe injury, are associated with significant morbidity and mortality. Abdominal computed tomography (CT) is the gold standard for the initial detection of complications during NOM. Although many institutions advocate routine in-hospital follow-up scans to improve success rates, others recommend a more selective approach. The use of follow-up CT remains a subject of ongoing debate, with no validated guidelines available regarding the timing, effectiveness, or intervals of follow-up imaging. OBJECTIVE: We aimed to identify the clinical parameters for the early detection of complications in patients with blunt hepatic and/or splenic injury undergoing NOM. MATERIALS AND METHODS: This retrospective cohort study included patients with blunt hepatic and/or splenic trauma treated at Songklanagarind Hospital, a level 1 trauma center, from 2013 to 2022. We assessed all patients indicated for non-operative management and examined their clinical parameters and complications. RESULTS: Of 542 patients with blunt hepatic and/or splenic injuries, 315 (58%) were managed non-operatively. High-grade hepatic injuries were significantly associated with complications, as determined through a multivariate logistic regression analysis after adjusting for factors such as contrast blush findings, age, sex, and injury severity score (ISS) (adjusted OR = 7.69, 95% CI 1.59-37.13; p = 0.011). Among the patients with complications (n = 27), 17 (63%) successfully underwent non-operative management. Notably, eight patients presented with clinical symptoms prior to the diagnosis of complications, while only two patients had no clinical symptoms before the diagnosis. Tachycardia, abdominal pain, decreased hematocrit levels, and fever were significant indicators of complications (p < 0.05). CONCLUSION: Routine CT to detect complications may not be necessary in patients with asymptomatic low-grade blunt hepatic injuries. By contrast, in those with isolated blunt hepatic injuries that are managed non-operatively, high-grade injuries, the presence of a contrast blush on initial imaging, and the patient's age may warrant consideration for routine follow-up CT scans. Clinical symptoms and laboratory observations during NOM, such as tachycardia, abdominal pain, decreased hematocrit levels, and fever, are significantly associated with complications. These symptoms necessitate further management, regardless of the initial injury severity, in patients with blunt hepatic and/or splenic injuries undergoing NOM.


Subject(s)
Early Diagnosis , Injury Severity Score , Liver , Spleen , Tomography, X-Ray Computed , Wounds, Nonpenetrating , Humans , Wounds, Nonpenetrating/therapy , Wounds, Nonpenetrating/diagnostic imaging , Wounds, Nonpenetrating/complications , Female , Male , Spleen/injuries , Spleen/diagnostic imaging , Retrospective Studies , Adult , Liver/injuries , Liver/diagnostic imaging , Middle Aged , Abdominal Injuries/diagnostic imaging , Abdominal Injuries/therapy , Abdominal Injuries/complications , Aged , Trauma Centers
2.
Chin J Traumatol ; 2023 Sep 20.
Article in English | MEDLINE | ID: mdl-37838579

ABSTRACT

Portal vein thrombosis (PVT) secondary to blunt abdominal trauma associated with liver injury is extremely rare in healthy individuals as well as in minor liver injury, and it carries a high rate of morbidity and mortality. Moreover, acute asymptomatic PVT is difficult to diagnose. We present a young trauma patient with isolated minor liver injury associated with acute PVT. A 27-year-old man presented to the emergency department after a motor vehicle collision. His primary survey findings were unremarkable. His secondary survey showed a large contusion (7 cm × 7 cm) at the epigastrium with marked tenderness and localized guarding. The CT angiography of the whole abdomen revealed liver injury grade 3 in hepatic segments 2/3 and 4b (according to the American Association for the Surgery of Trauma classification) extending near the porta hepatis with patent hepatic and portal veins and without other solid organ injury. The follow-up CT of the whole abdomen on post-injury day 7 showed a 1.8-cm thrombus in the left portal vein with patent right portal and hepatic veins, and a decreased size of the hepatic lacerations. A liver function test was repeated on post-injury day 4, and it revealed improved transaminitis. The patient received intravenous anticoagulant therapy with low-molecular-weight heparin according to weight-based dosing for treatment. The CT of the whole abdomen performed 2 weeks after anticoagulant therapy showed small residual thrombosis in the left portal vein. The patient received intravenous anticoagulant therapy for a total 3 months. On the follow-up visits at 1 month, 2 months, 6 months, and 1 year after the injury, the patients did not have any detectable abnormal symptoms. PVT post-blunt minor liver injury is an extremely rare complication. If the thrombosis is left untreated, serious morbidity and mortality can ensue. However, its diagnosis in asymptomatic patients is still challenging. Periodic imaging is necessary for highly suspected PVT, especially in liver injury with lacerations close to the porta hepatis, even in cases of a minor injury.

