Views for surgery method selection of intracerebral hemorrhage are still controversial. Since the application of neuroendoscopic technique in intraventricular hemorrhage was confirmed effective and safe, some investigators have attempted to use endoscopic strategies to evacuate intracerebral hematomas. Some significant advances have also been reported in endoscopic hematoma evacuation when compared to conventional craniotomy. However, it is still crucial to implement a prospective and controlled study to evaluate the efficiency and safety of endoscopic technique in the treatment of intracerebral hemorrhage. In this study, the investigators will exclusively select some patients with intracerebral hemorrhage in the basal ganglia region. This study will compare the efficacy and safety of endoscopic surgery versus stereotactic aspiration on neurologic outcomes for patients with intracerebral hemorrhage.
Although the incidence and mortality of spontaneous intracerebral hemorrhage (ICH) have been decreased with the improved management of high blood pressure, ICH may induce serious disability for the patients and continue to be a major socioeconomic problem. The evacuation of ICH using open craniotomy or computer tomography (CT)-guided stereotaxy may improve the survival rate of these patients but failed to prove efficacy in improving patients' functional outcome despite numerous efforts. Endoscopy-guided evacuation of ICH provides a less invasive and quicker surgical decompression, which may potentially improve the functional outcome for patients. In previous studies, endoscope-guided evacuation of ICH is often referred to as that an endoscope only provides an illuminating system while the operating channel is independent from the endoscope (endoscopy-controlled microneurosurgery or endoscopy-assisted microneurosurgery). In recent years, authors have been committed to explore the procedure of intra-endoscopy-guided evacuation of ICH, which means that the illuminating channel, the irrigation-aspiration channel and the working channel are all located in the endoscope. This kind of procedure can be called as real endoscopic neurosurgery (EN), which may potentially decrease the operative concomitant injuries at the most extent. However, the inherent drawbacks of intra-endoscopic procedures, including the limited visualization of the surgical field and the difficult maintenance of patency of the aspiration wand, can offset the advantages in some instances. The authors exclusively invented a special endoscopic transparent sheath for guiding hematoma puncture and an agitation-aspiration system (AAS) for keeping patency of the aspiration wand. Detailed procedures of their application will be implemented and verified in a series of patients with intracerebral hemorrhage. Meanwhile, the mortality rate, complications and other outcome parameters between this procedure and CT-guided procedures will be compared.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
SINGLE
Enrollment
100
Intra-endoscopic surgery for evacuation of ICH
Placebo:stereotactic aspiration surgery for evacuation of ICH
Nanfang Hospital of Southern University
Guangzhou, Guangdong, China
RECRUITINGMortality rate
all-cause motality rate within 90 days after the surgery
Time frame: 90-day
operative time
the period from skin incision to wound suture
Time frame: 24 h
days of ICU stay
the period between the end of the surgery to leaving the ICU
Time frame: 14 day
remnant blood in the hematoma after surgery
this parameter will be monitored by CT scan immediately after the surgery
Time frame: 12 hour
Glasgow coma score
the GCS will be evaluated by a senior doctor 28 days after the surgery
Time frame: 28 day
Glasgow outcome score
the GCS will be evaluated by a senior doctor 28 days after the surgery
Time frame: 90-day
In-hospital cost
all medical cost during the in-hospital period
Time frame: 28 day
rehemorrhage rate
Rehemorrhage almost occurs within 3 days after the surger. So cranial CT scan will be performed routinely 3 days later after surgery to evaluate the rehemorrhage rate
Time frame: 3 day
intracranial infection
If the patient underwent a period of fever, cerebral fluid will be withdrawn by means of lumbar puncture and tested to verify whether the intracranial infection occurs
Time frame: 14 day
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