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[Pressure conditions in adjoining spaces in a provoked compartment syndrome].

A compartment-syndrome can't be provoked experimentally in the upper arm sphere. The pressure does not change in adjoining spheres. In the tibial-anterior-loge enormous pressure values are reached by the extension of volume but adjoining and subcutaneous spheres are hardly influenced.

Anterior Compartment Syndrome↗

[Functional rehabilitation of the upper extremity after compartment syndrome].

In established compartment syndrome discrimination between the different forms of flexion contracture, i.e., manifest Volkmann's contracture and intrinsic contracture is necessary. A combination of both is also possible. Classification is essential for determination of whether reconstruction is indicated and what procedure should be selected. Shortening osteotomies of the ulna and radius are now of historical interest only, as is carpalectomy. Lengthening of the flexor tendons is indicated only in mild and localized limited contracture of only some of the long fingers, but there is a danger of possible further adhesions limiting the range of motion. Thus, cases of stage I and II according to Tsuge with persisting partial flexor motor function are treated mainly by muscle sliding operation (Scaglietti) combined with microsurgery for internal neurolysis of the median and ulnar nerves. The latter is anteriorly transposed. In cases of solitary intrinsic contracture we prefer the Littler release procedure. The most useful repair in advanced compartment syndrome, however, consists in free microsurgical tissue transfer. The non-contractile, degenerated scarred flexor muscle remnants are excised and substituted orthotopic by transfer of free, neurovascular muscle, with salvage of flexor motor function in the forearm.

Arm Injuries↗

Intra-abdominal hypertension and the abdominal compartment syndrome.

BACKGROUND: Abdominal compartment syndrome (ACS) occurs when intra-abdominal pressure is abnormally high in association with organ dysfunction. It tends to have a poor outcome, even when treated promptly by abdominal decompression. METHODS: A search of the Medline database was performed to identify articles related to intra-abdominal hypertension and ACS. RESULTS: Currently there is no agreed definition or management of ACS. However, it is suggested that intra-abdominal pressure should be measured in patients at risk, with values above 20 mmHg being considered abnormal in most. Abdominal decompression should be considered in patients with rising pressure and organ dysfunction, indicated by increased airway pressure, reduced cardiac output and oliguria. Organ dysfunction often occurs at an intra-abdominal pressure greater than 35 mmHg and may start to develop between 26 and 35 mmHg. The mean survival rate of patients affected by compartment syndrome is 53 per cent. CONCLUSION: The optimal time for intervention is not known, but outcome is often poor, even after decompression. Most of the available information relates to victims of trauma rather than general surgical patients.

Abdomen↗

Gastric tonometry and direct intraabdominal pressure monitoring in abdominal compartment syndrome.

BACKGROUND/PURPOSE: Abdominal compartment syndrome (ACS) may complicate abdominal closure in patients with abdominal wall defects, abdominal trauma, intraperitoneal bleeding, and infection. Increased intraabdominal pressure (IAP) leads to respiratory compromise, organ hypoperfusion, and a high mortality rate. This study evaluates the efficacy of continuous direct monitoring of IAP and gastric tissue pH in detecting impending ACS. METHODS: Ten mongrel puppies weighing 2.8 to 6.4 kg underwent general endotracheal anesthesia, placement of an intraabdominal inflatable balloon to simulate ACS and a Swan-Ganz catheter to measure direct IAP. A gastric tonometer, nasogastric tube, foley catheter, and arterial catheter also were inserted. Half-hourly inflation's of the intraabdominal balloon were used to simulate the development of ACS. Direct intraabdominal (IAP), gastric (GP), bladder (BP), and peak airway pressures (PAP) were measured. Gastric tonometry fluid and arterial blood gas levels were obtained during inflation, and the gastric tissue pH level was calculated. Data were statistically analyzed using Pearson's correlation coefficients. RESULTS: Baseline pressures were 2 to 5 cm H(2)O in the stomach and bladder catheters, 1 to 3 mm Hg in the intraabdominal catheter, and correlated with a gastric tissue pH level of 7.4. Significantly high correlation coefficients (cc) were observed between IAP versus BP (cc, 0.77; P <.002). IAP versus GP (cc, 0.79; P <.002) and IAP versus PAP (c, 0.83; P <.0004). A high negative correlation coefficient was noted between gastric pH and IAP (cc, 0.61; P <.026). The pH level dropped to 7.0 with BP and GP of 20 cm H(2)O and IAP of 10 mm Hg, to 6.8 at 30 cm H(2)O and 20 mm Hg, and 6.5 at 40 cm H(2)O and 30 mm Hg, respectively. However, correlation coefficients between gastric tissue pH and BP, GP, or PAP were not significant. CONCLUSIONS: These data suggest that continuous direct intraabdominal pressure monitoring is a simple and effective method that correlates well with indirect bladder or gastric pressure measurement. Changes in gastric tissue pH in association with increased intraabdominal pressure may be an early indicator of impending abdominal compartment syndrome. These observations indicate that these techniques may be more sensitive than current methods of indirect measurement, which may be associated with delayed recognition of ACS.