3.
Trauma Case Rep ; 46: 100857, 2023 Aug.
Article in English | MEDLINE | ID: mdl-37292437

ABSTRACT

Background: Hepatic compartment syndrome (HCS) is a complication of nonoperative management in patients with blunt hepatic injury. Although decompression of elevated intrahepatic pressure through surgical exploration or drainage and hemorrhage control are required to manage this condition, evidence for such a management for this complication is insufficient. Herein, we report a pediatric patient treated with a planned combination strategy of surgical decompression with perihepatic packing to reduce intrahepatic pressure and subcapsular hemorrhage control as well as angioembolization to control intraparenchymal hemorrhage. Case presentation: A 12-year-old boy was referred to our emergency department 5 h after sustaining severe bruising in the upper abdomen in a traffic accident. Computed tomography (CT) showed an intraparenchymal hematoma in the right lobe of the liver; nonoperative management was selected based on stable hemodynamic status. Two days after the injury, he complained of severe abdominal pain and shock. CT showed an intraparenchymal and large subcapsular hematoma with right branch compression of the portal vein and extravasation of contrast material. Laboratory data showed progression of hepatocellular damage. We successfully managed this patient with a planned combination strategy of surgical decompression with perihepatic packing for reduction of intrahepatic pressure and subcapsular hemorrhage control, followed by angioembolization for control of intraparenchymal hemorrhage. Conclusion: Our study suggests that for the management of HCS, a planned combination strategy of damage control surgery and angioembolization is a therapeutic option.

4.
Surg Case Rep ; 7(1): 269, 2021 Dec 20.
Article in English | MEDLINE | ID: mdl-34928459

ABSTRACT

BACKGROUND: Intra-abdominal hemorrhage caused by blunt hepatic injury is a major cause of morbidity and mortality in patients with abdominal trauma. Some of these patients require laparotomy, and rapid decision-making and life-saving surgery are essential. Damage control (DC) surgery is useful for treating children in critical situations. We performed this technique to treat an 8-year-old boy with grade IV blunt hepatic injury and multiple organ damage. This is the first report of the use of the ABTHERA Open Abdomen Negative Pressure Therapy System (KCI, now part of 3 M Company, San Antonio, TX, USA) for DC surgery to rescue a patient without neurological sequelae. CASE PRESENTATION: An 8-year-old boy was brought to the emergency department of our hospital after being run over by a motor vehicle. He had grade IV blunt hepatic injury, thyroid injury, and bilateral hemopneumothorax. Although he was hemodynamically stable, the patient's altered level of consciousness, the presence of a sign of peritoneal irritation, and suspicion of intestinal injury led us to perform exploratory laparotomy. As part of a DC strategy, we performed gauze packing to control hemorrhage from the liver and covered the abdomen with an ABTHERA Open Abdomen Negative Pressure Therapy System to improve the patient's general condition. Eighteen days after admission, the patient was diagnosed with a biliary fistula, which improved with percutaneous and external drainage. He had no neurological sequelae and was discharged 102 days after injury. CONCLUSION: The DC strategy was effective in children with severe blunt hepatic injury. We opted to perform DC surgery because children have less hemodynamic reserve than adults, and we believe that using this strategy before the appearance of trauma triad of death could save lives and improve outcomes. During conservative management, it is important to adopt a multistage, flexible approach to achieve a good outcome.