Abdomen↗

[Compartment syndrome and sport traumatology].

Compartment syndrome is defined as an increased intracompartmental pressure within inelastic fascia which surround muscular compartments. That pathology can be either acute or chronic. The acute situation is generally a medical emergency. Unless a fasciotomy is rapidly performed, increasing pressure may completely cut off blood flow and cause necrosis of the affected limb. The chronic compartment syndrome, more frequent, is characterized by exercise-induced pain and swelling that is relieved by rest. It results from an excessive intra-muscular pressure increase. The anterior compartment of the leg is most commonly involved. To accurately diagnose the compartment syndrome, physicians perform measurements of compartment pressure. By means of miniature digital instruments, exercise and rest intramuscular pressure are recorded. If pressures reach the critical threshold (30 mm Hg) and remain high five minutes after exercise, compartment syndrome is present. Treatment is nearly exclusively surgical. It consists in an fasciotomy allowing a complete recovery and a return to sport activities.

Athletic Injuries↗

Streptococcal toxic shocklike syndrome leading to bilateral lower extremity compartment syndrome and renal failure. Report of a case.

Compartment syndrome is considered a true emergency in orthopedic practice. To reduce morbidity and mortality from this condition, prompt diagnosis and appropriate treatment are absolutely essential. An unusual bilateral lower extremity compartment syndrome leading to renal failure and crush syndrome occurred in a 13-year-old girl with Streptococcal toxic shocklike syndrome. This situation seems not to have been previously reported. Early diagnosis and expeditious treatment produced minimal sequelae of the condition.

Acute Kidney Injury↗

Conservative treatment of an acute compartment syndrome of the thigh.

Compartment syndromes of the thigh after blunt trauma without any fracture are rare. Most surgeons recommend operative treatment. There are different rules for compartment syndromes of the thigh in young athletes after blunt trauma compared to compartment syndromes at other locations [(1) the large volume of the quadriceps muscle, (2) its relatively elastic fascia, (3) the direct proximal contact to the hip muscles which allows extravasation of fluid out of the compartment)]. We present a case of conservative treatment of elevated intra-compartmental pressure (ICP) of the anterior thigh after blunt trauma and the follow-up until return to sport. Conservative treatment of a compartment syndrome of the thigh after blunt trauma in a young patient without fracture or vascular damage was successful without short-term sequelae. Recovery of muscle strength is delayed but return to sport is possible. Depending on the severity the diagnosis and follow-up with ICP measurements and MRI is necessary. There is a very good chance for excellent outcome without any risk of surgery. However, a long healing time is possible.

Adolescent↗

The medical-legal aspects of compartment syndrome.

BACKGROUND: Management of compartment syndrome in the modern era involves not only avoiding the sequelae of a missed diagnosis but also minimizing the risk of a malpractice claim. Little information is available on the legal aspects of compartment syndrome. METHODS: Twenty-three years of records on closed malpractice claims involving compartment syndrome were reviewed. The data were abstracted from medical records and were analyzed to determine the factors associated with a successful defense. RESULTS: Nineteen closed claims, involving sixteen patients and encompassing a total liability of 3.8 million USD, were found in the data for malpractice claims closed between 1980 and 2003. Ten claims were resolved in favor of the physician. The average time to closure was 5.5 years. All three claims that went to trial resulted in a verdict for the physician. Evidence of poor physician-patient communication was found in six cases, all of which resulted in an indemnity payment (p < 0.01). Increasing time from the onset of symptoms to the fasciotomy was linearly associated with an increased indemnity payment (p < 0.05). A fasciotomy performed within eight hours after the first presentation of symptoms was uniformly associated with a successful defense. CONCLUSIONS: While malpractice claims involving compartment syndrome were uncommon, they resulted in a high rate and amount of indemnity payments. Early fasciotomy not only improves patient outcome but is also associated with decreased indemnity risk.

Adolescent↗

Calcaneal compartment syndrome after tibial fractures.

Compartment syndrome of the newly discovered calcaneal compartment of the foot is a theoretical possibility following tibial fracture due to the communication with the deep posterior compartment of the calf. Forty-nine patients were reviewed at least 18 months after open or closed tibial shaft fractures treated with tibial nailing in order to determine the prevalence of foot deformities secondary to previously undetected calcaneal or leg compartment syndromes. Ankle movements, foot height, length of feet and degree of clawing of the toes were all measured and compared with the unaffected opposite side. None of the patients complained of any symptoms from their feet and none had any significant foot deformities. Calcaneal compartment syndrome is rare after tibial fracture and routine measurement of calcaneal compartment pressures after such injuries is not indicated.

Bone Nails↗

Baseline compartment pressure measurements in isolated lower extremity fractures without clinical compartment syndrome.

BACKGROUND: The diagnosis of compartment syndrome is most commonly made by clinical examination. Direct compartmental measurements generally serve an adjunctive role in establishing the diagnosis, except when patients have an alteration in mental status. There is little known on what are the expected baseline elevations in compartments after the simple occurrence of a fracture when clinical compartment syndrome does not exist. Knowledge of such measurements might influence the utility of pressure measurements in diagnosing compartment syndrome. METHODS: A prospective analysis of compartment measurements was performed in 19 isolated lower extremity fractures with the opposite leg as the control. The patients had no clinical evidence of compartment syndrome, had no alteration in mental status, and underwent planned surgical treatment within 48 hours of injury. RESULTS: Average compartment measurements were 35.5 +/- 13.6 mm Hg (range 10 to 62 mm Hg) in the injured leg versus 16.6 +/- 7.5 mm Hg (range 3 to 40 mm Hg) in the control leg (p = 0.0001). Eighteen patients (95%) had at least one compartment measurement that exceeded a single threshold of 30 mm Hg and 12 patients (63%) exceeded a threshold of 45 mm Hg. Eleven patients (58%) had at least one compartment reading within 20 mm Hg of their diastolic pressure and 16 patients (84%) had one within 30 mm Hg of their diastolic pressure. Ten patients (53%) had a reading within 40 mm Hg of their mean arterial pressure (delta P) and eight patients (42%) had a reading within 30 mm Hg of the mean arterial pressure. No patient developed sequelae or required surgery related to an unrecognized compartment syndrome during a minimum 1-year follow-up. CONCLUSIONS: Based on our data, use of direct compartment measurements with existing thresholds and formulations to determine the diagnosis of compartment syndrome may not accurately reflect a true existence of the syndrome. A search for other quantitative measures to more accurately reflect the presence of compartment syndrome is warranted.

Adolescent↗

Compartment syndromes of the lower limb.

Compartment syndromes of the lower limb occur as an over-use type injury in athletes resulting in a chronic compartment syndrome. Alternatively they may occur as a result of trauma to the limb in the form of soft tissue injury or a closed fracture resulting in an acute compartment syndrome. Chronic compartment syndromes present as pain in the lower legs during exercise and are relieved after a variable period of rest. Diagnosis is aided by intracompartmental pressure monitoring during exercise and if symptoms have persisted for longer than 6 months treatment is by means of a subcutaneous fasciotomy. Acute compartment syndromes are relatively rare and often difficult to diagnose. If unrecognized they may lead to significant limb morbidity in the form of paraesthesia and muscle weakness. Diagnosis once again may be aided by intracompartmental pressure monitoring. Once the diagnosis has been made urgent surgical decompression in the form of an open fasciotomy is mandatory.

Acute Disease↗

Anatomical dissection of the deep posterior compartment and its correlation with clinical reports of chronic compartment syndrome involving the deep posterior compartment.

Patients with clinical presentation of deep posterior chronic compartment syndrome (CCS) frequently have symptoms limited to either proximal or distal components of the deep posterior compartment. In this study the posterior aspect of 15 cadaver legs was dissected to document anatomical separations and delineate boundaries, if any, of the deep posterior compartment and to correlate the findings to these patients. Origins of flexor hallucis longus (FHL), flexor digitorum longus (FDL), and tibialis posterior (TP), as well as whether TP existed in its own osseofascial compartment, were noted. Ten specimens had an identifiable distinct layer of tissue separating the deep posterior compartment into two potentially clinically relevant components. Much of this layer was derived from origins of FDL and its anatomical position in relation to the TP muscle. In seven of these cases, FDL had a significant fibular origin in addition to the well-established tibial origin. This essentially compartmentalized the distal third of the tibialis posterior as it descends anterior and medial to FDL in the lower one-third of the leg in five specimens. No cadaver possessed a significant fascial septum encasing TP and separating it from other deep posterior muscles. This study confirms the existence of a proximal and distal sub-compartment of the deep posterior compartment as a variant and supports the most frequent clinical presentation of deep posterior CCS as involving either the distal or proximal deep compartment, rather than the entire deep posterior compartment. The anatomic arrangement of muscles in the deep posterior compartment creates sub-compartments, which may explain the successful outcomes following a deep compartment release limited to symptomatic portion(s) of the deep compartment.