5.
Surg Case Rep ; 7(1): 234, 2021 Oct 30.
Article in English | MEDLINE | ID: mdl-34718909

ABSTRACT

BACKGROUND: The damage control approach is known to reduce the mortality rate in severely injured patients and has now become a common practice. Transcatheter arterial embolization (TAE) has been shown to be useful with combining with damage control laparotomy in identifying and controlling active arterial hemorrhage. Hybrid operating room (OR) allows both damaged control surgery and TAE in the same location in minimal time. We report a case of a patient with three cardiac arrests who was saved by early intervention using damage control surgery (DCS) with interventional radiology (IVR) in the hybrid OR. CASE PRESENTATION: A 46-year-old woman was injured in a collision with a tree while snowboarding. She was eventually transported to hybrid operating room in our hospital with the diagnosis of significant liver laceration and hemorrhagic shock. Damage control surgery was performed with perihepatic packing (PHP) and TAE was conducted to stop active bleeding from right hepatic artery. She experienced 3 times of cardiopulmonary arrest, which was successfully resuscitated on each occasion. Although she had total of 3 times of laparotomy but tolerated well. She was discharged on day 82 of hospitalization and showed no neurological sequelae. CONCLUSION: Saving the life of a patient with severe trauma requires a multidisciplinary approach with cooperation and early information sharing among trauma team members. Sharing treatment strategy with the trauma team and early intervention using DCS with IVR in the hybrid operating room could save the patient's life.

6.
Abdom Radiol (NY) ; 46(6): 2556-2566, 2021 06.
Article in English | MEDLINE | ID: mdl-33469691

ABSTRACT

PURPOSE: In patients presenting with blunt hepatic injury (BHI), the utility of CT for triage to hepatic angiography remains uncertain since simple binary assessment of contrast extravasation (CE) as being present or absent has only modest accuracy for major arterial injury on digital subtraction angiography (DSA). American Association for the Surgery of Trauma (AAST) liver injury grading is coarse and subjective, with limited diagnostic utility in this setting. Volumetric measurements of hepatic injury burden could improve prediction. We hypothesized that in a cohort of patients that underwent catheter-directed hepatic angiography following admission trauma CT, a deep learning quantitative visualization method that calculates % liver parenchymal disruption (the LPD index, or LPDI) would add value to CE assessment for prediction of major hepatic arterial injury (MHAI). METHODS: This retrospective study included adult patients with BHI between 1/1/2008 and 5/1/2017 from two institutions that underwent admission trauma CT prior to hepatic angiography (n = 73). Presence (n = 41) or absence (n = 32) of MHAI (pseudoaneurysm, AVF, or active contrast extravasation on DSA) served as the outcome. Voxelwise measurements of liver laceration were derived using an existing multiscale deep learning algorithm trained on manually labeled data using cross-validation with a 75-25% split in four unseen folds. Liver volume was derived using a pre-trained whole liver segmentation algorithm. LPDI was automatically calculated for each patient by determining the percentage of liver involved by laceration. Classification and regression tree (CART) analyses were performed using a combination of automated LPDI measurements and either manually segmented CE volumes, or CE as a binary sign. Performance metrics for the decision rules were compared for significant differences with binary CE alone (the current standard of care for predicting MHAI), and the AAST grade. RESULTS: 36% of patients (n = 26) had contrast extravasation on CT. Median [Q1-Q3] automated LPDI was 4.0% [1.0-12.1%]. 41/73 (56%) of patients had MHAI. A decision tree based on auto-LPDI and volumetric CE measurements (CEvol) had the highest accuracy (0.84, 95% CI 0.73-0.91) with significant improvement over binary CE assessment (0.68, 95% CI 0.57-0.79; p = 0.01). AAST grades at different cut-offs performed poorly for predicting MHAI, with accuracies ranging from 0.44-0.63. Decision tree analysis suggests an auto-LPDI cut-off of ≥ 12% for minimizing false negative CT exams when CE is absent or diminutive. CONCLUSION: Current CT imaging paradigms are coarse, subjective, and limited for predicting which BHIs are most likely to benefit from AE. LPDI, automated using deep learning methods, may improve objective personalized triage of BHI patients to angiography at the point of care.