Anatomy, Artistic↗

Isolated compartment syndrome of the pronator quadratus compartment: a case report.

We present a case of compartment syndrome that involves the pronator quadratus space but does not affect any of the other forearm compartments. Symptoms consisted of pain out of proportion to examination findings, splinting of the forearm in a 30 degrees pronated position, and severe pain with passive supination. Diagnosis was confirmed with pressure measurements of all forearm compartments at the time of surgery. Symptoms resolved promptly with isolated release of the pronator quadratus compartment with concomitant reduction in compartment pressure in that one compartment.

Adolescent↗

Common compartment syndromes in athletes. Treatment and rehabilitation.

Compartment syndromes in athletes are rare, but they can also be limb-threatening events. Chronic exertional compartment syndrome (CECS) is a less emergent form where symptoms recur with repetitive loading or exertional activities. CECS is the most common form of compartment syndrome seen in athletes. Acute compartment syndromes may also occur in athletes secondary to direct trauma or may develop from pre-existing CECS. The leg is by far the most common site of compartment syndrome in athletes. The thigh, forearm, and foot are the next most common sites, although any fascially limited compartment can be affected. Awareness of the clinical presentation and pathophysiology of compartment syndromes can help the examiner make a prompt and accurate diagnosis. The treatment of acute compartment syndrome is emergent while the treatment of CECS is not. Conservative treatment and rehabilitation can be successful in treating CECS. Acute compartment syndromes must be treated immediately with surgical decompression. With CECS, if conservative treatment fails, surgical decompression is also indicated. Some authors have suggested that the results of surgical fasciotomy and rate of return to sport for athletes with CECS has not been uniform. If the diagnosis is accurate and carefully documented, a high degree of success with athletes returning to sport can be expected.

Athletic Injuries↗

Acute exertional anterior compartment syndrome in an adolescent female.

Acute compartment syndromes usually occur as a complication of major trauma. While the chronic exertional anterior tibial compartment syndrome is well described in the sports medicine literature, reports of acute tibial compartment syndromes due to physical exertion, or repetitive microtrauma, are rare. The case of an adolescent female who developed an acute anterior compartment syndrome from running in a soccer game is described in this report. Failure to recognize the onset of an acute exertional compartment syndrome may lead to treatment delay and serious complications. Whereas the chronic exertional anterior compartment syndrome is characterized by pain that diminishes with the cessation of exercise, the onset of the acute exertional anterior compartment syndrome is heralded by pain that continues, or increases, after exercise has stopped. Compartment pressure measurement confirms the clinical diagnosis and helps guide treatment. True compartment syndromes require urgent fasciotomy.

Acute Disease↗

Abdominal compartment syndrome: a case review.

Compartment syndrome is classically considered a complication of a musculoskeletal injury. Recent research has confirmed the abdomen as a potential compartment with the capability to cause life-threatening local and systemic manifestations. Abdominal compartment syndrome (ACS) is precipitated by an acute increase in abdominal contents volume with resulting intraabdominal hypertension. Presenting signs of ACS include a firm tense abdomen, increased peak inspiratory pressures, and oliguria, all of which improve after abdominal decompression. Patients at risk for ACS include trauma (blunt or open), retroperitoneal hemorrhage, massive fluid resuscitation, pancreatitis, pneumoperitoneum, and neoplasm. Surgical decompression is the treatment of choice. The perianesthesia nurse plays a critical role in the team managing a patient at risk for abdominal compartment syndrome through intraabdominal pressure monitoring, wound care, and end organ perfusion support.

Abdomen↗

Neonatal compartment syndrome.

Two cases of forearm compartment syndrome in neonates are presented. The compartment syndrome may be initiated before actual delivery and may appear in an advanced stage. In both children good clinical results were achieved when standard guidelines for managing compartment syndrome and established Volkmann's contracture were applied. Although uncommon, compartment syndrome should be considered in the differential diagnosis of the neonate who is unable to move an extremity.

Compartment Syndromes↗

MAST-associated compartment syndrome (MACS): a review.

Compartment syndromes occur following lower extremity injuries and have been associated with the use of pneumatic or "medical" antishock trousers (MAST). Review of 12 previously reported cases and 15 new cases suggests that lower extremity trauma and systemic hypotension are cofactors responsible for the development of compartment syndrome but MAST use also contributes to the process by prolonging muscle ischemia. Complications of lower limb compartment hypertension may be averted by early recognition and fasciotomy. Associated amputations and mortality are directly related to the severity of injury, or indirectly to delay in diagnosis and treatment of the compartment syndrome and its complications.

Abdominal Injuries↗