Subject(s)
Deep Learning , Adult , Decision Trees , Humans , Liver/diagnostic imaging , Retrospective Studies , Tomography, X-Ray Computed
8.
Surg Case Rep ; 2(1): 134, 2016 Dec.
Article in English | MEDLINE | ID: mdl-27854071

ABSTRACT

BACKGROUND: Severe blunt hepatic injury is a major cause of morbidity and mortality in pediatric patients. Damage control (DC) surgery has been reported to be useful in severely compromised children with hepatic injury. We applied such a technique in the treatment of a case of hemodynamically unstable grade IV blunt hepatic injury in an eight-year-old girl. This case is the first to use multimodal approaches including perihepatic packing, temporary closure of the abdominal wall with a plastic sheet, transarterial embolization (TAE), and planned delayed anatomical hepatic resection in a child. CASE PRESENTATION: An eight-year-old girl was run over by a motor vehicle and transferred to the emergency department of the local hospital. Her diagnoses were severe blunt hepatic injury (grade IV) with left femoral trochanteric fracture. No other organ injuries were observed. Because her hemodynamic state was stable under aggressive fluid resuscitation, she was transferred to our hospital for surgical management. On arrival at our institution about 4 h after the injury, her hemodynamic condition became unstable. Abdominal compartment syndrome also became apparent. Because her condition had deteriorated and the lethal triad of low BT, coagulopathy, and acidosis was observed, a DC treatment strategy was selected. First, emergent laparotomy was performed for gauze-packing hemostasis to control intractable bleeding from the liver bed, and the abdomen was temporarily closed with a plastic sheet with continuous negative pressure aspiration. Transarterial embolization of the posterior branch of the right hepatic artery was then carried out immediately after the operation. The lacerated right lobe of the liver was safely resected in a stable hemodynamic condition 2 days after the initial operation. Bleeding from the liver bed ceased without further need of hemostasis. She was transferred to the local hospital without any surgical complications on day 42 after admission. She had returned to her normal life by 3 months after the injury. CONCLUSION: The DC strategy was found to be effective even in a pediatric patient with hemodynamically unstable severe blunt hepatic injury. The presence of the deadly triad (hypothermia, coagulopathy, and acidosis) and abdominal compartment syndrome was an indication for DC surgery.

9.
World J Emerg Surg ; 9(1): 51, 2014.
Article in English | MEDLINE | ID: mdl-25309622

ABSTRACT

BACKGROUND: There is growing evidence of clinical data recently for successful outcomes of non-operative management (NOM) for blunt hepatic and spleen injuries (BHSI). However, the effectiveness of NOM for high-grade BHSI remains undefined. The aim of the present study was to review our experience with NOM in high-grade BHSI and compare results with the existing related data worldwide. METHODS: In this retrospectively protocol-driven study, 150 patients with grade 3-5 BHSI were enrolled during a 3-year period. Patients were divided into immediate laparotomy (immediate OP) and initial non-operative (initial NOM) groups according to hemodynamic status judged by duty trauma surgeon. Patients who received initial NOM were divided into successful NOM (s-NOM) and failed NOM (f-NOM) subgroups according to conservative treatment failure. We analyzed the clinical characteristics and the outcomes of patients. RESULTS: Twenty-eight (18.7%) patients underwent immediate operations, and the remaining 122 (81.3%) were initially treated with NOM. Compared with the initial NOM group, the immediate OP group had significantly lower hemoglobin levels, a higher incidence of tube thoracostomy, contrast extravasation and large hemoperitoneum on computed tomography, a higher injury severity score, increased need for transfusions, and longer length of stay (LOS) in the intensive care unit (ICU) and hospitalization. Further analysis of the initial NOM group indicated that NOM had failed in 6 (4.9%) cases. Compared with the s-NOM subgroup, f-NOM patients had significantly lower hemoglobin levels, more hospitalized transfusions, and longer ICU LOS. CONCLUSIONS: NOM of high-grade BHSI in selected patients is a feasible strategy. Notwithstanding, patients with initial low hemoglobin level and a high number of blood transfusions in the ICU are associated with a high risk for NOM failure.

10.
Article in Korean | WPRIM (Western Pacific) | ID: wpr-221753

ABSTRACT

BACKGROUND: Because of increased number of traffic and industrial accidents, the incidence of blunt abdominal injury patients has increased. Recently, abdominal computed tomographic(CT) scans have been widely used in emergency departments for initial diagnostic workups on patients with blunt hepatic injuries. The purpose of this study is to analyze the correlation between abdominal CT scans and the clinical outcomes and to recommend a direction for the management of blunt hepatic injury. METHODS: A retrospective review was conducted of 66 patients with blunt hepatic injuries who underwent abdominal CT scans and were treated at the Department of Emergency Medicine of Dankook University Hospital during the period from January 1998 to December 2000. Statistical analysis was performed using the chi-square(x2) test, Spearman correlation test, Cochran-Mantel-Haenszel chi-square(x2) test and Fisher's exact test; a value of p<0.05 was considered significant. RESULTS: Based on CT scans, we graded the liver injuries by using the system of the Organ Injury Scaling Committee of American Association for the Surgery of Trauma. Grade II injuries(28 cases, 42.4%) were the most common in this study. Most patients with injuries above grade III were managed surgically, and CT grades correlated well with operative treatment and initial fluid resuscitation. Initial shock status correlated with the CT grade, but did not correlate with operative management. For nonoperative management, as the CT grade increased, the amount of blood transfusion also increased. Increasing liver enzyme did not correlate with CT grade. The mortality rate was 9.1%, and the most common cause of death were hypovolemic shock due to massive bleeding. CONCLUSION: Non-operative management is the first choice of treatment in low grade blunt hepatic injury(CT grade I, II, and III). For cases above grade IV hepatic injury, the key points of operative management were the hepatic injury itself and it's complication.


Subject(s)
Humans , Abdominal Injuries , Accidents, Occupational , Blood Transfusion , Cause of Death , Decision Making , Emergency Medicine , Emergency Service, Hospital , Hemorrhage , Incidence , Liver , Mortality , Resuscitation , Retrospective Studies , Shock , Tomography, X-Ray Computed
11.
Article in Korean | WPRIM (Western Pacific) | ID: wpr-164964

ABSTRACT

PURPOSE: Nonoperative management is currently considered a treatment modality in 50 to 80% of patients with blunt liver injury. Nevertheless 10 to 50% of patients need operative management, and the criteria for operative management have not established. The purpose of this study is to find criteria for operative management of patients with blunt liver injury. METHODS: The records of 117 patients who experienced blunt hepatic injury from January 1992 to April 1999 were reviewed retrospectively with respect to hemodynamic stability, transfusion requirement, injury severity score, liver injury grade, amount of blood in the peritoneal cavity, and pooling of contrast material on computerized tomography (CT). RESULTS: Among the 117 patients, 29 patients (25%) were treated operatively (Group 1) and 88 patients (75%) were treated nonoperatively (Group 2). The initial systolic blood pressure in Group 1 was significantly lower than that of Group 2 (74.4+/-30.3 mmHg vs 107.1+/-27.2 mmHg, p<0.001). The amounts of transfusion for hemodynamic stability were 2.1 units in Group 1 and 0.4 units in Group 2 (p<0.001). The injury Severity score of Group 1 was significantly higher than that of Group 2 (20.8 +/- 11.0 vs 10.7+/-6.8, p=0.03). The mean injury grade was 3.7+/-0.1 for Group 1 and 2.4+/-1.0 for Group 2, which was a statistically significant difference was seen (p<0.001). The amount of hemoperitoneum in Group 1 was significantly higher than that of Group 2 (p<0.001). The pooling of contrast material on CT was detected in 3 cases in Group 1. CONCLUSION: We can establish the following criteria for operative management: operative management is necessary for hemodynamic instability during resusci tation, positive peritoneal irritation signs, and presence of pooling of contrast material on CT. In cases above grade IV, above 500 mL of hemoperitoneum on CT, or above 2 units of blood transfusion during resuscitation, close observation in an intensive care unit is necessary. If abnormality develops during observation, prompt operative management is mandatory.


Subject(s)
Humans , Blood Pressure , Blood Transfusion , Hemodynamics , Hemoperitoneum , Injury Severity Score , Intensive Care Units , Liver , Peritoneal Cavity , Resuscitation , Retrospective Studies
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